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1

Aswathy, R. K., joy Jintu, M. Arjun, and N. V. Sugathan. "A Phytochemical Qualitative Analysis of Homoeopathic Mother Tincture Bellis Perennis." INTERNATIONAL JOURNAL OF INNOVATIVE RESEARCH AND CREATIVE TECHNOLOGY 11, no. 1 (2025): 1–4. https://doi.org/10.5281/zenodo.14784187.

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Background: Phytochemicals are a class of bioactive molecules found in medicinal plant extracts. Bellis perennis or common daisy belongs to asteracea family which is known as a common plant, used in folk medicine and homoeopathy. The list of bioactivities reported for this plant includes anti-inflammatory, antispasmotic,antiexudatic,expectorant,diuretic. This plant is used as a homeopathic remedy that is utilized for the treatment of various medical conditions. The goal of this study intends to analyse the phytochemical components of homoeopathic mother tincture Bellis perennis.Materials and M
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Sivagnanam, S., V. Ranganathan, and S. Paramasivan. "Qualitative Phytochemical analysis of Rhinacanthus nasutus." Journal of Phytopharmacology 10, no. 5 (2021): 316–18. http://dx.doi.org/10.31254/phyto.2021.10506.

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Rhinacanthus nasutus (Nagamalli) is a small slender shrub widely distributed in India, South East Asia and China. This herb is being used for treating snake bite by irula tribes in the remote villages of Nilagiri hills. The plant possesses a wide spectrum of phytochemical substances. The current study is aimed at measuring the qualitative phytochemistry of Rhinacanthus nasutus cultivated at herbal garden of Veterinary College and Research Institute, Orathanadu. The results suggest that the leaves and root of Rhinacanthus nasutus are potential sources for healthy phytochemicals especially alkal
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Surbhi, B. "Qualitative Phytochemical Analysis of the Tulsi Plant (Ocimum sanctum)." International Educational Applied Research Journal 08, no. 08 (2024): 21–25. https://doi.org/10.5281/zenodo.13381470.

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Tulsi (Ocimum sanctum), also known as holy basil, is a revered herb in traditional medicine systems, particularly in Ayurveda. This study aims to explore the qualitative phytochemical constituents of Tulsi, highlighting its medicinal properties and associated health benefits. Employing various standard phytochemical tests, we assessed for the presence of flavonoids, alkaloids, tannins, saponins, phenolic compounds, terpenoids, and volatile oils. The findings indicate that Tulsi is rich in diverse phytochemicals, confirming its value in both traditional and contemporary phytotherapy.
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Makwana, Hiren V., Priyanka G. Pandey, and Binita A. Desai. "Phytochemical Analysis and Evaluation of Total Phenolic Content of Algal Biomass Found in Tapi River in Surat." International Journal for Research in Applied Science and Engineering Technology 10, no. 4 (2022): 2783–87. http://dx.doi.org/10.22214/ijraset.2022.41897.

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Abstract: The present study aims to assess the phytochemicals of algal biomass which has seven species identified microscopically. The qualitative phytochemical analysis was done on all the biomass in the Tapi River, Surat in Gujarat. For the qualitative phytochemical analysis total 12 different parameters were analysed and used on algal biomass. Extract prepared in water. Amongst the water extract showed the presence of a maximum number of phytochemical compounds. Next to that, water extract showed alkaloids, glycosides, flavonoids, saponins, terpenoids, phytosterol, coumarins, tannins, diter
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Dharavath, Bhaskara Naik, and Bhavani Lakshmi. "Qualitative Phytochemical Screening and GC-MS analysis of (Eleusine coracana (L.)." Agriculture Archives: an International Journal Volume 1, Issue 2 (2022): 1–5. https://doi.org/10.5281/zenodo.7197429.

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The present investigation was carried out to evaluate the phytochemicals and GC-MS of &nbsp;seedlings of important cereal grain <em>Eleusine coracana</em> L., commonly called ragi. The dried germinated seeds powder was extracted separately with ethanol. The extracts were subjected to phytochemical analysis with different tests. Phytochemical analysis indicated the presence of significant phytochemicals viz, steroids, Glycosides, flavonoids, tannins, saponins, and volatile oils in the seedlings of all the genotypes of Ragi. Alkaloids were absent in all the genotypes studied. GC-MS analysis reve
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A, Dalhatu. "Qualitative and Quantitative Phytochemical Analysis and Medicinal uses of Hibiscus sabdariffa (Zobo) and Hyphaene thebaica (Goriba)." Arid Zone Journal of Basic and Applied Research 2, no. 1 (2023): 8–13. http://dx.doi.org/10.55639/607.4656.

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Hibiscus sabdariffa and Hyphaene thebaica commonly refers to as Zobo and Goriba respectively are edible plants commonly used in making beverages in Nigeria. These two plants have been linked with salutary effects when consumed and are considered to be of great public health importance. This study aims to conduct qualitative and quantitative phytochemical analysis of Hybiscus sabdariffa and Hyphaene thebaica. Phytochemical compounds were extracted from the plants by the soxhlet hot percolation method using methanol as a solvent. Qualitative phytochemical analysis was conducted for alkaloids, ca
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Varsha Sanjay, Khude. "Qualitative phytochemical analysis of ten different leafy wild vegetables." Science Archives 04, no. 02 (2023): 99–101. http://dx.doi.org/10.47587/sa.2023.4205.

