Academic literature on the topic 'Macaranga peltata'

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Journal articles on the topic "Macaranga peltata"

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Preethi*, Karunakar Hegde. "Traditional Applications, Phytochemical Profiling and Advanced Pharmacological Properties of Plant Macaranga Peltata." International Journal of Pharmaceutical Sciences 3, no. 3 (2025): 2603–14. https://doi.org/10.5281/zenodo.15093397.

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Macaranga peltata (M. peltata) is a type of plant within the family Euphorbiaceae, and is known in Kannada as uppalige and chanda in Hindi. These plants are little bushes or trees that can grow as tall as 15 meters. These shrubs are very common in the Western Ghats of India. More than 350 species are included in the Macaranga genus. This genus is found in Africa, Australia, Asia, and the South Pacific Islands. The phytochemicals included in the plant, such as flavonoids, tannins, sucrose, steroid glycosides, saponins, proteins, and amino acids, play a significant role in its pharmacological ef
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Nizar, Amjitha, Rathy Ravindran, Jayanthi Palani, T. Nripan, S. D. Asha, and Meera K. Pynadath. "Anticancer Effects of Ethanolic Extracts of Macaranga Peltata Leaves on Human Oral Squamous Carcinoma Cell Lines: An In Vitro Study." Journal of Pharmacy and Bioallied Sciences 16, Suppl 2 (2024): S1833—S1837. http://dx.doi.org/10.4103/jpbs.jpbs_28_24.

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ABSTRACT Cancer is a disease resulting from the disruption of cell cycle regulation, leading to the abnormal and unchecked proliferation of cells. Medicinal plants are rich in various bioactive phytochemicals or nutritional compounds. The aim is to determine the cytotoxic and genotoxic effects of ethanolic extracts of Macaranga peltata leaves on human oral cancer cell lines. The study setting was centre for Research on Molecular and Applied Sciences, Azeezia College of Dental Sciences and Research. The study design is a Comparative In Vitro study. Shade dried leaves of Macaranga peltata were s
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Ramdas, Bhat1* Vaishnavi1 Kavana D. K.1 Megha M.1 Rithin K.1 Sinchana S. Bhat1 A. R. Shabaraya2. "Evaluation Of Analgesic Activity Of Macaranga Peltata Leaf Extract On Experimental Animals." International Journal in Pharmaceutical Sciences 2, no. 10 (2024): 1454–62. https://doi.org/10.5281/zenodo.13996260.

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<strong>Background and Objective: </strong> Pain significantly impacts global health, and conventional medications often have serious side effects, prompting the exploration of safer alternatives from natural sources. This study aimed to evaluate the analgesic activity of ethanolic extracts from Macaranga peltata leaves, traditionally used for pain management in parts of Asia. <strong>Methodology:</strong> Macaranga peltata leaves were collected, authenticated, and extracted using ethanol. Phytochemical screening was conducted, and analgesic activity was assessed using Eddy's Hot Plate method
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Honnappa, Honnesh N., Basavaraj Metikurki, V. Kusum Devi, and Santanu Saha. "Anti-inflammatory activity and phytochemical analysis of Macaranga peltata Boiv. Ex Baill. leaves and Pongamia pinnata (L.) Pierre. seeds." Journal of Pharmacy & Pharmacognosy Research 13, no. 2 (2025): 662–71. http://dx.doi.org/10.56499/jppres24.1997_13.2.662.

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Context: Traditional medicinal plant knowledge represents one of the oldest and most valuable contributions to the health sector of humanity. It serves as an essential guide to humans to develop better and healthier well-being. Medicinal plants possess phytoconstituents which exhibit enormous therapeutic effects. Aims: To evaluate the in vitro and in vivo anti-inflammatory activity of Macaranga peltata (MPCF) and Pongamia pinnata (PPEAF) fractions and estimate the phytochemicals responsible for their therapeutic action. Methods: Plant extracts and fractions were tested for their in vitro anti-
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N. H, Honnesh, and Santanu Saha. "Evaluation of Anti-oxidant Activity and Flavonoid Content in Macaranga peltata Leaves." Pharmacognosy Journal 16, no. 6s (2025): 1217–21. https://doi.org/10.5530/pj.2024.16s.235.

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Sreejith, K., U. Chandrashekara, and Jose Kallarackal. "Determination of the successional status of tropical evergreen species using chlorophyll fluorescence technique." Indian Journal of Forestry 31, no. 2 (2008): 257–59. http://dx.doi.org/10.54207/bsmps1000-2008-90wbs6.

