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首页> 外文期刊>Veterinary Immunology and Immunopathology >Long-term culture and differentiation of porcine red bone marrow hematopoietic cells co-cultured with immortalized mesenchymal cells
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Long-term culture and differentiation of porcine red bone marrow hematopoietic cells co-cultured with immortalized mesenchymal cells

机译:猪红骨髓造血细胞的长期培养和分化与永生化间充质细胞共同培养

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Mesenchymal cells are multipotent stromal cells with self-renewal, differentiation and immunomodulatory capabilities. We aimed to develop a co-culture model for differentiating hematopoietic cells on top of immortalized mesenchymal cells for studying interactions between hematopoietic and mesenchymal cells, useful for adequately exploring the therapeutic potential of mesenchymal cells. In this study, we investigated the survival, proliferation and differentiation of porcine red bone marrow hematopoietic cells co-cultured with immortalized porcine bone marrow mesenchymal cells for a period of five weeks. Directly after collection, primary porcine bone marrow mesenchymal cells adhered firmly to the bottom of the culture plates and showed a fibroblast-like appearance, one week after isolation. Upon immortalization, porcine bone marrow mesenchymal cells were continuously proliferating. They were positive for simian virus 40 (SV40) large T antigen and the mesenchymal cell markers CD44 and CD55. Isolated red bone marrow cells were added to these immortalized mesenchymal cells. Five weeks post-seeding, 92 +/- 6% of the red bone marrow hematopoietic cells were still alive and their number increased 3-fold during five weekly subpassages on top of the immortalized mesenchymal cells. The red bone marrow hematopoietic cells were originally small and round; later, the cells increased in size. Some of them became elongated, while others remained round. Tiny dendrites appeared attaching hematopoietic cells to the underlying immortalized mesenchymal cells. Furthermore, weekly differential-quick staining of the cells indicated the presence of monoblasts, monocytes, macrophages and lymphocytes in the co-cultures. At three weeks of co-culture, flow cytometry analysis showed an increased surface expression of CD172a, CD14, CD163, CD169, CD4 and CD8 up to 37 +/- 0.8%, 40 +/- 8%, 41 +/- 4%, 23 +/- 3% and 19 +/- 5% of the hematopoietic cells, respectively. In conclusion, continuous mesenchymal cell cultures were successfully established and characterized and they supported the proliferation of red bone marrow hematopoietic cells, which finally differentiated into monocytic cells and CD4(+) and CD8(+) cells.
机译:间充质细胞是具有自我更新,分化和免疫调节能力的多能基质细胞。我们旨在开发用于将造血细胞分化在永生化的间充质细胞顶部的共培养模型,以研究造血和间充质细胞之间的相互作用,可用于充分探索间充质细胞的治疗潜力。在这项研究中,我们研究了与永生化猪骨髓间充质细胞共同培养的猪红骨髓造血细胞的存活率,增殖和分化为期五周。收集后,初级猪骨髓间充质细胞牢固地粘附在培养板的底部,并在分离后一周显示成纤维细胞状外观。在永生后,猪骨髓间充质细胞连续增殖。它们对于Simian病毒40(SV40)大T抗原和间充质细胞标志物CD44和CD55是阳性的。将孤立的红色骨髓细胞加入到这些永生化的间充质细胞中。播种后五周,红骨髓造血细胞的92 +/- 6%仍然活着,并且在永生化间充质细胞顶部的五个每周亚数期间,它们的数量增加了3倍。红骨髓造血细胞最初是小而圆形的;后来,细胞的大小增加。其中一些人变得伸长,而其他人则留在围绕着。微小的树突出现将造血细胞附着到下面的永生化间充质细胞。此外,细胞的每周差异快速染色表明在共培养物中存在单卵剂,单核细胞,巨噬细胞和淋巴细胞。在共培养的三周内,流式细胞术分析显示CD172A,CD14,CD163,CD169,CD4和CD8高达37 +/- 0.8%,40 +/- 8%,41 +/- 4%的表面表达增加分别为23 +/- 3%和19 +/- 5%的造血细胞。总之,成功地建立和表征了连续的间充质细胞培养物,并支持红色骨髓造血细胞的增殖,该细胞最终分化为单核细胞和CD4(+)和CD8(+)细胞。

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