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首页> 外文期刊>Biomaterials Science >Silica microsphere-resorcinol composite embedded collagen scaffolds impart scar-less healing of chronic infected burns in type-I diabetic and non-diabetic rats
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Silica microsphere-resorcinol composite embedded collagen scaffolds impart scar-less healing of chronic infected burns in type-I diabetic and non-diabetic rats

机译:二氧化硅微球体复合嵌入式胶原蛋白脚手架赋予脂肪感染燃烧的疤痕愈合 - I型糖尿病和非糖尿病大鼠

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摘要

The existence of diabetes and microbial infection in burn wounds makes the healing process more complex. Herein, we synthesize a collagen based hybrid scaffold incorporated with a silica-resorcinol composite and cross-linked with an oxidized fenugreek seed polysaccharide to stimulate scar-less healing in chronic wounds with type-I diabetes and microbial infection. The spectroscopic analyses of the hybrid scaffolds reveal the chemical and structural integrity of collagen. The hybrid scaffolds are shown to be appropriate for in vivo tissue regeneration through cytocompatibility and hemocompatibility studies. Scaffolds were applied to diabetic albino rats induced with chronically infected burn wounds with respective controls. Histological and immunohistochemical analyses of the granulation tissue collected from the hybrid scaffold treated animal groups showed improved angiogenesis, reepithelialization and TGF-beta 3 expression, which eventually led to scar-less wound healing. The results confirm that the prepared hybrid collagen scaffold could be used for effective scar-less wound healing in chronic burn wounds.
机译:燃烧伤口中糖尿病和微生物感染的存在使愈合过程更复杂。在此,我们合成基于胶原蛋白的杂交支架,其与二氧化硅 - 芳啶醇复合材料掺入并与氧化的Fenugreek种子多糖交联,以刺激I型糖尿病和微生物感染的慢性伤口中的疤痕愈合。杂交支架的光谱分析揭示了胶原蛋白的化学和结构完整性。杂交支架被证明是通过细胞组织和血液相容性研究的体内组织再生。将支架应用于糖尿病白化大鼠诱导的糖尿病白化大鼠,其具有相应的对照的慢性感染的烧伤伤口。杂交支架处理动物组收集的造粒组织的组织学和免疫组织化学分析显示出改善的血管生成,再次精细化和TGF-β3表达,最终导致伤口愈合较少。结果证实,制备的杂交胶原支架可用于慢性烧伤伤口中的有效瘢痕伤的伤口愈合。

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