Department of Medicine, Queen's University, Kingston, ON, Canada.
Department of Medicine, Queen's University, Kingston, ON, Canada; Department of Biomedical and Molecular Sciences, Queen's University, Kingston, ON, Canada.
Trends Endocrinol Metab. 2023 Sep;34(9):554-570. doi: 10.1016/j.tem.2023.06.004. Epub 2023 Jul 4.
Mitochondria operate as hubs of cellular metabolism that execute important regulatory functions. Damaged/dysfunctional mitochondria are recognized as major pathogenic contributors to many common human diseases. Assessment of mitochondrial function relies upon invasive tissue biopsies; peripheral blood cells, specifically platelets, have emerged as an ideal candidate for mitochondrial function assessment. Accessibility and documented pathology-related dysfunction have prompted investigation into the role of platelets in disease, the contribution of platelet mitochondria to pathophysiology, and the capacity of platelets to reflect systemic mitochondrial health. Platelet mitochondrial bioenergetics are being investigated in neurodegenerative and cardiopulmonary diseases, infection, diabetes, and other (patho)physiological states such as aging and pregnancy. Early findings support the use of platelets as a biomarker for mitochondrial functional health.
线粒体作为细胞代谢的枢纽,执行着重要的调节功能。受损/功能失调的线粒体被认为是许多常见人类疾病的主要致病因素。线粒体功能的评估依赖于有创的组织活检;外周血细胞,特别是血小板,已成为评估线粒体功能的理想候选物。血小板的可及性和有记录的与病理相关的功能障碍促使人们研究血小板在疾病中的作用、血小板线粒体对病理生理学的贡献,以及血小板反映全身线粒体健康的能力。血小板线粒体生物能量学正在神经退行性疾病和心肺疾病、感染、糖尿病和其他(病理)生理状态(如衰老和妊娠)中进行研究。早期研究结果支持将血小板用作线粒体功能健康的生物标志物。