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Signal Factors Secreted by 2D and Spheroid Mesenchymal Stem Cells and by Cocultures of Mesenchymal Stem Cells Derived Microvesicles and Retinal Photoreceptor Neurons

机译:由2D和球状间充质干细胞分泌的信号因子和间充质干细胞的共培养物衍生的微泡和视网膜感光体神经元

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We aim to identify levels of signal factors secreted by MSCs cultured in 2D monolayers (2D-MSCs), spheroids (spheroids MSCs), and cocultures of microvesicles (MVs) derived from 2D-MSCs or spheroid MSCs and retinal photoreceptor neurons. We seeded 2D-MSCs, spheroid MSCs, and cells derived from spheroids MSCs at equal numbers. MVs isolated from all 3 culture conditions were incubated with 661W cells. Levels of 51 signal factors in conditioned medium from those cultured conditions were quantified with bead-based assay. We found that IL-8, IL-6, and GROalpha were the top three most abundant signal factors. Moreover, compared to 2D-MSCs, levels of 11 cytokines and IL-2Ralpha were significantly increased in conditioned medium from spheroid MSCs. Finally, to test if enhanced expression of these factors reflects altered immunomodulating activities, we assessed the effect of 2D-MSC-MVs and 3D-MSC-MVs on CD14+ cell chemoattraction. Compared to 2D-MSC-MVs, 3D-MSC-MVs significantly decreased the chemotactic index of CD14+ cells. Our results suggest that spheroid culture conditions improve the ability of MSCs to selectively secrete signal factors. Moreover, 3D-MSC-MVs also possessed an enhanced capability to promote signal factors secretion compared to 2D-MSC-MVs and may possess enhanced immunomodulating activities and might be a better regenerative therapy for retinal degenerative diseases.
机译:我们的目的是鉴定由在2D单层(2D-MSCs),球状单体(球状体MSCs),球状单体(Smheroids MSC)中培养的MSCs分泌的信号因子水平,以及衍生自2D-MSC或球状体MSCs和视网膜光感受器神经元的微泡(MVS)的培养物。我们播种了2D-MSCs,Spheroid MSC和衍生自Smheroids MSCs的细胞以相等的数量。与661W细胞一起孵育从所有3条培养条件中分离的MV。将来自这些培养条件的条件培养基中的51个信号因子的水平进行量化,用基于珠的测定量定量。我们发现IL-8,IL-6和Groalpha是最丰富的信号因子。此外,与2D-MSCs相比,来自球状MSC的条件培养基中,11个细胞因子和IL-2RPHA的水平显着增加。最后,为了测试这些因素的增强表达反映了改变的免疫调节活动,我们评估了2D-MSC-MVS和3D-MSC-MV对CD14 +细胞化学的影响。与2D-MSC-MV相比,3D-MSC-MVs显着降低了CD14 +细胞的趋化指数。我们的研究结果表明,Spheroid培养条件提高了MSCs选择性分泌信号因子的能力。此外,3D-MSC-MV也具有增强的能力,促进与2D-MSC-MVS相比分泌的信号因子分泌,并且可能具有增强的免疫调节活动,并且可能是视网膜退行性疾病的更好的再生治疗。

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