DNA methylation patterns in bladder tumors of African American patients point to distinct alterations in xenobiotic metabolism
Venkatrao Vantaku(Baylor College of Medicine), Nagireddy Putluri(Baylor College of Medicine), Michael D. Kornberg(Johns Hopkins University), Patricia Castro(Baylor College of Medicine), Vasanta Putluri(Baylor College of Medicine), Wei Tang(Agency for Science, Technology and Research), Stefan Ambs(University of Maryland, Baltimore), Arun Sreekumar(University of Michigan–Ann Arbor), Danthasinghe Waduge Badrajee Piyarathna(Baylor College of Medicine), Marcos R. Estecio, Kimal Rajapakshe(Baylor College of Medicine), Yair Lotan(Southwestern Medical Center), Seth P. Lerner(Baylor College of Medicine), Cristian Coarfa(Baylor College of Medicine), Stephen B. Williams(Cedars-Sinai Medical Center), Michael Ittmann(Baylor College of Medicine), Chandrashekar R. Ambati(Baylor College of Medicine), Chandra Sekhar Amara(Baylor College of Medicine), Roni J. Bollag(Augusta University Health), Martha K. Terris(WellStar Health System), Sri Ramya Donepudi(Baylor College of Medicine)
Cited by 14
Related Papers
Impaired nitric oxide-mediated vasodilation in patients with non-insulin-dependent diabetes mellitus
|Journal of the American College of Cardiology|1996|1k
A variant upstream of IFNL3 (IL28B) creating a new interferon gene IFNL4 is associated with impaired clearance of hepatitis C virus
|Nature Genetics|2013|922
Mutual regulation of tumour vessel normalization and immunostimulatory reprogramming
|Nature|2017|853
Acute Hyperglycemia Attenuates Endothelium-Dependent Vasodilation in Humans In Vivo
|Circulation|1998|804