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聚(2-乙烯基-4,4-二甲基氮杂环丁酮)的后聚合修饰作为药物偶联和刺激响应释放的通用策略。

Postpolymerization Modification of Poly(2-vinyl-4,4-dimethyl azlactone) as a Versatile Strategy for Drug Conjugation and Stimuli-Responsive Release.

机构信息

Department of Biomedical Engineering, University of Mississippi, University, Mississippi 38677, United States.

Department of Chemical Engineering, University of Mississippi, University, Mississippi 38677, United States.

出版信息

Biomacromolecules. 2024 Apr 8;25(4):2621-2634. doi: 10.1021/acs.biomac.4c00181. Epub 2024 Mar 8.

Abstract

Postpolymerization modification of highly defined "scaffold" polymers is a promising approach for overcoming the existing limitations of controlled radical polymerization such as batch-to-batch inconsistencies, accessibility to different monomers, and compatibility with harsh synthesis conditions. Using multiple physicochemical characterization techniques, we demonstrate that poly(2-vinyl-4,4-dimethyl azlactone) (PVDMA) scaffolds can be efficiently modified with a coumarin derivative, doxorubicin, and camptothecin small molecule drugs. Subsequently, we show that coumarin-modified PVDMA has a high cellular biocompatibility and that coumarin derivatives are liberated from the polymer in the intracellular environment for cytosolic accumulation. In addition, we report the pharmacokinetics, biodistribution, and antitumor efficacy of a PVDMA-based polymer for the first time, demonstrating unique accumulation patterns based on the administration route (i.e., intravenous vs oral), efficient tumor uptake, and tumor growth inhibition in 4T1 orthotopic triple negative breast cancer (TNBC) xenografts. This work establishes the utility of PVDMA as a versatile chemical platform for producing polymer-drug conjugates with a tunable, stimuli-responsive delivery.

摘要

高度确定的“支架”聚合物的后聚合修饰是克服控制自由基聚合现有局限性的一种很有前途的方法,这些局限性包括批间不一致、对不同单体的可及性以及与苛刻的合成条件的兼容性。我们使用多种物理化学特性分析技术,证明聚(2-乙烯基-4,4-二甲基氮杂环丁酮)(PVDMA)支架可以有效地用香豆素衍生物、阿霉素和喜树碱小分子药物进行修饰。随后,我们表明香豆素修饰的 PVDMA 具有较高的细胞生物相容性,并且香豆素衍生物在细胞内环境中从聚合物中释放出来,在细胞质中积累。此外,我们首次报道了基于 PVDMA 的聚合物的药代动力学、生物分布和抗肿瘤功效,证明了基于给药途径(即静脉内给药与口服给药)的独特积累模式、高效的肿瘤摄取以及在 4T1 原位三阴性乳腺癌(TNBC)异种移植模型中的肿瘤生长抑制作用。这项工作确立了 PVDMA 作为一种多功能化学平台的实用性,可用于制备具有可调、刺激响应性的聚合物药物偶联物。

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