Molecular and Cellular Therapeutics Department and.
Blood. 2014 Jan 9;123(2):249-60. doi: 10.1182/blood-2013-03-492447. Epub 2013 Nov 20.
Platelets play a role in cancer by acting as a dynamic reservoir of effectors that facilitate tumor vascularization, growth, and metastasis. However, little information is available about the mechanism of tumor cell-induced platelet secretion (TCIPS) or the molecular machinery by which effector molecules are released from platelets. Here we demonstrate that tumor cells directly induce platelet secretion. Preincubation of platelets with human colon cancer (Caco-2), prostate cancer (PC3M-luc), or breast cancer cells (MDA-MB-231;MCF-7) resulted in a marked dose-dependent secretion of dense granules. Importantly, TCIPS preceded aggregation which always displayed a characteristic lag time. We investigated the role of platelet receptors and downstream molecules in TCIPS. The most potent modulators of TCIPS were the pharmacologic antagonists of Syk kinase, phospholipase C and protein kinase C, all downstream mediators of the immunoreceptor tyrosine-based activation motif (ITAM) cascade in platelets. Supporting this, we demonstrated a central role for the immune Fcγ receptor IIa (FcγRIIa) in mediating platelet-tumor cell cross-talk. In conclusion, we demonstrate that cancer cells can promote platelet dense-granule secretion, which is required to augment platelet aggregation. In addition, we show a novel essential role for FcγRIIa in prostate cancer cell-induced platelet activation opening the opportunity to develop novel antimetastatic therapies.
血小板通过充当促进肿瘤血管生成、生长和转移的效应物的动态储库,在癌症中发挥作用。然而,关于肿瘤细胞诱导的血小板分泌(TCIPS)的机制或效应分子从血小板中释放的分子机制,人们知之甚少。在这里,我们证明了肿瘤细胞可以直接诱导血小板分泌。将血小板与人类结肠癌(Caco-2)、前列腺癌(PC3M-luc)或乳腺癌细胞(MDA-MB-231;MCF-7)预孵育会导致致密颗粒的明显剂量依赖性分泌。重要的是,TCIPS 先于聚集发生,聚集总是显示出特征性的滞后时间。我们研究了血小板受体和下游分子在 TCIPS 中的作用。TCIPS 的最强调节剂是 Syk 激酶、磷脂酶 C 和蛋白激酶 C 的药理拮抗剂,它们都是血小板免疫受体酪氨酸基激活基序(ITAM)级联反应的下游介质。支持这一点,我们证明了免疫 Fcγ 受体 IIa(FcγRIIa)在介导血小板-肿瘤细胞串扰中起着核心作用。总之,我们证明癌细胞可以促进血小板致密颗粒的分泌,这对于增强血小板聚集是必需的。此外,我们还展示了 FcγRIIa 在前列腺癌细胞诱导的血小板激活中的新的重要作用,为开发新的抗转移治疗方法提供了机会。