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Interactions between mesenchymal stem cells and T cells on a single cell level a nanowell array

机译:间充质干细胞与纳米叶片阵列上的间充质干细胞和T细胞之间的相互作用

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Mesenchymal stem cells (MSCs) have been thought to be a potential mode of therapy for immuno-related pathologies, particularly autoimmune diseases. Specifically, the ability to impart immunomodulatory effects on target inflammatory sites makes the use of MSCs particularly attractive for patients affected by taking immunosuppressive medicine, which works to downregulate the immune system on a systemic level. Despite its promises, the interaction between MSCs and T-cells, a key player in the pathophysiology of autoimmune diseases, is not yet well understood, thereby preventing further progress in the clinic. A major obstacle is the highly heterogeneous nature of MSCs in-vitro. Bulk assays commonly carried out discount the inherent heterogeneity, and thus do not provide information with regards to single-cell contributions that may play a critical role in the overall bulk response. To address these issues, we propose to study the single-cell interaction between MSCs and CD4 T cells in a nanowell array. Using the nanowell assay, we demonstrate that individual MSCs appear capable of dynamically modulating the T cell proliferation rate in response to persistent cell-cell interactions in a microenviroment. Based on these results, we anticipate the use of our nanowell assay in the classification of subpopulations within MSCs, ultimately leading to specific therapeutic interventions.
机译:间充质干细胞(MSCs)被认为是免疫相关病理学,特别是自身免疫疾病的潜在治疗模式。具体而言,赋予靶炎症部位免疫调节作用的能力使得使用MSCs对受免疫抑制药物影响影响的患者特别有吸引力,这有助于下调免疫系统在全身水平上。尽管其承诺,但自身免疫疾病病理生理学中的关键球员之间的MSC和T细胞之间的相互作用尚不顺利,从而防止临床进一步进展。主要障碍是体外MSCs的高度异质性质。批量分析通常进行固有的异质性折扣,因此不提供关于在整个批量响应中发挥关键作用的单细胞贡献的信息。为了解决这些问题,我们建议研究NANOWELL阵列中MSC和CD4 T细胞之间的单细胞相互作用。使用Nanowell测定,我们证明了各种MSCs能够响应于微血氧中的持续细胞细胞相互作用而动态调节T细胞增殖率。基于这些结果,我们预期我们的纳米尔测定在MSCs内群体的分类中的使用,最终导致特定的治疗干预措施。

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