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The present research paper focuses on the phytochemical analysis of 10 different species of non-cultivated, wild, and traditional vegetables available in the adjoining area of Nipani City (Karnataka) during the rainy season. These wild plants are used as medicine as well as vegetables. They are used to treat different diseases like diabetes, rheumatism, dysentery, dyspepsia, gastritis, constipation, urinary disorders, etc., and are easily available in natural habitats, a cheap and excellent source of nutrients like proteins, carbohydrates, iron, essential minerals, and other secondary metaboli
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8

Garg, Praveen, and Rajesh Garg. "QUALITATIVE AND QUANTITATIVE ANALYSIS OF LEAVES AND STEM OF TINOSPORA CORDIFOLIA IN DIFFERENT SOLVENT EXTRACT." Journal of Drug Delivery and Therapeutics 8, no. 5-s (2018): 259–64. http://dx.doi.org/10.22270/jddt.v8i5-s.1967.

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Tinospora cordifolia is known as Giloe and Guduchi, with significant importance in the traditional medicinal systems. It is dioeciously plant. It is mostly used in Ayurved system. It is also known as a ‘Rasayans’ of medicinal system, which develops immune system of the body and protect against infection. The aim of this study is carried out to analyse the phytochemical compounds in leaves and stem extracts of T. cordifolia by using phytochemical screening tests and estimate total flavonoid content (TFC) by using aluminium chloride method in the sample extracts. The leaf and stem extracts of T.
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9

Huzafa, M., Z. Jamal, and A. Ahmed. "Qualitative Phytochemical Analysis of Incarvillea emodi (Royle ex Lindl.) Chatterjee and Malva neglecta (Wallr.)." Ukrainian Journal of Ecology 10, no. 4 (2020): 93–95. http://dx.doi.org/10.15421/2020_173.

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The present study was carried out to investigate the phytochemical profile of Incarvillea emodi and Malva neglecta. The two plants were screened for the presence of nine different classes of bioactive compounds. The qualitative tests were performed on the aerial and underground parts of the selected plants to relate the presence of phytochemicals with bioactivities of the plants. The selected plant material was extracted with three different solvents. These extracts were then subjected to phytochemical screening and the presence of various phytochemicals was confirmed by different standard con
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Anameze, C. I., I. O. Emmy-Egbe, L. C. Anyaegbunam, et al. "Qualitative and Quantitative Phytochemical Analysis of Gongronema latifolium Leaf Extract." IPS Journal of Applied Microbiology and Biotechnology 2, no. 1 (2023): 16–19. http://dx.doi.org/10.54117/ijamb.v2i1.10.

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Phytochemical compounds are secondary metabolites produced by plants in which some have medicinal uses. The aim of this study is to qualitatively and quantitatively analyze the phytochemical composition of G. latifolium leaf extract. Fresh and healthy leaves of the medicinal plant of G. latifolium leaf were harvested, washed thoroughly in distilled water and dried at room temperature for 7 days. The dried leaf was milled to fine powder. The pulverized plant was weighed and used for the phytochemical analysis. Based on qualitative analysis, the results show the presence of tannins, alkaloids, s
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11

Vishakha, Sinha, and Shrivastava Shobha. "Qualitative screening of phytochemicals present in Withania somnifera root extract with pharmacological importance." International Journal of Life Sciences 11, no. 3 (2023): 257–61. https://doi.org/10.5281/zenodo.8397176.

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<em>Withania somnifera</em>, also known as &ldquo;Ashwagandha&rdquo;, is a well-known perennial herb from India that belongs to the Solanaceae family. It is among the most valuable medicinal plants and has been widely utilised as therapeutic agents, such as anti-inflammatory, immunomodulatory, anti-stress, antibiotic, anticancer, anti-oxidant, sedative, alterative, and aphrodisiac. As the dried roots of <em>Withania somnifera</em> are widely used in the treatment of many disorders. Natural bioactive component flavonoids, alkaloids and phenolic compound are said to be present in the roots. The
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12

kedare, Parimal S., Siddhi Satish Mhatre, Dr. Suhas Janwadkar, and Dr. Vaibhava Sachin More. "Phytochemical analysis of Azadirachta indica (Neem)." International Journal of Advance and Applied Research 6, no. 25(B) (2025): 73–77. https://doi.org/10.5281/zenodo.15314458.

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<strong>Abstract: </strong> &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp; Phytochemicals are chemical compounds naturally produced by plants, often referred to as phytonutrients. The qualitative as well as quantitative analysis provides us with the information of phytochemical compounds present in medicinal plants. One of such plants is neem plant (Azadirachta indica) which has numerous medicinal properties beneficial to mankind. There are also evidences available in ancient literature about neem plant having number of medicinal properties. Phytochemical analysis was done to find out the presence
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13

Tripathi, Reeta. "Qualitative Analysis of Asparagus Racemosus Willd. (Shatavari) Root of Family Asparagaceae." International Journal for Research in Applied Science and Engineering Technology 9, no. 11 (2021): 1221–25. http://dx.doi.org/10.22214/ijraset.2021.38984.

