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基于脂质体载体的癌症治疗响应性药物递送研究进展

Updates on Responsive Drug Delivery Based on Liposome Vehicles for Cancer Treatment.

作者信息

Nikolova Maria P, Kumar Enamala Manoj, Chavali Murthy S

机构信息

Department of Material Science and Technology, University of Ruse "A. Kanchev", 8 Studentska Str., 7017 Ruse, Bulgaria.

Bioserve Biotechnologies (India) Private Limited, Unit: D4-7, 1st Floor, Industrial Estate, Moula-Ali, Hyderabad 500040, Telangana, India.

出版信息

Pharmaceutics. 2022 Oct 15;14(10):2195. doi: 10.3390/pharmaceutics14102195.

Abstract

Liposomes are well-known nanoparticles with a non-toxic nature and the ability to incorporate both hydrophilic and hydrophobic drugs simultaneously. As modern drug delivery formulations are produced by emerging technologies, numerous advantages of liposomal drug delivery systems over conventional liposomes or free drug treatment of cancer have been reported. Recently, liposome nanocarriers have exhibited high drug loading capacity, drug protection, improved bioavailability, enhanced intercellular delivery, and better therapeutic effect because of resounding success in targeting delivery. The site targeting of smart responsive liposomes, achieved through changes in their physicochemical and morphological properties, allows for the controlled release of active compounds under certain endogenous or exogenous stimuli. In that way, the multifunctional and stimuli-responsive nanocarriers for the drug delivery of cancer therapeutics enhance the efficacy of treatment prevention and fighting over metastases, while limiting the systemic side effects on healthy tissues and organs. Since liposomes constitute promising nanocarriers for site-targeted and controlled anticancer drug release, this review focuses on the recent progress of smart liposome achievements for anticancer drug delivery applications.

摘要

脂质体是众所周知的纳米颗粒,具有无毒的特性,并且能够同时包载亲水性和疏水性药物。随着现代药物递送制剂通过新兴技术生产,脂质体药物递送系统相较于传统脂质体或癌症的游离药物治疗具有许多优势。最近,脂质体纳米载体由于在靶向递送方面取得了巨大成功,已展现出高载药量、药物保护、提高生物利用度、增强细胞间递送以及更好的治疗效果。通过其物理化学和形态特性的变化实现的智能响应脂质体的位点靶向,能够在某些内源性或外源性刺激下实现活性化合物的控释。这样,用于癌症治疗药物递送的多功能和刺激响应纳米载体提高了治疗预防和对抗转移的功效,同时限制了对健康组织和器官的全身副作用。由于脂质体构成了用于位点靶向和可控抗癌药物释放的有前景的纳米载体,本综述聚焦于智能脂质体在抗癌药物递送应用方面的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5d2/9608678/755e521bec72/pharmaceutics-14-02195-g001.jpg

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