光接枝两性离子水凝胶薄膜的抗污染性能和机械性能取决于交联密度。

ty10086 提交于 周三, 08/25/2021 - 15:32
文章英文标题
Antifouling and Mechanical Properties of Photografted Zwitterionic Hydrogel Thin-Film Coatings Depend on the Cross-Link Density.
正文
两性离子聚合物网络将两性离子聚合物的防污性能与交联提供的力学稳定性结合起来,有望降低植入生物材料的短期和长期炎症性异物反应。交联密度直接调节力学性能(如溶胀行为、抗应力应变能力和润滑性),但理论上会降低两性离子材料的理想生物性能(如防污性)。本工作考察了不同聚乙二醇二甲基丙烯酸酯交联剂浓度对两性离子薄膜蛋白质吸附、细胞黏附、平衡溶胀、压缩模量和润滑性能的影响。此外,这项工作旨在确定每一种力学和生物学特性之间的适当平衡,以生产出既坚固、耐用、润滑又能抵抗生物污染的薄膜。结果表明,在聚二甲基硅氧烷( PDMS )上光接枝的两性离子薄膜上,纤维蛋白原吸附量在较宽的交联密度范围内降低了近20倍。有趣的是,无论在高交联密度还是低交联密度下,蛋白质吸附量都有增加的趋势。除纤维蛋白原外,两性离子薄膜上巨噬细胞与成纤维细胞的粘附力显著降低,交联密度范围较大,导致细胞计数较低。巨噬细胞计数减少30倍,而在接枝的两性离子膜上相对于未涂层膜,成纤维细胞计数减少近10倍。交联剂浓度超过50 %时,细胞粘附程度增加。正如预期的那样,增加的交联密度导致膨胀减小,但压缩模量增大。值得注意的是,与未涂层PDMS相比,两性离子薄膜的摩擦系数大大降低,跨越了广泛的交联密度,这是一种很有吸引力的植入特性。本工作确定了广泛的交联密度,在提供可取的防污效果的同时也保持了薄膜的机械功能。
文章内容(英文)
Zwitterionic polymer networks have shown promise in reducing the short- and long-term inflammatory foreign body response to implanted biomaterials by combining the antifouling properties of zwitterionic polymers with the mechanical stability provided by cross-linking. Cross-link density directly modulates mechanical properties (i.e., swelling behavior, resistance to stress and strain, and lubricity) but theoretically could reduce desirable biological properties (i.e., antifouling) of zwitterionic materials. This work examined the effect of varying poly(ethylene glycol) dimethacrylate cross-linker concentration on protein adsorption, cell adhesion, equilibrium swelling, compressive modulus, and lubricity of zwitterionic thin films. Furthermore, this work aimed to determine the appropriate balance among each of these mechanical and biologic properties to produce thin films that are strong, durable, and lubricious, yet also able to resist biofouling. The results demonstrated nearly a 20-fold reduction in fibrinogen adsorption on zwitterionic thin films photografted on polydimethylsiloxane (PDMS) across a wide range of cross-link densities. Interestingly, either at high or low cross-link densities, increased levels of protein adsorption were observed. In addition to fibrinogen, macrophage and fibroblast cell adhesion was reduced significantly on zwitterionic thin films, with a large range of cross-link densities, resulting in low cell counts. The macrophage count was reduced by 30-fold, while the fibroblast count was reduced nearly 10-fold on grafted zwitterionic films relative to uncoated films. Increasing degrees of cell adhesion were noted as the cross-linker concentration exceeded 50%. As expected, increased cross-link density resulted in a reduced swelling but greater compressive modulus. Notably, the coefficient of friction was dramatically reduced for zwitterionic thin films compared to uncoated PDMS across a broad range of cross-link densities, an attractive property for insertional implants. This work identified a broad range of cross-link densities that provide desirable antifouling effects while also maintaining the mechanical functionality of the thin films.
来源出处
Journal|[J]ACS Biomaterials Science & Engineering2021.
谷歌学术影响力
[db:学术影响力]
DOI
https://doi.org/10.1021/ACSBIOMATERIALS.1C00852

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产品颜色:保质期限:36个月

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备注说明:

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