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首页> 外文期刊>Macromolecular materials and engineering >Characterization of Polyethylene Glycol–Reinforced Alginate Microcapsules for Mechanically Stable Cell Immunoisolation
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Characterization of Polyethylene Glycol–Reinforced Alginate Microcapsules for Mechanically Stable Cell Immunoisolation

机译:对聚乙烯Glycol-Reinforced藻酸盐微胶囊机械稳定细胞Immunoisolation

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摘要

Abstract Islet transplantation within mechanically stable microcapsules offers the promise of long‐term diabetes reversal without chronic immunosuppression. Reinforcing the ionically gelled network of alginate (ALG) hydrogels with covalently linked polyethylene glycol (PEG) may create hybrid structures with desirable mechanical properties. This report describes the fabrication of hybrid PEG‐ALG interpenetrating polymer networks and the investigation of microcapsule swelling, surface modulus, rheology, compression, and permeability. It is demonstrated that hybrid networks are more resistant to bulk swelling and compressive deformation and display improved shape recovery and long‐term resilience. Interestingly, it is shown that PEG‐ALG networks behave like ALG during microscale surface deformation and small amplitude shear while exhibiting similar permeability properties. The results from this report's in vitro characterization are interpreted according to viscoelastic polymer theory and provide new insight into hybrid hydrogel mechanical behavior. This new understanding of PEG‐ALG mechanical performance is then linked to previous work that demonstrated the success of hybrid polymer immunoisolation devices in vivo.
机译:<标题在机械稳定的移植微胶囊提供长期的承诺糖尿病没有逆转慢性免疫抑制。稠化的海藻酸(ALG)水凝胶网络共价相连的聚乙二醇(PEG)创建混合结构和可取的机械性能。制造的混合挂钩ALG渗透聚合物网络和调查微胶囊肿胀,表面模量、流变学压缩和渗透率。混合网络更耐散装肿胀和压缩变形和显示改进的形状恢复和长期弹性。有趣的是,结果表明,盯住ALG网络像在ALG微尺度表面变形和小振幅剪切表现出类似的渗透特性。从这个报告的体外结果根据特征解读粘弹性聚合物和提供新的理论了解混合水凝胶力学行为。这个新的挂钩ALG应承担的机械的理解然后与以前的工作性能证明了混合聚合物的成功immunoisolation设备体内。

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