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Migrasomes: From Biogenesis, Release, Uptake, Rupture to Homeostasis and Diseases
Yaxing Zhang1,2, Wenhai Guo3,4,5, Mingmin Bi6
1Department of Physiology, School of Basic Medical Sciences, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong 510006, China.
Abstract:
Migrasomes are migration-dependent membrane-bound vesicular structures that contain cellular contents and small vesicles. Migrasomes grow on the tips or intersections of the retraction fibers after cells migrate away. The process of releasing migrasomes into the extracellular space is named as "migracytosis". After releasing, they can be taken up by the surrounding cells, or rupture and further release their contents into the extracellular environment. Physiologically, migrasomes provide regional cues for organ morphogenesis during zebrafish gastrulation and discard the damaged mitochondria in response to mild mitochondrial stresses. Pathologically, migrasomes are released from podocyte during early podocyte stress and/or damage, from platelets after infection with severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), from microglia/macrophages of the ischemic brain, and from tumor necrosis factor α (TNFα)-activated endothelial cells (ECs); thus, this newly discovered extracellular vesicle is involved in all these pathological processes. Moreover, migrasomes can modulate the proliferation of cancer cell via lateral transferring mRNA and protein. In this review, we will summarize the biogenesis, release, uptake, and rupture of migrasomes and discuss its biological roles in development, redox signalling, innate immunity and COVID-19, cardio-cerebrovascular diseases, renal diseases, and cancer biology, all of these highlight the importance of migrasomes in modulating body homeostasis and diseases.
Insights
Migrasomes, cellular vesicles released during cell migration, play roles in development and disease. This review covers their formation, function, and involvement in conditions like COVID-19 and cancer.
Area of Science:
- Cell Biology
- Extracellular Vesicles
- Biochemistry
Background:
- Migrasomes are novel membrane-bound vesicles formed during cell migration.
- They originate from retraction fibers and contain cellular components.
- Their release into the extracellular space is termed migratosis.
Purpose of the Study:
- To review the biogenesis, release, uptake, and rupture of migrasomes.
- To discuss the physiological and pathological roles of migrasomes.
- To highlight migrasome involvement in homeostasis and disease.
Main Methods:
- Literature review of migrasome research.
- Analysis of findings on migrasome formation and function.
- Synthesis of data on migrasome involvement in various biological processes and diseases.
Main Results:
- Migrasomes are involved in organ morphogenesis and removal of damaged mitochondria.
- Pathologically, they are released in conditions including SARS-CoV-2 infection, ischemic stroke, and TNFα-activated endothelial cells.
- Migrasomes modulate cancer cell proliferation via lateral transfer of mRNA and protein.
Conclusions:
- Migrasomes are crucial in development, redox signaling, innate immunity, and various diseases.
- They are significant in COVID-19, cardiovascular and cerebrovascular diseases, renal diseases, and cancer.
- Understanding migrasomes is key to comprehending body homeostasis and disease pathogenesis.
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