DiSIT- Dipartimento di Scienze e Innovazione Tecnologica, University of Piemonte Orientale, Viale Teresa Michel 11, 15121 Alessandria, Italy.
DiSIT- Dipartimento di Scienze e Innovazione Tecnologica, University of Piemonte Orientale, piazza Sant'Eusebio 5, 13100 Vercelli, Italy.
Int J Mol Sci. 2020 Jan 26;21(3):808. doi: 10.3390/ijms21030808.
Wound repair is a dynamic process during which crucial signaling pathways are regulated by growth factors and cytokines released by several kinds of cells directly involved in the healing process. However, the limited applications and heterogeneous clinical results of single growth factors in wound healing encouraged the use of a mixture of bioactive molecules such as platelet derivatives for best results in wound repair. An interesting platelet derivative, obtained from blood samples, is platelet lysate (PL), which has shown potential clinical application. PL is obtained from freezing and thawing of platelet-enriched blood samples. Intracellular calcium (Ca) signals play a central role in the control of endothelial cell survival, proliferation, motility, and differentiation. We investigated the role of Ca signaling in the PL-driven endothelial healing process. In our experiments, the functional significance of Ca signaling machinery was highlighted performing the scratch wound assay in presence of different inhibitors or specific RNAi. We also pointed out that the PL-induced generation of intracellular ROS (reactive oxygen species) via NOX4 (NADPH oxidase 4) is necessary for the activation of TRPM2 and the resulting Ca entry from the extracellular space. This is the first report of the mechanism of wound repair in an endothelial cell model boosted by the PL-induced regulation of [Ca].
伤口修复是一个动态的过程,在此过程中,关键的信号通路受到生长因子和细胞因子的调节,这些生长因子和细胞因子由几种直接参与愈合过程的细胞释放。然而,单一生长因子在伤口愈合中的应用有限且临床效果各异,这促使人们使用混合生物活性分子(如血小板衍生物)来获得最佳的伤口修复效果。一种从血液样本中获得的有趣的血小板衍生物是血小板裂解液(PL),它显示出了潜在的临床应用前景。PL 是通过冷冻和解冻富含血小板的血液样本获得的。细胞内钙(Ca)信号在控制内皮细胞存活、增殖、迁移和分化方面发挥着核心作用。我们研究了 Ca 信号在 PL 驱动的内皮细胞愈合过程中的作用。在我们的实验中,通过在不同抑制剂或特定 RNAi 的存在下进行划痕实验,突出了 Ca 信号机制的功能意义。我们还指出,PL 通过 NOX4(NADPH 氧化酶 4)诱导细胞内 ROS(活性氧)的产生,对于激活 TRPM2 以及由此产生的细胞外 Ca 内流是必要的。这是第一个关于内皮细胞模型中伤口修复机制的报告,该机制是由 PL 诱导的 [Ca] 调节所促进的。