首页> 美国卫生研究院文献>Journal of Stem Cells Regenerative Medicine >Neural stem/progenitor cells maintained in vitro under different culture conditions alter differentiation capacity of monocytes to generate dendritic cells
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Neural stem/progenitor cells maintained in vitro under different culture conditions alter differentiation capacity of monocytes to generate dendritic cells

机译:在不同培养条件下体外维持的神经干/祖细胞会改变单核细胞的分化能力从而产生树突状细胞

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摘要

Cell therapy of the nervous system disorders using neural stem/progenitor cells (NSPCs) proved its efficacy in preclinical and pilot clinical studies. The mechanisms of the beneficial effects of NSPCs transplantation include replacement of damaged cells, paracrine activation of the regeneration, and immunomodulation. Detailed assessment of NSPCs-induced immunomodulation can contribute to better control of autoimmune reactions and inflammation in patients with neurodegenerative diseases. Interactions of NSPCs with dendritic cells (DCs), the key players in the induction of the immune system response to antigens are of particular interest. Here, we demonstrate that co-culturing of monocytes with NSPCs obtained and grown utilizing serum-containing medium instead of growth factor-containing serum-free medium, results in total suppression of monocyte differentiation into DCs. The effect is similar to the action of mesenchymal stem cells (MSCs). No significant effect on DCs maturation was observed. Cultures of NSPCs set up and maintained in serum-free medium have no influence on monocyte differentiation and DCs maturation. Therefore, the effects of NSPCs upon DC differentiation from monocytes strongly depend on culture conditions, whereas the molecular marker expression patterns are similar in both types of NSPCs cultures. In broader prospective, it means that cells with almost identical phenotypes can display opposite immunological properties depending upon culture conditions. It should be taken into account when developing NSPCs-based cell products for regenerative medicine.
机译:使用神经干/祖细胞(NSPC)对神经系统疾病进行细胞疗法证明了其在临床前和临床试验研究中的功效。 NSPC移植有益作用的机制包括受损细胞的置换,再生的旁分泌激活和免疫调节。 NSPCs诱导的免疫调节的详细评估可以有助于更好地控制神经退行性疾病患者的自身免疫反应和炎症。 NSPC与树突状细胞(DC)的相互作用是树突状细胞(DC)的相互作用,树突状细胞是诱导免疫系统对抗原反应的关键因素。在这里,我们证明了单核细胞与使用含血清培养基而不是含生长因子的无血清培养基获得并生长的NSPCs共同培养,可完全抑制单核细胞分化为DC。该作用类似于间充质干细胞(MSC)的作用。没有观察到对DCs成熟的显着影响。在无血清培养基中建立和维持的NSPCs培养物对单核细胞分化和DCs成熟没有影响。因此,NSPC对单核细胞DC分化的​​影响很大程度上取决于培养条件,而分子标记物的表达模式在两种类型的NSPC培养中都是相似的。从更广阔的前景来看,这意味着具有几乎相同表型的细胞可以根据培养条件显示相反的免疫学特性。在开发基于NSPC的再生医学细胞产品时应考虑到这一点。

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