首页> 外文期刊>Journal of biomedical materials research, Part A >Biomaterial-Based Notch Signaling For The Differentiation of Hematopoietic Stem Cells Into T cells
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Biomaterial-Based Notch Signaling For The Differentiation of Hematopoietic Stem Cells Into T cells

机译:基于生物材料的Notch信号,用于将造血干细胞分化为T细胞

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Thymocyte development takes place in a complex milieu of supportive cells and ECM that are responsible for the proliferation, adhesion, migration, and selection processes these cells undergo before reaching maturity. In recent years, the role of notch signaling in lymphocyte development, specifically T-cell development, has been extensively characterized. Although notch ligand mediated signals have been shown to be a necessary component of T-cell generation from stem cells, high-throughput, synthetic biomaterial-based systems for notch-directed stem-cell differentiation into lymphocytes are yet to be reported. Here, we present a microbead-based, artificial notch signaling system to study stem-cell differentiation into the T-cell lineage. Magnetic microbeads were functionalized with the notch ligand DLL4 using streptavidin-biotin binding and antibody-antigen coupling. Immunohistochernistry and flow cytometry analysis indicated ~65 percent conjugation efficiency. Efficient notch signaling through these functionalized microbeads was demonstrated through a myotube inhibition assay in C2C12 myoblasts. Thy1.2~+ early T cells were successfully generated from mouse bone marrow hematopoietic stem cells (BMHSCs) using DLL4 functionalized beads using both insert-based and mixed stromal cell (OP9) coculture conditions, indicating that stem cell-stromal cell physical contact is not necessary for DLL4 directed T-cell differentiation. Coculture studies with bead-to-cell ratios of 1:1 generated higher T-cell differentiation efficiencies, compared to bead-to-cell ratios of 5:1. These data demonstrate the promising potential of this biomaterial-based notch signaling system to generate T cells from stem cells and to elucidate the molecular interactions in T-cell development.
机译:胸腺细胞发育发生在支持细胞和ECM的复杂环境中,这些环境负责这些细胞在达到成熟之前所经历的增殖,粘附,迁移和选择过程。近年来,Notch信号在淋巴细胞发育,特别是T细胞发育中的作用已得到广泛表征。尽管已经表明,缺口配体介导的信号是从干细胞产生T细胞的必要组成部分,但尚未报道高通量,基于合成生物材料的缺口定向干细胞向淋巴细胞分化的系统。在这里,我们提出了一种基于微珠的人工缺口信号系统,以研究干细胞向T细胞谱系的分化。使用链霉亲和素-生物素结合和抗体-抗原偶联,用缺口配体DLL4对磁性微珠进行功能化。免疫组织化学和流式细胞仪分析显示〜65%的结合效率。通过在C2C12成肌细胞中进行肌管抑制试验,证实了通过这些功能化微珠的有效刻槽信号。在基于插入和混合基质细胞(OP9)的共培养条件下,使用DLL4功能化的珠子成功从小鼠骨髓造血干细胞(BMHSC)产生了Thy1.2〜+早期T细胞,表明干细胞与基质细胞的物理接触是对于DLL4定向的T细胞分化不是必需的。珠与细胞比例为1:1的共培养研究产生了更高的T细胞分化效率,而珠与细胞的比例为5:1。这些数据证明了这种基于生物材料的缺口信号系统具有潜力,可以从干细胞产生T细胞,并阐明T细胞发育中的分子相互作用。

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