心肌样软基质与玻璃硬基质对CD34+细胞向内皮系细胞分化的影响
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(复旦大学附属中山医院心内科 上海市心血管临床医学中心 上海市心血管病研究所,上海市 200032)

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张书宁,博士,副主任医师,研究方向为冠心病的基础及临床研究, E-mail为zhang.shuning@zs-hospital.sh.cn。通信作者葛均波,博士,教授,博士研究生导师,中国科学院院士,研究方向为冠心病的基础及临床研究,E-mail为jbge@zs-hospital.sh.cn。

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国家自然科学基金面上项目(81570317)资助


Impacts of myocardium-like matrix soft gel versus glass rigid substrate on the specification of bone marrow CD34+ cell subsets along endothelial lineage
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Department of Cardiology, Zhongshan Hospital of Fudan University & Shanghai Institute of Cardiovascular Diseases & Shanghai Cardiovascular Medical Center, Shanghai 200032, China)

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    摘要:

    目的 比较心肌组织样软基质与玻璃硬基质对小鼠骨髓CD34+及CD34-细胞亚群向内皮系细胞分化的差异。方法 利用原子力显微镜检测正常Balb/c小鼠心肌组织硬度(弹性模量≈15 kPa),采用聚丙烯酰胺凝胶制备心肌样软培养基底铺于玻璃培养皿中,利用密度梯度离心法及免疫磁珠分选法收集小鼠骨髓CD34+及CD34-细胞,分别于心肌样软基底及玻璃硬基底培养皿(弹性模量>1 GPa)中进行细胞培养,培养7天后,利用激光共聚焦显微镜观测内皮细胞系表面标志物、细胞形态及细胞骨架。结果 在两个硬度培养体系中,CD34+细胞均表现出较CD34-细胞更高的乙酰化低密度脂蛋白(ac-LDL)/荆豆凝集素I(UEA-1)双阳性比例(P<0.01),以及更高的CD31、vWF、Flk-1和VE-cadherin等内皮细胞系标记物表达(P<0.05)。就两种细胞亚型的分化差异而言,心肌样软基质较玻璃硬基质表现出更高的细胞分化诱导效率,这可能与软基质上CD34+细胞表现出更为浓集的黏着斑和F-actin有关。结论 与玻璃硬基质相比,心肌样软基质能更为有效的诱导CD34+细胞亚群向内皮系分化;软基底培养体系是一种更佳的探讨细胞生物行为的培养体系。

    Abstract:

    Aim Cell culture system with glass-like rigid substrates is currently used to detect cell biological behaviors. However, the impact of the stiffness of tissue-like soft substrates on stem cell morphology and differentiation is rarely considered in cell-based cardiac repair. This work aimed to access the effects of myocardium-like soft culture substrates on the specification of CD34+ as well as CD34- subsets along endothelial lineage in comparison with conventional glass-like rigid substrates. Methods Elastic modulus (E, a material property that describes the stiffness or elasticity) of normal myocardium was measured using atomic force microscopy (elastic modulus≈15 kPa). Myocardium-like soft culture substrates were prepared using polyacrylamide gel with a similar stiffness to normal myocardium. Meanwhile, cell culture system with glass-like rigid substrates (elastic modulus >1 GPa) was used as the control. Mouse bone marrow-derived CD34+ and CD34- cells were collected by density gradient centrifugation and magnetic activated cell sorting (MACS). The isolated cells were cultured both on myocardium-like soft matrix and glass rigid substrate (E>1 GPa). At day 7 of culture, the surface markers of endothelial lineage, cell morphology, and cytoskeleton were observed by laser scanning confocal microscopy. Results Regardless of the substrate stiffness, mouse bone marrow-derived CD34+ cell subsets exhibited higher percentage of double-positive cells for dil-labelled acetylated-low density lipoprotein (Dil-ac-LDL) uptake and FITC-labelled ulex europaeus agglutinin I lectin (FITC-UEA-1) binding, and higher expression of endothelial lineage markers, CD31, vWF, Flk-1, and VE-cadherin than CD34- subsets. Moreover, in terms of the difference in cell specification efficacy between CD34+ subsets and CD34- subsets, myocardium-like soft substrate showed a more potent induction capacity than conventional glass-like rigid substrate. It might partially result from more stressful F-actin fibers and more abundant focal adhesions of CD34+ cell subsets on myocardium-like soft substrates. Conclusions Myocardium-like soft substrate was capable of inducing potently cell specification of CD34+ subsets compared with glass-like rigid substrate. It speculated that tissue-like soft substrate might be a more optimal culture system for detecting the specification of stem cells in vitro.

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张书宁,马鑫,杨文龙,董震,姚康,朱宏,王鹏,邹云增,杨向东,孙爱军,葛均波.心肌样软基质与玻璃硬基质对CD34+细胞向内皮系细胞分化的影响[J].中国动脉硬化杂志,2019,27(6):461~467.

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  • 收稿日期:2019-01-06
  • 最后修改日期:2019-04-12
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  • 在线发布日期: 2019-06-04