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Titlebook: Natural Product Experiments in Drug Discovery; Karuppusamy Arunachalam,Xuefei Yang,Sreeja Puthanp Book 2023 The Editor(s) (if applicable)

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Evaluating the Lipid Profile and Mineral Composition of the Seed Oil of , L. (Caesalpiniaceae),m the crude oil. The crude oil was analyzed for the presence of heavy metals, which showed the presence of Hg, Mg, Zn, and Cu metals. The presence of Hg showed the . can be a good candidate for the phytoremediation of Hg-contaminated soils.
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Phytochemical Screening, Physicochemical Analysis, and Powder Characterization of Selected , Speciects. Physicochemical characters of leaf extracts like water-soluble extract, alcohol-soluble extract, crude fiber, total ash, acid-insoluble ash, and sulfated ash were determined. The powder microscopic studies of leaf and bark samples were also conducted. Different powder characters including cork
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Metabolite Profiling of Bioactive Compounds in Selected Species of , Wall. ex Benth. from the Westeadiene, β-caryophyllene, limonene, eucalyptol, phytol, stearic acid, stigmasterol, quinic acid, and tocopherol. The presence of compounds with potent biological activity in selected species of . can be taken as a possible lead to the therapeutic efficacy of these plants.
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Evaluation of Nutritional, Antioxidant, and Anti-arthritic Activity of , J. Koenig Rhizome,g extract), whereas tannin content and flavonoid content were found higher in FAE at about 603.33 ± 118.58 mg GAE/g extract and 5.01 ± 0.14 mg RE/g extract, respectively. The in vitro antioxidant studies revealed that the FAE extract (26.82 ± 2.96 Fe (II) equivalents/g extract) showed the higher fer
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Phytochemical, Pharmacognostic, and In Vitro Acetylcholinesterase Inhibitory Activities of , Leavesrioxepane and heptasiloxane (MW: 104), and hexadecamethyl (MW: 532), the primary peaks were discovered to be present in the retention times of 8.07, 15.12, 20.42, and 23, respectively. The endogenous components of . were investigated qualitatively and quantitatively using traditional phytochemical m
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