Exploring Applications of Flexible Vesicular Systems as Transdermal Drug Delivery.

IF 2.8 4区 医学 Q2 PHARMACOLOGY & PHARMACY
Palwinder Kaur, Surajpal Verma, Bhupendra Tomar, Manish Vyas, Violina Kakoty, Paramita Saha, Sarathlal Kalarikkal Chandran
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Abstract

Deformable lipidic-nano carriers are a category of advanced liposomal formulations. Deformable lipidic-nano carriers have a specific character to transform by rearranging the lipidic backbone to squeeze themself through a pore opening ten times smaller than their diameter when exposed to a variable condition like hydration gradient as these have potentially been used as a non-invasive delivery system to transdermally migrate various therapeutic agents for over three decades. Despite their vast application in transdermal drug delivery system, non-uniformity to express their chemical nature still exist and authors use various terms synonymously and interchangeably with each other. The present study delineates the terminologies used to express different derived deformable vesicular carriers to harmonize the terminological use. It also includes the effectiveness of deformable nanocarriers like Transferosomes, Ethosomes, Menthosomes, Invasomes, and Glycerosomes in skin conditions like basal cell carcinoma, fungal and viral infections, and hyperpigmentation disorders, along with others. Various review and research articles were selected from the 'Pubmed' database. The keywords like Transferosomes, Flexi-vesicular system, ultra-deformable vesicles, and nano-vesicular systems were used to extract the data. The data was reviewed and compiled to categorically classify different flexible vesicular systems. The composition of the different vesicular systems is identified and a report of various pathological conditions where the use of flexible lipid nanocarrier systems was implemented is compiled. The review also offers suggestive approaches where the applicability of these systems can be explored further.

探索柔性囊泡系统在透皮给药方面的应用。
可变形脂质纳米载体是一类先进的脂质体制剂。可变形脂质纳米载体具有一种特殊的特性,即当暴露在水合梯度等可变条件下时,它们会通过重新排列脂质骨架进行转化,从而将自身挤压过比其直径小十倍的孔隙,三十多年来,这些载体已被用作非侵入性给药系统,用于透皮迁移各种治疗药物。尽管它们在透皮给药系统中应用广泛,但表达其化学性质的术语仍不统一,作者们使用各种同义词或互换术语。本研究界定了用于表达不同衍生可变形囊泡载体的术语,以统一术语的使用。本研究还包括可变形纳米载体(如转移体、乙硫体、薄荷体、侵袭体和甘油体)在基底细胞癌、真菌和病毒感染、色素沉着症等皮肤病中的疗效。从 "Pubmed "数据库中选取了多篇评论和研究文章。提取数据时使用了转运体、柔性囊泡系统、超可变形囊泡和纳米囊泡系统等关键词。对数据进行审查和汇编后,对不同的柔性囊泡系统进行了分类。确定了不同囊泡系统的组成,并汇编了使用柔性脂质纳米载体系统的各种病理情况报告。该综述还提供了可进一步探索这些系统适用性的建议性方法。
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来源期刊
Current drug delivery
Current drug delivery PHARMACOLOGY & PHARMACY-
CiteScore
5.10
自引率
4.20%
发文量
170
期刊介绍: Current Drug Delivery aims to publish peer-reviewed articles, research articles, short and in-depth reviews, and drug clinical trials studies in the rapidly developing field of drug delivery. Modern drug research aims to build delivery properties of a drug at the design phase, however in many cases this idea cannot be met and the development of delivery systems becomes as important as the development of the drugs themselves. The journal aims to cover the latest outstanding developments in drug and vaccine delivery employing physical, physico-chemical and chemical methods. The drugs include a wide range of bioactive compounds from simple pharmaceuticals to peptides, proteins, nucleotides, nucleosides and sugars. The journal will also report progress in the fields of transport routes and mechanisms including efflux proteins and multi-drug resistance. The journal is essential for all pharmaceutical scientists involved in drug design, development and delivery.
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