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Sheep-Specific Immunohistochemical Panel for the Evaluation of Regenerative and Inflammatory Processes in Tissue-Engineered Heart Valves

机译:绵羊特异性免疫组化专家组用于评估组织工程心脏瓣膜的再生和炎症过程

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摘要

The creation of living heart valve replacements via tissue engineering is actively being pursued by many research groups. Numerous strategies have been described, aimed either at culturing autologous living valves in a bioreactor (in vitro) or inducing endogenous regeneration by the host via resorbable scaffolds (in situ). Whereas a lot of effort is being invested in the optimization of heart valve scaffold parameters and culturing conditions, the pathophysiological in vivo remodeling processes to which tissue-engineered heart valves are subjected upon implantation have been largely under-investigated. This is partly due to the unavailability of suitable immunohistochemical tools specific to sheep, which serves as the gold standard animal model in translational research on heart valve replacements. Therefore, the goal of this study was to comprise and validate a comprehensive sheep-specific panel of antibodies for the immunohistochemical analysis of tissue-engineered heart valve explants. For the selection of our panel we took inspiration from previous histopathological studies describing the morphology, extracellular matrix composition and cellular composition of native human heart valves throughout development and adult stages. Moreover, we included a range of immunological markers, which are particularly relevant to assess the host inflammatory response evoked by the implanted heart valve. The markers specifically identifying extracellular matrix components and cell phenotypes were tested on formalin-fixed paraffin-embedded sections of native sheep aortic valves. Markers for inflammation and apoptosis were tested on ovine spleen and kidney tissues. Taken together, this panel of antibodies could serve as a tool to study the spatiotemporal expression of proteins in remodeling tissue-engineered heart valves after implantation in a sheep model, thereby contributing to our understanding of the in vivo processes which ultimately determine long-term success or failure of tissue-engineered heart valves.
机译:许多研究小组积极地寻求通过组织工程技术来创建活体心脏瓣膜替代物。已经描述了许多策略,其旨在在生物反应器中培养自体活瓣膜(体外)或通过宿主通过可吸收支架(原位)诱导内源性再生。尽管在优化心脏瓣膜支架参数和培养条件上投入了大量精力,但组织工程化心脏瓣膜植入后所经历的病理生理学体内重塑过程尚未得到充分研究。部分原因是由于没有合适的羊专用免疫组织化学工具,该工具在心脏瓣膜置换的转化研究中成为金标准动物模型。因此,本研究的目的是包括和验证用于组织工程化心脏瓣膜外植体免疫组织化学分析的完整的绵羊特异性抗体组。对于我们小组的选择,我们从以前的组织病理学研究中得到启发,这些研究描述了整个发育和成年阶段天然人心脏瓣膜的形态,细胞外基质组成和细胞组成。此外,我们纳入了一系列免疫学标记,这些标记与评估植入的心脏瓣膜诱发的宿主炎症反应特别相关。在天然绵羊主动脉瓣的福尔马林固定石蜡包埋切片上测试了特异性识别细胞外基质成分和细胞表型的标记。在绵羊的脾脏和肾脏组织上测试了炎症和凋亡标记。综上所述,这组抗体可以用作研究在植入绵羊模型后重构组织工程性心脏瓣膜中蛋白质时空表达的工具,从而有助于我们对最终决定长期成功的体内过程的理解或组织工程性心脏瓣膜发生故障。

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