β-谷甾醇的药理、营养和分析方面。

IF 2.2 4区 医学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jyotsana Dwivedi, Pranay Wal, Pranjal Sachan, Monika Dwivedi, Sachinkumar Dnyaneshwar Gunjal, Ujwala Wasnik, Ashish Singhai
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引用次数: 0

摘要

植物甾醇是天然存在于植物细胞膜中的生物活性物质,其分子排列与哺乳动物细胞产生的脂肪相似。它们广泛分布于坚果、种子、橄榄油和豆类等植物中,是脂质的膳食来源。本综述总结了 BS 在治疗生活方式问题方面的功效,并对之前的研究进行了评估。数据来自 PubMed、ScienceDirect、Scopus 和 Google scholar(1968 -2024),使用的标准关键词为 "β-谷甾醇"、"分类"、"生物合成"、"药代动力学"、"草本保健品"、"分析"、"结构"、"药理作用"。本综述共纳入 222 项研究。大量体外和体内研究表明,BSs 具有多种生物特性,如镇静和抗焦虑作用;麻醉和免疫刺激作用;抗菌、抗肿瘤、抗炎、降脂和保肝作用;以及抗氧化、抗糖尿病和伤口愈合作用,与呼吸系统疾病和非酒精性脂肪肝疾病形成鲜明对比。β-谷甾醇是一种很有前景的天然物质,可用于控制胆固醇和炎症。然而,要了解其药理作用并确定其在临床应用中的最佳用途,还需要进一步的研究。β-谷甾醇又称 "植物甾醇酯",通常存在于植物中,有多种用途,特别是在医药和食品工业中。对 β-谷甾醇的实验研究提供了明确的证据,证明植物甾醇可与其他方法一起用于防治严重疾病。这种巨大的潜力使这种物质成为未来值得关注的药物。虽然 β-谷甾醇具有抗癌和抗炎特性,并在治疗前列腺肥大的人体临床试验中发挥作用,但其作用机制仍不清楚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aspects of β-sitosterol's Pharmacology, Nutrition and Analysis.

Phytosterols are bioactive substances found naturally in the cell membranes of plants and have an arrangement of molecules similar to that of fat, which is produced by mammalian cells. They are widely distributed as dietary sources of lipids in plants, such as nuts, seeds, olive oil, and legumes. This review provides a summary of the efficacy of BS in treating lifestyle problems, as well as an appraisal of previous research. Data was collected from PubMed, ScienceDirect, Scopus, and Google scholar (1968 -2024) using standard keywords "β-sitosterol," "Classification," "Biosynthesis," "Pharmacokinetics," "Herbal nutraceutical," "Analytical," "Structure," "Pharmacological effect." A total of 222 studies were included in this review. Numerous in vitro and in vivo investigations have shown that BSs exhibit several biological properties such as calming and anxiolytic effects; narcotic and immune-stimulating effects; antibacterial, antineoplastic, inflammation-causing, lipid-lowering, and hepatoprotective effects; and antioxidant, anti-diabetic, and wound-healing effects in contrast to respiratory and non-alcoholic fatty liver disease illnesses. β-sitosterol is a promising natural substance for the management of cholesterol and inflammation. However, further studies are needed to understand its pharmacological consequences and determine its best use in clinical applications. β-Sitosterol, also known as "plant sterol ester," is often present in plants and has several applications, notably in medicine and the food industry. Experimental research on β-sitosterol provides unequivocal evidence that phytosterol can be supplemented with other methods to combat serious illnesses. Such a high potential identifies this substance as a noteworthy medication for the future based on its composition. Although β-sitosterol has anticancer and anti-inflammatory properties and is useful in human clinical trials for enlarged prostates, its mechanism of action remains unclear.

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来源期刊
Current pharmaceutical biotechnology
Current pharmaceutical biotechnology 医学-生化与分子生物学
CiteScore
5.60
自引率
3.60%
发文量
203
审稿时长
6 months
期刊介绍: Current Pharmaceutical Biotechnology aims to cover all the latest and outstanding developments in Pharmaceutical Biotechnology. Each issue of the journal includes timely in-depth reviews, original research articles and letters written by leaders in the field, covering a range of current topics in scientific areas of Pharmaceutical Biotechnology. Invited and unsolicited review articles are welcome. The journal encourages contributions describing research at the interface of drug discovery and pharmacological applications, involving in vitro investigations and pre-clinical or clinical studies. Scientific areas within the scope of the journal include pharmaceutical chemistry, biochemistry and genetics, molecular and cellular biology, and polymer and materials sciences as they relate to pharmaceutical science and biotechnology. In addition, the journal also considers comprehensive studies and research advances pertaining food chemistry with pharmaceutical implication. Areas of interest include: DNA/protein engineering and processing Synthetic biotechnology Omics (genomics, proteomics, metabolomics and systems biology) Therapeutic biotechnology (gene therapy, peptide inhibitors, enzymes) Drug delivery and targeting Nanobiotechnology Molecular pharmaceutics and molecular pharmacology Analytical biotechnology (biosensing, advanced technology for detection of bioanalytes) Pharmacokinetics and pharmacodynamics Applied Microbiology Bioinformatics (computational biopharmaceutics and modeling) Environmental biotechnology Regenerative medicine (stem cells, tissue engineering and biomaterials) Translational immunology (cell therapies, antibody engineering, xenotransplantation) Industrial bioprocesses for drug production and development Biosafety Biotech ethics Special Issues devoted to crucial topics, providing the latest comprehensive information on cutting-edge areas of research and technological advances, are welcome. Current Pharmaceutical Biotechnology is an essential journal for academic, clinical, government and pharmaceutical scientists who wish to be kept informed and up-to-date with the latest and most important developments.
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