Stem Cell Research Center, Department of Orthopaedic Surgery, University of Pittsburgh School of Medicine and Children's Hospital of Pittsburgh of UPMC, Pittsburgh, PA, USA.
Cell Transplant. 2012;21(6):1087-93. doi: 10.3727/096368912X636876. Epub 2012 Apr 2.
We demonstrate that subpopulations of adult human skeletal muscle-derived stem cells, myogenic endothelial cells (MECs), and perivascular stem cells (PSCs) can be simultaneously purified by fluorescence-activated cell sorting (FACS) from cryopreserved human primary skeletal muscle cell cultures (cryo-hPSMCs). For FACS isolation, we utilized a combination of cell lineage markers: the myogenic cell marker CD56, the endothelial cell marker UEA-1 receptor (UEA-1R), and the perivascular cell marker CD146. MECs expressing all three cell lineage markers (CD56(+)UEA-1R(+)CD146(+)/CD45(-)) and PSCs expressing only CD146 (CD146(+)/CD45(-)CD56(-)UEA-1R(-)) were isolated by FACS. To evaluate their myogenic capacities, the sorted cells, with and without expansion in culture, were transplanted into the cardiotoxin-injured skeletal muscles of immunodeficient mice. The purified MECs exhibited the highest regenerative capacity in the injured mouse muscles among all cell fractions tested, while PSCs remained superior to myoblasts and the unpurified primary skeletal muscle cells. Our findings show that both MECs and PSCs retain their high myogenic potentials after in vitro expansion, cryopreservation, and FACS sorting. The current study demonstrates that myogenic stem cells are prospectively isolatable from long-term cryopreserved primary skeletal muscle cell cultures. We emphasize the potential application of this new approach to extract therapeutic stem cells from human muscle cells cryogenically banked for clinical purposes.
我们证明,通过荧光激活细胞分选(FACS)可以从冷冻保存的人原代骨骼肌细胞培养物(cryo-hPSMCs)中同时纯化成人骨骼肌源性干细胞的亚群、成肌内皮细胞(MECs)和血管周干细胞(PSCs)。对于 FACS 分离,我们利用了细胞谱系标记物的组合:成肌细胞标记物 CD56、内皮细胞标记物 UEA-1 受体(UEA-1R)和血管周细胞标记物 CD146。通过 FACS 分离出表达所有三种细胞谱系标记物的 MECs(CD56(+)UEA-1R(+)CD146(+)/CD45(-))和仅表达 CD146 的 PSCs(CD146(+)/CD45(-)CD56(-)UEA-1R(-))。为了评估它们的成肌能力,分选的细胞在培养中进行了扩增和未扩增,并被移植到免疫缺陷小鼠的心肌毒素损伤骨骼肌中。在所有测试的细胞群中,纯化的 MECs 在受损的小鼠肌肉中表现出最高的再生能力,而 PSCs 仍然优于成肌细胞和未纯化的原代骨骼肌细胞。我们的研究结果表明,MECs 和 PSCs 在体外扩增、冷冻保存和 FACS 分选后保留其高成肌潜能。本研究表明,可以从长期冷冻保存的原代骨骼肌细胞培养物中预期分离出成肌干细胞。我们强调了这种新方法从用于临床目的的冷冻保存的人类肌肉细胞中提取治疗性干细胞的潜在应用。