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采用双功能单体制备用于抗癌药物递送的酸性 pH 可裂解聚合物。

Fabrication of Acidic pH-Cleavable Polymer for Anticancer Drug Delivery Using a Dual Functional Monomer.

机构信息

State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, and College of Chemistry and Chemical Engineering , Lanzhou University , Lanzhou , Gansu 730000 , China.

Department of Pharmaceutics, School of Pharmacy , Hubei University of Chinese Medicine , Wuhan , Hubei 430065 , China.

出版信息

Biomacromolecules. 2018 Sep 10;19(9):3874-3882. doi: 10.1021/acs.biomac.8b01001. Epub 2018 Aug 27.

Abstract

The preparation of tumor acidic pH-cleavable polymers generally requires tedious postpolymerization modifications, leading to batch-to-batch variation and scale-up complexity. To develop a facile and universal strategy, we reported in this study design and successful synthesis of a dual functional monomer, a-OEGMA that bridges a methacrylate structure and oligo(ethylene glycol) (OEG) units via an acidic pH-cleavable acetal link. Therefore, a-OEGMA integrates (i) the merits of commercially available oligo(ethylene glycol) monomethyl ether methacrylate (OEGMA) monomer, i.e., hydrophilicity for extracellular stabilization of particulates and a polymerizable methacrylate for adopting controlled living radical polymerization (CLRP), and (ii) an acidic pH-cleavable acetal link for efficiently intracellular destabilization of polymeric carriers. To demonstrate the advantages of a-OEGMA ( M = 500 g/mol) relative to the commercially available OEGMA ( M = 300 g/mol) for drug delivery applications, we prepared both acidic pH-cleavable poly(ε-caprolactone)- b-poly( a-OEGMA) (PCL- b-P( a-OEGMA)) and pH-insensitive analogues of PCL- b-P(OEGMA) with an almost identical molecular weight (MW) of approximately 5.0 kDa for the hydrophilic blocks by a combination of ring-opening polymerization (ROP) of ε-CL and subsequent atom transfer radical polymerization (ATRP) of a-OEGMA or OEGMA. The pH-responsive micelles self-assembled from PCL- b-P( a-OEGMA) showed sufficient salt stability, but efficient acidic pH-triggered aggregation that was confirmed by the DLS and TEM measurements as well as further characterizations of the products after degradation. In vitro drug release study revealed significantly promoted drug release at pH 5.0 relative to the release profile recorded at pH 7.4 due to the loss of colloidal stability and formation of micelle aggregates. The delivery efficacy evaluated by flow cytometry analyses and an in vitro cytotoxicity study in A549 cells further corroborated greater cellular uptake and cytotoxicity of Dox-loaded pH-sensitive micelles of PCL- b-P( a-OEGMA) relative to the pH-insensitive analogues of PCL- b-P(OEGMA). This study therefore presents a facile and robust means toward tumor acidic pH-responsive polymers as well as provides one solution to the trade-off between extracellular stability and intracellular high therapeutic efficacy of drug delivery systems using a novel monomer of a-OEGMA with dual functionalities.

摘要

肿瘤酸性 pH 可裂解聚合物的制备通常需要繁琐的聚合后修饰,这导致批间变化和扩大规模的复杂性。为了开发一种简便通用的策略,我们在本研究中设计并成功合成了一种双功能单体,即 a-OEGMA,它通过酸性 pH 可裂解的缩醛键将甲基丙烯酸酯结构和聚(乙二醇)(OEG)单元桥接起来。因此,a-OEGMA 集成了(i)市售的聚乙二醇单甲醚甲基丙烯酸酯(OEGMA)单体的优点,即亲水性,可稳定颗粒的细胞外环境,以及可聚合的甲基丙烯酸酯,可采用可控活性自由基聚合(CLRP),和(ii)酸性 pH 可裂解的缩醛键,可有效破坏聚合物载体的细胞内稳定性。为了证明相对于市售的 OEGMA(M = 300 g/mol),a-OEGMA(M = 500 g/mol)在药物传递应用中的优势,我们通过ε-CL 的开环聚合(ROP)和随后的原子转移自由基聚合(ATRP)制备了两种酸性 pH 可裂解的聚(ε-己内酯)-b-聚(a-OEGMA)(PCL-b-P(a-OEGMA))和 pH 不敏感的类似物聚(ε-己内酯)-b-聚(OEGMA),它们的亲水性嵌段的分子量(MW)几乎相同,约为 5.0 kDa。自组装的 pH 响应性胶束显示出足够的盐稳定性,但在酸性 pH 下会有效聚集,这通过 DLS 和 TEM 测量以及降解产物的进一步表征得到了证实。体外药物释放研究表明,由于胶体稳定性的丧失和胶束聚集的形成,在 pH 5.0 下的药物释放明显高于在 pH 7.4 下的释放曲线。通过流式细胞术分析和在 A549 细胞中的体外细胞毒性研究进一步证实,负载 Dox 的 pH 敏感胶束与 pH 不敏感的类似物聚(ε-己内酯)-b-聚(OEGMA)相比,具有更高的细胞摄取率和细胞毒性。因此,该研究提供了一种简便而强大的方法来制备肿瘤酸性 pH 响应性聚合物,并为使用新型双功能单体 a-OEGMA 解决药物传递系统的细胞外稳定性和细胞内高治疗效果之间的权衡问题提供了一种解决方案。

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