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Yielding Behavior in Injectable Hydrogels from Telechelic Proteinsud

机译:遥螯蛋白可注射水凝胶的屈服行为 ud

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摘要

Injectable hydrogels show substantial promise for use in minimally invasive tissue engineering and drug delivery procedures. A new injectable hydrogel material, developed from recombinant telechelic proteins expressed in E. coli, demonstrates shear thinning by 3 orders of magnitude at large strains. Large-amplitude oscillatory shear illustrates that shear thinning is due to yielding within the bulk of the gel, and the rheological response and flow profiles are consistent with a shear-banding mechanism for yielding. The sharp yielding transition and large magnitude of the apparent shear thinning allow gels to be injected through narrow gauge needles with only gentle hand pressure. After injection the gels reset to full elastic strength in seconds due to rapid re-formation of the physical network junctions, allowing self-supporting structures to be formed. The shear thinning and recovery behavior is largely independent of the midblock length, enabling genetic engineering to be used to control the equilibrium modulus of the gel without loss of the characteristic yielding behavior. The shear-banding mechanism localizes deformation during flow into narrow regions of the gels, allowing more than 95% of seeded cells to survive the injection process.ud
机译:可注射的水凝胶在微创组织工程和药物输送过程中显示出巨大的希望。由大肠杆菌中表达的重组远螯蛋白开发的一种新型可注射水凝胶材料,在大菌株中显示出剪切稀化了3个数量级。大振幅振荡剪切表明,剪切稀化是由于凝胶主体中的屈服所致,流变响应和流动特性与剪切带机制相符。急剧的屈服过渡和表观剪切变稀的大幅度变化,使凝胶仅需轻柔地通过手即可通过窄口径的针头注入。注射后,由于物理网络连接的快速重新形成,凝胶在几秒钟内恢复了全弹性强度,从而形成了自支撑结构。剪切稀化和恢复行为在很大程度上与中间嵌段长度无关,从而使基因工程可用于控制凝胶的平衡模量,而不会损失特征屈服行为。剪切带机制可在流入凝胶狭窄区域的过程中定位变形,从而使95%以上的接种细胞得以幸免于注射过程。

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