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Determining Bile Duct Density in the Mouse Liver
Published on: April 30, 2019
Hepatobiliary manganese homeostasis is dynamic in the setting of illness in mice
Abstract:
Manganese is a diet-derived micronutrient that is essential for critical cellular processes like redox homeostasis, protein glycosylation, and lipid and carbohydrate metabolism. Control of Mn availability, especially at the local site of infection, is a key component of the innate immune response. Less has been elucidated about Mn homeostasis at the systemic level. In this work, we demonstrate that systemic Mn homeostasis is dynamic in response to illness in mice. This phenomenon is evidenced in male and female mice, mice of two genetic backgrounds (C57/BL6 and BALB/c), in multiple models of acute (dextran-sodium sulfate-induced) and chronic ( enterotoxigenic Bacteriodes fragilis ) colitis, and systemic infection with Candida albicans . When mice were fed a standard corn-based chow with excess Mn (100 ppm), liver Mn decreased and biliary Mn increased 3-fold in response to infection or colitis. Liver iron, copper, and zinc were unchanged. When dietary Mn was restricted to minimally adequate amounts (10ppm), baseline hepatic Mn levels decreased by approximately 60% in the liver, and upon induction of colitis, liver Mn did not decrease further, however biliary Mn still increased 20-fold. In response to acute colitis, hepatic Slc39a8 mRNA (gene encoding the Mn importer, Zip8) and Slc30a10 mRNA (gene encoding the Mn exporter, Znt10) are decreased. Zip8 protein is decreased. Illness- associated dynamic Mn homeostasis may represent a novel host immune/inflammatory response that reorganizes systemic Mn availability through differential expression of key Mn transporters with down-regulation of Zip8.
Insights
Illness dynamically alters manganese homeostasis in mice, impacting liver and bile manganese levels. This host response involves changes in manganese transporter gene expression, particularly down-regulation of Zip8.
Area of Science:
- Biochemistry
- Immunology
- Physiology
Background:
- Manganese (Mn) is an essential micronutrient vital for cellular processes.
- While local Mn control is key to innate immunity, systemic Mn homeostasis during illness is less understood.
Approach:
- Investigated systemic Mn homeostasis in mice across different sexes, genetic backgrounds, and models of acute/chronic colitis and systemic Candida albicans infection.
- Analyzed liver and biliary Mn levels, as well as hepatic expression of Mn transporters (Zip8 and Znt10) under varying dietary Mn conditions and illness.
- Utilized dextran-sodium sulfate-induced colitis, enterotoxigenic Bacteroides fragilis-induced colitis, and Candida albicans infection models.
Key Points:
- Systemic manganese homeostasis is dynamic during illness in mice.
- Infection or colitis led to decreased liver Mn and increased biliary Mn, especially with high dietary Mn.
- Dietary Mn restriction reduced baseline liver Mn, but biliary Mn still increased significantly during colitis.
- Acute colitis decreased hepatic Zip8 and Znt10 mRNA and Zip8 protein levels.
Conclusions:
- Illness triggers a dynamic host immune/inflammatory response that reorganizes systemic Mn availability.
- Differential expression of Mn transporters, including Zip8 down-regulation, is a key mechanism.
- This highlights a novel aspect of host defense involving micronutrient regulation.

