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Updated: Aug 20, 2026

A Mouse Model for Pathogen-induced Chronic Inflammation at Local and Systemic Sites
Published on: August 8, 2014
Protracted anemia associated with chronic, relapsing systemic inflammation induced by arthropathic
R B Sartor1, S K Anderle, N Rifai
1Department of Medicine, University of North Carolina, Chapel Hill 27599-7080.
Abstract:
Mild hypoproliferative anemia with abnormal iron metabolism frequently accompanies chronic inflammation and infection in humans. To determine whether anemia is associated with chronic relapsing arthritis induced by bacterial cell wall polymers, serial determinations of the hematocrit were measured in rats injected intraperitoneally with sonicated peptidoglycan-polysaccharide fragments from group A streptococci. Acute anemia peaked 5 to 10 days after injection, and chronic, spontaneously relapsing anemia persisted for 309 days. 51Cr labeling demonstrated decreased erythrocyte survival, i.e., a half-life of 8.4 days in cell wall-injected rats versus 11.8 days in controls. Erythrocytes were mildly microcytic, and leukocyte counts were elevated during early spontaneous reactivation of arthritis, 15 days after injection of peptidoglycan-polysaccharide. Bone marrow myeloid/erythroid precursor ratios were elevated in arthritic rats (P less than 0.0001). Purified peptidoglycan produced an acute anemia lasting 10 days, while injection of group A streptococcal polysaccharide and mutanolysin-digested cell wall did not affect the hematocrit. The minimal effective dose of peptidoglycan-polysaccharide was 5 micrograms of rhamnose per g (body weight). Serum iron and transferrin levels were decreased in cell wall-injected rats (P less than 0.005) and were closely correlated with hematocrit values and joint inflammatory scores. Stainable iron was increased in the liver, spleen, and mesenteric lymph nodes and unchanged in the bone marrow of cell wall-injected rats. Anemia accompanying chronic, relapsing systemic inflammation induced by peptidoglycan-polysaccharide polymers appears to be an excellent animal model of the anemia of chronic disease.
Insights
Bacterial cell wall components trigger chronic, relapsing anemia in rats, mimicking the anemia of chronic disease. This study identifies peptidoglycan-polysaccharide as a key factor in developing this inflammatory anemia model.
Area of Science:
- Immunology
- Hematology
- Pathology
Background:
- Anemia with abnormal iron metabolism is common in chronic inflammation and infection.
- Chronic relapsing arthritis can be induced by bacterial cell wall polymers.
Purpose of the Study:
- To investigate the link between chronic relapsing arthritis and anemia.
- To establish an animal model for anemia of chronic disease.
Main Methods:
- Rats were injected with peptidoglycan-polysaccharide fragments from group A streptococci.
- Hematocrit, erythrocyte survival (using 51Cr labeling), and iron metabolism markers were monitored.
- Bone marrow myeloid/erythroid precursor ratios and serum iron/transferrin levels were analyzed.
Main Results:
- Chronic, relapsing anemia persisted for up to 309 days post-injection.
- Erythrocyte survival was reduced, and anemia was microcytic.
- Decreased serum iron and transferrin correlated with anemia severity and joint inflammation.
- Increased iron deposition was observed in the liver, spleen, and lymph nodes.
Conclusions:
- Peptidoglycan-polysaccharide from bacterial cell walls induces a chronic, relapsing anemia in rats.
- This model effectively mimics the anemia of chronic disease, characterized by abnormal iron metabolism.
- The findings highlight the role of specific bacterial components in inflammatory anemia.
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