An erythroid-specific lentiviral vector improves anemia and iron metabolism in a new model of XLSA

C Carlo Castruccio Castracani (4The Children's Hospital of Philadelphia, Philadelphia, United States) L Laura Breda (4The Children's Hospital of Philadelphia, Division of Hematology, Philadelphia, United States) T Tyler E. Papp (Division of Infectious Diseases, Perelman School of Medicine, University of Pennsylvania) A Amaliris Guerra (1Division of Hematology, Department of Pediatrics, The Children’s Hospital of Philadelphia, Philadelphia, PA) E Enrico Radaelli C Charles-Antoine Assenmacher G Giovanni Finesso (3Comparative Pathology Core, Department of Pathobiology, University of Pennsylvania School of Veterinary Medicine, Philadelphia, PA) B Barbara L. Mui (Acuitas Therapeutics) Y Ying K. Tam S Simona Fontana (5Department of Oncology, University of Torino, Torino, Italy) C Chiara Riganti (5Department of Oncology, University of Torino, Torino, Italy) V Veronica Fiorito (6Department of Biotechnology and Health Sciences and Molecular Biotechnology Center "Guido Tarone," University of Torino, Torino, Italy) S Sara Petrillo (6Department of Biotechnology and Health Sciences and Molecular Biotechnology Center "Guido Tarone," University of Torino, Torino, Italy) E Emanuela Tolosano (6Department Molecular Biotechnology and Health Sciences, Molecular Biotechnology Center Guido Tarone, University of Torino, Torino, Italy) H Hamideh Parhiz S Stefano Rivella (4The Children's Hospital of Philadelphia, Philadelphia, United States)

Abstract

Abstract X-linked sideroblastic anemia (XLSA) is a congenital anemia caused by mutations in ALAS2, a gene responsible for heme synthesis. Treatments are limited to pyridoxine supplements and blood transfusions, offering no definitive cure except for allogeneic hematopoietic stem cell transplantation, only accessible to a subset of patients. The absence of a suitable animal model has hindered the development of gene therapy research for this disease. We engineered a conditional Alas2-knockout (KO) mouse model using tamoxifen administration or treatment with lipid nanoparticles carrying Cre-mRNA and conjugated to an anti-CD117 antibody. Alas2-KOBM animals displayed a severe anemic phenotype characterized by ineffective erythropoiesis (IE), leading to low numbers of red blood cells, hemoglobin, and hematocrit. In particular, erythropoiesis in these animals showed expansion of polychromatic erythroid cells, characterized by reduced oxidative phosphorylation, mitochondria’s function, and activity of key tricarboxylic acid cycle enzymes. In contrast, glycolysis was increased in the unsuccessful attempt to extend cell survival despite mitochondrial dysfunction. The IE was associated with marked splenomegaly and low hepcidin levels, leading to iron accumulation in the liver, spleen, and bone marrow and the formation of ring sideroblasts. To investigate the potential of a gene therapy approach for XLSA, we developed a lentiviral vector (X-ALAS2-LV) to direct ALAS2 expression in erythroid cells. Infusion of bone marrow (BM) cells with 0.6 to 1.4 copies of the X-ALAS2-LV in Alas2-KOBM mice improved complete blood cell levels, tissue iron accumulation, and survival rates. These findings suggest our vector could be curative in patients with XLSA.

Article Details

Journal Blood
Volume / Issue Vol. 145, Issue 1
Published January 02, 2025
Pages 98-113
ISSN 0006-4971
Publisher Elsevier BV

Journal Info

Blood

Elsevier BV

ISSN: 0006-4971 Health Sciences

Authors (16)

C

Carlo Castruccio Castracani

4The Children's Hospital of Philadelphia, Philadelphia, United States

L

Laura Breda

4The Children's Hospital of Philadelphia, Division of Hematology, Philadelphia, United States

T

Tyler E. Papp

Division of Infectious Diseases, Perelman School of Medicine, University of Pennsylvania

A

Amaliris Guerra

1Division of Hematology, Department of Pediatrics, The Children’s Hospital of Philadelphia, Philadelphia, PA

E

Enrico Radaelli

C

Charles-Antoine Assenmacher

G

Giovanni Finesso

3Comparative Pathology Core, Department of Pathobiology, University of Pennsylvania School of Veterinary Medicine, Philadelphia, PA

B

Barbara L. Mui

Acuitas Therapeutics

Y

Ying K. Tam

S

Simona Fontana

5Department of Oncology, University of Torino, Torino, Italy

C

Chiara Riganti

5Department of Oncology, University of Torino, Torino, Italy

V

Veronica Fiorito

6Department of Biotechnology and Health Sciences and Molecular Biotechnology Center "Guido Tarone," University of Torino, Torino, Italy

S

Sara Petrillo

6Department of Biotechnology and Health Sciences and Molecular Biotechnology Center "Guido Tarone," University of Torino, Torino, Italy

E

Emanuela Tolosano

6Department Molecular Biotechnology and Health Sciences, Molecular Biotechnology Center Guido Tarone, University of Torino, Torino, Italy

H

Hamideh Parhiz

S

Stefano Rivella

4The Children's Hospital of Philadelphia, Philadelphia, United States