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基于儿茶素功能化阳离子脂质体的多组分纳米胶束用于肺靶向递药。

Catechin-Functionalized Cationic Lipopolymer Based Multicomponent Nanomicelles for Lung-Targeting Delivery.

机构信息

Department of Biomedical Engineering, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong SAR, China.

Karolinska Institutet Ming Wai Lau Centre for Reparative Medicine, HKSTP, Sha Tin, Hong Kong SAR, China.

出版信息

Adv Mater. 2024 Apr;36(17):e2302985. doi: 10.1002/adma.202302985. Epub 2023 Oct 27.

Abstract

Catechins from green tea are one of the most effective natural compounds for cancer chemoprevention and have attracted extensive research. Cancer cell-selective apoptosis-inducing properties of catechins depend on efficient intracellular delivery. However, the low bioavailability limits the application of catechins. Herein, a nano-scaled micellar composite composed of catechin-functionalized cationic lipopolymer and serum albumin is constructed. Cationic liposomes tend to accumulate in the pulmonary microvasculature due to electrostatic effects and are able to deliver the micellar system intracellularly, thus improving the bioavailability of catechins. Albumin in the system acts as a biocompatible anti-plasma absorbent, forming complexes with positively charged lipopolymer under electrostatic interactions, contributing to prolonged in vivo retention. The physicochemical properties of the nano-micellar complexes are characterized, and the antitumor properties of catechin-functionalized materials are confirmed by reactive oxygen species (ROS), caspase-3, and cell apoptosis measurements. The role of each functional module, cationic polymeric liposome, and albumin is revealed by cell penetration, in vivo animal assays, etc. This multicomponent micellar nanocomposite has the potential to become an effective vehicle for the treatment of lung diseases such as pneumonia, lung tumors, sepsis-induced lung injury, etc. This study also demonstrates that it is a great strategy to create a delivery system that is both tissue-targeted and biologically active by combining cationic liposomes with the native bioactive compound catechins.

摘要

绿茶中的儿茶素是最有效的癌症化学预防天然化合物之一,引起了广泛的研究。儿茶素对癌细胞的选择性凋亡诱导特性取决于有效的细胞内递药。然而,低生物利用度限制了儿茶素的应用。在此,构建了由儿茶素功能化阳离子脂质体和血清白蛋白组成的纳米级胶束复合材料。由于静电作用,阳离子脂质体倾向于在肺微血管中积聚,并能够将胶束系统递送至细胞内,从而提高儿茶素的生物利用度。系统中的白蛋白作为一种生物相容的抗血浆吸收剂,通过静电相互作用与带正电荷的脂质体形成复合物,有助于延长体内保留时间。对纳米胶束复合物的物理化学性质进行了表征,并通过活性氧 (ROS)、半胱天冬酶-3 和细胞凋亡测定法证实了儿茶素功能化材料的抗肿瘤特性。通过细胞穿透、体内动物实验等方法揭示了每个功能模块、阳离子聚合物脂质体和白蛋白的作用。这种多组分胶束纳米复合材料有可能成为治疗肺炎、肺肿瘤、脓毒症引起的肺损伤等肺部疾病的有效载体。该研究还表明,通过将阳离子脂质体与天然生物活性化合物儿茶素相结合,创建一种组织靶向和生物活性的递药系统是一种很好的策略。

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