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Artykuły w czasopismach na temat "Diospyros chloroxylon"

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Naik B, Nageswara Rao, Jyothi D, and Vishnuvardhan Z. "Quantification of major bioactive compounds from Diospyros chloroxylon Roxb." Journal of Plant Science Research 37, no. 1 (2021): 203–7. http://dx.doi.org/10.32381/jpsr.2021.37.01.25.

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B, Nageswararao Naik, and Suneetha P. "Antimicrobial activity of Diospyros chloroxylon Roxb leaf methanolic extract." International Journal of Herbal Medicine 12, no. 3 (2024): 19–25. http://dx.doi.org/10.22271/flora.2024.v12.i3a.932.

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G., E. Adeleke, T. Adedosu O., K. Afolabi O., O. Arinde O., and M. Oyedokun T. "Methanolic Leaf Extract of Diospyros chloroxylon Modulates Hepatic Redox Profile and Cell Proliferation in Dimethylamine-treated Rats." British Journal of Medicine & Medical Research 21, no. 12 (2017): 1–12. https://doi.org/10.9734/BJMMR/2017/33242.

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Dimethylamine (DMA) is a toxicant commonly present in foods, air and water. <em>Diospyros </em>species is a group of plants being reported to contain several bioactive agents. The study was aimed at investigating the biological activities of <em>Diospyros chloroxylon </em>leaf extract (DCLE) on DMA-induced toxicity in liver of Wistar rats. The DMA significantly (p &lt; 0.05) reduced serum Superoxide dismutase (SOD) and catalase activities by 43.9% and 60.6%, while malondialdehyde (MDA) was found to be significantly (p &lt; 0.05) elevated by 150% compared with controls. Hepatic SOD and catalase
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Rao, D. Srinivasa, and G. M. Narasimha Rao. "Sacred Grove of Punyagiri Hill, Vizianagaram District, AP, India: Ecological And Sociological Study." International Journal of Environment 4, no. 1 (2015): 30–47. http://dx.doi.org/10.3126/ije.v4i1.12176.

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Sacred groves are important repositories of rare endangered endemic plants and floral diversity that have been conserved by the local people or communities in a sustainable manner. Sri Umakotilingeswara Swami Temple is a famous Siva Kshetra located in Vizianagaram district of the Andhra Pradesh, India. This holy shrine is situated in the Punyagiri hills, 4 kms away from the Srungavarapu Kota and 62 kms away from the Visakhapatnam (a coastal city of Andhra Pradesh). Two study sites were selected, one was in the sacred grove region another was in forest region. Line transects were used for colle
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Murthy, Hosakatte Niranjana, Dayanand Dalawai, Irappa Arer, Prashant Karadakatti, and Kaneez Hafiz. "Nutritional Value of Underutilized Fruit: Diospyros chloroxylon Roxb. (Green Ebony Persimmon)." International Journal of Fruit Science 22, no. 1 (2022): 249–63. http://dx.doi.org/10.1080/15538362.2021.2023065.

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Adeleke, G., O. Adedosu, O. Afolabi, O. Arinde, and T. Oyedokun. "Methanolic Leaf Extract of Diospyros chloroxylon Modulates Hepatic Redox Profile and Cell Proliferation in Dimethylamine-treated Rats." British Journal of Medicine and Medical Research 21, no. 12 (2017): 1–12. http://dx.doi.org/10.9734/bjmmr/2017/33242.

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Rao, Chandana Narasimha, and M. Sujatha. "Characterization of Green synthesised Iron nanoparticles and application of synthesised Iron nanoparticles as an effective catalyst for the removal of Carcinogenic metals in aqueous solution." Research Journal of Chemistry and Environment 27, no. 12 (2023): 115–22. http://dx.doi.org/10.25303/2712rjce1150122.

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The heavy metals such as chromium (Cr), lead (Pb) and cadmium (Cd) are considered as serious toxicants and act as carcinogenic agents that cause serious cancers to humans. The use of these heavy metals drastically increased in various industrial applications and subsequently increased the risk of contamination of these heavy metals in soil, water etc. To minimize the negative effects of these heavy metals, there is a need to reduce these heavy metals concentrations in environment samples. Hence this study focused to fabricate iron nanoparticles using Diospyros chloroxylon (Roxb.) for the remov
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"Diospyros chloroxylon." CABI Compendium CABI Compendium (January 7, 2022). http://dx.doi.org/10.1079/cabicompendium.19543.

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Ravuri, Ramya Krishna, K. R. Vinay Rajan, Deva H. Puranam, and Eswar Kumar Kilari. "Exploring the Antitumour Potential of <i>Diospyros chloroxylon</i> Roxb. Extract in EAC Models: An Integrative <i>In Vitro</i> and <i>In Vivo</i> Approach." Journal of Natural Remedies, June 30, 2024, 1307–19. http://dx.doi.org/10.18311/jnr/2024/40585.

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Background: Natural compounds have emerged as promising alternatives, owing to their low toxicity and potential efficacy. This study investigates the anticancer effects of Diospyros chloroxylon Roxb. leaf extract on Ehrlich Ascites Carcinoma (EAC) in vitro and in vivo. Methods: The in vitro cytotoxicity of D. chloroxylon extract was assessed using the MTT assay on various cancer cell lines, including EAC, A549 (lung), MCF-7 (breast), DU 145 (prostate), HT 29 (colon) and Human Umbilical Vein Endothelial Cells (HUVECs). The in vivo study involved the treatment of EAC-bearing mice with two doses
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Ravuri, Ramya Krishna, Deva H. Puranam, and Eswar Kumar Kilari. "Exploring the Anticancer Potential of Diospyros chloroxylon Roxb.: Insights from Phytochemical Profiling and In silico Docking studies." Research Journal of Pharmacy and Technology, March 27, 2025, 1013–20. https://doi.org/10.52711/0974-360x.2025.00145.

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Plants produce secondary metabolites, including flavonoids and tannins, as a detoxification response. These polyphenolic compounds possess strong structural properties that neutralize excessive free radicals, enhancing the body's defence mechanisms. Scientific evidence supports their adaptogenic potential in managing stress-related chronic diseases. In this study, the ethanolic extract of Diospyros chloroxylon Roxb. studied for phytochemical profile using qualitative, quantitative, and analytical methods using preliminary phytochemical tests, total phenolic, flavonoid, and tannin content, and
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