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Mitochondrial Transfer in the Neurovascular Unit, Not Only for Energy Rescue: A Systematic Review. | LitMetric

AI Article Synopsis

  • The text discusses the overlooked interactions at the organelle level in neurovascular units (NVU), particularly focusing on mitochondria and their role beyond energy supply.
  • It highlights mitochondrial transfer as a method for intercellular communication, where transferred mitochondria can carry important bioactive molecules and help mitigate risks in various health conditions.
  • The review emphasizes the therapeutic potential of mitochondrial transfer in treating central nervous system disorders, specifically neurodegenerative diseases linked to mitochondrial dysfunction, and suggests exogenous mitochondrial supplementation as a promising treatment strategy.

Article Abstract

Despite substantial evidence highlighting molecular communication within the components of neurovascular units (NVU), the interactions at the organelle level have been insufficiently explored in recent decades. Mitochondria, for instance, beyond their traditional role as energy supply for intracellular metabolism and survival, provide a novel perspective on intercellular connections through mitochondrial transfer. These transferred mitochondria not only carry bioactive molecules but also signal to mitigate risks in both healthy and pathological conditions. In this review, we summarized mitochondrial transfer events, relevant routes, and underlying molecular mechanisms originating from diverse cell populations within NVU. We particularly focus on the therapeutic potential of this mechanism in treating central nervous system disorders, notably neurodegenerative diseases marked by mitochondrial dysfunction and then highlight the promising prospects of exogenous mitochondrial supplementation as a treatment target.

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Source
http://dx.doi.org/10.14336/AD.2024.0461DOI Listing

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