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TOPICAL COLLECTIONS

Unraveling the Dance of Mitochondria: Methods for Mitochondrial Dynamics
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Filipe V. Duarte

Filipe V. Duarte

University of Coimbra

<p>Dr. Filipe Duarte earned his PhD in Biosciences from the University of Coimbra, Portugal, in 2012. He is currently an assistant researcher at CNC-Center for Neuroscience and Cell Biology and an invited assistant professor in the Department of Life Sciences at the University of Coimbra. His primary research focus is on mitochondrial dynamics in synaptic plasticity and epileptogenesis.</p><p><br></p><p>Dr. Duarte's expertise also spans the biotech industry. From 2016 to 2018, he worked as an R&amp;D Scientist at Exogenus Therapeutics, concentrating on the development of exosome-based therapies.&nbsp;</p><p><br></p><p>Since 2018, he has dedicated his efforts to studying neuronal signaling as part of the Neuronal Signaling research group at CNC. In 2021, he established his independent research line examining the role of mitochondria in synaptic regulation. Alongside his research pursuits, Dr. Duarte remains committed to education, teaching courses in biochemistry and cellular and molecular biology at the University of Coimbra.</p>

Collection Overview

Mitochondria, the "powerhouse of the cell," are essential for energy production, metabolism, and signaling. Their dynamic nature, involving fission, fusion, and transport, is crucial for maintaining cellular homeostasis. Dysregulation of mitochondrial dynamics has been implicated in various diseases including neurodegenerative disorders, metabolic diseases, and cancer. 


This collection will cover the fundamental mechanisms underlying mitochondrial dynamics, including the proteins involved and how they are regulated by various signaling pathways. Furthermore, the articles in this collection will explore the consequences of mitochondrial dysfunction in different pathological conditions and discuss potential therapeutic targets. It will also feature detailed protocols for state-of-the-art techniques used to study mitochondrial dynamics.


Potential topics of interest include mitochondrial fission and fusion machinery, regulation by signaling pathways (e.g., AMPK and PINK1/Parkin), mitochondrial transport and anchoring, mitochondrial dynamics in neurodegenerative diseases (e.g., Alzheimer's and Parkinson's), mitochondrial dynamics in metabolic diseases (e.g., diabetes and obesity), mitochondrial dynamics in cancer, and therapeutic targeting of mitochondrial dynamics. 


The target audience for this Methos Collection includes researchers studying mitochondrial biology and related fields, as well as clinicians interested in disorders associated with mitochondrial dynamics. JoVE's video format will ensure broad dissemination and high visibility of carefully reviewed and standardized protocols. These videos will also have educational value and can serve as effective teaching tools. 


This collection aims to be a valuable resource on mitochondrial dynamics, enhancing our understanding of this critical cellular process and its implications for human health and disease.