Departamento de Hematología Investigación, Instituto de Investigaciones Médicas Alfredo Lanari, Universidad de Buenos Aires, Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Buenos Aires, Argentina.
Br J Haematol. 2014 Jun;165(6):854-64. doi: 10.1111/bjh.12832. Epub 2014 Mar 27.
The pathophysiological mechanisms contributing to the decreased platelet count in immune thrombocytopenia (ITP) are not entirely understood. Here, we investigated the key step of proplatelet formation (PPF) by studying the effect of ITP plasma in thrombopoiesis. Normal cord blood-derived mature megakaryocytes were cultured in the presence of recalcified plasma from ITP patients, and PPF was evaluated by microscopic analysis. Patient samples induced a dose-dependent inhibition in PPF, as well as decreased complexity of proplatelet architecture. Although slightly increased, plasma-induced megakaryocyte apoptosis was not related to PPF impairment. Purified IgG reproduced the inhibitory effect, while platelet-adsorbed plasma induced its reversion, suggesting the involvement of auto-antibodies in the inhibition of thrombopoiesis. Impaired PPF, induced by ITP plasmas bearing anti-GPIIb-IIIa antibodies, was related to their ability to interfere with the normal function of this integrin, as assessed by megakaryocyte PAC-1 binding and β3 integrin phosphorylation while the presence of anti-glycoprotein Ia-IIa auto-antibodies was associated with loss of normal inhibition of PPF induced by type I collagen. In conclusion, abnormal thrombopoiesis comprising decreased PPF and morphological changes in proplatelet structure are induced by patient samples, unveiling new mechanisms contributing to decreased platelet count in ITP.
导致免疫性血小板减少症 (ITP) 血小板计数减少的病理生理机制尚不完全清楚。在这里,我们通过研究 ITP 血浆对巨核细胞生成的影响,研究了前血小板形成 (PPF) 的关键步骤。将正常脐血来源的成熟巨核细胞在来自 ITP 患者的再钙化血浆中培养,并通过显微镜分析评估 PPF。患者样本导致 PPF 呈剂量依赖性抑制,并且前血小板结构的复杂性降低。虽然略有增加,但血浆诱导的巨核细胞凋亡与 PPF 损伤无关。纯化的 IgG 重现了抑制作用,而血小板吸附的血浆诱导其逆转,表明自身抗体参与了对巨核细胞生成的抑制。由携带抗 GpIIb-IIIa 抗体的 ITP 血浆引起的 PPF 受损与它们干扰这种整合素正常功能的能力有关,如通过巨核细胞 PAC-1 结合和 β3 整合素磷酸化来评估,而存在抗糖蛋白 Ia-IIa 自身抗体与正常抑制有关 I 型胶原诱导的 PPF 丧失。总之,由患者样本引起的异常的血小板生成,包括 PPF 减少和前血小板结构的形态变化,揭示了导致 ITP 血小板计数减少的新机制。