环糊精络合的最新专利综述及未来展望。

Ritu Kaushik, Ravinder Verma, Vikas Budhwar, Deepak Kaushik
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引用次数: 1

摘要

大多数口服药物的水溶性和溶出率有限。环糊精及其衍生物被用作药物佐剂,有助于开发安全和高生物利用度的制剂。cd具有独特的结构和多种物理化学特征,可帮助制药科学家解决低水溶性药物(PWS)的给药问题。本文介绍了环糊精及其各种衍生物,其不同的制造工艺,理化性质,优点和最新进展。基于cd的包合物有各种优点,如提高溶解度、生物利用度、稳定性和减少药物引起的刺激。此外,它们用作气味和味道增强剂,并且还通过物理隔离药物制剂中不相容的药物成分来防止不相容性。乳酸菌及其衍生物广泛用作非注射和口服剂型的增溶剂。CDs与适当大小的客体分子形成的包合物提高了药物的水溶性、物理化学稳定性和生物利用度。同时,cd防止了药物的氧化、水解、光降解等降解,延长了药物的保质期。手稿还强调专利和独家品牌配方的修改光盘。它还讨论了化学修饰cd的不同例子,即captisol,磺基丁基醚-β-CD,羟基丙基β- adex,随机甲基化β-CD,甲基β-CD和羟基丙基γ-CD,所有这些都以不同的剂型使用。
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An Overview of Recent Patents and Future Perspective Based on Cyclodextrin Complexation.

The majority of drugs taken orally have limited aqueous solubility and dissolution rate. Cyclodextrin (CD) and its derivatives are used as pharmaceutical adjuvants, contributing to the development of safe and high bioavailability formulations. CDs have a unique structure with a variety of physicochemical features that aid pharmaceutical scientists in solving drug delivery issues for poorly water-soluble drugs (PWS). This article covers information about cyclodextrin and its various derivatives, its different manufacturing process, physicochemical properties, advantages, and recent advancements. There are various advantages of CD-based inclusion complexes, such as enhancement of solubility, bioavailability, and stability and reduction of irritation caused by the drug. Moreover, they are used as odor and taste enhancers and also prevent incompatibility by physically isolating the incompatible drug components in drug formulation. CD and its derivatives are extensively employed as solubilizers in the manufacturing of parenteral and oral dosage forms. Inclusion complexes formed by CDs with appropriately sized guest molecules improve drug water solubility, physical-chemical stability, and bioavailability. Simultaneously CDs prevent the drugs from degradation like oxidation, hydrolysis, and photodegradation and extend the shelf life of the drug. The manuscript also highlights patents and exclusive branded formulations of modified CDs. It also discusses the different examples of chemically modified CDs, i.e., captisol, sulfobutyl ether-β-CD, hydroxy propyl betadex, randomly methylated β-CD, methyl β-CD, and hydoxy propyl γ-CD, all are used in the various dosage forms.

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