Endometriosis: The Role of Iron Overload and Ferroptosis.

Shu-Wing Ng, Sam G Norwitz, Hugh S Taylor, Errol R Norwitz

Journal: Reproductive sciences (Thousand Oaks, Calif.) 2020;27(7):1383-1390

PMID: 32077077

Abstract

Iron is an essential element for cell survival, and iron deficiency is a known risk factor for many reproductive disorders. Paradoxically, such disorders are also seen more commonly under conditions of iron excess. Here, we focus on the problem of iron overload in women's health, using endometriosis as a model system. We propose (i) that a primary defect in endometriosis is abnormal eutopic endometrium characterized by resistance to ferroptosis, a process of iron-mediated non-apoptotic programmed cell death, which allows cells spread via retrograde menstruation to survive, implant, and establish endometriotic lesions within the abdominal cavity, and (ii) that dysregulated iron homeostasis may be critical to the subsequent pathophysiology of endometriotic lesions with localized iron overload and inflammation. We further investigate the association between endometriosis and hypercholesterolemia and suggest that an interaction between the mevalonate cholesterol biosynthetic pathway and ferroptosis signaling may provide a molecular basis to explain how it is that, in some women, endometrial tissues survive and thrive under ferroptotic pressure, colonize at ectopic sites, and expand into endometriotic lesions.

Address: Department of Obstetrics & Gynecology, Tufts University School of Medicine, Boston, USA.; Mother Infant Research Institute, Tufts Medical Center, Boston, USA.; Washington University, St. Louis, USA.; Department of Obstetrics, Gynecology & Reproductive Sciences, Yale School of Medicine, New Haven, USA.; Department of Obstetrics & Gynecology, Tufts University School of Medicine, Boston, USA. [email protected].; Mother Infant Research Institute, Tufts Medical Center, Boston, USA. [email protected].

Link outs

Subscription / membership required

Bant logo

© Copyright 2026, Nutrition Evidence

NED wishes to thank the following organisations for their support:

We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.