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血小板衍生的微颗粒通过转移线粒体来调节乳腺癌的生物能量状态和恶性特征。

Mitochondria Transfer by Platelet-Derived Microparticles Regulates Breast Cancer Bioenergetic States and Malignant Features.

机构信息

Department of Chemistry and Biochemistry, Université de Moncton, Moncton, New Brunswick, Canada.

New Brunswick Center for Precision Medicine, Moncton, New Brunswick, Canada.

出版信息

Mol Cancer Res. 2024 Mar 1;22(3):268-281. doi: 10.1158/1541-7786.MCR-23-0329.

Abstract

UNLABELLED

An increasing number of studies show that platelets as well as platelet-derived microparticles (PMP) play significant roles in cancer malignancy and disease progression. Particularly, PMPs have the capacity to interact and internalize within target cells resulting in the transfer of their bioactive cargo, which can modulate the signaling and activation processes of recipient cells. We recently identified a new subpopulation of these vesicles (termed mitoMPs), which contain functional mitochondria. Given the predominant role of mitochondria in cancer cell metabolism and disease progression, we set out to investigate the impact of mitoMPs on breast cancer metabolic reprograming and phenotypic processes leading to malignancy. Interestingly, we observed that recipient cell permeability to PMP internalization varied among the breast cancer cell types evaluated in our study. Specifically, cells permissive to mitoMPs acquire mitochondrial-dependent functions, which stimulate increased cellular oxygen consumption rates and intracellular ATP levels. In addition, cancer cells co-incubated with PMPs display enhanced malignant features in terms of migration and invasion. Most importantly, the cancer aggressive processes and notable metabolic plasticity induced by PMPs were highly dependent on the functional status of the mitoMP-packaged mitochondria. These findings characterize a new mechanism by which breast cancer cells acquire foreign mitochondria resulting in the gain of metabolic processes and malignant features. A better understanding of these mechanisms may provide therapeutic opportunities through PMP blockade to deprive cancer cells from resources vital in disease progression.

IMPLICATIONS

We show that the transfer of foreign mitochondria by microparticles modulates recipient cancer cell metabolic plasticity, leading to greater malignant processes.

摘要

未加标签

越来越多的研究表明,血小板和血小板衍生的微颗粒(PMP)在癌症恶性程度和疾病进展中起着重要作用。特别是,PMP 有能力与靶细胞相互作用并内化,导致其生物活性货物的转移,从而调节受体细胞的信号转导和激活过程。我们最近发现了这些囊泡的一个新亚群(称为 mitoMPs),其中包含有功能的线粒体。鉴于线粒体在癌细胞代谢和疾病进展中的主要作用,我们着手研究 mitoMPs 对乳腺癌代谢重编程和导致恶性的表型过程的影响。有趣的是,我们观察到,受体内化 PMP 的通透性在我们研究中评估的乳腺癌细胞类型之间存在差异。具体来说,允许 mitoMPs 进入的细胞获得了依赖线粒体的功能,这刺激了细胞耗氧量和细胞内 ATP 水平的增加。此外,与 PMP 共孵育的癌细胞在迁移和侵袭方面表现出增强的恶性特征。最重要的是,PMP 诱导的癌症侵袭过程和显著的代谢可塑性高度依赖于封装线粒体的功能状态。这些发现描述了乳腺癌细胞获得外来线粒体从而获得代谢过程和恶性特征的新机制。更好地理解这些机制可能通过阻断 PMP 来剥夺癌症细胞在疾病进展中至关重要的资源,从而为治疗提供机会。

意义

我们表明,微颗粒转移外来线粒体调节受体癌细胞代谢可塑性,导致更严重的恶性过程。

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