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Oxidative stress is not enhanced in non-malnourished infants with persistent diarrhea
E Granot1, M Binsztok, D Fraser
1Department of Pediatrics, Hadassah University Hospital, Hebrew University-Hadassah Medical School, Jerusalem, Israel. etgranot@md2.huji.ac.il
Insights
Oxidative stress, indicated by reactive oxygen species (ROS), does not appear to cause persistent diarrhea in non-malnourished infants. Studies show no difference in antioxidant levels or lipid peroxidation between infants with acute or persistent diarrhea.
Area of Science:
- Pediatrics
- Biochemistry
- Nutrition
Background:
- Persistent diarrhea is linked to oxidative stress, infection, malabsorption, and malnutrition.
- Reactive oxygen species (ROS) and reduced antioxidant defenses are hypothesized to contribute to this cycle.
Purpose of the Study:
- To investigate if oxidative stress predisposes non-malnourished infants to persistent diarrhea.
- To compare markers of oxidative stress in infants with acute versus persistent diarrhea.
Main Methods:
- Compared infants with acute diarrhea (n=39) and persistent diarrhea (n=38).
- Assessed lipid peroxidation using the TBARs assay (malondialdehyde equivalent content).
- Measured plasma levels of antioxidants vitamin A and vitamin E.
Main Results:
- Nutritional status, hemoglobin, albumin, and immunoglobulin levels were similar between groups.
- Plasma vitamin A and vitamin E levels did not differ between acute and persistent diarrhea groups.
- TBARs levels (lipid peroxidation) were comparable across acute, persistent diarrhea, and healthy control groups.
Conclusions:
- Non-malnourished infants with persistent diarrhea do not show signs of plasma antioxidant depletion or increased lipid peroxidation.
- Plasma oxidative stress does not appear to be a key factor in the development of persistent diarrhea in this population.
Abstract:
Increased concentrations of reactive oxygen species (ROS) and depleted antioxidant defences have been implicated in a cycle of infection, malabsorption and malnutrition, leading to persistent diarrhea. In order to determine whether in non-malnourished children oxidative stress predisposes to the development of persistent diarrhea, infants with acute diarrhea (< 7 days) (n = 39) were compared to infants with persistent diarrhea (> 14 days) (n = 38). Lipid peroxidation was assessed by the TBARs assay and expressed as malondialdehyde equivalent content (nmol MDA/ml plasma), and levels of plasma antioxidants vitamin A and vitamin E were determined. In infants with acute and persistent diarrhea nutritional status, as assessed by weight/height and height-for-age, hemoglobin levels, serum albumin and immunoglobulin levels, did not differ between groups. Serum vitamin A and vitamin E levels did not differ in infants with acute or persistent diarrhea. TBARs, expressed as nmol MDA/ml plasma did not differ between infants with acute or persistent diarrhea and furthermore did not differ from levels in a healthy, similar age, control group. Non-malnourished infants with persistent diarrhea do not exhibit plasma antioxidant depletion or enhanced lipid peroxidation. In these infants, oxidative stress, as reflected in plasma, does not play a role in the pathogenesis of persistent diarrhea.
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