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Transplantation of Immortalized CD34+ and CD34- Adipose-Derived Stem Cells Improve Cardiac Function and Mitigate Systemic Pro-Inflammatory Responses

机译:永生化CD34 +和CD34-脂肪干细胞的移植改善心脏功能并缓解全身促炎反应。

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摘要

Adipose-derived stem cells (ADSCs) have the potential to differentiate into various cell lineages and they are easily obtainable from patients, which makes them a promising candidate for cell therapy. However, a drawback is their limited life span during in vitro culture. Therefore, hTERT-immortalized CD34+ and CD34- mouse ADSC lines (mADSCshTERT) tagged with GFP were established. We evaluated the proliferation capacity, multi-differentiation potential, and secretory profiles of CD34+ and CD34- mADSCshTERT in vitro, as well as their effects on cardiac function and systemic inflammation following transplantation into a rat model of acute myocardial infarction (AMI) to assess whether these cells could be used as a novel cell source for regeneration therapy in the cardiovascular field. CD34+ and CD34- mADSCshTERT demonstrated phenotypic characteristics and multi-differentiation potentials similar to those of primary mADSCs. CD34+ mADSCshTERT exhibited a higher proliferation ability compared to CD34- mADSCshTERT, whereas CD34- mADSCshTERT showed a higher osteogenic differentiation potential compared to CD34+ mADSCshTERT. Primary mADSCs, CD34+, and CD34- mADSCshTERT primarily secreted EGF, TGF-β1, IGF-1, IGF-2, MCP-1, and HGFR. CD34+ mADSCshTERT had higher secretion of VEGF and SDF-1 compared to CD34- mADSCshTERT. IL-6 secretion was severely reduced in both CD34+ and CD34- mADSCshTERT compared to primary mADSCs. Transplantation of CD34+ and CD34- mADSCshTERT significantly improved the left ventricular ejection fraction and reduced infarct size compared to AMI-induced rats after 28 days. At 28 days after transplantation, engraftment of CD34+ and CD34- mADSCshTERT was confirmed by positive Y chromosome staining, and differentiation of CD34+ and CD34- mADSCshTERT into endothelial cells was found in the infarcted myocardium. Significant decreases were observed in circulating IL-6 levels in CD34+ and CD34- mADSCshTERT groups compared to the AMI-induced control group. Transplantation of CD34- mADSCshTERT significantly reduced circulating MCP-1 levels compared to the AMI control and CD34+ mADSCshTERT groups. GFP-tagged CD34+ and CD34- mADSCshTERT are valuable resources for cell differentiation studies in vitro as well as for regeneration therapy in vivo.
机译:脂肪干细胞(ADSCs)具有分化成各种细胞谱系的潜力,很容易从患者身上获得,这使其成为细胞疗法的有希望的候选者。但是,缺点是它们在体外培养期间的寿命有限。因此,建立了用GFP标记的hTERT永生化的CD34 +和CD34-小鼠ADSC系(mADSCs hTERT )。我们评估了CD34 +和CD34- mADSCs hTERT 的体外增殖能力,多分化潜能和分泌特性,以及它们对急性大鼠模型移植后对心脏功能和全身炎症的影响。心肌梗塞(AMI),以评估这些细胞是否可用作心血管领域再生治疗的新型细胞来源。 CD34 +和CD34- mADSCs hTERT 表现出与主要mADSC相似的表型特征和多重分化潜能。与CD34-mADSCs hTERT 相比,CD34 + mADSCs hTERT 具有更高的增殖能力,而与CD34 +相比,CD34- mADSCs hTERT 具有更高的成骨分化潜能。 mADSC hTERT 。初级mADSC,CD34 +和CD34-mADSC hTERT 主要分泌EGF,TGF-β1,IGF-1,IGF-2,MCP-1和HGFR。与CD34-mADSCs hTERT 相比,CD34 + mADSCs hTERT 具有更高的VEGF和SDF-1分泌。与原代mADSC相比,CD34 +和CD34-mADSCs hTERT 中的IL-6分泌均大大降低。 28天后,与AMI诱导的大鼠相比,CD34 +和CD34- mADSCs hTERT 的移植显着改善了左心室射血分数并减小了梗塞面积。移植后第28天,Y染色体染色证实了CD34 +和CD34- mADSCs hTERT 的植入,并且发现CD34 +和CD34-mADSCs hTERT 分化为内皮细胞在梗死的心肌中。与AMI诱导的对照组相比,CD34 +和CD34- mADSCs hTERT 组的循环IL-6水平明显下降。与AMI对照组和CD34 + mADSCs hTERT 组相比,CD34-mADSCs hTERT 的移植显着降低了循环MCP-1水平。 GFP标记的CD34 +和CD34-mADSCs hTERT 是体外细胞分化研究以及体内再生治疗的宝贵资源。

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