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甘油体:用于高效递药的新型纳米囊泡。

Glycerosomes: Novel Nano-Vesicles for Efficient Delivery of Therapeutics.

机构信息

Delhi Pharmaceutical Sciences and Research University, New Delhi, Delhi-110017, India.

Noida Institute of Engineering and Technology (Pharmacy Institute), UP, 201306, India.

出版信息

Recent Adv Drug Deliv Formul. 2023;17(3):173-182. doi: 10.2174/0126673878245185230919101148.

Abstract

BACKGROUND

The topical drug delivery system has gained more attention in recent years as compared to oral and parenteral drug delivery. However, owing to the barrier function of the skin's topmost layer, only a few drug molecules can be administered by this route. Therefore, encapsulating the drugs in glycerosomes is one potential solution to this problem. Glycerosomes are vesicular drug delivery systems primarily made up of large concentrations of glycerol, phospholipid, water, and other active ingredients.

OBJECTIVE

The main aim of this review is to summarize the most recent information on the encapsulated vesicular system used in cosmetic preparations, specifically glycerosomes made from both synthetic and naturally occurring plant bioactive substances.

PURPOSE

Glycerosomes offer many benefits, including increased efficacy, better stability, improve absorption, drug targeting at specific sites, and delivering the same at a predetermined rate.

METHOD

The mechanism behind the penetration of glycerosomes is the hydration and lipid fluidization of skin, fabricated by glycerol.

RESULT

Numerous methods have been reported for the formulation of glycerosomes, including the thin film hydration method, reverse-phase evaporation, solvent spherule, detergent removal method, and so on.

CONCLUSION

Researchers are currently investigating the potential of glycerosomes as nanocarriers for natural bioactive and synthetic drugs. This review describes the structure of glycerosomes, preparation techniques, applications, distinctions from liposomes, and benefits of glycerosomes.

摘要

背景

近年来,与口服和肠胃外药物递送相比,局部药物递送系统受到了更多关注。然而,由于皮肤最顶层的屏障功能,只有少数药物分子可以通过这种途径给药。因此,将药物包封在甘油体中是解决这个问题的一种潜在方法。甘油体是一种主要由高浓度甘油、磷脂、水和其他活性成分组成的囊泡药物递送系统。

目的

本综述的主要目的是总结最近关于用于化妆品制剂的包封囊泡系统的信息,特别是由合成和天然植物生物活性物质制成的甘油体。

目的

甘油体具有许多优点,包括提高疗效、更好的稳定性、改善吸收、药物靶向特定部位以及以预定速率给药。

方法

甘油体渗透的机制是甘油引起的皮肤水合作用和脂质流化。

结果

已经报道了许多用于甘油体配方的方法,包括薄膜水化法、反相蒸发法、溶剂球粒法、去污剂去除法等。

结论

研究人员目前正在研究甘油体作为天然生物活性和合成药物的纳米载体的潜力。本综述描述了甘油体的结构、制备技术、应用、与脂质体的区别以及甘油体的优点。

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