A TMPRSS6-inhibiting mAb improves disease in a β-thalassemia mouse model and reduces iron in healthy humans

Heinrich E. Lob(Regeneron (United States)), Nikhil Singh(Regeneron (United States)), Kusha Mohammadi(Regeneron (United States)), L. R. Ivanova(Regeneron (United States)), Beth Crowell(Regeneron (United States)), Hyon J. Kim(Regeneron (United States)), Leah Kravets(Regeneron (United States)), Nanditha Das(Regeneron (United States)), Yonaton Ray(Regeneron (United States)), Jee Hae Kim(Regeneron (United States)), Sylvie Rottey(Ghent University Hospital), Emily Labriola–Tompkins(Regeneron (United States)), Hazem E. Hassan(Regeneron (United States)), Lorna A. Farrelly(Regeneron (United States)), Harvey F. Chin(Regeneron (United States)), Marilena Preda(Regeneron (United States)), Leigh Spencer Noakes(Regeneron (United States)), Kei Saotome(Regeneron (United States)), Matthew C. Franklin(Regeneron (United States)), Marc W. Retter(Regeneron (United States)), Elif Kabuloglu Karayusuf(Regeneron (United States)), John J. Flanagan(Regeneron (United States)), William C. Olson(Regeneron (United States)), Kalyan C. Nannuru(Regeneron (United States)), Vincent Idone(Regeneron (United States)), Michael E. Burczynski(Regeneron (United States)), Olivier Harari(Regeneron (United States)), Lorah Perlee(Regeneron (United States)), Griet Van Lancker(Ghent University Hospital), Andrew Murphy(Regeneron (United States)), Aris N. Economides(Regeneron (United States)), Sarah Hatsell(Regeneron (United States))
JCI Insight
June 22, 2025
Cited by 2Open Access
Full Text

Abstract

β-Thalassemia is a genetic disorder arising from mutations in the β-globin gene, leading to ineffective erythropoiesis and iron overload. Ineffective erythropoiesis, a hallmark of β-thalassemia, is an important driver of iron overload, which contributes to liver fibrosis, diabetes, and cardiac disease. Iron homeostasis is regulated by the hormone hepcidin; BMP6/hemojuvelin-mediated (BMP6/HJV-mediated) signaling induces hepatic hepcidin expression via SMAD1/5, with transmembrane serine protease 6 (TMPRSS6) being a negative regulator of HJV. Individuals with loss-of-function mutations in the TMPRSS6 gene show increased circulating hepcidin and iron-refractory iron-deficiency anemia, suggesting that blocking TMPRSS6 may be a viable strategy to elevate hepcidin levels in β-thalassemia. We generated a human mAb (REGN7999) that inhibits TMPRSS6. In an Hbbth3/+ mouse model of β-thalassemia, REGN7999 treatment led to significant reductions in liver iron, reduced ineffective erythropoiesis, and showed improvements in RBC health, running distance during forced exercise, and bone density. In a phase I, doubleblind, randomized, placebo-controlled study in healthy human volunteers (NCT05481333), REGN7999 increased serum hepcidin and reduced serum iron with an acceptable tolerability profile. Our results suggest that, by both reducing iron and improving RBC function, inhibition of TMPRSS6 by REGN7999 may offer a therapy for iron overload and impaired erythropoiesis in β-thalassemia.


Related Papers