IBMM , Univ Montpellier, CNRS, ENSCM , Montpellier 34093 CEDEX 5 , France.
Laboratory of Applied Chemistry (LAC), Faculty of Science III , Lebanese University , P.O. Box 826, Tripoli , Lebanon.
Biomacromolecules. 2020 Feb 10;21(2):397-407. doi: 10.1021/acs.biomac.9b01006. Epub 2019 Oct 16.
The use of double-hydrophilic block copolymers (DHBCs) in biomedical applications is limited by their lack of degradability. This additional functionality has been obtained in the past through multistep chemical strategies associated with low yields. In this work, a series of DHBCs composed of a bioeliminable poly(ethylene glycol) (PEG) block and hydrolyzable functional poly(ε-caprolactone) (PCL) blocks bearing carboxylic (PEG--PCL(COOH)), amino (PEG--PCL(NH)), or hydroxyl side groups (PEG--PCL(OH)) is synthesized in only three steps. DHBCs with 50% substitution degree with respect to the CL units are obtained for all functional groups. The pH-dependent self-assembly behavior of the DHBCs is studied showing critical micelle concentration (CMC) variations by a factor of 2 upon pH changes and micellar mean diameter variations of 20-30%. The potential of these partly degradable DHBCs as drug-loaded polyion complex micelles is further exemplified with the PEG--PCL(COOH) series that is associated with the positively charged anticancer drug doxorubicin (DOX). Encapsulation efficiencies, drug loadings, pH-controlled release, and cytotoxicity of the DOX-loaded micelles toward cancer cells are demonstrated. This set of data confirms the interest of the proposed straightforward chemical strategy to generate fully bioeliminable and partly degradable DHBCs with potential as pH-responsive drug-delivery systems.
在生物医学应用中,双亲嵌段共聚物 (DHBC) 的使用受到其缺乏降解性的限制。过去,通过与低产率相关的多步化学策略获得了这种额外的功能。在这项工作中,通过仅三步合成了一系列由可生物消除的聚乙二醇 (PEG) 嵌段和带有羧酸 (PEG-PCL(COOH))、氨基 (PEG-PCL(NH)) 或羟基侧基的可水解功能化聚 (ε-己内酯) (PCL) 嵌段组成的 DHBC。对于所有官能团,相对于 CL 单元的取代度为 50% 的 DHBC 都可以得到。研究了 DHBC 的 pH 依赖性自组装行为,结果表明,在 pH 变化时,临界胶束浓度 (CMC) 变化了 2 倍,胶束平均直径变化了 20-30%。通过将带正电荷的抗癌药物阿霉素 (DOX) 与 PEG-PCL(COOH) 系列结合,进一步说明了这些部分可降解的 DHBC 作为载药聚离子复合物胶束的潜力。对载 DOX 胶束的包封效率、载药量、pH 控制释放和对癌细胞的细胞毒性进行了研究。这组数据证实了所提出的直接化学策略生成完全可生物消除和部分可降解的 DHBC 的兴趣,这些 DHBC 具有作为 pH 响应性药物传递系统的潜力。