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Abstract: The purpose of this study is to determine the quality of bioactive phytochemicals in Asparagus racemosus willd roots. Asparagus racemosus willd. is generally known as Shatavari in the Indian traditional system (Ayurveda). It is a well-known herb in Ayurveda. It is grown in Sri Lanka, Nepal, tropical areas of India and the Himalayas. Ayurveda medicine is a medical system that has its origins in the Indian subcontinent. Modernized and globalized practices derived from Ayurveda traditions are complementary or alternative medicine. Ayurveda therapies and practices have been integrated in
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14

Kumari Singh, Archana, and Vishnu Shankar Sinha. "STUDY OF QUALITATIVE PHYTOCHEMICAL ANALYSIS OF LEAF EXTRACTS OF LAWSONIA INERMIS L. AND JATROPHA GOSSYPIFOLIA L." International Journal of Advanced Research 12, no. 06 (2024): 361–66. http://dx.doi.org/10.21474/ijar01/18888.

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The present paper reports the Qualitative phytochemical analysis of leaf extracts of Lawsoniainermis L. (Lythreaceae) and Jatropha gossypifolia L. (Euphorbiaceae) which are used by the tribal and rural people for curing different ailments in the West Singhbhum district of Jharkhand, India. Phytochemical tests confirmed the presence of primary and secondary classes of Phytochemicals in the ethanolic, methanolic and aqueous leaf extracts of L. inermis L. and J. gossypifolia L. such as Carbohydrates, proteins, Phenols, Tannin, Flavonoids, Saponins, Glycosides, Steroids, Terpenoids.
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15

Bhimraj Gawade. "Antioxidant activity and phytochemical analysis of aqua-ethanol extract of Bauhinia racemosa Lam. leaves." World Journal of Advanced Research and Reviews 21, no. 3 (2024): 878–84. http://dx.doi.org/10.30574/wjarr.2024.21.3.0770.

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The objectives of this study were to evaluate antioxidant activity, qualitative phytochemical analysis and LC-MS/MS analyses of aqua-ethanol extract of Bauhinia racemosa Lam. plant leaves. The extract afforded the rich content of different phytochemicals reported in qualitative phytochemical analysis, LC-MS/MS spectral analysis the leaves and antioxidant activity pharmacological activity. The extract was subjected to assess their antioxidant potential using DPPH in vitro system. Using DPPH (2, 2-Diphenyl-1-picrylhydrazyl) free radical scavenging assay, the aqua-ethanol extract was found to hav
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16

Nidhi D. Chahande, Vishal N. Patil, and Rajendra O. Ganjiwale. "Phytochemical analysis of stem and leaves extracts of Tinospora cordifolia (Thunb.) Miers." World Journal of Advanced Research and Reviews 24, no. 1 (2024): 1808–13. http://dx.doi.org/10.30574/wjarr.2024.24.1.3149.

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Tinospora cordifolia (Thunb.) Miers is a large deciduous, creeping shrub belonging to the family Menispermaceae. The phytochemical analysis of the plants is very important commercially and has great interest in pharmaceutical companies for the production of the new drugs for curing of various diseases. The present study involves the qualitative phytochemical analysis of the selected medicinal plants. The aim of this study is carried out to analyze the phytochemical compounds in stem and leaves extracts of selected plant by using phytochemical screening tests. The leaf and stem extracts of the
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17

Nidhi, D. Chahande, N. Patil Vishal, and O. Ganjiwale Rajendra. "Phytochemical analysis of stem and leaves extracts of Tinospora cordifolia (Thunb.) Miers." World Journal of Advanced Research and Reviews 24, no. 1 (2024): 1808–13. https://doi.org/10.5281/zenodo.15045406.

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<em>Tinospora cordifolia</em>&nbsp;(Thunb.) Miers is a large deciduous, creeping shrub belonging to the family Menispermaceae. The phytochemical analysis of the plants is very important commercially and has great interest in pharmaceutical companies for the production of the new drugs for curing of various diseases. The present study involves the qualitative phytochemical analysis of the selected medicinal plants. The aim of this study is carried out to analyze the phytochemical compounds in stem and leaves extracts of selected plant by using phytochemical screening tests. The leaf and stem ex
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18

Hussain, Ahatsham, Mudassir Kanth, Pradeep K. Shrivastva, Manik Sharma, Jagrati Tripath, and Mohammed Azaz Khan. "Phytochemical analysis of the rhizomes of Bergenia ciliata (How) Sternb." Journal of Drug Delivery and Therapeutics 9, no. 3 (2019): 412–16. http://dx.doi.org/10.22270/jddt.v9i3.2687.

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Bergenia ciliata of family Saxifragaceae is known as Kodiya or Pashanbheda in Dhanolti (Uttranchal). It is a second good source of bergenin after Bergenia ligulata. It has many medicinal properties such as antibacterial, anti-inflammatory, anticancer, antidiabetic. B. ciliata is used mainly for kidney disorder. Its phytochemical constituents are Gallic acid, Tannic acid, (-)-3-0- Galloylepicatechin, (-)-3-0-Galloylcatechin, (+)-Catechin, Gallicin. The bioactive compounds that are produced by plants are collectively called as Phytochemicals. The phytochemical ingredients are plant derived compo
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Adeleke, Martina TV, and Sharon Ndah. "Comparative phytochemical analysis of four medicinal plants traditionally used for malaria therapy in Nigeria." World Journal of Biology Pharmacy and Health Sciences 10, no. 1 (2022): 080–85. https://doi.org/10.5281/zenodo.6965489.

