Javascript must be enabled to continue!
Hyperactivated Glycolysis Drives Spatially-Patterned Kupffer Cell Depletion in MASLD
View through CrossRef
Metabolic dysfunction-associated steatotic liver disease (MASLD) progression is characterized by hepatic inflammation and cell death, yet the mechanisms underlying Kupffer cells (KCs) loss remain poorly understood. Here, we sought to elucidate the metabolic basis of KCs death during MASLD. Using metabolomics, immunostaining, and flow cytometry, we evaluated metabolic alterations and KCs death throughout early MASLD progression. We found that KCs death is an early hallmark of MASLD, exhibiting greater susceptibility and displaying a spatial distribution consistent with KCs zonation. Moreoever, KCs undergo progressive metabolic reprogramming toward enhanced glucose utilization during MASLD development, which is correlated with KCs death. In combination of biochemical agonist, isotope tracing and primary KCs culture, we further demonstrated that augmented glycolytic metabolism directly drives KCs death in vitro. Consistently, using Chil1-deficient mice, we further demonstrated that increased glucose utilization accelerates KCs death in vivo. Together, these findings establish a causal link between glycolytic activation and KCs loss during MASLD progression, highlighting glucose metabolic pathways as potential therapeutic targets to preserve KCs homeostasis and mitigate MASLD.
Title: Hyperactivated Glycolysis Drives Spatially-Patterned Kupffer Cell Depletion in MASLD
Description:
Metabolic dysfunction-associated steatotic liver disease (MASLD) progression is characterized by hepatic inflammation and cell death, yet the mechanisms underlying Kupffer cells (KCs) loss remain poorly understood.
Here, we sought to elucidate the metabolic basis of KCs death during MASLD.
Using metabolomics, immunostaining, and flow cytometry, we evaluated metabolic alterations and KCs death throughout early MASLD progression.
We found that KCs death is an early hallmark of MASLD, exhibiting greater susceptibility and displaying a spatial distribution consistent with KCs zonation.
Moreoever, KCs undergo progressive metabolic reprogramming toward enhanced glucose utilization during MASLD development, which is correlated with KCs death.
In combination of biochemical agonist, isotope tracing and primary KCs culture, we further demonstrated that augmented glycolytic metabolism directly drives KCs death in vitro.
Consistently, using Chil1-deficient mice, we further demonstrated that increased glucose utilization accelerates KCs death in vivo.
Together, these findings establish a causal link between glycolytic activation and KCs loss during MASLD progression, highlighting glucose metabolic pathways as potential therapeutic targets to preserve KCs homeostasis and mitigate MASLD.
Related Results
Hyperactivated Glycolysis Drives Spatially-Patterned Kupffer Cell Depletion in MASLD
Hyperactivated Glycolysis Drives Spatially-Patterned Kupffer Cell Depletion in MASLD
Metabolic dysfunction-associated steatotic liver disease (MASLD) progression is characterized by hepatic inflammation and cell death, yet the mechanisms underlying Kupffer cell (KC...
The CRP-to-Uric Acid Index (CURI): A Novel Inflammatory–Metabolic Index to Enhance Noninvasive Screening for MASLD and Liver Fibrosis
The CRP-to-Uric Acid Index (CURI): A Novel Inflammatory–Metabolic Index to Enhance Noninvasive Screening for MASLD and Liver Fibrosis
Abstract
Background
Metabolic dysfunction-associated steatotic liver disease (MASLD) and significant liver fibrosis (SLF) requi...
Abstract LB177: Visualization and targeting of CD133+ cancer stem cells in MASLD-related hepatocellular carcinoma
Abstract LB177: Visualization and targeting of CD133+ cancer stem cells in MASLD-related hepatocellular carcinoma
Abstract
Metabolic dysfunction-associated steatotic liver disease related hepatocellular carcinoma (MASLD-HCC) is an emerging malignancy. However, the identity and f...
Association of Genetic Polymorphisms with Clinical Characteristics and Survival of Hepatocellular Carcinoma Patients with or without Metabolic Dysfunction-associated Steatotic Liver Disease (MASLD)
Association of Genetic Polymorphisms with Clinical Characteristics and Survival of Hepatocellular Carcinoma Patients with or without Metabolic Dysfunction-associated Steatotic Liver Disease (MASLD)
The influence of single-nucleotide polymorphisms (SNPs) on hepatocellular carcinoma (HCC) in terms of etiological factors remains to be explored. This study evaluated the distribut...
PREVALENCE AND PREDICTORS OF METABOLIC DYSFUNCTION ASSOCIATED STEATOTIC LIVER DISEASE IN A RETROSPECTIVE COHORT OF PATIENTS WITH ULCERATIVE COLITIS
PREVALENCE AND PREDICTORS OF METABOLIC DYSFUNCTION ASSOCIATED STEATOTIC LIVER DISEASE IN A RETROSPECTIVE COHORT OF PATIENTS WITH ULCERATIVE COLITIS
Abstract
BACKGROUND
Metabolic dysfunction associated steatotic liver disease (MASLD) is observed in both ulcerative colitis (UC)...
Baveno VII Endoscopy-Sparing Criteria in MASLD- Predominant Compensated Cirrhosis: A Prospective Validation from a Gulf Arab Population (Kuwait)
Baveno VII Endoscopy-Sparing Criteria in MASLD- Predominant Compensated Cirrhosis: A Prospective Validation from a Gulf Arab Population (Kuwait)
Abstract
Background & Aims: The Baveno VII non-invasive criteria can safely defer screening endoscopy in compensated advanced chronic liver disease, but their p...
Maintenance Cultures of Kupffer Cells Isolated from Rats of Various Ages: infrastructure, Enzyme Cytochemistry, and Endocytosis†
Maintenance Cultures of Kupffer Cells Isolated from Rats of Various Ages: infrastructure, Enzyme Cytochemistry, and Endocytosis†
Sinusoidal liver cells were isolated from the livers of 3-, 12-, 30-, and 36-month-old female BN/ BiRij rats by enzymatic digestion. The Kupffer cells in the sinusoidal eel suspens...
Determinants of Metabolic Dysfunction-Associated Steatotic Liver Diseases in Patients with Type 2 Diabetes Mellitus
Determinants of Metabolic Dysfunction-Associated Steatotic Liver Diseases in Patients with Type 2 Diabetes Mellitus
Background: Type 2 diabetes mellitus (T2DM) is one of the most complex metabolic disorders worldwide, with a continuously rising prevalence. T2DM is linked to multiple complication...

