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Humanized Mouse Model for Assessing the Human Immune Response to Xenogeneic and Allogeneic Decellularized Biomaterials

机译:用于评估人类对异种和同种异源脱细胞生物材料的免疫反应的人性化小鼠模型。

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摘要

Current assessment of biomaterial biocompatibility is typically implemented in wild type rodent models. Unfortunately, different characteristics of the immune systems in rodents versus humans limit the capability of these models to mimic the human immune response to naturally derived biomaterials. Here we investigated the utility of humanized mice as an improved model for testing naturally derived biomaterials. Two injectable hydrogels derived from decellularized porcine or human cadaveric myocardium were compared. Three days and one week after subcutaneous injection, the hydrogels were analyzed for early and mid-phase immune responses, respectively. Immune cells in the humanized mouse model, particularly T-helper cells, responded distinctly between the xenogeneic and allogeneic biomaterials. The allogeneic extracellular matrix derived hydrogels elicited significantly reduced total, human specific, and CD4+ T-helper cell infiltration in humanized mice compared to xenogeneic extracellular matrix hydrogels, which was not recapitulated in wild type mice. T-helper cells, in response to the allogeneic hydrogel material, were also less polarized towards a pro-remodeling Th2 phenotype compared to xenogeneic extracellular matrix hydrogels in humanized mice. In both models, both biomaterials induced the infiltration of macrophages polarized towards a M2 phenotype and T-helper cells polarized towards a Th-2 phenotype. In conclusion, these studies showed the importance of testing naturally derived biomaterials in immune competent animals and the potential of utilizing this humanized mouse model for further studying human immune cell responses in an in vivo environment.
机译:当前对生物材料生物相容性的评估通常在野生型啮齿动物模型中进行。不幸的是,啮齿动物与人类的免疫系统的不同特征限制了这些模型模仿人类对天然来源的生物材料的免疫反应的能力。在这里,我们研究了人源化小鼠作为测试天然来源生物材料的改良模型的实用性。比较了两种来自脱细胞猪或人尸体心肌的可注射水凝胶。皮下注射后三天和一周,分别分析水凝胶的早期和中期免疫反应。人源化小鼠模型中的免疫细胞,特别是T辅助细胞,在异种和同种生物材料之间有明显反应。与异源细胞外基质水凝胶相比,同种异体细胞外基质衍生的水凝胶与未在野生型小鼠中概括的异源细胞外基质水凝胶相比,在人源化小鼠中引起的总,人特异性和CD4 + T辅助细胞浸润明显减少。与异源细胞外基质水凝胶相比,对同种异体水凝胶材料响应的T辅助细胞与异型细胞外基质水凝胶相比,极化程度也较小。在这两种模型中,两种生物材料均诱导了向M2型极化的巨噬细胞的浸润和向Th-2型极化的T辅助细胞的浸润。总之,这些研究表明在免疫能力强的动物中测试天然来源的生物材料的重要性,以及利用这种人源化的小鼠模型进一步研究体内环境中人类免疫细胞反应的潜力。

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