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Nature provides us not just with food in abundance, but also with medicines, such that we could eat our food as medicine. Herbs are becoming more prominent as medicine because synthetic drugs with all their side effects are not completely safe. Herbs are however safer, as they are taken first as food, and in addition have qualities that are medicinal. The medicinal value of a plant lies in the bioactive phytochemical constituents of the plant. Among the most important of these bioactive phytochemicals are alkaloids, tannins, flavonoids, phenolics, saponins and cyanogenic glycosides. Qualitativ
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Edem, B. E., M. E. Khan, and N. U. Ibok. "QUALITATIVE & QUANTITATIVE PHYTOCHEMICAL SCREENING AND PROXIMATE COMPOSITION OF BOMBAX BUONOPOZENSE (RED SILK COTTON TREE) STEM-BACK." JOURNAL OF ADVANCES IN NATURAL SCIENCES 3, no. 3 (2016): 288–92. http://dx.doi.org/10.24297/jns.v3i3.3970.

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Qualitative &amp; quantitative phytochemical screening and proximate composition of Bombax buonopozense stem was investigated. Nine phytochemicals viz: - alkaloid, carbohydrate, phenols, flavonoids, saponins, tannins, protein, terpenoids, and oxalates were observed. Steroids and glycosides were below detectable limits. Quantitative phytochemical analysis indicated that alkaloid, flavonoid, phenols, tannins and saponins had values of 0.68 g, 0.09 g, 2.35 g, 1.41 g and 1.15 g respectively. The proximate analysis gave high percentage moisture content (55.30%). Carbohydrate and protein were of low
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21

Oluwayemisi, Odeyemi, Uchenna Onochie Anthony, Oluwaseun Odeyemi Sunday, and Onyema Oshim Ifeanyi. "Evaluation of qualitative and quantitative phytochemical constituents of Napoleona imperialis stem bark." GSC Biological and Pharmaceutical Sciences 24, no. 1 (2023): 202–8. https://doi.org/10.5281/zenodo.8265393.

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The aim of this study was to determine the qualitative and quantitative phytochemicals of&nbsp;<em>Napoleona imperialis</em>&nbsp;stem bark. Methods<em>:</em>&nbsp;Extractions and Phytochemical analysis of&nbsp;<em>Napoleona imperialis</em>&nbsp;stem bark were done using standard procedures. Result: Aqueous&nbsp;<em>Napoleona imperialis</em>&nbsp;stem bark extract had yield of 76.9g (7.69%) and methanol&nbsp;<em>Napoleona imperialis</em>&nbsp;stem bark extract also yielded 58.5g (5.85%) when 1000g pulverized was used for each. Qualitative phytochemical analysis of this extract exhibited modera
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Bhimraj, Gawade. "Antioxidant activity and phytochemical analysis of aqua-ethanol extract of Bauhinia racemosa Lam. leaves." World Journal of Advanced Research and Reviews 21, no. 3 (2024): 878–84. https://doi.org/10.5281/zenodo.14062715.

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The objectives of this study were to evaluate antioxidant activity, qualitative phytochemical analysis and LC-MS/MS analyses of aqua-ethanol extract of&nbsp;<em>Bauhinia racemosa</em>&nbsp;Lam. plant leaves. The extract afforded the rich content of different phytochemicals reported in qualitative phytochemical analysis, LC-MS/MS spectral analysis the leaves and antioxidant activity pharmacological activity. The extract was subjected to assess their antioxidant potential using DPPH in vitro system. Using DPPH (2, 2-Diphenyl-1-picrylhydrazyl) free radical scavenging assay, the aqua-ethanol extra
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23

Shireen Farhana. S, Usharani Boopathy, Shobana Chandrasekar, and Rohini Durairaj. "Qualitative And Quantitative Analysis of Cinnamomum Tamala Leaf Extract." Journal of Advanced Zoology 44, S5 (2023): 3071–81. http://dx.doi.org/10.17762/jaz.v44is5.2390.

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Objective: The purpose of the study is to assess the properties and bioactive components of Cinnamomum tamala leaves. Methods: The leaves of Cinnamomum tamala were extracted. Different experimental methods have been used to study the phytochemicals (qualitative and quantitative). The phytochemical screening was evaluated in different extractions such as aqueous, hexane, ethanol, petroleum ether and hydroethanolic to compare the solubility of various bioactive components. Further, high performance liquid chromatography (HPLC) and gas chromatography mass spectrometry (GC-MS) were also performed
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Jr., Priscilo P. Fontanilla. "Qualitative analysis of phytochemicals in Momordica charantia Linn., Moringa oleifera Lam., Tabernaemontana pandacaqui Poir. and Mollugo oppositifolia Linn. crude ethanol leaf extracts as potential botanicals with wound healing property for castration of piglet." International Journal of Biosciences (IJB) 24, no. 1 (2024): 73–83. https://doi.org/10.5281/zenodo.11055974.

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Botanicals possess healing and medicinal properties which could be an alternative to synthetic therapeutic drugs. The study was conceptualized to determine the phytochemical constituents, present in&nbsp;<em>Momordica charantia</em>&nbsp;Linn.&nbsp;<em>Moringa oleifera</em>&nbsp;Lam.,&nbsp;<em>Tabernaemontana pandacaqui</em>&nbsp;Poir. and&nbsp;<em>Mollugo oppositifolia</em> Linn. crude ethanol leaf extracts and relate if the phytochemicals present have wound healing properties.. In Qualitative Phytochemical Evaluation, several methods were applied, i.e., crude ethanol leaf extraction procedur
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Idi, A., and I. U. Muhammad. "Short communication extraction and phytochemical analysis of Hyptis spicigera leaves." Bayero Journal of Pure and Applied Sciences 14, no. 1 (2021): 17–20. http://dx.doi.org/10.4314/bajopas.v14i1.3.

