2nd Department of Oncology, Faculty of Medicine, Comenius University in Bratislava, Klenova 1, 833 10 Bratislava, Slovakia.
National Cancer Institute, 833 10 Bratislava, Slovakia.
Int J Mol Sci. 2021 Dec 30;23(1):388. doi: 10.3390/ijms23010388.
Mitochondrial bioenergetics reprogramming is an essential response of cells to stress. Platelets, an accessible source of mitochondria, have a crucial role in cancer development; however, the platelet mitochondrial function has not been studied in urothelial carcinoma (UC) patients. A total of 15 patients with UC and 15 healthy controls were included in the study. Parameters of platelet mitochondrial respiration were evaluated using the high-resolution respirometry method, and the selected antioxidant levels were determined by HPLC. In addition, oxidative stress was evaluated by the thiobarbituric acid reactive substances (TBARS) concentration in plasma. We demonstrated deficient platelet mitochondrial respiratory chain functions, oxidative phosphorylation (OXPHOS), and electron transfer (ET) capacity with complex I (CI)-linked substrates, and reduced the endogenous platelet coenzyme Q (CoQ) concentration in UC patients. The activity of citrate synthase was decreased in UC patients vs. controls ( = 0.0191). γ-tocopherol, α-tocopherol in platelets, and β-carotene in plasma were significantly lower in UC patients ( = 0.0019; = 0.02; = 0.0387, respectively), whereas the plasma concentration of TBARS was increased ( = 0.0022) vs. controls. The changes in platelet mitochondrial bioenergetics are consistent with cell metabolism reprogramming in UC patients. We suppose that increased oxidative stress, decreased OXPHOS, and a reduced platelet endogenous CoQ level can contribute to the reprogramming of platelet mitochondrial OXPHOS toward the activation of glycolysis. The impaired mitochondrial function can contribute to increased oxidative stress by triggering the reverse electron transport from the CoQ cycle (Q-junction) to CI.
线粒体生物能量重编程是细胞应对应激的一种基本反应。血小板作为线粒体的可及来源,在癌症发展中起着至关重要的作用;然而,在尿路上皮癌(UC)患者中,尚未研究血小板线粒体功能。本研究共纳入 15 例 UC 患者和 15 例健康对照者。使用高分辨率呼吸测定法评估血小板线粒体呼吸的参数,并通过 HPLC 测定选定的抗氧化剂水平。此外,通过血浆中硫代巴比妥酸反应物质(TBARS)浓度评估氧化应激。我们证明 UC 患者的血小板线粒体呼吸链功能、氧化磷酸化(OXPHOS)和电子传递(ET)能力受损,与 CI 相关的底物,以及内源性血小板辅酶 Q(CoQ)浓度降低。与对照组相比,UC 患者的柠檬酸合酶活性降低( = 0.0191)。血小板中的 γ-生育酚、α-生育酚和血浆中的 β-胡萝卜素在 UC 患者中明显降低( = 0.0019; = 0.02; = 0.0387,分别),而血浆 TBARS 浓度升高( = 0.0022)。血小板线粒体生物能量的变化与 UC 患者的细胞代谢重编程一致。我们假设增加的氧化应激、降低的 OXPHOS 和降低的血小板内源性 CoQ 水平可能导致血小板线粒体 OXPHOS 向糖酵解激活的重编程。受损的线粒体功能可能通过触发 CoQ 循环(Q 结)到 CI 的反向电子传递来增加氧化应激。