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A preclinical study—systemic evaluation of safety on mesenchymal stem cells derived from human gingiva tissue

机译:一种临床前研究 - 源自人牙龈组织的间充质干细胞安全性评价

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Mounting evidence has shown that a novel subset of mesenchymal stem cells (MSCs) derived from human gingiva referred to as gingival mesenchymal stem cells (GMSCs) displays a greater immunotherapeutic potential and regenerative repair expression than MSCs obtained from other tissues. However, the safety of the use of transplanted GMSCs in humans remains unclear. In this study, we evaluated the safety of GMSCs transplanted into mouse, rat, rabbit, beagle dog, and monkey as well as two animal models of autoimmune diseases. In short- and long-term toxicity tests, infused GMSCs had no remarkable adverse effects on hematologic and biochemical indexes, particularly on the major organs such as heart, liver, spleen, and kidney in recipient animals. It was also shown that GMSCs were well tolerated in other assays including hemolysis, vascular, and muscular stimulation, as well as systemic anaphylaxis and passive skin Arthus reaction in animal models. GSMC infusion did not cause any notable side effects on animal models of either autoimmune arthritis or lupus. Significantly, GMSCs most likely play no role in genotoxicity and tumorigenesis. The biological features remained stable for an extended period after cell transfer. GMSCs are safe in various animal models of autoimmunity, even during active disease episodes, especially in monkeys. This study paves a solid road for future clinical trials of GMSCs in patients with autoimmune and inflammatory diseases.
机译:安装证据表明,衍生自引用作为牙龈间充质干细胞(GMSCs)的人牙龈的间充质干细胞(MSCs)的新型小组源显示出比从其他组织所获得的MSCs的MSC显示更大的免疫治疗潜力和再生修复表达。然而,在人体中使用移植的GMSCs的安全仍不清楚。在这项研究中,我们评估了将GMSCs移植到小鼠,大鼠,兔,比格犬和猴子以及两种动物模型中的自身免疫疾病的安全性。在短期和长期的毒性测试中,注入的GMSCs对血液学和生化指标没有显着的不利影响,特别是对受体动物中的主要器官,肝脏,脾脏和肾脏等主要器官。还表明,GMSCs在其他测定中耐受良好,包括溶血,血管和肌肉刺激,以及动物模型中的系统性过敏性和被动皮肤反应。 GSMC输注不会对自身免疫性关节炎或狼疮的动物模型引起任何显着的副作用。显着地,GMSCs很可能在基因毒性和肿瘤发生中发挥作用。细胞转移后,生物学特征保持延长的时间稳定。即使在活动疾病发作期间,GMSCs在自身免疫的各种动物模型中是安全的,尤其是在猴子。本研究铺平了一种坚实的道路,用于自身免疫和炎症性疾病的患者GMSCs的未来临床试验。

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