首页> 外文期刊>ACS applied materials & interfaces >In Situ 'Clickable' Zwitterionic Starch-Based Hydrogel for 3D Cell Encapsulation
【24h】

In Situ 'Clickable' Zwitterionic Starch-Based Hydrogel for 3D Cell Encapsulation

机译:用于3D细胞封装的原位“可点击”两性离子淀粉基水凝胶

获取原文
获取原文并翻译 | 示例
       

摘要

Three-dimensional (3D) cell encapsulation in hydrogel provides superb methods to investigate the biochemical cues in directing cellular fate and behaviors outside the organism, the primary step of which is to establish suitable "blank platform" to mimic and simplify native ECM microenvironment. In this study, zwitterionic starch-based "clickable" hydrogels were fabricated via a "copper- and light-free" Michael-type "thiol-ene" addition reaction between acylated-modified sulfobetaine-derived starch (SB-ST-A) and dithiol-functionalized poly(ethylene glycol) (PEG-SH). By incorporating antifouling SB-ST and PEG, the hydrogel system would be excellently protected from nontarget protein adsorption to act as a "blank platform". The hydrogels could rapidly gel under physiological conditions in less than 7 min. Dynamic rheology experiments suggested the stiffness of the hydrogel was close to the native tissues, and the mechanical properties as well as the gelation times and swelling behaviors could be easily tuned by varying the precursor proportions. The protein and cell adhesion assays demonstrated that the hydrogel surface could effectively resist nonspecific protein and cell adhesion. The degradation study in vitro confirmed that the hydrogel was biodegradable. A549 cells encapsulated in the hydrogel maintained high viability (up to 93%) and started to proliferate in number and extend in morphology after 2 days' culture. These results indicated the hydrogel presented here could be a potential candidate as "blank platform" for 3D cell encapsulation and biochemical cues induced cellular behavior investigation in vitro.
机译:水凝胶中的三维(3D)细胞封装提供了极好的方法来研究生物化学线索以指导生物体内的细胞命运和行为,其主要步骤是建立合适的“空白平台”以模仿和简化天然ECM微环境。在这项研究中,两性离子淀粉基的“可点击”水凝胶是通过酰化改性的磺基甜菜碱衍生的淀粉(SB-ST-A)与“无铜和无光”迈克尔型“硫醇-烯”加成反应制备的。二硫醇官能化的聚乙二醇(PEG-SH)。通过结合防污剂SB-ST和PEG,可以很好地保护水凝胶体系免受非目标蛋白质的吸附,从而起到“空白平台”的作用。水凝胶可在不到7分钟的生理条件下迅速凝胶化。动态流变学实验表明,水凝胶的刚度接近天然组织,并且可以通过改变前体的比例来容易地调节机械性能以及胶凝时间和溶胀行为。蛋白质和细胞粘附测定表明水凝胶表面可以有效抵抗非特异性蛋白质和细胞粘附。体外降解研究证实了水凝胶是可生物降解的。培养2天后,包裹在水凝胶中的A549细胞保持高存活率(高达93%),并开始增殖并扩展形态。这些结果表明,此处提出的水凝胶可能是3D细胞封装和生化线索诱导的体外细胞行为研究的“空白平台”的潜在候选者。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号