Professional role
senior author[1]
Sources are listed once and connected to each accepted claim they support. Excerpts preserve the source language used in the review.
4 source claims · Reviewed Sep 9, 2026
Degree: PhD
“CDF is a major protein family type found in all forms of life,” said senior author Mark R. Chance, PhD, the Charles W. and Iona A. Mathias Professor of Cancer Research, Case Western Reserve University School of Medicine. “Mutations or altered regulation of human CDFs modify the concentrations of metal ions critical to cell function and are associated with key human diseases, including those affecting endocrine, neurologic, hepatic and cardiovascular systems.”
Identity: Mark R. Chance
“CDF is a major protein family type found in all forms of life,” said senior author Mark R. Chance, PhD, the Charles W. and Iona A. Mathias Professor of Cancer Research, Case Western Reserve University School of Medicine. “Mutations or altered regulation of human CDFs modify the concentrations of metal ions critical to cell function and are associated with key human diseases, including those affecting endocrine, neurologic, hepatic and cardiovascular systems.”
Professional role: senior author
“CDF is a major protein family type found in all forms of life,” said senior author Mark R. Chance, PhD, the Charles W. and Iona A. Mathias Professor of Cancer Research, Case Western Reserve University School of Medicine. “Mutations or altered regulation of human CDFs modify the concentrations of metal ions critical to cell function and are associated with key human diseases, including those affecting endocrine, neurologic, hepatic and cardiovascular systems.”
Professional role: the Charles W. and Iona A. Mathias Professor of Cancer Research, Case Western Reserve University School of Medicine
“CDF is a major protein family type found in all forms of life,” said senior author Mark R. Chance, PhD, the Charles W. and Iona A. Mathias Professor of Cancer Research, Case Western Reserve University School of Medicine. “Mutations or altered regulation of human CDFs modify the concentrations of metal ions critical to cell function and are associated with key human diseases, including those affecting endocrine, neurologic, hepatic and cardiovascular systems.”