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首页> 外文期刊>Biomaterials >Controlled release from a mechanically-stimulated thermosensitive self-heating composite hydrogel
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Controlled release from a mechanically-stimulated thermosensitive self-heating composite hydrogel

机译:机械刺激的热敏自热复合水凝胶的控释

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Temperature has been extensively explored as a trigger to control the delivery of a payload from environment-sensitive polymers. The need for an external heat source only allows limited spatiotemporal control over the delivery process. We propose a new approach by using the dissipative properties of a hydrogel matrix as an internal heat source when the material is mechanically loaded. The system is comprised of a highly dissipative hydrogel matrix and thermo-sensitive nanoparticles that shrink upon an increase in temperature. Exposing the hydrogel to a cyclic mechanical loading for a period of 5min leads to an increase of temperature of the nanoparticles. The concomitant decrease in the volume of the nanoparticles increases the permeability of the hydrogel network facilitating the release of its payload. As a proof-of-concept, we showed that the payload of the hydrogel is released after 5-8min following the initiation of the mechanical loading. This delivery method would be particularly suited for the release of growth factor as it has been shown that cell receptor to growth factor is activated 5-20min following a mechanical loading.
机译:温度已被广泛探索,以控制环境敏感聚合物的有效载荷的输送。对外部热源的需求仅允许对输送过程进行有限的时空控制。当材料被机械加载时,我们提出了一种利用水凝胶基质的耗散特性作为内部热源的新方法。该系统由高度耗散的水凝胶基质和随温度升高而收缩的热敏纳米颗粒组成。将水凝胶暴露于周期性的机械载荷下5分钟会导致纳米颗粒温度升高。纳米颗粒的体积的随之减少增加了水凝胶网络的渗透性,从而促进了其有效载荷的释放。作为概念验证,我们显示了在机械加载开始后的5-8分钟后释放了水凝胶的有效载荷。该递送方法将特别适合于生长因子的释放,因为已经显示出在机械负荷后5-20分钟细胞对生长因子的受体被激活。

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