Academic literature on the topic 'Triterpenoid Constituents'

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Journal articles on the topic "Triterpenoid Constituents"

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Setzer, William N., Mary C. Setzer, R. Lynton Peppers, et al. "Triterpenoid Constituents in the Bark of Balanops australiana." Australian Journal of Chemistry 53, no. 9 (2000): 809. http://dx.doi.org/10.1071/ch00066.

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Two new triterpenoid natural products (friedelane-3,21α-diol and friedelane-3α,28,29-triol) have been isolated from the chloroform bark extract of Balanops australiana from Paluma, north Queensland, Australia. The known triterpenoids betulinic acid, friedelin, canophyllol, zeylanol and 21α-hydroxyfriedelan-3-one were also isolated. The structures of the compounds were elucidated on the basis of spectral analysis. A single-crystal X-ray structural analysis has been carried out on 21α-hydroxyfriedelan-3-one.
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Babady-Bila and Kulio Rovat Tandu. "Triterpenoid constituents fromGardenia imperialis." Monatshefte f�r Chemie Chemical Monthly 118, no. 10 (1987): 1195–96. http://dx.doi.org/10.1007/bf00811292.

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Biavatti, Maique W., Paulo C. Vieira, M. Fátima G. F. da Silva, João B. Fernandes, and Sérgio Albuquerque. "Triterpenoid Constituents ofRaulinoa echinata." Journal of Natural Products 65, no. 4 (2002): 562–65. http://dx.doi.org/10.1021/np0103970.

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Mukherjee, K. S., B. Mukhopadhyay, S. Mondal, D. Gorai, and G. Brahmachari. "Triterpenoid Constituents ofBorreria Articularis." Journal of the Chinese Chemical Society 51, no. 1 (2004): 229–31. http://dx.doi.org/10.1002/jccs.200400036.

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Chang, Te-Sheng, Chien-Min Chiang, Tzi-Yuan Wang, et al. "One-Pot Bi-Enzymatic Cascade Synthesis of Novel Ganoderma Triterpenoid Saponins." Catalysts 11, no. 5 (2021): 580. http://dx.doi.org/10.3390/catal11050580.

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Ganoderma lucidum is a medicinal fungus whose numerous triterpenoids are its main bioactive constituents. Although hundreds of Ganoderma triterpenoids have been identified, Ganoderma triterpenoid glycosides, also named triterpenoid saponins, have been rarely found. Ganoderic acid A (GAA), a major Ganoderma triterpenoid, was synthetically cascaded to form GAA-15-O-β-glucopyranoside (GAA-15-G) by glycosyltransferase (BtGT_16345) from Bacillus thuringiensis GA A07 and subsequently biotransformed into a series of GAA glucosides by cyclodextrin glucanotransferase (Toruzyme® 3.0 L) from Thermoanaero
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Lo, I.-Wen, Yuan-Bin Cheng, Chen-Chang Haung, et al. "Constituents of the Leaves of Pandanus Utilis." Natural Product Communications 11, no. 2 (2016): 1934578X1601100. http://dx.doi.org/10.1177/1934578x1601100209.

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Nineteen compounds, including seven triterpenoids (1–7), five steroids (8–12), four cyclohexenone derivatives (13–16), two benzenoid glycosides (17 and 18) and one lignan (19), were isolated and separated from the leaves of Pandanus utilis through bioactivity-guided fractionation. Among them, one new lanosterol-type triterpenoid was found and named as (24 R)-24-methyl-5α-4-demethyllanosta-9(11),25-dien-3β-ol (1). The structures of the isolates were determined by mass and spectroscopic analyses, and the compounds were subjected to anti-inflammatory, anti-oxidative and cytotoxic assays.
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Atta-Ur-Rahman, Habib Nasir, Zahida Iqbal, Muhammed Iqbal Choudhary, and Muzaffar Alam. "Triterpenoid constituents of buxus papillosa." Phytochemistry 28, no. 10 (1989): 2848–50. http://dx.doi.org/10.1016/s0031-9422(00)98104-4.

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KITAJIMA, Junichi, Masanobu ARAI, and Yasuko TANAKA. "Triterpenoid Constituents of Ficus thunbergii." CHEMICAL & PHARMACEUTICAL BULLETIN 42, no. 3 (1994): 608–10. http://dx.doi.org/10.1248/cpb.42.608.

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Tong, Xiao-Tian, Chang-Heng Tan, Hui Zhou, Shan-Hao Jiang, Xiao-Qiang Ma, and Da-Yuan Zhu. "Triterpenoid constituents of Huperzia miyoshiana." Chinese Journal of Chemistry 21, no. 10 (2010): 1364–68. http://dx.doi.org/10.1002/cjoc.20030211026.

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Minh, Tran Thi, Nguyen Thi Hoang Anh, Vu Dao Thang, and Tran Van Sung. "Study on Chemical Constituents and Cytotoxic Activities of Salacia chinensis Growing in Vietnam." Zeitschrift für Naturforschung B 65, no. 10 (2010): 1284–88. http://dx.doi.org/10.1515/znb-2010-1017.