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Plants are recognized in the pharmaceutical industry for their broad structural diversity as well as their wide range of pharmacological activities, which is due to their biologically active compounds known as phytochemicals. The present study reports the extraction, thin layer chromatography and screening of phytochemical constituent of Hyptis spicigera leaves. The thin layer chromatography of the leave extract shows 11 bands with Rf values of 0.03, 0.06, 0.09, 0.12, 0.17, 0.19, 0.20, 0.23 and 0.31 respectively. Qualitative phytochemical screening showed the presence of alkaloids, flavonoids,
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Manimekalai, T., and Dr P. Chitra. "Comparative analysis of Qualitative and Quantitative Phytochemical screening, in vitro antioxidant and antibacterial activity of Mangifera indica and Artocarpus heterophyllus." Journal of University of Shanghai for Science and Technology 23, no. 06 (2021): 1554–68. http://dx.doi.org/10.51201/jusst/21/06468.

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Medicinal plants have known to play a wide role in the development of human culture. Artocarpus heterophyllus and Mangifera indica are the well-known evergreen tropical fruiting tree families abundantly grown in Asia. Different parts of both the trees such as bark, leaves, fruits, and flowers are used in traditional medicine. The present study aims to screen the qualitative and quantitative phytochemical present, in-vitro antioxidant, and anti-microbial activity of Artocarpus heterophyllus and Mangifera indica leaf extracts and combined extract of both the leaves. The qualitative phytochemical
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Ghutke, Tejal Dharmraj, Rushabh Gajanan Kadam, Chitra Rengarajan, and Ruksana Nausheed. "Phytochemical Analysis and Therapeutic Profiling of Helianthus annuus: A Comprehensive Qualitative and Quantitative Study." Plant Science Archives 9, no. 3 (2024): 31–37. https://doi.org/10.51470/psa.2024.9.3.31.

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Helianthus annuus L., commonly known as the sunflower, is a well-known annual plant from the Asteraceae family, widely cultivated for its seeds, oil, and ornamental value. Beyond its economic importance, sunflower flowers possess a variety of bioactive phytochemicals that contribute to their potential medicinal applications. In this study, Helianthus annuus flower petals were subjected to phytochemical analysis to identify and quantify their therapeutic compounds. Phytochemical extraction was conducted using hot, continuous, and sequential extraction through a Soxhlet apparatus with solvents a
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Mathew, Manju K., N. Madhavan Unny, Arun George, S. Ajithkumar, S. Suja Rani, and V. Ramnath. "Qualitative phytochemical analysis of bioactive constituents in acetone extract of seeds of Hydnocarpus pentandra." Journal of Veterinary and animal sciences 55, no. 3 (2024): 644–50. http://dx.doi.org/10.51966/jvas.2024.55.3.644-650.

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Ethnoveterinary medicine focuses on the practical use of community or area based traditional and indigenous knowledge including the collection, preparation and administration of medicinal plants or plant parts for curing diseases of animals. Hydnocarpus pentandra is a plant endemic to South India which is traditionally known for the antileprotic activity of its seed oil. Diverse pharmacological activities of the plant extracts depend on the presence of its secondary metabolites. The present research was conducted to explore the phytochemical constituents present in the acetone solvent extract
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Oluwayemisi Odeyemi, Anthony Uchenna Onochie, Sunday Oluwaseun Odeyemi, and Ifeanyi Onyema Oshim. "Evaluation of qualitative and quantitative phytochemical constituents of Napoleona imperialis stem bark." GSC Biological and Pharmaceutical Sciences 24, no. 1 (2023): 202–8. http://dx.doi.org/10.30574/gscbps.2023.24.1.0246.

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The aim of this study was to determine the qualitative and quantitative phytochemicals of Napoleona imperialis stem bark. Methods: Extractions and Phytochemical analysis of Napoleona imperialis stem bark were done using standard procedures. Result: Aqueous Napoleona imperialis stem bark extract had yield of 76.9g (7.69%) and methanol Napoleona imperialis stem bark extract also yielded 58.5g (5.85%) when 1000g pulverized was used for each. Qualitative phytochemical analysis of this extract exhibited moderate quantities of alkaloid, steroid and terpenoid in aqueous extract while methanol extract
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MUHAMMAD MUAZU, DANZAKI, MUSTAPHA OBA TOYIN, and ABDULKAREEM KHADIJA ABDULHAMID. "Chemosystematic Evaluation of Some Nigerian Gossypium hirsutum L. Using Qualitative and Quantitative Phytochemical Analysis." Borneo Journal of Resource Science and Technology 11, no. 1 (2021): 43–50. http://dx.doi.org/10.33736/bjrst.2728.2021.

