šŸ‘¤ Michael B Dwinell

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Robert F Keyes, Donna McAllister, Michael B Dwinell +1 more Ā· 2023 Ā· STAR protocols Ā· Elsevier Ā· added 2026-04-20
Triphenylphosphonium (TPP+) compounds like mito-metformin (MMe) target cancer cells by exploiting their hyperpolarized mitochondrial membrane potential. Here, we present a protocol for synthesizing TP Show more
Triphenylphosphonium (TPP+) compounds like mito-metformin (MMe) target cancer cells by exploiting their hyperpolarized mitochondrial membrane potential. Here, we present a protocol for synthesizing TPP+ analogs with selectivity for mammalian cancer cells, reduced toxicity, and quantifiability using fluorine-19 nuclear magnetic resonance (19F-NMR). We describe steps for treating mammalian cells with mitochondria-targeted compounds, treating and preparing mouse tissue with these compounds, and 19F-NMR detection of MMe analogs in cells and tissue. TPP+-conjugated metformin analogs include para-methoxy (pMeO-MMe) and para-trifluoromethyl MMe (pCF3-MMe) and meta-trifluoromethyl MMe (mCF3-MMe). Show less
no PDF DOI: 10.1016/j.xpro.2023.102437
NMR mitochondria synthesis
Mahmoud AbuEid, Robert F Keyes, Donna McAllister +6 more Ā· 2022 Ā· iScience Ā· Elsevier Ā· added 2026-04-20
Triphenylphosphonium (TPP+) conjugated compounds selectively target cancerĀ cells by exploiting their hyperpolarized mitochondrial membrane potential. ToĀ date, studies have focused on modifying either Show more
Triphenylphosphonium (TPP+) conjugated compounds selectively target cancerĀ cells by exploiting their hyperpolarized mitochondrial membrane potential. ToĀ date, studies have focused on modifying either the linker or the cargo of TPP+-conjugated compounds. Here, we investigated the biological effects ofĀ direct modification to TPP+ to improve the efficacy and detection of mito-metformin (MMe), a TPP+-conjugated probe we have shown to have promising preclinical efficacy against solid cancer cells. We designed, synthesized, and tested trifluoromethyl and methoxy MMe analogs (pCF3-MMe, mCF3-MMe, and pMeO-MMe) against multiple distinct human cancer cells. pCF3-MMe showed enhanced selectivity toward cancer cells compared to MMe, while retaining theĀ same signaling mechanism. Importantly, pCF3-MMe allowed quantitative monitoring of cellular accumulation via 19F-NMR inĀ vitro and inĀ vivo. Furthermore, adding trifluoromethyl groups to TPP+ reduced toxicity inĀ vivo while retaining anti-tumor efficacy, opening an avenue to de-risk these next-generation TPP+-conjugated compounds. Show less
no PDF DOI: 10.1016/j.isci.2022.105670
NMR mitochondria synthesis