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Effects of Channa Striata Extract on Intestinal Inflammation and Nutritional Status in Malnutritional Toddlers After Albendazole Therapy in South Bangka District

Effects of Channa Striata Extract on Intestinal Inflammation and Nutritional Status in Malnutritional Toddlers After Albendazole Therapy in South Bangka District

Status
Not yet recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06933862
Acronym
Striatin1
Enrollment
122
Registered
2025-04-18
Start date
2025-05-15
Completion date
2026-06-30
Last updated
2025-04-18

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Malnourished Children

Keywords

snakehead fish extract, malnourished children, Calprotectin, striatin

Brief summary

The goal of this clinical trial is to learn if intervention with channa striata extract or inbumin forte sachet as a food supplement can improve intestinal damage and nutritional status in malnourished children aged 1.5-5 years. The main questions it aims to answer are: * Whether there is a change in calprotectin and AAT levels after administration of snakehead fish extract of inbumin forte sachet? * Whether there is a difference in changes in nutritional status after administration of snakehead fish extract or inbumin forte sachet? Researchers will compare snakehead fish extract or inbumin forte sachet to a placebo (a look-alike substance that contains no drug) to see if snakehead fish extract or inbumin forte sachet works to treat children malnutrition. Participants will take snakehead fish extract or inbumin forte sachet or placebo every day for 3 months. Researchers will visit study participants every month to check their weight and height and monitor vitamin administration through photos, notes and videos sent every day and records complaints or symptoms that may arise and at the end of 3 months, researchers will collect stool and blood samples and check nutritional status.

Detailed description

The study participants were malnourished children aged 1.5 to 5 years. Data on malnourished children were obtained from the local health department. Based on this data, participants were selected from several sub-districts with the highest malnutrition cases, including Toboali (Rias and Toboali villages), Payung, Air Gegas, and Batu Betumpang sub-districts. After invitations were sent to the participants, they were registered using their family registration card and assigned a queue number or research code. The study plan and research procedures were then explained to the participants. First, anthropometric measurements were conducted including weight and height, with the results entered into the WHO Anthro calculator (-3 SD to \<-2 SD). Baseline blood samples were collected, and labeled stool sample bottles were distributed. Fresh stool samples were collected the next day at a designated location. A 100 mg portion of each stool sample was transferred into a 1.5 ml Eppendorf tube and stored in a -20°C freezer. Each sample was divided into two tubes: one for gut microbiota analysis and the other for AAT and calprotectin testing using ELISA. Additionally, the Kato-Katz method was used to examine fresh stool samples for helminth infections. Following stool sample collection, participants were given albendazole at the appropriate dosage. Blood sample analysis included a complete blood count, amino acid testing using filter paper, serum ferritin using mini Vidas immunology analyzer, serum iron, total iron-binding capacity (TIBC) using Vitros chemistry analyzer and serum retinol levels using ELISA. Two weeks after albendazole administration, stool samples were re-examined using Kato-Katz method to confirm the absence of helminth infection. Then, participants were randomly assigned in a double-blind manner into two groups: one receiving snakehead fish extract (Inbumin Forte) and the other receiving a placebo. Based on sample size calculations, a minimum of 98 participants was required, and accounting for a 20% dropout rate, the total sample size was set at 122 children. Data processing was conducted using SPSS. A univariate analysis was performed to determine data distribution on ratio, nominal, and ordinal scales. Categorical data (nominal and ordinal) were presented as frequencies and percentages. Normality tests for numerical data were conducted using the Kolmogorov-Smirnov test, with a normal distribution determined if p \> 0.05. Normally distributed data were presented as mean and standard deviation, while non-normally distributed data were shown as median and range (minimum-maximum). Bivariate analysis was conducted to determine whether there were significant differences in nutritional status, macronutrient and micronutrient levels, inflammatory markers, intestinal permeability, and gut microbiota between children receiving striatin protein supplementation and those receiving a placebo. A paired t-test was used if the data were normally distributed to analyze mean differences between the two groups. If the data were not normally distributed, a chi-square test or Mann-Whitney test was applied. The effect of striatin protein intake on the studied variables was assessed using linear regression analysis. The hypothesis test results were interpreted at a 95% confidence level (α = 0.05), with the null hypothesis (H₀) being rejected if p \< 0.05.