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There is little information on the use of phytochemicals for the systematic study of variation and resolving relatedness in Nigerian Gossypium hirsutum species. Thus, there is a need to carry out detailed phytochemical studies of the plant leaves, which could be helpful in ascertaining their diversity and relatedness. The qualitative and quantitative phytochemical screening was conducted on 18 accessions of G. hirsutum using the established laboratory protocols. The findings of this study indicated the presence of tannin, alkaloids, proline, flavonoids, and saponin in all of the accessions tha
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Binoodha Remina C, Vimal Priya Subramanian J, and Krishnamoorthy Karthika. "Qualitative phytochemical screening and ftir spectroscopic analysis of mitracarpus hirtus leaf extracts." Kongunadu Research Journal 9, no. 2 (2022): 75–79. http://dx.doi.org/10.26524/krj.2022.22.

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The present study aim is to analyze the phytochemicals present in Mitracarpus hirtus leaf extracts by using Qualitative phytochemical analysis, Fourier-transform infrared spectroscopy (FTIR). The leaf extracts were prepared using three different solvents. The phytochemical analysis Fourier transform infrared spectroscopy (FTIR) analysis were performed using standard methods. The FTIR spectroscopic studies revealed different characteristic peak values with various functional groups present in the compounds of respective extracts. The FT-IR analysis shows the presence of different functional gro
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Sridevi, M., B. Senthilkumar, and K. Devi. "Preliminary Qualitative Phytochemical Analysis of Aqueous Leaf Extract of Celosia Argentea L." International Journal of Science and Research (IJSR) 10, no. 5 (2021): 218–20. https://doi.org/10.21275/mr21408101508.

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Chauhan, Madhvi Singh, and Swati Yadav. "Qualitative and Quantitative Determination of Secondary Metabolites of Sphaeranthus indicus and Spathodea campanulata Flowers Extracts." Journal of Drug Delivery and Therapeutics 13, no. 4 (2023): 85–89. http://dx.doi.org/10.22270/jddt.v13i4.5824.

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Since the dawn of time, humans have used plants as a natural source for healing and remedies. Among these, medicinal herbs have gained popularity due to their widespread use and lack of negative side effects. The globe has seen a rise in plant study in recent years, and a tonne of data has been gathered to demonstrate the enormous potential of the therapeutic plants employed in many traditional systems. In this work, flower extracts of Sphaeranthus indicus and Spathodea campanulata from the Madhya Pradesh region of Bhopal were evaluated for their qualitative and quantitative phytochemical comp
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Rao, Alka, Shikha Kumari, Jitender Singh Laura, and Geeta Dhania. "Qualitative Phytochemical Screening of Medicinal Plants Using Different Solvent Extracts." Oriental Journal Of Chemistry 39, no. 3 (2023): 621–26. http://dx.doi.org/10.13005/ojc/390312.

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Medicinal plants are rich in bioactive components that are utilized to treat various human ailments. They are crucial to healing as well. Phytochemical constituents are responsible for the medicinal activity of plant species. Phytochemical screening is an important step in identifying bioactive compounds present in particular medicinal plants. Hence, in this present work, phytochemical screening of leaf extract of some traditional medicinal plants, namely Cannabis sativa, Ricinus communis, and Bryophyllum pinnatum was carried out. The solvent extracts of the leaves of respective plants were pr
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Pooja, Gidhad* Ujjwala Ghule Shivam Gangurde Smita Ghuge. "Phytochemistry And Materials Method of Cathanthus Roseus." International Journal of Pharmaceutical Sciences 3, no. 4 (2025): 1412–17. https://doi.org/10.5281/zenodo.15197920.

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On the review phytochemical analysis and material of Catharanthus roseus (vinca roses) Various types of phytochemicals have been identified both qualitative as well their quantification had been carried out. The phytochemical screening was done for the selected plants. Carbohydrate, alkaloids, flavonoids, Turpenoid were present in Catharanthus rosea. Phytochemical analysis and the antioxidant properties of the plant are taken into consideration. Major anticancer drugs isolated from c. Roseus are oncovin and velban marketed world widely in millions of tones. This article provides evidence for c
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Jhoomuck, Shivam Kumar, and Prerana Mund. "Liquid Chromatography-Mass Spectrometry based Phytochemical Profiling of Marine Macroalga Ulva compressa Methanol Extract." Journal of Drug Delivery and Therapeutics 15, no. 7 (2025): 12–18. https://doi.org/10.22270/jddt.v15i7.7216.

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Marine macroalgae are widely recognized as vital sources of bioactive compounds, having prospective applications in pharmaceuticals, nutraceuticals, and biotechnology. As global demands for natural therapeutics continue to grow, marine macroalgae, especially Ulva species, have emerged as a promising candidate due to their diverse profiles of phytochemicals. In such cases, qualitative phytochemical analysis is fundamental in determining these bioactive constituents, as well as their potential functional activities. In this study, the methanolic extract of Ulva compressa was subjected to Liquid
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Parbuntari, Hesty, Yona Prestica, Rizki Gunawan, Meri Novia Nurman, and Fransiska Adella. "Preliminary Phytochemical Screening (Qualitative Analysis) of Cacao Leaves (Theobroma cacao L.)." EKSAKTA: Berkala Ilmiah Bidang MIPA 19, no. 2 (2018): 40–45. http://dx.doi.org/10.24036/eksakta/vol19-iss2/142.

