Stem Cell and Regenerative Medicine International, 33 Locke Drive, Marlborough, MA 01752, USA.
Cell Res. 2011 Mar;21(3):530-45. doi: 10.1038/cr.2011.8. Epub 2011 Jan 11.
Platelets play an essential role in hemostasis and atherothrombosis. Owing to their short storage time, there is constant demand for this life-saving blood component. In this study, we report that it is feasible to generate functional megakaryocytes and platelets from human embryonic stem cells (hESCs) on a large scale. Differential-interference contrast and electron microscopy analyses showed that ultrastructural and morphological features of hESC-derived platelets were indistinguishable from those of normal blood platelets. In functional assays, hESC-derived platelets responded to thrombin stimulation, formed microaggregates, and facilitated clot formation/retraction in vitro. Live cell microscopy demonstrated that hESC-platelets formed lamellipodia and filopodia in response to thrombin activation, and tethered to each other as observed in normal blood. Using real-time intravital imaging with high-speed video microscopy, we have also shown that hESC-derived platelets contribute to developing thrombi at sites of laser-induced vascular injury in mice, providing the first evidence for in vivo functionality of hESC-derived platelets. These results represent an important step toward generating an unlimited supply of platelets for transfusion. Since platelets contain no genetic material, they are ideal candidates for early clinical translation involving human pluripotent stem cells.
血小板在止血和动脉血栓形成中起着至关重要的作用。由于其储存时间短,因此对这种救命血液成分的需求持续存在。在这项研究中,我们报告了从人类胚胎干细胞(hESC)大规模生成功能齐全的巨核细胞和血小板是可行的。微分干涉对比和电子显微镜分析表明,hESC 衍生血小板的超微结构和形态特征与正常血小板无法区分。在功能测定中,hESC 衍生的血小板对凝血酶刺激有反应,形成微聚集体,并有助于体外血栓形成/回缩。活细胞显微镜显示,hESC-血小板在凝血酶激活时形成片状伪足和丝状伪足,并像在正常血液中一样相互连接。使用具有高速视频显微镜的实时活体成像,我们还表明 hESC 衍生的血小板有助于在小鼠激光诱导的血管损伤部位形成血栓,为 hESC 衍生的血小板的体内功能提供了首个证据。这些结果是朝着为输血生成无限供应的血小板迈出的重要一步。由于血小板不含遗传物质,因此它们是涉及人类多能干细胞的早期临床转化的理想候选物。