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Chemistry and Pharmaceutical Applications of Excipients Derived from Tamarind

机译:罗望子衍生物的化学和制药应用

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Drag dosage forms contain many components in addition to the active pharmaceutical ingredient(s) to assist in the manufacturing process as well as to optimize drug delivery. Due to advances in drug delivery technology, excipients are currently included in novel dosage forms to fulfill specific functions and in some cases they directly or indirectly influence the extent and/or rate of drug release and absorption. Excipients have been successfully employed in the formulation of solid, liquid and semi-solid dosage forms and are specifically useful in the design of modified release drug delivery systems. Synthetic natural polymers and excipients have been investigated extensively for this purpose, but the use of natural excipients for pharmaceutical applications is attractive because they are economical, readily available, non-toxic, capable of chemical modifications, potentially biodegradable and with few exceptions, and also biocompatible. Of increasing importance is the fact that plant resources are renewable and if cultivated or harvested in a sustainable manner, they can provide a constant supply of raw material. Traditionally, excipients were included in drag formulations as inert vehicles that provided the necessary weight. consistency and volume for the correct administration of the active ingredient, but in modern pharmaceutical dosage forms they often fulfill multi-functional roles such as improvement of the stability, release and bioavailability of the active ingredient, enhancement of patient acceptability and performance of technological functions that ensure ease of manufacture. This mini review discusses the chemistry and potential use of substances derived from Tamarind as multifunctional excipient in various pharmaceutical dosage forms.
机译:药物剂型除活性药物成分外还包含许多成分,以协助制造过程并优化药物输送。由于药物递送技术的进步,赋形剂目前被包括在新型剂型中以实现特定功能,并且在某些情况下,它们直接或间接地影响药物释放和吸收的程度和/或速率。赋形剂已成功地用于固体,液体和半固体剂型的配制,并且特别适用于调释药物传递系统的设计。为此目的已对合成的天然聚合物和赋形剂进行了广泛的研究,但是将天然赋形剂用于药物应用是有吸引力的,因为它们经济,易于获得,无毒,能够进行化学修饰,具有潜在的生物降解性,并且几乎没有例外。生物相容性。越来越重要的是植物资源是可再生的,如果以可持续的方式进行种植或收获,它们可以提供稳定的原材料供应。传统上,赋形剂作为惰性载体包含在药物制剂中,可提供必要的重量。正确分配活性成分的稠度和体积,但是在现代药物剂型中,它们通常发挥多功能作用,例如改善活性成分的稳定性,释放度和生物利用度,提高患者的接受度和技术功能确保易于制造。这篇简短的综述讨论了罗望子碱作为多功能赋形剂在各种药物剂型中的化学性质和潜在用途。

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