Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer is a research paper published in Journal of Cheminformatics (2024). On theSindex it has a DataRank of 0. It has been cited 2 times.
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U.S. Department of Veterans Affairs
Grant: I01BX005627
Diane Lindstrom Funds
Grant: 001
National Institutes of Health
Grant: 1R01CA238423
National Institutes of Health
Grant: R01GM135631
NCI NIH HHS
Grant: P30 CA014520
NCI NIH HHS
Grant: R01 CA238423
National Institutes of Health
Grant: 5R01GM135631-03
A Machine Learning Platform for Adaptive Chemical Screening
National Institutes of Health
Grant: 1I01BX005627-01
Using a chemical biology approach to develop novel inhibitors of mitochondrial oxidative phosphorylation for the treatment of ovarian cancer
National Institutes of Health
Grant: 5P30CA014520-18
CANCER CENTER SUPPORT
National Institutes of Health
Grant: 5R01CA238423-05
Repurposing Atovaquone for Preventing Ovarian Cancer: An Example of Successful Inhibition of Oxidative Phosphorylation
FWCI
0.48
Citation Percentile
0.7%
Citation Trend
Fields of Study
Keywords
Additional file 7 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 7 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 3 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 3 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 1 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 1 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 6 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 6 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 4 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 8 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 5 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 2 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 8 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 5 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 2 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer
Additional file 4 of Data mining of PubChem bioassay records reveals diverse OXPHOS inhibitory chemotypes as potential therapeutic agents against ovarian cancer