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A Rat Model of Mild Intrauterine Hypoperfusion with Microcoil Stenosis
Published on: January 7, 2018
Intrauterine undernutrition in rats interferes with leukocyte migration, decreasing adhesion molecule expression in
Maristella A V Landgraf1, Luis L Martinez, Viviani M F Rastelli
1Laboratory of Hypertension and Inflammation, Department of Pharmacology, Institute of Biomedical Sciences, University of São Paulo, Brazil.
Insights
Intrauterine undernutrition in rats impairs leukocyte migration and reduces immune cell counts, increasing infection susceptibility. This study reveals compromised immune responses in undernourished offspring.
Area of Science:
- Immunology
- Physiology
- Developmental Biology
Background:
- Malnutrition is known to increase infection risk, especially in children.
- Immune responses are significantly compromised in undernourished individuals.
- Intrauterine undernutrition may impact immune cell function and migration.
Purpose of the Study:
- To investigate the effect of intrauterine undernutrition on leukocyte migratory capacity in rats.
- To analyze the expression of adhesion molecules and leukocyte counts in undernourished offspring.
- To understand the mechanisms behind increased infection susceptibility in malnourished subjects.
Main Methods:
- Intravital microscopy was used to assess leukocyte migration in undernourished and control rats.
- Leukocyte rolling, sticking, and migration were stimulated using leukotriene B4, TNF-alpha, and zymosan-activated plasma.
- Immunohistochemistry and flow cytometry were employed to analyze endothelial and leukocyte adhesion molecule expression.
Main Results:
- Undernourished rats exhibited significantly reduced leukocyte rolling, sticking, and migration.
- Circulating leukocyte counts were lower, while blood pressure and leukocyte rolling velocity were higher in undernourished offspring.
- Reduced expression of endothelial P-selectin and ICAM-1, and leukocyte L-selectin was observed in undernourished rats.
Conclusions:
- Intrauterine undernutrition impairs leukocyte migration and reduces immune cell counts in rats.
- Downregulation of adhesion molecules (P-selectin, ICAM-1, L-selectin) contributes to reduced leukocyte migration.
- These immune deficits likely underlie the increased predisposition to infections in undernourished individuals.
Abstract:
Experimental and epidemiologic data have shown that malnutrition predisposes individuals to infections. Immune responses are compromised, particularly in undernourished children. Therefore, we investigated the migratory capacity of leukocytes, using the intravital microscopy technique, in male Wistar rats (8-9 wk of age) that were undernourished in utero after their dams were fed 50% less food than the amount consumed by control dams. The number of leukocytes rolling along the venular endothelium, sticking after stimulation with leukotriene B4, tumor necrosis factor-alpha (TNF-alpha) or zymosan-activated plasma, or migrating after TNF-alpha stimulation was significantly reduced in the undernourished rat offspring. Compared with nourished rat offspring, undernourished offspring had significantly reduced numbers of circulating leukocytes, higher blood pressure, and higher leukocyte rolling velocity (V(WBC)), as well as a higher ratio between V(WBC) and RBC velocity (V(RBC)). Endothelial P-selectin and intercellular adhesion molecule-1 (ICAM-1) expression, analyzed by immunohistochemistry, and basal leukocyte L-selectin expression, analyzed by flow cytometry, were significantly reduced in the undernourished rat offspring. Because the groups did not differ in leukocyte CD11/18 expression, endothelial expression of platelet-endothelial cell adhesion molecule-1, or venular blood flow velocity and, consequently, venular shear rate, we conclude that intrauterine undernutrition in rats reduces leukocyte migration, downregulates endothelial expression of P-selectin and ICAM-1, as well as leukocyte expression of L-selectin, while reducing leukocyte counts. The higher V(WBC) and V(WBC)/V(RBC) ratio may also play a role in this reduced leukocyte migration. Our data suggest that this phenomenon is involved in the increased predisposition to infections in undernourished subjects.
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