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A Critical Review of Standardization of Ayurvedic Dosage Form Kwatha - Part - II: Approaches and Outcome

机译:阿育吠陀剂量分选式标准化的批判性综述 - 第二部分 - II:批准与远离

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A Kwatha,?decoction, is one of the most used classical Ayurvedic dosage forms. It is a liquid preparation to be freshly consumed. For this preparation the raw material, mostly herbs or a group of herbs are extracted in water by boiling them for a specific time span. This is second part of the review paper on Ayurvedic Kwatha - herbal decoction to review and consider various approaches and their outcomes for the standardization. It provides information and reference data for the standardization of decoction across conventional methods and new techniques and explains how this classical process has evolved within new pharmaceutical developments. Many Ayurvedic production units appear to have adapted to newer manufacturing technologies including fermentation techniques. This paper explores the scope for application of newer technologies for the purpose of better standardization and novel product applications. Application of Kwatha's nano-drug delivery systems have a promising potential to enhance operation and resolve issues related to classical dosage forms. In order to tackle further chronic diseases, the incorporation of nano-carriers as NDDS in the conventional medicine system is necessary. This review examines the benefits of the nano-drug delivery system, its properties, its drawbacks, forms of nanoparticles, their preparation methods, and various herbal nano medicines. This review further explores how therapeutic benefits can be improved by reducing toxicity and increasing bioavailability.
机译:kwatha,?煎汤是最常用的经典阿育吠陀剂型之一。它是新鲜食用的液体制剂。对于该制备,通过沸腾以进行特定的时间跨度,在水中提取原料,主要是草本植物或一组草药。这是关于阿育吠陀Kwatha - 草药汤的审查文件的第二部分,以审查和考虑标准化的各种方法及其结果。它提供了常规方法和新技术汤的标准化的信息和参考数据,并解释了该古典过程如何在新的药物发展中发展。许多阿育吠陀生产单位似乎适用于新的制造技术,包括发酵技术。本文探讨了较新技术应用的范围,以便更好的标准化和新型产品应用。 KWATHA的纳米药物递送系统的应用具有提高操作的有希望的潜力,并解决与古典剂型相关的问题。为了进一步解决慢性疾病,需要在常规药物系统中掺入纳米载体作为NDDS。该综述研究了纳米药物递送系统,其性质,缺点,纳米颗粒形式,其制备方法和各种草药纳米药物的益处。该评价进一步探讨了通过降低毒性和增加生物利用度可以提高治疗益处。

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