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One of the important processes of cocoa plants growing is pruning. It aims to eliminate sick, broken, or the appearance of water buds disturbing the cacao production. The period of pruning is varios. The various periods of pruning lead to leave wide waste of leaves, stems, and twigs. Yet the waste would not been used to other activities, only a small portion of the waste used as natural fuel (stems and twigs) and cocoa leaves waste as animal feed. Phytochemicals naturally present in every part of plants range from leaves, stem bark, fruits to roots. Secondary metabolites are natural products f
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Linda, Pushpa Salo, and Krishna Pyare. "QUALITATIVE PHYTOCHEMICAL ANALYSIS OF ACALYPHA INDICA L. MEDICINAL PLANTS OF FAMILY EUPHORBIACEAE." International Journal of Education, Modern Management, Applied Science & Social Science 06, no. 02(II) (2024): 258–61. http://dx.doi.org/10.62823/6.2(ii).6730.

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A preliminary analysis was conducted on the aqueous extract of the leaves, stem, and root of Acalypha indica L. to determine its phytochemical composition. This plant is classified under the family Euphorbiaceae. This plant is well recognized in traditional medicine for its efficacy in treating a variety of diseases. The analysis was conducted using conventional methodologies. The medical importance of many phytochemical elements revealed in this plant confirms the long-standing practice of using medicinal plants as treatments for human ailments. The objective of this research was to identify
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39

Haridas, Renjini, Sumathi P, Sangeeth Thekkan, and Binu Thomas. "QUALITATIVE PHYTOCHEMICAL ANALYSIS OF BARLERIA PRATTENSIS SANT (ACANTHACEAE)." International Journal of Research in Ayurveda & Pharmacy 8, no. 1 (2017): 97–100. http://dx.doi.org/10.7897/2277-4343.08147.

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Kamalla, Rajashekar, Remya M, Ensha Lomiya MA, Raguvaran R, Kaveri M. Jambagi, and Shivangi Dosar. "Qualitative and quantitative phytochemical analysis of Terminalia arjuna." International Journal of Advanced Biochemistry Research 8, no. 9 (2024): 936–39. http://dx.doi.org/10.33545/26174693.2024.v8.i9l.2297.

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Agrawal, K., Apurva Joshi, Shivani Ghildiyal, et al. "Qualitative phytochemical and physiochemical analysis ofCassia fistulaL. fruit." Medicinal Plants - International Journal of Phytomedicines and Related Industries 6, no. 2 (2014): 138. http://dx.doi.org/10.5958/0975-6892.2014.00482.1.

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O. Zhran, Yasmeen, Yassmin A. Ramadan, Ayman S. Farid, and Abubakr M. El-Mahmoudy 1. "Qualitative phytochemical analysis of Curcuma longa root extract." Science Archives 04, no. 02 (2023): 162–69. http://dx.doi.org/10.47587/sa.2023.4214.

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The active group (s) content of Curcuma longa rhizomes (CLR) makes it a medicinal plant with a reasonable therapeutic potential. Therefore, in this study, we attempted to clarify these groups using standard preliminary phytochemical screening tests. Results revealed detection of Alkaloids, Glycosides, Carbohydrates, Cardiac Glycoside(s), Saponin, Gallo-tannins, or Catecho-Tannins (hydrolysable or condensed), respectively, Flavonoids, Resins, Steroids, Fixed oils, and Protein compounds. Anthraquinones, Gums or Mucilage and Terpenoids were not noticeable. Phlobatannins content is suspect. These
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Aditya, V. Ubhale*1 Sakshi S.Madavi1 Shivani D. Wagh1 Vaishnavi P. Lawane1 Pankaj H. Chaudhary2 Prashant J. Burange3 Dipti B. Ruikar4. "Qualitative and Quantitative Phytochemical Analysis Of Wedelia Trilobata Linn." International Journal in Pharmaceutical Sciences 2, no. 6 (2024): 428–41. https://doi.org/10.5281/zenodo.11520151.

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<strong>Aim: </strong> To study a qualitative and quantitative phytochemical screening on Wedelia trilobata L. Material and Methods : &nbsp;Extractive values, loss on drying (LOD), total ash, water-soluble, and acid-insoluble ash were determined per WHO guidelines. Preliminary phytochemical screening and qualitative chemical studies were conducted for various phytoconstituents. UV-VIS spectrum, FTIR spectral analysis, and TLC analysis is done using four solvents.(Aqueous ,ethanol,Chloroform And Benzene). <strong>Results: </strong> Chemical evaluation and TLC revealed alkaloids, glycosides, fla
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Okuna, Damaris Akinyi, Caleb Isaboke Nyamwange, and Hezron Nyandieka. "Qualitative Phytochemical Screening of Tithonia diversifolia: A Gray Aqueous Root Extract." Kabarak Journal of Research & Innovation 14, no. 02 (2024): 230–41. http://dx.doi.org/10.58216/kjri.v14i02.398.

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This study investigated the phytochemical composition of Tithonia diversifolia, commonly known as the Mexican sunflower, a plant renowned for its diverse pharmacological properties. Fresh root bark was collected from mature plants in Migori County, Kenya, and processed through cleaning, peeling, shade drying, and grinding into fine powder. The aqueous extract was obtained by macerating 50g of the powdered root bark in 200 mL of distilled water for 24 hours, followed by filtration that yielded 19.4%w/w crude. Qualitative phytochemical analysis was conducted on the extract to identify the presen
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Christabel, Ebube Festus, ThankGod Nweke Ugochukwu, Christiana Chukwuekwe Uchechukwu, Ebubechi Onunwa Gideon, and Irene Ugwoke Chinelo. "Quantitative and qualitative phytochemical analysis of ethanol leaf extract of Pleiocarpa mutica." World Journal of Advanced Research and Reviews 22, no. 2 (2024): 450–56. https://doi.org/10.5281/zenodo.14554774.

