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首页> 外文期刊>Journal of Biomechanics >Tunable mechanical behavior of synthetic organogels as biofidelic tissue simulants
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Tunable mechanical behavior of synthetic organogels as biofidelic tissue simulants

机译:合成有机凝胶作为生物纤维组织模拟物的可调机械性能

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摘要

Solvent-swollen polymer gels can be utilized as mechanical simulants of biological tissues to evaluate protective systems and assess injury mechanisms. However, a key challenge in this application of synthetic materials is mimicking the rate-dependent mechanical response of complex biological tissues. Here, we characterize the mechanical behavior of tissue simulant gel candidates comprising a chemically crosslinked polydimethylsiloxane (PDMS) network loaded with a non-reactive PDMS solvent, and compare this response with that of tissue from murine heart and liver under comparable loading conditions. We first survey the rheological properties of a library of tissue simulant candidates to investigate the effects of solvent loading percentage, reactive functional group stoichiometry, and solvent molecular weight. We then quantify the impact resistance, energy dissipation capacities, and energy dissipation rates via impact indentation for the tissue simulant candidates, as well as for the murine heart and liver. We demonstrate that by tuning these variables the silicone gels can be engineered to match the impact response of biological tissues. These experiments inform the design principles required for synthetic polymer gels that are optimized to predict the response of specific biological tissues to impact loading, providing insight for further tuning of this gel system to match the impact response of other "soft tissues".
机译:溶胀的聚合物凝胶可用作生物组织的机械模拟物,以评估保护系统和评估损伤机制。然而,在合成材料的这种应用中的关键挑战是模仿复杂生物组织的速率依赖性机械反应。在这里,我们表征了包含模拟化学交联的聚二甲基硅氧烷(PDMS)网络的模拟人体凝胶候选物的机械行为,该网络负载了非反应性PDMS溶剂,并将该响应与小鼠心脏和肝脏在可比的负载条件下的组织响应进行了比较。我们首先调查组织模拟候选库的流变特性,以研究溶剂负载百分比,反应性官能团化学计量和溶剂分子量的影响。然后,我们通过组织模拟候选物以及小鼠心脏和肝脏的冲击压痕来量化其抗冲击性,能量耗散能力和能量耗散率。我们证明,通过调整这些变量,可以设计有机硅凝胶以匹配生物组织的撞击响应。这些实验为合成聚合物凝胶提供了所需的设计原理,该设计原理经过优化以预测特定生物组织对撞击负荷的反应,从而为进一步调节该凝胶系统以匹配其他“软组织”的撞击反应提供了见识。

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