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Published on: August 22, 2012
ANTIOXIDANT ENZYME ACTIVITY AMONG ORPHANS INFECTED WITH INTESTINAL PARASITES IN PATHUM THANI PROVINCE, THAILAND
Insights
Intestinal parasite infections in children are linked to lower glutathione peroxidase (GPx) levels, indicating potential nutritional impacts. Malnutrition may also influence antioxidant enzyme levels in infected children.
Area of Science:
- Pediatric Nutrition
- Infectious Diseases
- Biochemistry
Background:
- Intestinal parasitic infections are prevalent in children, affecting growth and nutrition.
- These infections can induce oxidative stress, leading to various health issues.
- Antioxidant enzymes play a crucial role in combating oxidative stress.
Purpose of the Study:
- To investigate the influence of nutritional status on antioxidant enzyme levels in children with intestinal parasitic infections.
- To measure serum levels of superoxide dismutase (SOD) and glutathione peroxidase (GPx) in relation to parasitic infection and nutritional status.
- To identify key findings regarding antioxidant enzyme status in infected and non-infected children.
Main Methods:
- A cross-sectional study was conducted at an orphanage in Thailand involving 128 children.
- Stool samples were analyzed for intestinal parasites (protozoa and helminthes).
- Anthropometric measurements, complete blood count, and serum SOD and GPx levels were assessed.
Main Results:
- Intestinal parasites were detected in 36.7% of children; 18% had mixed infections.
- Children with intestinal parasites showed significantly lower median GPx levels compared to uninfected children (p < 0.05).
- SOD levels did not differ significantly between infected and non-infected groups, but underweight children with pathogenic parasites had higher SOD levels.
Conclusions:
- Intestinal parasitic infections are associated with reduced GPx levels in children.
- Nutritional status, particularly underweight, may impact antioxidant enzyme profiles in infected children.
- Findings highlight the interplay between parasitic infections, malnutrition, and oxidative stress markers in pediatric populations.
Abstract:
Intestinal parasitic infections can negatively impact growth and nutrition in children. The infections can induce oxidative stress, resulting in a variety of illnesses. We measured antioxidant enzyme levels in orphan children infected with intestinal parasites to investigate the influence of nutritional status on antioxidant enzymes. This cross sectional study was conducted at an orphanage in Thailand. Stool samples were obtained from each subject and examined for intestinal parasites. Anthropometric measurements, complete blood count and biochemical parameters, including serum superoxide dismutase (SOD) and glutathione peroxidase (GPx) levels, were obtained from studied subjects. One hundred twenty-eight children were included in the study. Intestinal parasites were found on microscopic examination of the stools in 36.7% (47/128); 18% (23/128) had a mixed parasite infection. Intestinal protozoa were found in 34.4% of subjects and intestinal helminthes were found in 2.3%. The median GPx level in children infected with intestinal parasites (2.3 ng/ml) was significantly lower than in non-infected children (7.7 ng/ml) (p < 0.05). However, there was no significant difference in SOD levels between the two groups. When comparing GPx levels in children with 1) pathogenic parasites, 2) non-pathogenic parasites and 3) no intestinal parasite infection, GPx levels differed significantly among three groups (2.2 ng/ml, 2.4 ng/ml and 7.7 ng/ml, respectively) (p < 0.05). When separating children by BMI and type of infection, the median SOD level in underweight children infected with pathogenic parasites (107.2 ng/ml) was significantly higher than in underweight children infected with non-pathogenic parasites (68.6 ng/ml) and without intestinal parasite infections (72.2 ng/ml). The present study identified two key findings: low GPx levels in children with intestinal parasitic infections, and the potential impact of malnutrition on some antioxidants.
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