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Influence of Stem Cell Therapy on Thyroid Function and Reactive Oxygen Species Production in Diabetic Rats

机译:干细胞治疗干细胞治疗对糖尿病大鼠甲状腺功能和反应性氧物种的影响

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Cell therapy with mesenchymal stem cells (MSC) has been proposed for the treatment of diabetes mellitus (DM). It is known that the prevalence of thyroid disease is higher among diabetic patients than in general population. Therefore, our aim was to investigate the effect of the treatment with MSC on thyroid function and ROS generation in an experimental model of type 1 DM. Adult male Wistar rats were divided into the following groups: control, DM (80mg/kg BW streptozotocin, iv.) and DM+MSC. MSC treatment occurred 4 weeks after DM induction and the animals were euthanized 4 weeks after MSC administration. We also evaluated the effect of co-culture with MSC or extracellular vesicles (EV) obtained from these cells on the rat thyroid cell line PCCL3 exposed to high glucose. Thyroid H (2) O (2) generation was increased in DM, which was reversed by MSC treatment. These changes paralled a significant DuOx1 mRNA increase. The incubation of PCCL3 with high glucose increased extracellular H (2) O (2) generation, which was reversed by both the co-culture with MSC and EV. Even though MSC treatment normalized thyroid ROS generation, serum thyroid hormone (TH) concentration remained low, along with increased serum TSH concentrations. Thyroperoxidase (TPO) activity, was reduced in DM, and MSC treatment did not normalize TPO. Therefore, we conclude that the treatment with MSC was able to reverse the increased thyroid H (2) O (2) generation in diabetic animals and in PCCL3 cells exposed to high glucose, an effect probably mediated by EV produced by these cells, acting in a paracrine fashion.
机译:已经提出了具有间充质干细胞(MSC)的细胞疗法用于治疗糖尿病(DM)。众所周知,糖尿病患者的甲状腺疾病患病率较高,而不是一般人群。因此,我们的目的是探讨治疗MSC对1 DM的实验模型中甲状腺功能和ROS生成的影响。成年雄性Wistar大鼠分为以下组:对照,DM(80mg / kg BW链脲佐菌素,IV。)和DM + MSC。 MSC治疗发生在DM诱导后4周,在MSC给药后4周对动物进行安乐死。我们还评估了与在暴露于高葡萄糖至高葡萄糖的大鼠甲状腺细胞系PCCL3上从这些细胞获得的MSC或细胞外囊泡(EV)的综合培养物(EV)的影响。在DM中增加甲状腺H(2)O(2)产生,其通过MSC处理逆转。这些变化使得大约Duox1 mRNA增加。用高葡萄糖的PCCL3孵育增加细胞外H(2)o(2)o(2)o(2)代,其通过与MSC和EV的共培养物逆转。尽管MSC治疗归一化甲状腺ROS产生,但血清甲状腺激素(TH)浓度仍然低,以及血清TSH浓度增加。甲卓过氧化酶(TPO)活性在DM中降低,MSC处理未归一化TPO。因此,我们得出结论,使用MSC的治疗能够逆转糖尿病动物中的增加和暴露于高葡萄糖的PCCl3细胞,可能由这些细胞产生的EV产生的效果,作用于帕拉克时尚。

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