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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Human plasma gels: Their preparation and rheological characterization for cell culture applications in tissue engineering
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Human plasma gels: Their preparation and rheological characterization for cell culture applications in tissue engineering

机译:人血浆凝胶:组织工程中细胞培养应用的制备和流变特征

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Tissue engineering is one of the fields of clinical medicine that has forged ahead in recent years, especially because of its role as a potential alternative to organ transplantation. The main aim of this study has been the development of biocompatible materials to form extracellular matrix (ECM) structures in order to provide the necessary conditions for the settlement, proliferation and differentiation of dermal cells such as fibroblasts. To this end, human plasma gels were synthesized with the addition of increasing concentrations of transglutaminase (TGase), which catalyses the formation of covalent bonds between Lys and Glu residues. These materials were structurally characterized using rheology and texturometry and were found to have good structural resistance and elasticity for fibroblast culture. A remarkable improvement in the mechanical properties of the human plasma gels was detected when the two highest TGase concentrations were tested, which may be interpreted as an increase in the number of covalent and non-covalent bonds formed between the plasma protein chains. Furthermore, a human fibroblast primary culture was seeded on human plasma scaffolds and satisfactorily proliferated at 37?°C. This was verified in the images obtained by optical microscopy (OM) and by scanning electron microscopy (SEM), which confirmed that the structure of this type of material is suitable for the growth and proliferation of dermal fibroblasts.
机译:组织工程是近年来伪造的临床医学领域之一,特别是因为它作为器官移植的潜在替代品的作用。本研究的主要目的是发展生物相容性材料以形成细胞外基质(ECM)结构,以便为成纤维细胞如成纤维细胞的沉降,增殖和分化提供必要条件。为此,通过增加增加浓度的转谷氨酰胺酶(Tgase)来合成人血浆凝胶,其催化溶质和Glu残基之间的共价键的形成。这些材料使用流变和纹理测定法在结构上表征,并发现成纤维细胞培养具有良好的结构性抗性和弹性。当测试两个最高的Tgase浓度时,检测到人血浆凝胶的机械性能的显着改善,这可以被解释为在血浆蛋白链之间形成的共价和非共价键的数量的增加。此外,将人的成纤维细胞初级培养物接种在人血浆支架上,并在37℃下令人满意地增殖。这在通过光学显微镜(OM)获得的图像中并通过扫描电子显微镜(SEM)验证,这证实了这种类型的材料的结构适用于皮肤成纤维细胞的生长和增殖。

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