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Molecules (Basel, Switzerland), ISSN 1420-3049, 04/2020, Volume 25, Issue 7, p. 1563
Biochemistry & Molecular Biology | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Chemistry, Multidisciplinary | Science & Technology | Plant Extracts - chemistry | Fatty Acids - isolation & purification | Humans | Phytosterols - isolation & purification | Sitosterols - pharmacology | Polyphenols - pharmacology | Riboflavin - pharmacology | Carotenoids - pharmacology | Phytosterols - pharmacology | Ascorbic Acid - isolation & purification | Cytotoxins - pharmacology | Cell Survival - drug effects | Polyphenols - isolation & purification | Receptors, LDL - genetics | Glucosides - pharmacology | Receptors, LDL - antagonists & inhibitors | Enzyme Inhibitors - pharmacology | Receptors, LDL - metabolism | Sitosterols - isolation & purification | Antioxidants - pharmacology | Anticholesteremic Agents - isolation & purification | Cytotoxins - isolation & purification | Riboflavin - isolation & purification | Enzyme Inhibitors - isolation & purification | Glucosides - isolation & purification | Phenylpropionates - isolation & purification | Phytochemicals - isolation & purification | Phenylpropionates - pharmacology | Saponins - isolation & purification | Antioxidants - isolation & purification | Urticaceae - chemistry | Ascorbic Acid - pharmacology | Carotenoids - isolation & purification | Cell Line, Tumor | Phytochemicals - pharmacology | Anticholesteremic Agents - pharmacology | Fatty Acids - pharmacology | Saponins - pharmacology | Saponins | Ascorbic acid | Homeostasis | Cytotoxicity | Acetylcholinesterase | Ovarian cancer | Antioxidants | Leaves | Secondary metabolites | Carotenoids | Metabolites | Polyphenols | Cosmetics | Lipoprotein (low density) receptors | Flowers & plants | Sensors | α-Amylase | Pancreas | Nutraceuticals | Functional foods & nutraceuticals | Enzymes | Bioassays | Medical treatment | Phytosterols | Ions | Glucosidase | Tumor cell lines | Biological assays | Fatty acids | Chromatography | Cholesterol | Phytochemicals | Linolenic acid | Tuberculosis | α-Glucosidase | Pancreatic cancer | Phenols | Receptor density | Scientific imaging | Mass spectrometry | Tyrosinase | Pharmaceuticals | Index Medicus | polyphenols | LC-MS | NMR | phytosterols | LDLR | cytotoxicity
Journal Article
Nutrients, ISSN 2072-6643, 03/2015, Volume 7, Issue 3, pp. 1672 - 1687
GC-MS | LC-MS | Gramisterol | Anti-cancer | Lupeol | Rice bran | Life Sciences & Biomedicine | Nutrition & Dietetics | Science & Technology | Plant Extracts - chemistry | Gas Chromatography-Mass Spectrometry | Triterpenes - pharmacology | Plant Extracts - pharmacology | Phytosterols - chemistry | Phytosterols - isolation & purification | Sitosterols - pharmacology | Triterpenes - therapeutic use | Stigmasterol - pharmacology | Oryza - chemistry | Stigmasterol - chemistry | Chromatography, High Pressure Liquid | Phytosterols - pharmacology | Cholesterol - chemistry | Triterpenes - chemistry | Stigmasterol - therapeutic use | Mass Spectrometry | Sitosterols - chemistry | Molecular Structure | Seeds - chemistry | Phytotherapy | Antineoplastic Agents, Phytogenic - therapeutic use | Stigmasterol - analogs & derivatives | Phytosterols - therapeutic use | Stigmasterol - isolation & purification | Cholesterol - analogs & derivatives | Cholesterol - isolation & purification | Sitosterols - therapeutic use | Leukemia - drug therapy | Sitosterols - isolation & purification | Antineoplastic Agents, Phytogenic - chemistry | Pentacyclic Triterpenes - pharmacology | Pentacyclic Triterpenes - therapeutic use | Pentacyclic Triterpenes - chemistry | Animals | Cell Line, Tumor | Cholesterol - pharmacology | Triterpenes - isolation & purification | Mice | Pentacyclic Triterpenes - isolation & purification | Antineoplastic Agents, Phytogenic - pharmacology | Plant Extracts - therapeutic use | Cholesterol - therapeutic use | Antineoplastic Agents, Phytogenic - isolation & purification | Index Medicus | gramisterol | lupeol | rice bran | anti-cancer
Journal Article
Molecules (Basel, Switzerland), ISSN 1420-3049, 2018, Volume 23, Issue 2, p. 409
Antifungal activity | LC-MS | Antioxidant capacity | Antibacterial activity | H. arenarium | Polyphenolic profile | A. dioica | Biochemistry & Molecular Biology | Physical Sciences | Chemistry | Life Sciences & Biomedicine | Chemistry, Multidisciplinary | Science & Technology | Phenols - isolation & purification | Plant Extracts - chemistry | Anti-Infective Agents - isolation & purification | Antioxidants - chemistry | Chlorogenic Acid - pharmacology | Gram-Positive Bacteria - drug effects | Solvents - chemistry | Anti-Infective Agents - pharmacology | Phytosterols - chemistry | Phytosterols - isolation & purification | Flowers - chemistry | Phytosterols - pharmacology | Asteraceae - chemistry | Quercetin - isolation & purification | Anti-Infective Agents - chemistry | Chlorogenic Acid - isolation & purification | Gram-Positive Bacteria - growth & development | Phenols - pharmacology | Phytochemicals - chemistry | Candida - growth & development | Quercetin - analogs & derivatives | Quercetin - chemistry | Aspergillus - growth & development | Antioxidants - pharmacology | Penicillium - drug effects | Aspergillus - drug effects | Phytochemicals - isolation & purification | Gram-Negative Bacteria - drug effects | Quercetin - pharmacology | Antioxidants - isolation & purification | Gram-Negative Bacteria - growth & development | Helichrysum - chemistry | Phenols - chemistry | Candida - drug effects | Liquid-Liquid Extraction - methods | Penicillium - growth & development | Chlorogenic Acid - chemistry | Phytochemicals - pharmacology | Antiinflammatory agents | Fungicides | Chlorogenic acid | Inflammation | Flowers | Assaying | Phenolic compounds | Antioxidants | Hydrolysis | Biological effects | Acids | Polyphenols | Phenols | Species | Index Medicus | antibacterial activity | antioxidant capacity | polyphenolic profile | antifungal activity
Journal Article