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利用芯片实验室技术增强源自人鼻甲的间充质干细胞的内皮分化

Enhancing Endothelial Differentiation of Mesenchymal Stem Cells Derived from Human Turbinates Using Lab-on-a-Chip Technology.

作者信息

Kim Do Hyun, Park Sang Hi, Kwon Mi-Yeon, Lim Chae-Yoon, Park Sun Hwa, Jang David W, Hwang Se Hwan, Kim Sung Won

机构信息

Department of Otolaryngology-Head and Neck Surgery, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.

Institute of Clinical Medicine Research, College of Medicine, The Catholic University of Korea, Seoul 06591, Republic of Korea.

出版信息

Medicina (Kaunas). 2025 Mar 18;61(3):528. doi: 10.3390/medicina61030528.

Abstract

: Endothelial cells are essential to various therapeutic strategies for cardiovascular diseases. Developing efficient methods to generate large quantities of well-defined endothelial cells could improve cardiovascular treatment. This study explored the impact of lab-on-a-chip technology on the endothelial differentiation potential of mesenchymal stem cells derived from the human inferior nasal turbinate (hNTSCs). : hNTSCs were isolated from five patients and divided into two groups: an experimental group subjected to lab-on-a-chip technology and a control group following two-dimensional differentiation protocols. The endothelial differentiation capacity of hNTSCs was assessed through histological examination and gene expression analysis. : Comparative evaluation of traditional differentiation methods and lab-on-a-chip technology indicated that hNTSCs expressed endothelial cell-specific markers, including CD34, KDR, CDH5, and CD31. Notably, CD31, CD34, and CDH5 exhibited significantly elevated expression levels in the lab-on-a-chip system. Additionally, cytokine analysis showed marked increases in IL-1a and IL-8 expression under lab-on-a-chip conditions compared to standard differentiation techniques. : Lab-on-a-chip technology may enhance the differentiation of hNTSCs into endothelial cells with angiogenic potential, highlighting its promise for future cardiovascular regenerative applications.

摘要

内皮细胞对于心血管疾病的各种治疗策略至关重要。开发高效方法以大量生成定义明确的内皮细胞可改善心血管治疗。本研究探讨了芯片实验室技术对源自人下鼻甲的间充质干细胞(hNTSCs)向内皮细胞分化潜能的影响。

从五名患者中分离出hNTSCs并分为两组:一组为接受芯片实验室技术的实验组,另一组为遵循二维分化方案的对照组。通过组织学检查和基因表达分析评估hNTSCs的内皮细胞分化能力。

对传统分化方法和芯片实验室技术的比较评估表明,hNTSCs表达内皮细胞特异性标志物,包括CD34、KDR、CDH5和CD31。值得注意的是,在芯片实验室系统中,CD31、CD34和CDH5的表达水平显著升高。此外,细胞因子分析显示,与标准分化技术相比,在芯片实验室条件下IL-1α和IL-8的表达明显增加。

芯片实验室技术可能会增强hNTSCs向具有血管生成潜力的内皮细胞的分化,突出了其在未来心血管再生应用中的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a84e/11943588/3d9b884bcf4f/medicina-61-00528-g001.jpg

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