Imran Rizvi
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Articles (16)
Methods to Evaluate Changes in Mitochondrial Structure and Function in Cancer
Mitochondria are regulators of key cellular processes, including energy production and redox homeostasis. Mitochondrial dysfunction is associated with various human diseases, including cancer. Importantly, both structural and functional changes can alter mitochondrial function. Morphologic and quantifiable changes in mitochondria can affect their function and contribute to disease. Structural mitochondrial changes include alterations in cristae morphology, mitochondrial DNA integrity and quantity, and dynamics, such as fission and fusion. Functional parameters related to mitochondrial biology include the production of reactive oxygen species, bioenergetic capacity, calcium retention, and membrane potential. Although these parameters can occur independently of one another, changes in mitochondrial structure and function are often interrelated. Thus, evaluating changes in both mitochondrial structure and function is crucial to understanding the molecular events involved in disease onset and progression. This review focuses on the relationship between alterations in mitochondrial structure and function and cancer, with a particular emphasis on gynecologic malignancies. Selecting methods with tractable parameters may be critical to identifying and targeting mitochondria-related therapeutic options. Methods to measure changes in mitochondrial structure and function, with the associated benefits and limitations, are summarized.
Year:
2023
Collaborators (8)
Jonathan Celli
University of Massachusetts Boston
Girgis Obaid
Assistant Professor
University of Texas at Dallas
Tatiana Rogasevskaia
Associate Professor
Mount Royal University
Giuliano Scarcelli
University of Maryland
Frances Ligler
Professor and Eppright Chair
Texas A&M Engineering
David Kessel
Professor
Wayne State University School of Medicine
William Polacheck
Assistant Professor
University of North Carolina at Chapel Hill
Anne‐Laure Bulin
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