Interventions

DIETARY_SUPPLEMENTStriatin

striation or placebo given for 90 days assigned to striatin

DIETARY_SUPPLEMENTPlacebo

placebo

Sponsors

Dexa Medica Group
CollaboratorINDUSTRY
Indonesia University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Masking description

Placebo controlled, Plasebo was made by PT Dexa Medica and randomization code was held by PT Dexa Medica.

Intervention model description

The study participants were divided into 2 groups namely group A which received snakehead fish extract or inbumin forte sachet and group B which received a placebo. The study was conducted randomly and double blinded.

Eligibility

Sex/Gender
ALL
Age
17 Months to 60 Months
Healthy volunteers
No

Inclusion criteria

* Malnourished children aged 1.5-5 years (-3SD to \< -2 SD) * Parents or guardians are willing to participate in the study * Parents or guardians can read and fill out the questionnaire

Exclusion criteria

* Children with chronic diseases such as tuberculosis, congenital heart disease, diabetes, cancer, epilepsy, HIV Aids, sickle cell anemia, and mental illness. * Children with history of snakehead fish allergy * Children with physical disabilities that complicate data collection

Design outcomes

Primary

MeasureTime frameDescription
Z-score (weight for age)three months after interventionZ-score according to WHO antropometry that will be collected is based on weight for age. Body Weight in kg will be measured using a SECA brand weight scale. The differences between placebo and Inbumin Forte will be analysed after 3 months of treatment.
z-score (height for age)three months after interventionZ-score according to WHO antropometry that will be collected is based on height for age. Height in cm will be using SECA brand height scale. The differences between placebo and Inbumin Forte will be analysed after 3 months of treatment.

Secondary

MeasureTime frameDescription
Concentrations of amino acid in blood samplesFrom enrollment to the end of treatment at 3 monthsAmino acids levels (µmol/l) in blood samples were examined using LC-MSMS. The differences of amino acid levels between placebo and Inbumin Forte will be analysed at the end of 3 months
Complete hematological profilesFrom enrollment to the end of treatment at 3 monthsComplete hematological profiles in blood samples were examined using sysmex analyzer. The differences between placebo and Inbumin will be analysed at the end of 3 months.Time Frame: From enrollment to the end of treatment at 3 months
Concentrations of fecal calprotectinFrom enrollment to the end of treatment at 3 monthsCalprotectin in stool samples were examined using ELISA (in mcg/g). The differences between placebo and Inbumin will be analysed at the end of 3 months.
Intestinal microbiota profilesFrom enrollment to the end of treatment at 3 monthsIntestinal microbiota were examined using PCR technique. The differences between placebo and Inbumin will be analysed at the end of 3 months.Time Frame: From enrollment to the end of treatment at 3 months
Iron status levelsFrom enrollment to the end of treatment at 3 monthsserum ferritin (ng/ml) were examined using mini vidas immunology analyzer, serum iron (µg/dL), total iron binding capacity (µg/dL) were examined using Vitros Chemistry analyzer. The differences between placebo and Inbumin will be analysed at the end of 3 months.Time Frame: From enrollment to the end of treatment at 3 months
Concentrations of Alpha 1 Anti Trypsin (AAT) levels in stoolFrom enrollment to the end of treatment at 3 monthsAlpha 1 Anti Trypsin (AAT) levels in stool samples were examined using ELISA (mcg/g). The differences in the concentrations of AAT levels between placebo and Inbumin Forte groups will be analysed after 3 months of treatment.

Countries

Indonesia

Contacts

Primary ContactMonica Puspa Sari
monica.puspasari@ukrida.ac.id+62853-1198-0272

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026