Formulation of the Polymeric Double Networks (DNs) for Biomedical Applications with Physicochemical Properties to Resemble a Biological Tissue

Prutha Joshi, Md Shakir Uddin Ahmed, K. Vig, M. Auad
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Abstract

Single-network hydrogels can have an internal porous structure and biocompatibility, but have lower mechanical properties. Combining these properties with another biocompatible and mechanically strong network can help in mimicking the extracellular matrix of native tissues to make them suitable for tissue scaffolds with desired performance. In the current objective, we combine the properties of poly (ethylene glycol) dimethacrylate (PEGDMA) macromer and polysaccharides as the two components in double networks (DN) for synergistic effects of both components resulting in the interpenetrating polymeric network for making it functional for replacement of injured tissues. The hydrogels were characterized by physical properties like swelling ratio, mechanical properties like tensile and compressive modulus, and rheological behavior. The chemical composition was studied using Fourier transform infrared spectroscopy (FTIR), and the thermal behavior using differential scanning calorimetry (DSC) experiments. Biodegradability and mechanical strength both are gained using double networks (DN), thus making it resemble more like living tissues. DN hydrogels were tested for cell compatibility for possible application in tissue engineering. Furthermore, these properties may allow their application as tissue-engineered scaffolds.
具有类似生物组织的物理化学性质的生物医学应用的聚合物双网络(DNs)的配方
单网水凝胶具有内部多孔结构和生物相容性,但力学性能较低。将这些特性与另一种具有生物相容性和机械强度的网络相结合,可以帮助模拟天然组织的细胞外基质,使其适合于具有所需性能的组织支架。在当前的目标中,我们将聚乙二醇二甲基丙烯酸酯(PEGDMA)大分子和多糖的性质结合起来,作为双网络(DN)中的两种成分,以实现两种成分的协同作用,从而形成互穿聚合物网络,使其具有替代受损组织的功能。表征水凝胶的物理性能如膨胀比,力学性能如拉伸和压缩模量,以及流变行为。用傅里叶红外光谱(FTIR)研究了其化学成分,用差示扫描量热(DSC)实验研究了其热行为。生物降解性和机械强度都是通过双网络(DN)获得的,从而使其更像活组织。对DN水凝胶进行了细胞相容性测试,以期在组织工程中应用。此外,这些特性可能允许它们作为组织工程支架的应用。
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