A novel mouse model of hemoglobin SC disease reveals mechanisms underlying beneficial effects of hydroxyurea

T Tahereh Setayesh (1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States) M Mengna Chi (1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States) Z Zachery Oestreicher M Masahide Sakabe (Cincinnati Children's Hospital, Cincinnati, Ohio, United States) K Katie Seu (1Cincinnati Children's Hospital Medical Center, Cancer and Blood Diseases Institute, Cincinnati, United States) Z Zhenqi Zhu H Harsimran Kaur (1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States) A Anifat Tijani (1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States) M Mei Xin A Amy Shova (1Cincinnati Children's Hospital Medical Center, Cincinnati, United States) K Kenneth D. Greis T Tim M. Townes (6Department of Biochemistry and Molecular Genetics, The University of Alabama at Birmingham, Birmingham, AL) J József Balla (7Division of Nephrology, Department of Medicine, Faculty of Medicine, University of Debrecen, Debrecen, Hungary) K Katherine VandenHeuvel Y Yueh-Chiang Hu P Punam Malik (5Division of Hematology, Cincinnati Children’s Hospital Medical Center, and Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH)

Abstract

Abstract Sickle cell hemoglobin C (HbSC) disease results from compound heterozygosity of hemoglobin S (HbS) and hemoglobin C (HbC), comprising 30% of sickle cell disease (SCD). HbC induces red blood cell (RBC) dehydration/xerocytosis, which promotes sickling. HbSC-SCD causes significant morbidity despite being milder than homozygous HbSS-SCD. Current research/treatment strategies have focused on HbSS-SCD, whereas patients with HbSC are deprived of disease-modifying/transformative therapies because of lack of preclinical models. We generated HbSC mice, which resemble human HbSC-SCD: HbSC erythrocytes showed marked xerocytosis. Anemia, hemolysis, inflammation, and organ damage were milder than HbSS mice but hypoxia/reperfusion injury was similar. Retinopathy developed at higher frequency than HbSS mice (66.7% vs 16.7%; P < .05), as in patients with HbSC-SCD. Although HbSC RBCs sickled at lower oxygen tension than HbSS RBCs, they did not completely recover deformability after hypoxia/reoxygenation. Using the HbSC mice, we studied the mechanism by which hydroxyurea causes significant clinical benefit in patients with HbSC-SCD, despite minimal/modest increases in fetal Hb (HbF). We found hydroxyurea had distinct non-HbF and HbF effects. Hydroxyurea did not increase HbF in adult HbSC/HbSS mice but reduced RBC reactive oxygen species, ferryl Hb, and Heinz-body formation, thereby reducing membrane damage; however, RBC hydration was unaffected. When given to unborn pups before γ-globin expression was switched off, and continued postnatally, we could induce HbF in both HbSC and HbSS mice (higher HbF in HbSS vs HbSC mice). Minimal increases in HbF (∼1%) improved HbSC RBC hydration. Peak HbF levels of 7% in HbSC mice abrogated sickling. Overall, this HbSC model will help bridge the knowledge gap in mechanistic/therapeutic studies in this neglected disease.

Article Details

Journal Blood
Volume / Issue Vol. 146, Issue 1
Published July 03, 2025
Pages 13-28
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (16)

T

Tahereh Setayesh

1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States

M

Mengna Chi

1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States

Z

Zachery Oestreicher

M

Masahide Sakabe

Cincinnati Children's Hospital, Cincinnati, Ohio, United States

K

Katie Seu

1Cincinnati Children's Hospital Medical Center, Cancer and Blood Diseases Institute, Cincinnati, United States

Z

Zhenqi Zhu

H

Harsimran Kaur

1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States

A

Anifat Tijani

1Cincinnati Children's Hospital Medical Center, Division of Experimental Hematology and Cancer Biology, Cincinnati, United States

M

Mei Xin

A

Amy Shova

1Cincinnati Children's Hospital Medical Center, Cincinnati, United States

K

Kenneth D. Greis

T

Tim M. Townes

6Department of Biochemistry and Molecular Genetics, The University of Alabama at Birmingham, Birmingham, AL

J

József Balla

7Division of Nephrology, Department of Medicine, Faculty of Medicine, University of Debrecen, Debrecen, Hungary

K

Katherine VandenHeuvel

Y

Yueh-Chiang Hu

P

Punam Malik

5Division of Hematology, Cincinnati Children’s Hospital Medical Center, and Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH