Defective iron homeostasis and hematological abnormalities in Niemann-Pick disease type C1

Author:

Chen Oscar C W,Siebel Stephan,Colaco Alexandria,Nicoli Elena-RalucaORCID,Platt Nick,Shepherd DawnORCID,Newman Stephanie,Armitage Andrew EORCID,Farhat Nicole Y,Seligmann George,Smith Claire,Smith David AORCID,Abdul-Sada Alaa,Jeyakumar Mylvaganam,Drakesmith Hal,Porter Forbes D,Platt Frances MORCID

Abstract

Background: Niemann-Pick disease type C1 (NPC1) is a neurodegenerative lysosomal storage disorder characterized by the accumulation of multiple lipids in the late endosome/lysosomal system and reduced acidic store calcium. The lysosomal system regulates key aspects of iron homeostasis, which prompted us to investigate whether there are hematological abnormalities and iron metabolism defects in NPC1. Methods: Iron-related hematological parameters, systemic and tissue metal ion and relevant hormonal and proteins levels, expression of specific pro-inflammatory mediators and erythrophagocytosis were evaluated in an authentic mouse model and in a large cohort of NPC patients. Results: Significant changes in mean corpuscular volume and corpuscular hemoglobin were detected in Npc1-/- mice from an early age. Hematocrit, red cell distribution width and hemoglobin changes were observed in late-stage disease animals. Systemic iron deficiency, increased circulating hepcidin, decreased ferritin and abnormal pro-inflammatory cytokine levels were also found. Furthermore, there is evidence of defective erythrophagocytosis in Npc1-/- mice and in an in vitro NPC1 cellular model. Comparable hematological changes, including low normal serum iron and transferrin saturation and low cerebrospinal fluid ferritin were confirmed in NPC1 patients. Conclusions: These data suggest loss of iron homeostasis and hematological abnormalities in NPC1 may contribute to the pathophysiology of this disease.

Funder

Ara Parseghian Medical Research Foundation

Balliol College, University of Oxford

John Fell Fund, University of Oxford

Niemann-Pick Research Foundation

Clarendon Fund

Action Medical Research

Metabolic Support UK

Children Living with Inherited Metabolic Diseases

Wellcome Trust

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Therapeutics for Rare and Neglected Diseases

Office of Rare Diseases

Publisher

F1000 Research Ltd

Subject

General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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