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Comparative Investigation of Collagen-Based Hybrid 3D Structures for Potential Biomedical Applications

机译:基于胶原的混合3D结构对潜在生物医学应用的比较研究

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摘要

Collagen is a key component for devices envisaging biomedical applications; however, current increasing requirements impose the use of multicomponent materials. Here, a series of hybrid collagen-based 3D materials, comprising also poly(ε-caprolactone) (PCL) and different concentrations of hyaluronic acid (HA)—in dense, porous or macroporous form—were characterized in comparison with a commercially available collagen sponge, used as control. Properties, such as water uptake ability, water vapour sorption, drug loading and delivery, were investigated in correlation with the material structural characteristics (composition and morphology). Methylene blue (MB) and curcumin (CU) were used as model drugs. For spongeous matrices, it was evidenced that, in contrast to the control sample, the multicomponent materials favor improved sustained release, the kinetics being controlled by composition and cross-linking degree. The other characteristics were within an acceptable range for the intended purpose of use. The obtained results demonstrate that such materials are promising for future biomedical applications (wound dressings and lab models).
机译:胶原蛋白是设想生物医学应用程序的设备的关键组件;然而,电流越来越多的要求施加了多组分材料的使用。这里,与商业上有胶原相比,一系列基于杂种胶原基3D材料,包括聚(ε-己内酯)(PCL)和不同浓度的透明质酸(HA) - 致密的,多孔的或大孔形式海绵,用作控制。在与材料结构特征(组成和形态)相关的相关性中,研究了水蒸汽吸附,药物载荷和递送等性质。将亚甲基蓝(MB)和姜黄素(Cu)用作模型药物。对于高潮基质,证明,与对照样品相比,多组分材料有利于改善的持续释放,通过组成和交联度控制动力学。其他特征在使用目的的使用范围内。所获得的结果表明,这些材料对未来的生物医学应用(伤口敷料和实验室模型)很有意义。

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