Mitochondrial Metabolism as a Target for Cancer Therapy DOI Creative Commons

Karthik Vasan,

M.D. Werner, Navdeep S. Chandel

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Cell Metabolism, Journal Year: 2020, Volume and Issue: 32(3), P. 341 - 352

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Language: Английский

Fundamentals of cancer metabolism DOI Creative Commons
Ralph J. DeBerardinis, Navdeep S. Chandel

Science Advances, Journal Year: 2016, Volume and Issue: 2(5)

Published: May 6, 2016

Researchers provide a conceptual framework to understand current knowledge of the fundamentals cancer metabolism.

Language: Английский

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Understanding the Intersections between Metabolism and Cancer Biology DOI Creative Commons
Matthew G. Vander Heiden, Ralph J. DeBerardinis

Cell, Journal Year: 2017, Volume and Issue: 168(4), P. 657 - 669

Published: Feb. 1, 2017

Language: Английский

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ROS signalling in the biology of cancer DOI

Jennifer N. Moloney,

Thomas G. Cotter

Seminars in Cell and Developmental Biology, Journal Year: 2017, Volume and Issue: 80, P. 50 - 64

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Language: Английский

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Mitochondria-Targeted Triphenylphosphonium-Based Compounds: Syntheses, Mechanisms of Action, and Therapeutic and Diagnostic Applications DOI
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Joy Joseph,

Adam Sikora

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Chemical Reviews, Journal Year: 2017, Volume and Issue: 117(15), P. 10043 - 10120

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Mitochondria are recognized as one of the most important targets for new drug design in cancer, cardiovascular, and neurological diseases. Currently, effective way to deliver drugs specifically mitochondria is by covalent linking a lipophilic cation such an alkyltriphenylphosphonium moiety pharmacophore interest. Other delocalized cations, rhodamine, natural synthetic mitochondria-targeting peptides, nanoparticle vehicles, have also been used mitochondrial delivery small molecules. Depending on approach used, cell membrane potentials, more than 1000-fold higher concentration can be achieved. Mitochondrial targeting has developed study physiology dysfunction interaction between other subcellular organelles treatment variety diseases neurodegeneration cancer. In this Review, we discuss efforts target small-molecule compounds probing function, diagnostic tools potential therapeutics. We describe physicochemical basis accumulation chemistry strategies mitochondria, probes, sensors, examples bioactive compounds. Finally, review published attempts apply mitochondria-targeted agents cancer neurodegenerative

Language: Английский

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An Essential Role of the Mitochondrial Electron Transport Chain in Cell Proliferation Is to Enable Aspartate Synthesis DOI Creative Commons
Kıvanç Birsoy, Timothy C. Wang, Walter W. Chen

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Cell, Journal Year: 2015, Volume and Issue: 162(3), P. 540 - 551

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Targeting mitochondria metabolism for cancer therapy DOI
Samuel E. Weinberg, Navdeep S. Chandel

Nature Chemical Biology, Journal Year: 2014, Volume and Issue: 11(1), P. 9 - 15

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Metformin: From Mechanisms of Action to Therapies DOI Creative Commons
Marc Foretz, Bruno Guigas, Luc Bertrand

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Cell Metabolism, Journal Year: 2014, Volume and Issue: 20(6), P. 953 - 966

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Mitochondria and Cancer DOI Creative Commons
Wei‐Xing Zong, Joshua D. Rabinowitz, Eileen White

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Molecular Cell, Journal Year: 2016, Volume and Issue: 61(5), P. 667 - 676

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Supporting Aspartate Biosynthesis Is an Essential Function of Respiration in Proliferating Cells DOI Creative Commons
Lucas B. Sullivan, Dan Y. Gui, Aaron M. Hosios

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Cell, Journal Year: 2015, Volume and Issue: 162(3), P. 552 - 563

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Adapting to obesity with adipose tissue inflammation DOI
Shannon M. Reilly, Alan R. Saltiel

Nature Reviews Endocrinology, Journal Year: 2017, Volume and Issue: 13(11), P. 633 - 643

Published: Aug. 11, 2017

Language: Английский

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