Structural characterization of recombinant humanized type III collagen cold gel and its effects on the biological functions of HaCaT cells

重组人源化III型胶原冷凝胶的结构表征及其对HaCaT细胞生物学功能的影响

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Abstract

Recombinant humanized collagen has been widely used in the biomedical field. This study focuses on the characterization of a novel recombinant humanized type III collagen cold gel (C3Gel). To verify the structural integrity of C3Gel and explore its in vitro cytocompatibility and potential biological applications, a multi-technique approach covering composition, structure, thermal properties, and morphology was employed to perform comprehensive structural analysis. In addition, in vitro biological functional assessments were conducted using cell-based assays. The results demonstrated that the molecular weight and structural sequence of C3Gel were consistent with theoretical expectations. Under low-temperature conditions, C3Gel self-crosslinked into a porous network structure and exhibited favorable cytocompatibility. It enhanced the microenvironment of the extracellular matrix (ECM) and offered substantial structural support to HaCaT cells, which in turn facilitated their adhesion, proliferation, and migration. These findings suggest that C3Gel holds promise as a novel functional biomedical material, providing a scientific basis for further research and application of this recombinant collagen.

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