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基于荧光共振能量转移的聚合物胶束结构稳定性分析:影响血液清除率的另一个关键属性,超出了聚乙二醇覆盖率和颗粒大小的影响。

FRET-based analysis on the structural stability of polymeric micelles: Another key attribute beyond PEG coverage and particle size affecting the blood clearance.

机构信息

Department of Pharmaceutics, School of Pharmacy, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, Liaoning, PR China.

School of Functional Food and Wine, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, Liaoning, PR China.

出版信息

J Control Release. 2023 Aug;360:734-746. doi: 10.1016/j.jconrel.2023.07.026. Epub 2023 Jul 19.

Abstract

Various attributes of micelles, such as PEG density and particle size, are considered to be related to blood clearance. The structural stability of micelles is another key attribute that will affect the in vivo fate. This study employed fluorescence resonance energy transfer (FRET) analysis to guide the preparation of polymeric micelles with different structural stability. Micelles prepared using copolymers with longer hydrophobic blocks showed higher structural stability; emulsification was a better method than nanoprecipitation to prepare stable micelles. The fast chain exchange kinetics and the high-water content of micellar cores explained the low structural stability of those micelles. Moreover, this study highlighted the importance of structural stability that affected blood clearance in concert with PEG length and particle size. One-third of the small and stable micelles were detected in the blood 24 h after injection. While unstable micelles would be cleared from the circulation within 4 h. Notably, there would be a threshold of structural stability. Micelles with structural stability below this threshold were quickly cleared even if they possessed a longer PEG length and a smaller size. In contrast, higher structural stability allowed polymeric micelles to maintain higher integrity in vivo and enhance tumor accumulation and anti-tumor efficacy. In conclusion, this study systematically analyzed the importance of the structural stability of micelles on the in vivo fate.

摘要

胶束的各种特性,如 PEG 密度和粒径,被认为与血液清除有关。胶束的结构稳定性是另一个关键特性,它将影响体内命运。本研究采用荧光共振能量转移(FRET)分析来指导具有不同结构稳定性的聚合物胶束的制备。使用具有较长疏水嵌段的共聚物制备的胶束显示出更高的结构稳定性;与纳米沉淀相比,乳化是制备稳定胶束的更好方法。快速的链交换动力学和胶束核的高含水量解释了这些胶束低结构稳定性的原因。此外,本研究强调了结构稳定性的重要性,它与 PEG 长度和粒径一起影响血液清除。注射后 24 小时,有三分之一的小而稳定的胶束在血液中被检测到。而不稳定的胶束会在 4 小时内从循环中清除。值得注意的是,存在一个结构稳定性的阈值。即使具有更长的 PEG 长度和更小的尺寸,如果结构稳定性低于此阈值,胶束也会很快被清除。相比之下,更高的结构稳定性允许聚合物胶束在体内保持更高的完整性,并增强肿瘤积累和抗肿瘤功效。总之,本研究系统地分析了胶束结构稳定性对体内命运的重要性。

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