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Photosynthetic performance of six tropical evergreen forest species, representing three successional groups was studied using the chlorophyll fluorescence technique. The study showed that the maximum photosynthetic efficiency could be seen under less light conditions in Palaquium ellipticum and Cullenia exarillata and in high light conditions in Macaranga peltata. The study also showed that in species such as Actinodaphne bourdillonii and Clerodendrum viscosum, analysis of photosynthetic performance alone might not be sufficient to categorize them into different successional groups. Thus, an i
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Jose, Tom, and Jayant A. Inamdar. "Structure and development of extrafloral nectaries and trichomes in Macaranga peltata (Roxb.) Muell. Arg. (Euphorbiaceae)." Acta Societatis Botanicorum Poloniae 57, no. 2 (2014): 229–33. http://dx.doi.org/10.5586/asbp.1988.023.

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The extrafloral nectaries (30-50) are found on the upper surface of the lamina in &lt;em&gt;Macaranga peltata&lt;/em&gt;. Glandular trichomes are restricted to the lower surface while eglandular trichomes are observed on all vegetative and reproductive organs. Nectaries originate from a group of initials and trichomes from a single epidermal cell. Stalkless extrafloral nectaries comprise a 2 to 3 layer secretory zone and 1 to 2 layer sub-secretory zone. The structure of the glandular and eglandular is described. Small black ants are seen visiting the nectary and sucking nectar. The probable fu
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Abhilash, ES, and Brijesh Sathian. "Status of the rare palm Bentinckia condapanna Berry in two habitats of Goodrical Reserve Forests; Western Ghats of India." Asia Pacific Journal of Environment Ecology and Sustainable Development 1, no. 1 (2014): 6–9. http://dx.doi.org/10.3126/apjeesd.v1i1.9503.

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Bentinckia condapanna shows more IVI values and there by dominance and ecological stress in both the sites, that is, in sparsely distributed habitats as well as in dominated habitats (Site-II). Major associations /co dominance to Bentinckia condapanna in site -I were the evergreen species like Macaranga peltata, Elaeocarpus tuberculatus, Lannea coromandelica, Schefflera venulosa etc. and for site-II was the secondary species Chionanthus ramiflorus. Higher IVI values for Bentinckia condapanna in both the sites proves the capacity of this species to establish in mono-dominant and co- dominant co
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Rodrigues, Cassie R., and Bernard F. Rodrigues. "Enhancement of seed germination in Macaranga peltata for use in tropical forest restoration." Journal of Forestry Research 25, no. 4 (2014): 897–901. http://dx.doi.org/10.1007/s11676-014-0536-0.

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Krishna K S, Gowri, Bhagath K. L. Bhagath K L, Gokul Raj R. S. Gokul Raj R S, Savitha Mol G. M. Savitha Mol G M, Divya S. Nair Divya S Nair, and Prasobh G. R. Prasobh G R. "In Silico Evaluation of the Anti-Diabetic Potential of Rhamnetin from Macaranga peltata." International Journal of Pharmaceutical Research and Applications 10, no. 1 (2025): 1426–28. https://doi.org/10.35629/4494-100114261428.

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Molecular docking studies have become an essential tool in drug discovery, facilitating the identification of potential drug candidates through computational methods. This study focuses on insilico molecular docking of phyto constituents from Macarangapeltata, particularly Rhamnetin, for their potential anti-diabetic activity. Using Auto Dock Vina within PyRx software, the binding interactions of these compounds with diabetesrelated receptors 1 HIT and 1 HIQ were analyzed. The docking results suggest a strong binding affinity, indicating their potential as the rapeutic agents. These findings h
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Books on the topic "Macaranga peltata"

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Vazhacharickal, Prem Jose, and Sruthi S. Nair. Synthesis of Nanoparticles (Ag, Cu and Zn) from Glycosmis Pentaphylla, Macaranga Peltata, Emilia Sonchifolia, Tabernaemontana Divericata and Clerodendrum Infortunatum Leaves Extract:. Independently Published, 2018.

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Conference papers on the topic "Macaranga peltata"

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Verma, Meenakshi, P. Vasanth Raj, H. Raghu Chandrasekhar, J. Venkata Rao, and N. Udupa. "Screening of plant Macaranga peltata for its antioxidant, antimicrobial and cytotoxicity activity." In 2009 International Conference on Biomedical and Pharmaceutical Engineering (ICBPE). IEEE, 2009. http://dx.doi.org/10.1109/icbpe.2009.5384086.

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