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Mesenchymal Stem Cell Secretome Enhancement by Nicotinamide and Vasoactive Intestinal Peptide: A New Therapeutic Approach for Retinal Degenerative Diseases

机译:烟酰胺酰胺和血管活性肠肽的间充质干细胞克制:一种新的视网膜退行性疾病治疗方法

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Mesenchymal stem cells (MSC) secrete neuroprotective molecules that may be useful as an alternative to cell transplantation itself. Our purpose was to develop different pharmaceutical compositions based on conditioned medium (CM) of adipose MSC (aMSC) stimulated by and/or combined with nicotinamide (NIC), vasoactive intestinal peptide (VIP), or both factors; and to evaluate in vitro their proliferative and neuroprotective potential. Nine pharmaceutical compositions were developed from 3 experimental approaches: (1) unstimulated aMSC-CM collected and combined with NIC, VIP, or both factors (NIC+VIP), referred to as the aMSC-CM combined composition; (2) aMSC-CM collected just after stimulation with the mentioned factors and containing them, referred to as the aMSC-CM stimulated-combined composition; and (3) aMSC-CM previously stimulated with the factors, referred to as the aMSC stimulated composition. The potential of the pharmaceutical compositions to increase cell proliferation under oxidative stress and neuroprotection were evaluated in vitro by using a subacute oxidative stress model of retinal pigment epithelium cells (line ARPE-19) and spontaneous degenerative neuroretina model. Results showed that oxidatively stressed ARPE-19 cells exposed to aMSC-CM stimulated and stimulated-combined with NIC or NIC+VIP tended to have better recovery from the oxidative stress status. Neuroretinal explants cultured with aMSC-CM stimulated-combined with NIC+VIP had better preservation of the neuroretinal morphology, mainly photoreceptors, and a lower degree of glial cell activation. In conclusion, aMSC-CM stimulated-combined with NIC+VIP contributed to improving the proliferative and neuroprotective properties of the aMSC secretome. Further studies are necessary to evaluate higher concentrations of the drugs and to characterize specifically the aMSC-secreted factors related to neuroprotection. However, this study supports the possibility of improving the potential of new effective pharmaceutical compositions based on the secretome of MSC plus exogenous factors or drugs without the need to inject cells into the eye, which can be very useful in retinal pathologies.
机译:间充质干细胞(MSC)分泌神经保护分子,其可用作细胞移植本身的替代物。我们的目的是基于由烟草酰胺(AMSC)的脂肪瘤(AMSC)的调节培养基(CM)的脂肪酰胺(NIC),血管活性肠肽(VIP)或两种因子进行不同的药物组合物;并评估它们的增殖性和神经保护潜力。从3种实验方法开发了九种药物组合物:(1)收集的未敏感的AMSC-CM,与NIC,VIP或两种因子(NIC + VIP)组合,称为AMSC-CM组合物; (2)在刺激提到的因子并含有它们后,amsc-cm收集,称为AMSC-CM刺激组合物; (3)amsc-cm以前用因子刺激,称为AMSC刺激的组合物。通过使用视网膜颜料上皮细胞(线ARPE-19)和自发退化神经尿关膜模型的亚急性氧化应激模型,在体外评估药物组合物在氧化应激和神经保护作用下进行细胞增殖的潜力。结果表明,暴露于AMSC-CM的氧化抗应力的ARPE-19细胞刺激和刺激 - 与NIC或NIC + VIP倾向于从氧化应激状态下恢复。用AMSC-CM刺激结合NIC + VIP培养的神经疗法外植体具有更好地保护神经遗传形态,主要是光感受器,以及较低程度的胶质细胞活化。总之,AMSC-CM刺激结合NIC + VIP,有助于改善AMSC excericals的增殖和神经保护性能。进一步的研究是评估更高浓度的药物,并具体特异性是与神经保护有关的AMSC分泌因子。然而,这项研究支持基于MSC的沉淀加上外源性因素或药物的秘密改善新有效药物组合物的可能性,而无需将细胞注入眼睛,这在视网膜病理中非常有用。

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