Zhang Chen, Hu Jiajia, Shi Yifan, Feng Yang, Li Zeyang, Dong Zi, Tang Yiding, Ning Guang, Wang Zhengting, Huang Guorui
Department of Endocrine and Metabolic Diseases, Shanghai Institute of Endocrine and Metabolic Diseases, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China.
Shanghai National Clinical Research Center for Metabolic Diseases, Key Laboratory for Endocrine and Metabolic Diseases of the National Health Commission of the PR China, Shanghai Key Laboratory for Endocrine Tumor, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200025, China.
Life Med. 2025 Jun 11;4(4):lnaf017. doi: 10.1093/lifemedi/lnaf017. eCollection 2025 Aug.
Microvesicles (MVs) have convenient clinical applications and play functional roles in cellular signal transduction. Although the clinical importance of MVs is being increasingly recognized, the current diversity of isolated protocols results in a heterogeneous population of their unknown origins, even expands to uncertain functions. Here, we systematically investigated the composition of MVs at different centrifugal speed intervals and discovered that centrifugation at 3000 is critical in determining the composition of MVs. We observed that platelet-derived particles accounted for more than 80% of MVs under 3000 , while only about 20% of MVs were obtained over 3000 . The discovery that more than 80% of platelet-derived MVs sheds new light on their function, including procoagulation activity and clinical diagnosis, etc. Our work not only optimizes the method for MVs isolation but also clarifies the physiological functions and characteristics that should be attributed to platelets rather than MVs. Consequently, these findings will derive new conceptualizations regarding MVs' composition and function.
微泡(MVs)具有便捷的临床应用价值,并在细胞信号转导中发挥功能作用。尽管MVs的临床重要性日益受到认可,但目前分离方案的多样性导致其来源不明的异质性群体,甚至扩展到功能不确定的情况。在此,我们系统地研究了不同离心速度区间下MVs的组成,发现3000转离心对于确定MVs的组成至关重要。我们观察到,在3000转以下,血小板衍生颗粒占MVs的80%以上,而在3000转以上仅获得约20%的MVs。超过80%的血小板衍生MVs这一发现为其功能,包括促凝血活性和临床诊断等,提供了新的线索。我们的工作不仅优化了MVs的分离方法,还阐明了应归因于血小板而非MVs的生理功能和特征。因此,这些发现将引发关于MVs组成和功能的新观念。