Phytonutrients and Technological Development in Formulations

M. Jahangir
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引用次数: 10

Abstract

Phytomedicines are used by humans since ancient civilizations and is now considered as an important part of traditional and alternative system of medicine. In recent time, phytomedicines have gained special attention based on the fact that a number of current medicines are derived from plant source. Phytochemicals exhibits lesser side effects and are potentially strong therapeutic agents. The global market for herbal drugs is increasing day by day. It has gained widespread acceptance due to its efficacy, accessibility, minimum toxicity, and cost effectiveness. However, solubility, stability and bioavailability are some of the major hindrances in the commercialization process of phytomedicines. Nanotechnology have been potentially productive in improving the solubility, stability, bioavailability, and bioactivity of phytomedicines. Development of nano-phytomedicines or attaching phytomedicines with polymers and modifying their surface properties and permeability have altogether influenced the bioavailability of phytochemicals. Novel formulations like solid lipid nanoparticles, micelles, niosomes, dendrimers, nanotube, liposomes, nano-emulsions nanospheres, phytosomes etc. Have been developed loaded with phytomedicines and have shown extraordinary result. This chapter extensively reviews phytomedicines based novel drug delivery systems having potential activity in different diseases like metabolic disorders, cardiovascular disorders, neurological disorders, viral diseases, cancers, inflammatory diseases and wound healing and lastly future prospect is discussed.
植物营养素及其配方技术发展
植物药自古代文明以来就被人类使用,现在被认为是传统和替代医学体系的重要组成部分。近年来,植物药受到了特别的关注,因为目前许多药物都是从植物中提取的。植物化学物质具有较小的副作用,是潜在的强治疗剂。全球草药市场日益增长。由于其疗效、可及性、毒性最小和成本效益,它已获得广泛接受。然而,溶解度、稳定性和生物利用度是植物药商业化过程中的一些主要障碍。纳米技术在提高植物药的溶解度、稳定性、生物利用度和生物活性方面具有潜在的生产力。纳米植物药的开发或植物药与聚合物的结合以及修饰植物药的表面性质和渗透性都影响着植物化学物质的生物利用度。新型配方,如固体脂质纳米颗粒、胶束、乳质体、树状大分子、纳米管、脂质体、纳米乳剂、纳米球、磷脂质体等。已经开发了大量的植物药,并显示出非凡的效果。本章广泛综述了基于植物药的新型给药系统在代谢紊乱、心血管疾病、神经系统疾病、病毒性疾病、癌症、炎症性疾病和伤口愈合等不同疾病中具有潜在活性,并讨论了未来的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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