National Cytometry Platform, Department of Infection and Immunity, Luxembourg Institute of Health, Strassen, Luxembourg.
Université Paris Descartes, Sorbonne Paris Cité, Paris, France.
Stem Cell Rev Rep. 2017 Aug;13(4):552-560. doi: 10.1007/s12015-017-9731-7.
Very small embryonic-like stem cells (VSELs) are major pluripotent stem cells defined as cells of small size being Lineage- negative, CD133-positive, and CD45-negative. We previously described that human bone marrow VSELs were able to differentiate into endothelial cells and promoted post-ischemic revascularization in mice with surgically induced critical limb ischemia. In the present work, we isolated bone marrow VSELs from patients with critical limb ischemia and studied their ability to support endothelial progenitor cells therapeutic capacity and revascularization potential. Sorted bone marrow VSELs cultured in angiogenic media were co-injected with endothelial progenitor cells and have been show to trigger post-ischemic revascularization in immunodeficient mice, and support vessel formation in vivo in Matrigel implants better than human bone marrow mesenchymal stem cells. In conclusion, VSELs are a potential new source of therapeutic cells that may give rise to cells of the endothelial and perivascular lineage in humans. VSELs are the first real vasculogenic stem cells able to differentiate in endothelial and perivascular lineage in human adult described from now. Thus, because VSELs presence have been proposed in adult tissues, we think that VSELs are CD45 negative stem cells able to give rise to vascular regeneration in human tissues and vessels.
非常小的胚胎样干细胞(VSELs)是主要的多能干细胞,被定义为具有小尺寸、谱系阴性、CD133 阳性和 CD45 阴性的细胞。我们之前描述了人类骨髓 VSELs 能够分化为内皮细胞,并促进了手术诱导的严重肢体缺血小鼠的缺血后再血管化。在本工作中,我们从严重肢体缺血患者的骨髓中分离出 VSELs,并研究了它们支持内皮祖细胞治疗能力和再血管化潜力的能力。在血管生成培养基中培养的分选骨髓 VSELs 与内皮祖细胞共注射,已显示可在免疫缺陷小鼠中触发缺血后再血管化,并在 Matrigel 植入物中比人骨髓间充质干细胞更好地支持血管形成。总之,VSELs 是一种有潜力的治疗细胞新来源,可能在人类中产生内皮和血管周细胞系的细胞。VSELs 是第一个能够在人类成体中分化为内皮和血管周细胞系的真正的血管生成干细胞。因此,由于在成人组织中已经提出了 VSELs 的存在,我们认为 VSELs 是 CD45 阴性的干细胞,能够在人类组织和血管中引起血管再生。