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A pore way to heal and regenerate: 21st century thinking on biocompatibility

机译:一种治愈和再生的毛孔方法:21世纪的生物相容性思考

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摘要

This article raises central questions about the definition of biocompatibility, and also about how we assess biocompatibility. We start with the observation that a porous polymer where every pore is spherical, ∼40 microns in diameter and interconnected, can heal into vascularized tissues with little or no fibrosis and good restoration of vascularity (i.e., little or no foreign body reaction). The same polymer in solid form will trigger the classic foreign body reaction characterized by a dense, collagenous foreign body capsule and low vascularity. A widely used definition of biocompatibility is ‘the ability of a material to perform with an appropriate host response in a specific application’. With precision-porous polymers, in direct comparison with the same polymer in solid form, we have the same material, in the same application, with two entirely different biological reactions. Can both reactions be ‘biocompatible?’ This conundrum will be elaborated upon and proposals will be made for future considerations and measurement of biocompatibility.
机译:本文提出了有关生物相容性定义以及我们如何评估生物相容性的核心问题。我们首先观察到,每个孔都是球形的,直径约40微米且相互连接的多孔聚合物可以治愈进入血管化组织,几乎没有纤维化,并且血管恢复良好(即很少或没有异物反应)。固体形式的相同聚合物将触发经典的异物反应,其特征是致密的胶原异物囊和低血管。生物相容性的一个广泛使用的定义是“材料在特定应用中具有适当宿主反应的能力”。对于精密多孔聚合物,直接与固体形式的相同聚合物进行比较,我们可以在相同的应用中使用相同的材​​料,进行两个完全不同的生物学反应。两种反应都可以是“生物相容性的”吗?将阐述这个难题,并提出建议以供将来考虑和衡量生物相容性。

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