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Tunable Bioadhesive Copolymer Hydrogels of Thermoresponsive Poly(N-isopropyl acrylamide) Containing Zwitterionic Polysulfobetaine

机译:含两性离子聚磺基甜菜碱的热敏性聚(N-异丙基丙烯酰胺)可调性生物胶黏剂共聚物水凝胶

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This work describes a novel tunable bioadhesive hydrogel of thermoresponsive N-isopropylacrylamide (NIPAAm) containing zwitterionic sulfobetaine methacrylate (SBMA). This novel hydrogel highly regulates general bioadhesive foulants through the adsorption of plasma proteins, the adhesion of human platelets and cells, and the attachment of bacteria. In this investigation, nonionic hydrogels of polyNIPAAm, zwitterionic hydrogels of polySBMA, and three copolymeric hydrogels of NIPAAm and SBMA (poly(NIPAAm-co-SBMA)) were prepared. The copolymeric hydrogels exhibited controllable temperature-dependent swelling behaviors and showed stimuli-responsive phase characteristics in the presence of salts. The interactions of these hydrogels with biomolecules and microorganisms were demonstrated by protein adsorption, cell adhesion, and bacterial attachment, which allowed us to evaluate their bioadhesive properties. An enzyme-linked immunosorbent assay (ELISA) with monoclonal antibodies was used to measure different plasma protein adsorptions on the prepared hydrogel surfaces. At a physiological temperature, the high content of the nonionic polyNIPAAm in poly(NIPAAm-co-SBMA) hydrogel exhibits a high protein adsorption due to the interfacial exposure of polyNIPAAm-rich hydrophobic domains. A relatively high content of polySBMA in poly (NIP A Am-co-SBM A) hydrogel exhibits reduced amounts of protein adsorption due to the interfacial hydration of polySBMA-rich hydrophilic segments. The attachment of platelets and the spreading of cells were only observed on polyNIPAAm-rich hydrogel surfaces. Interestingly, the incorporation of zwitterionic SBMA units into the polyNIPAAm gels was found to accelerate the hydration of the cell-cultured surfaces and resulted in more rapid cell detachment. Such copolymer gel surface was shown to be potentially useful for triggered cell detachment. In addition, the interactions of hydrogels with bacteria were also evaluated. The polySBMA-rich hydrogels exhibited evident antimicrobial properties when they were incubated with Gram-positive bacteria (S. epidermidis) and Gram-negative bacteria (E. coli). This work shows that the bioadhesive properties of poly(NlPAAm-co-SBMA) hydrogels can be effectively controlled via regulated nonionic and zwitterionic molar mass ratios. The tunable-bioadhesive behavior of temperature-sensitive poly(NIPAAm-co-SBMA) makes this biocompatible hydrogel appropriate for biomedical applications.
机译:这项工作描述了一种新型的可调热生物反应性的水敏性N-异丙基丙烯酰胺(NIPAAm)的生物胶水凝胶,其中包含两性离子磺基甜菜碱甲基丙烯酸酯(SBMA)。这种新颖的水凝胶通过血浆蛋白的吸附,人类血小板和细胞的粘附以及细菌的附着来高度调节一般的生物粘附性污垢。在这项研究中,制备了聚NIPAAm的非离子水凝胶,聚SBMA的两性离子水凝胶以及NIPAAm和SBMA的三种共聚水凝胶(聚(NIPAAm-co-SBMA))。在盐存在下,共聚水凝胶显示出可控制的温度依赖性溶胀行为,并显示出刺激响应相特征。这些水凝胶与生物分子和微生物的相互作用通过蛋白质吸附,细胞粘附和细菌附着得以证明,这使我们能够评估它们的生物粘附特性。具有单克隆抗体的酶联免疫吸附测定(ELISA)用于测量制备的水凝胶表面上不同的血浆蛋白吸附。在生理温度下,由于富含聚NIPAAm的疏水域的界面暴露,聚(NIPAAm-co-SBMA)水凝胶中非离子型聚NIPAAm的含量高,显示出较高的蛋白质吸附能力。由于富含聚SBMA的亲水链段的界面水合,在聚(NIP A Am-co-SBM A)水凝胶中相对较高含量的polySBMA表现出减少的蛋白质吸附量。血小板的附着和细胞的扩散仅在富含polyNIPAAm的水凝胶表面上观察到。有趣的是,发现将两性离子SBMA单元并入polyNIPAAm凝胶中可加速细胞培养表面的水合作用,并导致更快速的细胞分离。这种共聚物凝胶表面显示出可用于触发细胞分离。另外,还评估了水凝胶与细菌的相互作用。当富含polySBMA的水凝胶与革兰氏阳性细菌(表皮葡萄球菌)和革兰氏阴性细菌(大肠杆菌)一起孵育时,表现出明显的抗菌性能。这项工作表明,可通过调节非离子和两性离子摩尔质量比来有效控制聚(NlPAAm-co-SBMA)水凝胶的生物粘附性能。温度敏感型聚(NIPAAm-co-SBMA)的可调节生物粘附性能使这种生物相容性水凝胶适用于生物医学应用。

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