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Two new triterpenoids, named 7α,21α-dihydroxyfriedelane-3-one (1) and 7α,29-dihydroxyfriedelane- 3-one (2) have been isolated from the ethyl acetate extract of the stems of Salacia chinensis besides the known triterpenoid 21α,30-dihydroxyfriedelane-3-one (3). The structures of the isolated compounds were elucidated on the basis of spectral analysis. Eight triterpenoids from this plant have been tested against the four cancer cell lines Hep-G2, LU, KB, and MCF-7. The new compound 1 showed good activity against all four tested cell lines.
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Dissertations / Theses on the topic "Triterpenoid Constituents"

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Oliveira, Francisco de Assis. "Studies on the pharmacological properties of resin from Protium heptaphyllum (Aubl.) March. and its major constituent, alpha-and beta-amyrin mixture." Universidade Federal do CearÃ, 2005. http://www.teses.ufc.br/tde_busca/arquivo.php?codArquivo=69.

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CoordenaÃÃo de AperfeiÃoamento de Pessoal de NÃvel Superior<br>Protium heptaphyllum March (Burseraceae) populary known as âalmÃcegaâ is a popular medicinal plant largely encountered in the Amazon region, various States of Brazil and in several South American Countries. The oily amorphous exudate obtained from this plant is widely used in skin diseases, healing of ulcers, and as an analgesic and anti-inflamatory agent. Phytochemical studies reveled the presence of several monoterpenes and pentacyclic triterpenes such as a mixture of &#945;- e &#946; â amyrin, maniladilol and breine. The present
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Chen, Hsin-Yi, and 陳欣苢. "Part I Chemical investigation of Planchonella obovata leaf (III): isolation, analysis of triterpenoid glycosides and confirmation of their glycon moietiesPart II Bioactive constituents from Palaquium formosanum kernel." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/91121007202092776784.

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博士<br>國立臺灣大學<br>藥學研究所<br>105<br>Part I. Chemical investigation of Planchonella obovata leaf (III): isolation, analysis of triterpenoid glycosides and confirmation of their glycon moieties Planchonella obovata is an evergreen tree, one of the three Sapotaceae plants in Taiwan. This thesis is a continuation of our previous study on the chemical investigation of the polar components in the n-BuOH soluble fraction. Further separation through Sephadex LH-20 and reversed-phase C-18 columns led to the isolation of two new compounds, 6β-hydroxy-conyzasaponin G (8) and glycerol 1,2-disinapate 3-α-glucu
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Lin, Chi-Wen, and 林啟文. "1. Steroids and Triterpenoids from the Fruiting Bodies of Ganoderma mastoporum Collected in Vietnam2. Chemical Constituents from the Leaves of Zanthoxylum scabrum Collected in Vietnam." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/dg7h88.

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碩士<br>國立虎尾科技大學<br>生物科技研究所<br>101<br>The methanol extracts from the fruiting bodies of Ganoderma mastoporum collected from Vietnam was purified to afford 8 compounds. To evaluate their in vitro antioxidant potentials, the purified compounds were examined for the scavenging activities of DPPH free radicals and capability of chelating ferrous ions. These isolates would be subjected into the pharmacology activity examinations to explore new natural anti-inflammatory drugs and may be potential sources for the development of healthy foods. Zanthoxylum scabrum is a Rutaceae plants distributed in
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Book chapters on the topic "Triterpenoid Constituents"

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Pengelly, Andrew. "Triterpenoids and saponins." In The constituents of medicinal plants, 3rd ed. CABI, 2021. http://dx.doi.org/10.1079/9781789243079.0006.

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Abstract This chapter focuses on the various classes of triterpenoids (free triterpenes, triterpenoid saponins, steroidal saponins, cardiac glycosides, phytosterols, phytoecdysteroids, curcurbitacins and quassinoids), which occur in the free state within plants or as aglycones of glycosides. Information on the chemical structures and pharmacological actions of these triterpenoids and saponins are also presented.
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Wang, Zhi Yuan. "Anticarcinogenesis of Licorice and Its Major Triterpenoid Constituents." In ACS Symposium Series. American Chemical Society, 1994. http://dx.doi.org/10.1021/bk-1994-0547.ch033.

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Srivastava, S. K., S. D. Srivastava, and B. K. Chouksey. "A Triterpenoidal Saponin and Other New Constituents from Terminalia Alata." In Saponins in Food, Feedstuffs and Medicinal Plants. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-015-9339-7_11.

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Malik, Jai, G. David Lin, Paul N. Smith, Rachel W. Li, and Subhash Chandra Mandal. "Ethnobotany, Ethnomedicine, Chemistry and Pharmacology of Clematis Species Used in Australia, China and India." In Practice and Re-Emergence of Herbal Medicine. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815080414123010005.

