Effect of Mesenchymal Stem Cells on Cochlear Cell Viability After Cisplatin Induced Ototoxicity

Ayse Pinar Ercetin, Y. Olgun, S. Aktaş, M. Aydın, Hande Evin, Z. Altun, G. Kırkım, Alpin Guneri, N. Olgun
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引用次数: 2

Abstract

Aims: Ototoxicity is one of the main side effects of the chemotherapeutic agent Cisplatin CDDP . CDDP ototoxicity is caused by damage of the organ of Corti, spiral ganglion cells or lateral wall stria vascularis and spiral ligament . Mesenchymal stem cells MSCs were shown to differentiate into neurogenic and auditory hair cells in vitro. In this study, effect of MSCs in CDDP ototoxicity model of HEI-OC1 cochlear cells was evaluated. Method: The cochlear cells were exposed to 50 and 100 microM CDDP for 24, 48, 72 hours with and without MSCs as coculture. The viability of the cells was analyzed with trypan blue dye and the percentage of apoptosis with Annexin-V by flow cytometer. The differentiation of MSCs to immature cochlear cells were shown by Math1, Calretinin and Myosin IIa immunohistochemistry. Results: At 100 microM dose, CDDP caused cytotoxicity on cochlear cells predominantly via necrosis. In co-culture, MSCs decreased cochlear cell damage of CDDP. In co-culture the ratio of Math1 and calretinin positive cells were increased supporting the idea of differentiation of MSCs into immature hair cells. Conclusion: In this in vitro study, our data support that MSCs protects cochlear cells from CDDP cytotoxicity. MSC therapy might be a candidate cellular therapy approach to overcome CDDP ototoxicity. The mechanism seems to be via differentiation of MSCs into immature hair cells. Our next step is to plan in vivo nude mice neuroblastoma animal model comparing CDDP therapy with and without systemic MSC administration and check ototoxicity.
间充质干细胞对顺铂耳毒性耳蜗细胞活力的影响
目的:耳毒性是化疗药物顺铂的主要副作用之一。CDDP耳毒性是由Corti器官、螺旋神经节细胞或侧壁血管纹、螺旋韧带损伤引起的。间充质干细胞在体外可分化为神经源性毛细胞和听觉毛细胞。本研究评价MSCs在HEI-OC1耳蜗细胞CDDP耳毒性模型中的作用。方法:耳蜗细胞与MSCs共培养24、48、72小时,与不含MSCs共培养。台盼蓝染色检测细胞活力,流式细胞仪检测Annexin-V细胞凋亡率。免疫组化结果显示MSCs向未成熟耳蜗细胞分化。结果:在100 μ m剂量下,CDDP对耳蜗细胞主要以坏死方式产生细胞毒性。在共培养中,MSCs可减轻CDDP对耳蜗细胞的损伤。在共培养中,Math1和calretinin阳性细胞的比例增加,支持MSCs向未成熟毛细胞分化的观点。结论:在体外研究中,我们的数据支持MSCs保护耳蜗细胞免受CDDP细胞毒性的影响。MSC治疗可能是克服CDDP耳毒性的一种候选细胞治疗方法。其机制似乎是通过MSCs向未成熟毛细胞的分化。我们的下一步是计划在体内裸鼠神经母细胞瘤动物模型,比较CDDP治疗与不全身性MSC治疗,并检查耳毒性。
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