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Merck
CN
  • Mitochondria-targeted magnolol inhibits OXPHOS, proliferation, and tumor growth via modulation of energetics and autophagy in melanoma cells.

Mitochondria-targeted magnolol inhibits OXPHOS, proliferation, and tumor growth via modulation of energetics and autophagy in melanoma cells.

Cancer treatment and research communications (2020-09-29)
Gang Cheng, Micael Hardy, Jacek Zielonka, Katherine Weh, Monika Zielonka, Kathleen A Boyle, Mahmoud Abu Eid, Donna McAllister, Brian Bennett, Laura A Kresty, Michael B Dwinell, Balaraman Kalyanaraman
摘要

Melanoma is an aggressive form of skin cancer for which there are no effective drugs for prolonged treatment. The existing kinase inhibitor antiglycolytic drugs (B-Raf serine/threonine kinase or BRAF inhibitors) are effective for a short time followed by a rapid onset of drug resistance. Here, we show that a mitochondria-targeted analog of magnolol, Mito-magnolol (Mito-MGN), inhibits oxidative phosphorylation (OXPHOS) and proliferation of melanoma cells more potently than untargeted magnolol. Mito-MGN also inhibited tumor growth in murine melanoma xenografts. Mito-MGN decreased mitochondrial membrane potential and modulated energetic and mitophagy signaling proteins. Results indicate that Mito-MGN is significantly more potent than the FDA-approved OXPHOS inhibitor in inhibiting proliferation of melanoma cells. These findings have implications in the treatment of melanomas with enhanced OXPHOS status due to metabolic reprogramming or drug resistance.

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AMPK抑制剂,化合物C, AMPK Inhibitor, Compound C, CAS 866405-64-3, is a cell-permeable compound that inhibits KDR/VEGFR2, ALK2/BMPR-I, and AMPK kinase activities (IC50 = 25.1, 148, and 234.6 nM, respectively).