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Plants are the biggest bioresources for newer drugs or therapeutical agents. Genus, Clematis of family Ranunculaceae is one such bioresource whose species have been used traditionally for the treatment of snake bites, malaria, dysentery, rheumatism, inflammation, urinary and skin disorders, blisters, wound, ulcers, colds and headaches in Australia, China, India and other countries. Modern research revealed that Clematis species possess pharmacological properties of anti-inflammatory, anti-rheumatoid arthritis, anti-diabetic, anti-apoptosis, anticancer, antioxidation, antimicrobial, hepatoprote
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Pengelly, Andrew, and Kerry Bone. "Triterpenoids and Saponins." In The Constituents of Medicinal Plants. Routledge, 2020. http://dx.doi.org/10.4324/9781003117964-6.

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Dave Mehta, Shuchi, Priyanka Rathore, and Gopal Rai. "Ginseng: Pharmacological Action and Phytochemistry Prospective." In Ginseng in Medicine [Working Title]. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.99646.

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Ginseng, the root of Panax species is a well-known conventional and perennial herb belonging to Araliaceae of various countries China, Korea, and Japan that is also known as the king of all herbs and famous for many years worldwide. It is a short underground rhizome that is associated with the fleshy root. Pharmacognostic details of cultivation and collection with different morphological characters are discussed. Phytocontent present is saponins glycosides, carbohydrates, polyacetylenes, phytosterols, nitrogenous substances, amino acids, peptides, vitamins, volatile oil, minerals, and enzymes
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Tiwari, Neerja, Manju Singh, Namita Gupta, Kishan Singh, and Kapil Dev. "Harnessing the Neurological Properties of Indian Brain Health Booster Brahmi." In Frontiers in Medicinal Chemistry. BENTHAM SCIENCE PUBLISHERS, 2023. http://dx.doi.org/10.2174/9789815165043123100008.

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Brahmi (Bacopa monnieri Linn.) is a well-known therapeutic herb used in a broad spectrum of conventional medicines to alleviate various ailments, prominently those involving intellect, anxiety and mental health. In Ayurveda, it is classified as Medhya rasayanas (meaning intellect rejuvenator) and claimed to be a cognitive nutrient and memory enhancer. Although the plant possesses a plethora of compounds, its neurological activity is mainly attributed to its major phytochemical constituents, i.e., bacoside saponins. Majorly isolated compounds are dammarane triterpenoids glycone and aglycones. T
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Kumar Dixit, Amit, Avijit Banerji, Julie Banerji, Deepti Dixit, Parvathy G. Nair, and Damodar Gupta. "Bioactive Constituents and Anti-diabetic Activity of the Indian Medicinal Plant Hemidesmus indicus R. Br.: An Overview." In Therapeutic Implications of Natural Bioactive Compounds. BENTHAM SCIENCE PUBLISHERS, 2022. http://dx.doi.org/10.2174/9789815080025122030012.

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Hemidesmus indicus R. Br. is a laticiferous, slender, and twining shrub, which is found over almost every part of India. Its roots (Anantmul - Sanskrit meaning: endless root) are particularly used extensively as a single drug and in formulations with other plants to treat several ailments. In view of the wide range of medicinal properties claimed in traditional medicine, significant efforts have been made to determine the efficacy of Hemidesmus indicus through pharmacological experiments in vitro and in vivo models. These include analgesic, anti-inflammatory, antipyretic, antioxidant, antiarth
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V, N. V. L. Suvarchala Reddy, M. Ganga Raju, N. Arkprabha, P. Manasa, and D. Pushyami Sudha. "ANTI-INFLAMMATORY AND ANALGESIC ACTIVITY OF METHANOLIC EXTRACT OF JASMINUM MULTIFLORUM LEAVES." In Futuristic Trends in Pharmacy & Nursing Volume 3 Book 18. Iterative International Publishers, Selfypage Developers Pvt Ltd, 2024. http://dx.doi.org/10.58532/v3bipn18p5ch2.

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Jasminum multiflorum, belonging to the Oleaceae family, is a significant medicinal plant used to treat a variety of illnesses. In the current investigation, an effort was made to examine the anti-inflammatory and analgesic results of methanolic extract of the Jasminum multiflorum in various animal models. Acute toxicity studies revealed that the extract was safe in doses up to 2000 mg/kg.For this study, two doses were selected:200 mg/kg and 400 mg/kg bodyweight. Utilizing carrageenan-induced paw edema in albino rats and other animal models, anti-inflammatory effectiveness was assessed, as was
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Conference papers on the topic "Triterpenoid Constituents"

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Valdes, Alberto, Alejandro Cifuentes, Jose David Sanchez-Marti­nez, Miguel Herrero, Rocio Gallego, and Zully Suarez-Montenegro. "Foodomics study of the neuroprotective potential of natural products." In 2022 AOCS Annual Meeting & Expo. American Oil Chemists' Society (AOCS), 2022. http://dx.doi.org/10.21748/bdyo8801.

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Worldwide, around 50 million people have dementia with nearly 10 million new cases every year. Alzheimer’s Disease (AD) is the most common form of dementia, and it may contribute to 60–70 % of these cases. This multifactorial pathophysiology has been widely characterized by neuroinflammation, extensive oxidative damage, synaptic loss and neuronal cell death. However, only a few drugs have been approved for the therapeutic treatment of AD (with unpleasant side effects), and many studies have suggested that diet and/or food components can prevent the onset of AD. Among these constituents, terpen
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