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Effects of Probiotics in Obese Children (Prob-esity)

E

Eskisehir Osmangazi University

Status

Completed

Conditions

Obesity

Treatments

Dietary Supplement: Probiotics mixture

Study type

Interventional

Funder types

Other

Identifiers

NCT01927107
Prob-esity

Details and patient eligibility

About

The global obesity epidemic presents an unprecedented challenge to the public health worldwide. The factors associated with obesity are complex, and include health behaviors, such as eating habits and daily physical activity, and broader social, environmental and biological determinants that influence these health behaviors. The intestinal microbiota has several beneficial functions related to host health and accumulating evidence indicates that the gut microbiota plays a significant role in the development of obesity, obesity-associated inflammation and insulin resistance. Experimental studies reveal a shift in the abundance of Bacteroidetes and Firmicutes. Presumably, obesity affects the diversity of the gut microbiota and, probably, the way individuals harvest energy from nutrients. Differences in community composition, functional genes and metabolic activities of the gut microbiota appear to distinguish lean vs obese individuals, suggesting that gut 'dysbiosis' contributes to the development of obesity and/or its complications.

Recent studies have suggested some beneficial effects of probiotics and/or prebiotics on obesity and metabolic syndrome in adults; such experience is limited in children and adolescents. The aim of this study was to evaluate potential effects of add-on probiotics to standard therapy on anthropometric measurements, lipid profile and oxidative stress parameters in children.

Full description

he global obesity epidemic presents an unprecedented challenge to the public health worldwide. The factors associated with obesity are complex, and include health behaviors, such as eating habits and daily physical activity, and broader social, environmental and biological determinants that influence these health behaviors. The intestinal microbiota has several beneficial functions related to host health and accumulating evidence indicates that the gut microbiota plays a significant role in the development of obesity, obesity-associated inflammation and insulin resistance. Experimental studies reveal a shift in the abundance of Bacteroidetes and Firmicutes. Presumably, obesity affects the diversity of the gut microbiota and, probably, the way individuals harvest energy from nutrients. Differences in community composition, functional genes and metabolic activities of the gut microbiota appear to distinguish lean vs obese individuals, suggesting that gut 'dysbiosis' contributes to the development of obesity and/or its complications.

Recent studies have suggested some beneficial effects of probiotics and/or prebiotics on obesity and metabolic syndrome in adults; such experience is limited in children and adolescents. The aim of this study was to evaluate potential effects of add-on probiotics to standard therapy on anthropometric measurements, lipid profile and oxidative stress parameters in children.

Enrollment

120 patients

Sex

All

Ages

5 to 17 years old

Volunteers

No Healthy Volunteers

Inclusion criteria

  • Children with obesity according to anthropometric measurements with appropriate weight for age

Exclusion criteria

  • coexistence of secondary obesity, malignancy, immune deficiency, collagen vascular diseases, congenital anomalies, neurological findings, children with receiving concomitant any drugs related chronic condition or antibiotics. Children with exogenous obesity who have also insulin resistance and /or hypertension were also excluded

Trial design

Primary purpose

Treatment

Allocation

Randomized

Interventional model

Parallel Assignment

Masking

None (Open label)

120 participants in 2 patient groups

Probiotic mixture
Active Comparator group
Description:
Probiotic mixture including Lactobacillus acidophilus (4.3x108CFU/per sachet), Lactobacillus rhamnosus (4.3x108CFU/ per sachet), Bifidobacterium bifidum (4.3x108CFU/ per sachet), Bifidobacterium longum (4.3x108CFU/ per sachet), Enterococcus faecium (8.2x108CFU/ per sachet, per oral daily for 30 days in addition to standard approach
Treatment:
Dietary Supplement: Probiotics mixture
Control
Active Comparator group
Description:
Standard diet therapy
Treatment:
Dietary Supplement: Probiotics mixture

Trial contacts and locations

0

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Data sourced from clinicaltrials.gov

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