Javascript must be enabled to continue!
Neutrophil Maturation and Survival Is Controlled by IFN-Dependent Regulation of NAMPT Signaling
View through CrossRef
Granulocyte-colony stimulating factor (G-CSF)/nicotinamide phosphoribosyltransferase (NAMPT) signaling has been shown to be crucial for the modulation of neutrophil development and functionality. As this signaling pathway is significantly suppressed by type I interferons (IFNs), we aimed to study how the regulation of neutrophil differentiation and phenotype is altered in IFN-deficient mice during granulopoiesis. The composition of bone marrow granulocyte progenitors and their Nampt expression were assessed in bone marrow of type I IFN receptor knockout (Ifnar1-/-) mice and compared to wild-type animals. The impact of NAMPT inhibition on the proliferation, survival, and differentiation of murine bone marrow progenitors, as well as of murine 32D and human HL-60 neutrophil-like cell lines, was estimated. The progressive increase of Nampt expression during neutrophil progenitor maturation could be observed, and it was more prominent in IFN-deficient animals. Altered composition of bone marrow progenitors in these mice correlated with the dysregulation of apoptosis and altered differentiation of these cells. We observed that NAMPT is vitally important for survival of early progenitors, while at later stages it delays the differentiation of neutrophils, with moderate effect on their survival. This study shows that IFN-deficiency leads to the elevated NAMPT expression in the bone marrow, which in turn modulates neutrophil development and differentiation, even in the absence of tumor-derived stimuli.
Title: Neutrophil Maturation and Survival Is Controlled by IFN-Dependent Regulation of NAMPT Signaling
Description:
Granulocyte-colony stimulating factor (G-CSF)/nicotinamide phosphoribosyltransferase (NAMPT) signaling has been shown to be crucial for the modulation of neutrophil development and functionality.
As this signaling pathway is significantly suppressed by type I interferons (IFNs), we aimed to study how the regulation of neutrophil differentiation and phenotype is altered in IFN-deficient mice during granulopoiesis.
The composition of bone marrow granulocyte progenitors and their Nampt expression were assessed in bone marrow of type I IFN receptor knockout (Ifnar1-/-) mice and compared to wild-type animals.
The impact of NAMPT inhibition on the proliferation, survival, and differentiation of murine bone marrow progenitors, as well as of murine 32D and human HL-60 neutrophil-like cell lines, was estimated.
The progressive increase of Nampt expression during neutrophil progenitor maturation could be observed, and it was more prominent in IFN-deficient animals.
Altered composition of bone marrow progenitors in these mice correlated with the dysregulation of apoptosis and altered differentiation of these cells.
We observed that NAMPT is vitally important for survival of early progenitors, while at later stages it delays the differentiation of neutrophils, with moderate effect on their survival.
This study shows that IFN-deficiency leads to the elevated NAMPT expression in the bone marrow, which in turn modulates neutrophil development and differentiation, even in the absence of tumor-derived stimuli.
Related Results
Abstract 4283: NAMPT-enriched small extracellular vesicle promotes liver cancer via activation of SLC27A4-mediated glycolysis
Abstract 4283: NAMPT-enriched small extracellular vesicle promotes liver cancer via activation of SLC27A4-mediated glycolysis
Abstract
Introduction: Tumor-derived small extracellular vesicles (sEV) act as a major mediator of the tumor microenvironment (TME) and are reported to regulate vari...
Long-Term Interferon-α Treatment in Essential Thrombocythemia
Long-Term Interferon-α Treatment in Essential Thrombocythemia
Abstract
Background: Essential thrombocythemia (ET) is a chronic myeloid stem cell disorder characterized by an uncontrolled production of platelets....
Type I interferon signaling promotes early innate control of
Borrelia burgdorferi
infection
Type I interferon signaling promotes early innate control of
Borrelia burgdorferi
infection
ABSTRACT
Borrelia burgdorferi
, the causative agent of Lyme disease, elicits a robust type I interferon (IFN-I) response that h...
Grape Seed Proanthocyanindin Extract Moderated Retinal Pigment Epithelium Cellular Senescence Through NAMPT/SIRT1/NLRP3 Pathway
Grape Seed Proanthocyanindin Extract Moderated Retinal Pigment Epithelium Cellular Senescence Through NAMPT/SIRT1/NLRP3 Pathway
Abstract
Background: Cellular senescence of retinal pigment epithelium (RPE) cell was an important cause of degenerative retinal disorders, however, the potential effects o...
Review of various NAMPT inhibitors for the treatment of cancer
Review of various NAMPT inhibitors for the treatment of cancer
Nicotinamide phosphoribosyltransferase (NAMPT) is a rate-limiting enzyme in the NAD salvage pathway of mammalian cells and is overexpressed in numerous types of cancers. These incl...
P087 IFN-γ-Induced Intestinal Epithelial Cell Type-Specific Cytotoxic Responses of Human Enteroids: PANoptosis and The Protective Role of Selective JAK1 Inhibitors
P087 IFN-γ-Induced Intestinal Epithelial Cell Type-Specific Cytotoxic Responses of Human Enteroids: PANoptosis and The Protective Role of Selective JAK1 Inhibitors
Abstract
Background
Interferon-gamma (IFN-γ) plays an important role in the development of intestinal injury and inflammatory bo...
Interferon‐βMediates Opposing Effects on Interferon‐γ‐dependent Interleukin‐12 p70 Secretion by Human Monocyte‐Derived Dendritic Cells
Interferon‐βMediates Opposing Effects on Interferon‐γ‐dependent Interleukin‐12 p70 Secretion by Human Monocyte‐Derived Dendritic Cells
AbstractInterferon‐β(IFN‐β) exposure during tumour necrosis factor‐α(TNF‐α)‐induced human monocyte‐derived dendritic cell (DC) maturation augments the capacity of DC to promote the...
Metabolic alterations in reactive astrocytes and their roles in ischemic stroke
Metabolic alterations in reactive astrocytes and their roles in ischemic stroke
[EMBARGOED UNTIL 12/1/2024] Focal ischemic stroke (FIS) is a severe neurological disease that lacks effective remedy. Astrocytes are the predominant glial cell types in the central...

