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聚合物主链化学对氨基酸衍生两性离子聚合物与细胞相互作用的影响。

Impact of the polymer backbone chemistry on interactions of amino-acid-derived zwitterionic polymers with cells.

作者信息

Leiske Meike N, De Geest Bruno G, Hoogenboom Richard

机构信息

Supramolecular Chemistry Group, Centre of Macromolecular Chemistry (CMaC), Department of Organic and Macromolecular Chemistry, Ghent University, Krijgslaan 281 S4, B-9000, Ghent, Belgium.

Department of Pharmaceutics and Cancer Research Institute Ghent (CRIG), Ghent University, Ottergemsesteenweg 460, B-9000, Ghent, Belgium.

出版信息

Bioact Mater. 2023 Jan 10;24:524-534. doi: 10.1016/j.bioactmat.2023.01.005. eCollection 2023 Jun.

Abstract

Zwitterionic polymers are known to interact with cells and have been shown to reveal cancer cell specificity. In this work, the importance of the chemistry of the polymer backbone for the cellular specificity of amino-acid-derived polyzwitterions is demonstrated. A series of glutamic acid (Glu)-based vinyl monomers (, an acrylate, a methacrylate, an acrylamide, and a methacrylamide) were prepared and used for reversible addition-fragmentation chain-transfer (RAFT) polymerisation, yielding defined polymers with narrow size distribution (Р< 1.3). All Glu-functionalised, zwitterionic polymers revealed high cytocompatibility; however, differences in cellular association and specificity were observed. In particular, the methacrylamide-derived polymers showed high association with both, breast cancer cells and non-cancerous dendritic cells and, consequently, lack specificity. In contrast, high specificity to only breast cancer cells was observed for polyacrylates, -methacrylates, and -acrylamides. Detailed analysis of the polymers revealed differences in hydrophobicity, zeta potential, and potential side chain hydrolysis, which are impacted by the polymer backbone and might be responsible for the altered the cell association of these polymers. It is shown that a slightly negative net charge is preferred over a neutral charge to retain cell specificity. This was also confirmed by association experiments in the presence of competitive amino acid transporter substrates. The affinity of slightly negatively charged Glu-derived polymers to the xCT Glu/cystine cell membrane antiporter was found to be higher than that of neutrally charged polymers. Our results emphasise the importance of the polymer backbone for the design of cell-specific polymers. This study further highlights the potential to tailor amino-acid-derived zwitterionic materials beyond their side chain functionality.

摘要

已知两性离子聚合物可与细胞相互作用,并已显示出对癌细胞的特异性。在这项工作中,证明了聚合物主链化学性质对氨基酸衍生的聚两性离子细胞特异性的重要性。制备了一系列基于谷氨酸(Glu)的乙烯基单体(一种丙烯酸酯、一种甲基丙烯酸酯、一种丙烯酰胺和一种甲基丙烯酰胺),并用于可逆加成-断裂链转移(RAFT)聚合反应,得到尺寸分布窄(Ð<1.3)的确定聚合物。所有Glu功能化的两性离子聚合物都显示出高细胞相容性;然而,观察到细胞结合和特异性存在差异。特别是,甲基丙烯酰胺衍生的聚合物与乳腺癌细胞和非癌性树突状细胞都有高度结合,因此缺乏特异性。相比之下,聚丙烯酸酯、聚甲基丙烯酸酯和聚丙烯酰胺对仅乳腺癌细胞具有高特异性。对聚合物的详细分析揭示了疏水性、zeta电位和潜在侧链水解的差异,这些受聚合物主链影响,可能是这些聚合物细胞结合改变的原因。结果表明,略带负电荷的净电荷比中性电荷更有利于保持细胞特异性。在竞争性氨基酸转运底物存在下的结合实验也证实了这一点。发现略带负电荷的Glu衍生聚合物对xCT Glu/胱氨酸细胞膜反向转运体的亲和力高于中性电荷聚合物。我们的结果强调了聚合物主链对细胞特异性聚合物设计的重要性。这项研究进一步突出了超越其侧链功能定制氨基酸衍生两性离子材料的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42d2/9860433/25020a753a2a/ga1.jpg

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