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This research project examined&nbsp;<em>Pleiocarpa mutica</em>&nbsp;leaf extract, extracted from ethanol using both quantitative and qualitative phytochemical analysis. Sourced is at Ugbene-Ajima in the Uzo-Uwani Local Government Area of Enugu State, Nigeria, where fresh&nbsp;<em>Pleiocarpa mutica</em>&nbsp;leaves were collected. After been gathered, the newly sprouted&nbsp;<em>P. mutica</em>&nbsp;leaves were cleaned. We then shade-dried the leaves until they were crispy, rotating them frequently to prevent them from rotting. A mechanical grinder was utilized to reduce the dried leaves to a po
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Nitin, Mali 1. *. Akshay Javalgikar 2. Sagar Kale 1. "PHYTOCHEMICAL EVALUATION OF CRYPTOSTEGIA GRANDIFLORA LINN ROXB. EXTRACT." Journal of Pharma Research 7, no. 5 (2018): 82–87. https://doi.org/10.5281/zenodo.1254251.

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<strong><em>ABSTRACT</em></strong> <strong><em>N</em></strong><em>ow-a-days natural products are an integral part of human health care system, because there is popular concern over toxicity and resistance of modern drugs. India is one of the 12 leading biodiversity centers with presence of over 45,000 different plant species. As a result of rapid development of phytochemistry and pharmacological testing methods in recent years, new plant drugs are finding their way into medicine as purified phytochemical.</em> <em>There are various simple and cheap methods available for finding out about the v
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Vankudoth, Suvarchala, Pavani Chirumamilla, Sunitha Bai Dharavath, and Shasthree Taduri. "Qualitative and Quantitative Determination of Phytochemical Contents of Muntingia calabura." Research Journal of Chemistry and Environment 26, no. 5 (2022): 8–15. http://dx.doi.org/10.25303/2605rjce0815.

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Muntingia calabura, a well-known medicinal plant has been documented to possess various bioactive molecules from the Muntingaceae family. In the present study, we investigated the phytochemical screening by qualitative and quantitative analysis from leaf and root parts of M. calabura. The preliminary screening was done by cold maceration technique with methanol, butanol, chloroform, ethanol and hexane solvents. The qualitative phytochemical screening of these plant parts revealed the presence of alkaloids, phenols, flavonoids, tannins and saponins. The results revealed that the methanol solven
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Siahaan, Tanty Naomi, Basuki, and Amir Hamzah. "Phytochemical Screening and Chemical Compounds of Moringa Oleifera Leaf Hot Water Extract." International Journal of Ecophysiology 5, no. 2 (2023): 1–7. http://dx.doi.org/10.32734/ijoep.v5i2.13410.

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In this study, the phytochemical composition and chemical compounds present in Moringa oleifera leaf hot water extract were investigated. The extraction process involved using hot water to retain a wide range of bioactive constituents. Qualitative and quantitative analyses were employed to characterize the extract's phytochemical profile. Fourier Transform Infrared Spectroscopy (FT-IR) was employed to identify and quantify specific chemical compounds. The phytochemical analysis revealed the presence of various classes of secondary metabolites, including alkaloids, flavonoids, tannins, saponins
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C V, Aswathi Sreenivasan, and Dr T. Angayarkanni. "Qualitative Phytochemical Analysis of Medicinal Plants Selected from Temperate, Tropical and Hill Regions." International Journal Of Pharmaceutical And Bio-Medical Science 03, no. 01 (2023): 11–17. http://dx.doi.org/10.47191/ijpbms/v3-i1-03.

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The current study examines the phytochemical analysis of 15 therapeutic plants that were gathered from various places, including temperate, tropical, and hill/tribal areas. The plants gathered include Tridax procumbans, Achyranthus aspera, Amaranthus spinosus, Clitoria ternatea, Ruellia tuberosa, Euphorbia herta, Bougainvillea spectabilis, Aerva lanata, Zeucas aspera, and Ocimum basilicum. These plants have antioxidant, anti-inflammatory, anti-microbial, and anti-diabetic effects. First, numerous secondary metabolites were subjected to qualitative testing. Alkaloids, Saponins,Tannins, Steroids
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B., Sumaya sulthana1 E. Honey2 B. Anasuya3 H. Gangarayudu4 M. Jyothi reddy5 C. Girish*. "QUALITATIVE PHYTOCHEMICAL ANALYSIS OF METHANOLIC AND AQUEOUS EXTRACTS OF BARLERIA CRISTATA." Indo American Journal of Pharmaceutical Sciences 04, no. 07 (2017): 2001–4. https://doi.org/10.5281/zenodo.833949.

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Barleria cristata has been used for several diseases. Barleria cristata belongs to family Acanthaceae. The present study comprises phytochemical evaluation of different extracts (methanolic and aqueous extracts) of Barleria cristata by using different standard methods. The investigation of phytochemical analysis was carried out to estimate the presence of carbohydrates, glycosides, flavonoids, tannins, phytosterols and phenolic compounds in different extracts of Barleria cristata. Results revealed the presence of carbohydrates, alkaloids, saponons, phytosterols, flavonoids, fats and oils. The
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