Tamaki Tetsuro, Okada Yoshinori, Uchiyama Yoshiyasu, Tono Kayoko, Masuda Maki, Nitta Masahiro, Hoshi Akio, Akatsuka Akira
Muscle Physiology and Cell Biology Unit, Department of Regenerative Medicine, Tokai University School of Medicine, 143 Shimokasuya, Isehara, Kanagawa, Japan.
Stem Cells Dev. 2008 Aug;17(4):653-67. doi: 10.1089/scd.2008.0070.
The hierarchical relationship of skeletal muscle-derived multipotent stem cells sorted as CD34(+)/CD45(-) (Sk-34) and CD34(-)/CD45(-) (Sk-DN) cells, which have synchronized reconstitution capacities for blood vessels, peripheral nerves, and muscle fibers, was examined. Expression of Sca-1 and CD34 (typical state of freshly isolated Sk-34 cells) in Sk-DN cells was examined using in vitro culture and in vivo cell implantation. Sk-DN cells sequentially expressed Sca-1 and CD34 during cell culture showing self-maintenance and/or self-renewal-like behavior, and are thus considered hierarchically upstream of Sk-34 cells in the same lineage. Sk-34 and Sk-DN cells were further divided into small and large cell fractions by cell sorting. Immunocytochemistry using anti-Pax7 was performed at the time of isolation (before culture) and revealed that only 1% of cells in the large Sk-DN cell fraction were positive for Pax7, while Sk-34 cells and 99% of Sk-DN cells were negative for Pax7. Therefore, putative satellite cells were possibly present in the large Sk-DN cell fraction. However, serial analysis of Pax7 expression by RT-PCR and immunocytochemistry for single and 2 to >40 clonally proliferated Sk-34 and Sk-DN cells revealed that both cell types expressed Pax7 after several asymmetric cellular divisions during clonal-cell culture. In addition, production of satellite cells was seen after muscle fiber formation following Sk-34 or Sk-DN cell transplantation into damaged muscle, and even in the nonmuscle tissue environment (beneath the renal capsule). Thus, Sk-DN cells are situated upstream of Sk-34 cells and both cells can produce Pax7+ cells (putative satellite cells) after cellular division.
对分选得到的CD34(+)/CD45(-)(Sk-34)和CD34(-)/CD45(-)(Sk-DN)骨骼肌来源的多能干细胞的层级关系进行了研究,这两种细胞对血管、外周神经和肌纤维具有同步的重建能力。利用体外培养和体内细胞植入技术检测了Sk-DN细胞中Sca-1和CD34(新鲜分离的Sk-34细胞的典型状态)的表达。Sk-DN细胞在细胞培养过程中依次表达Sca-1和CD34,表现出自我维持和/或自我更新样行为,因此被认为在同一系列中位于Sk-34细胞的层级上游。通过细胞分选将Sk-34和Sk-DN细胞进一步分为小细胞部分和大细胞部分。在分离时(培养前)使用抗Pax7进行免疫细胞化学分析,结果显示大Sk-DN细胞部分中只有1%的细胞Pax7呈阳性,而Sk-34细胞和99%的Sk-DN细胞Pax7呈阴性。因此,大Sk-DN细胞部分可能存在假定的卫星细胞。然而,通过RT-PCR对Pax7表达进行系列分析以及对单个和2至>40个克隆增殖的Sk-34和Sk-DN细胞进行免疫细胞化学分析发现,在克隆细胞培养过程中的几次不对称细胞分裂后,这两种细胞类型均表达Pax7。此外,将Sk-34或Sk-DN细胞移植到受损肌肉后,甚至在非肌肉组织环境(肾被膜下)中,在肌纤维形成后可见卫星细胞的产生。因此,Sk-DN细胞位于Sk-34细胞的上游,并且两种细胞在细胞分裂后均可产生Pax7+细胞(假定的卫星细胞)。