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Differential Proteomic Analysis Predicts Appropriate Applications for the Secretome of Adipose-Derived Mesenchymal Stem/Stromal Cells and Dermal Fibroblasts

机译:差分蛋白质组学分析预测脂肪衍生的间充质茎/基质细胞和皮肤成纤维细胞的沉淀的适当应用

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The adult stem cell secretome is currently under investigation as an alternative to cell-based therapy in regenerative medicine, thanks to the remarkable translational opportunity and the advantages in terms of handling and safety. In this perspective, we recently demonstrated the efficient performance of the adipose-derived mesenchymal stem/stromal cell (ASC) secretome in contrasting neuroinflammation in a murine model of diabetic neuropathy, where the administration of factors released by dermal fibroblasts (DFs) did not exert any effect. Up to now, the complex mixture of the constituents of the conditioned medium from ASCs has not been fully deepened, although its appropriate characterization is required in the perspective of a clinical use. Herein, we propose the differential proteomic approach for the identification of the players accounting for the functional effects of the cell secretome with the aim to unravel its appropriate applications. Out of 967 quantified proteins, 34 and 62 factors were found preponderantly or exclusively secreted by ASCs and DFs, respectively. This approach led to the recognition of distinct functions related to the conditioned medium of ASCs and DFs, with the former being involved in the regulation of neuronal death and apoptosis and the latter in bone metabolism and ossification. The proosteogenic effect of DF secretome was validated in vitro on human primary osteoblasts, providing a proof of concept of its osteoinductive potential. Besides discovering new applications of the cell type-specific secretome, the proposed strategy could allow the recognition of the cocktail of bioactive factors which might be responsible for the effects of conditioned media, thus providing a solid rationale to the implementation of a cell-free approach in several clinical scenarios involving tissue regeneration.
机译:由于在处理和安全方面的显着翻译机会和优势,目前正在调查成人干细胞沉菌作为替代对细胞的治疗的替代方案。在这种观点中,我们最近证明了脂肪衍生的间充质茎/基质细胞(ASC)沉淀的有效性能在糖尿病神经病变的小鼠模型中的神经炎症中的神经炎炎症中,其中皮肤成纤维细胞(DFS)释放的因子施用不施加任何效果。到目前为止,从ASCS的调节培养基的成分的复杂混合物尚未完全加深,尽管在临床用途的角度来看需要其适当的表征。在此,我们提出了鉴定球员识别鉴定球员的差异蛋白质组学方法,其目的是解开其适当的应用。在967个中,分别发现34和62个因素分别由ASC和DFS分别分别发现或完全分泌。这种方法导致识别与ASCS和DFS的条件培养基相关的不同功能,前者参与了神经元死亡和凋亡的调节以及后者在骨代谢和骨化中。 DF沉淀的前素源在人原发性成骨细胞上进行了验证,提供了其骨诱导潜力的概念概念。除了发现细胞类型特定秘密的新应用外,拟议的策略还可以允许识别生物活性因素的鸡尾酒,这可能负责条件介质的影响,从而为实施无细胞方法的实施提供了坚实的理由在几种涉及组织再生的临床情景中。

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