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Completed

NCT Number: NCT03851120

Brain Probiotic and LC-PUFA Intervention for Optimum Early Life

Probiotics is suggested to play several roles in promoting health, including alleviating disease symptoms, protection against atopic disease, and modulating the immune system by improving the beneficial gut microbiota colonization. The discovery of the gut microbiota-brain axis suggested that there is a reciprocal influence between the brain and the gut through a constant communication. This bi-directional axis enables signals to be transferred from brain to influence sensory, motor, and secretory modalities of the GI tract, also permits signal from the gut to influence brain function. The establishment of intestinal microbiota during early neurodevelopmental period suggests the colonization and maturation of gut microbiota may influence brain development. Several studies have shown there is an association between shifts in the gut microbiota composition in children with neurodevelopmental disorders. This study aims to investigate how maternal probiotic + LC-PUFA supported with government program supplements, healthy eating, and psychosocial stimulation could affect fetal brain development and later child brain functions and cognitive development. Intervention would be delivered to pregnant women for 9 months, starting at the end of second trimester of gestational period.

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Key information

Age range

20 year–40 year

Sex eligibility

Female

Study type

Interventional

Phase

Phase 2

Primary location

Human Nutrition Research Center, Indonesian Medical Education Research Institute; and Department of Nutrition, Faculty of Medicine, Universitas Indonesia

Jakarta Pusat, DKI Jakarta, 13420, Indonesia

About this study

Health and well-being at all ages is one of the goal set in the Sustainable Development Goals. Starting as early as possible has been considered to be an effective strategy for better investation in achieving healthy population. Therefore, the prevention and promotion of health and well being is starting to target population at younger age, starting as early as possible. Accordingly, the early life period of individuals has been considered as a critical period, especially in terms of the brain and cognitive development. The phases of brain development starts very early, starting from the fetal development in the uterus. The development process extends from early in the beginning of fetal development and lasted to the end, finishing last. The brain undergoes a period of rapid growth during the last trimester of fetal life and the first 2 years of childhood. Therefore, quality of pregnancy as well as quality of early life is important to the fetal brain development as well as later child brain function and cognitive development. In line with that notion, there are many studies suggesting that gut microbiota could affect CNS development through several ways, i.e. alteration of microbial composition, activation of immune system, changes in signaling via neural pathways, affecting tryptophan metabolism, modulating gut hormonal response and affecting hormonal signaling pathway, and releasing metabolites that could stimulate sympathetic nervous system. In particular, these studies have found bi-directional communication between the brain and the gut microbiota, referred to as the microbiota-gut-brain axis. The animal study showed that the gut microbiota regulates the development and function of the brain. Unfortunately, the study on human was still lacking.

This study is a randomized clinical trial (RCT) and placebo parallel controlled study, followed by a follow-up study at 2 years old. The research will be conducted in eight public hospitals / health care facilities in Indonesia, Jakarta.

In light of COVID-19 outbreak, if face-to-face activities are permitted by (1) national government (Indonesian Ministry of Health), (2) local government (DKI Jakarta), (3) the university, (4) Data Safety Monitoring Board, and (5) by consent of the subject, then the activities need to be strictly adjusted with the COVID-19 prevention measures for both personnel and subjects. All personnel and subjects who will be involved in the activities are required to fill out the COVID-19 symptom screening form prior to the visit.

Some adjustments for the project field implementation have been conducted during the outbreak, including:

  • Following Good Clinical Practice, for the safety of the subjects and all the team members, we are now ensuring that the subjects gain benefits from their involvement in the BRAVE project by implementing routine COVID-19 screening, providing adequate PPE for the fieldworkers, and educating them about the prevention measures.
  • Supplement delivery: Because we could not visit to the houses anymore due to staff restriction regulations, the bottles of the supplement are delivered using online motorcycle taxi services, and this includes the weighing scale for monthly monitoring. We have also developed a protocol to ensure the safety of supplement bottle transfer from the research personnel to the motorcycle taxi driver, and from the driver to the mothers, including safe distancing and disinfection procedures. We will also educate, provide a thermometer for self-temperature screening and provide the disinfectant to the mothers.
  • Outcome assessment: As per March 19, MRI assessment and blood sample collection remained implemented at a non-COVID-19 referral hospital and laboratory, with strict safety procedures for the subjects and personnel. For mothers who do not feel comfortable visiting the hospital/laboratory, they are free to refuse these procedures.
  • Compliance: Online system to promote and assess compliance. To maintain the quality, we cross-check mothers' activities by online assessment, interactive short message service (sms), and phone calls.
  • New Subject Recruitment are less priority right now or potentially stop for the time being until the situation is getting better.

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

Each pregnant woman must meet all of the following criteria to be enrolled in this study:

  • Indonesian pregnant women in the 2nd trimester of gestational period 2. healthy pregnancy (as measured by hemoglobin level, pregnancy status, pregnancy history) 3. Having a normal blood pressure 4. Planning to stay in the study area until the child is 6 months old 5. Willing to sign informed consent 5. Having a legally acceptable representative who is capable to understand the informed consent document and providing consent on the subject's behalf

Exclusion criteria

Each pregnant women meeting any of the following criteria will be excluded from the study:

  • Having foreign objects in the body due to trauma, artificial heart value, metal objects or ferromagnetic (plate, screw, clip, prosthetic), and electronic device (pacemaker, cochlear implant, insulin pump), and being claustrophobic
  • Having history of previous gestational diabetes or been diagnosed to have gestational diabetes
  • Having history of type 1 and type 2 diabetes
  • Severe anemia

Inclusion criteria

for Follow-up at 24 months:

  • Child age above 24 months from the BRAVE intervention project
  • Having a legally acceptable representative who is capable to understand the informed consent document and providing consent on the subject's behalf

Exclusion criteria

for Follow-up at 24 months:

  • Child being hospitalized during the study/data collection

Treatment and study plan

Probiotics and LC-PUFA (480 mg DHA)

Dietary Supplement

Probiotics and LC-PUFA (480 mg DHA)

Placebo probiotics and control LC-PUFA (120 mg DHA)

Dietary Supplement

Placebo probiotics and control LC-PUFA (120 mg DHA)

Psychosocial stimulation and healthy eating education

Behavioral

Psychosocial stimulation and healthy eating education

Primary outcomes

  1. Total brain volume

    Time frame: 1 year

    measured in parenchymal and cortical regions

  2. Fetal brain development

    Time frame: 1 year

    Myelination index

  3. Child cognitive at 4 months of age

    Time frame: 1 year

    Bayley Scales of Infant and Toddler Development, Third Edition (Bayley-III); a higher score indicates better performance

  4. Brain function at 4 months of age

    Time frame: 1 year

    Brainstem Evoked Response Audiometry (BERA)

  5. Eye tracking tasks at 6 months of age

    Time frame: 1 year

    Visual paired comparison memory task and Infant Orienting with Attention task at 4 months of age

  6. Child cognitive at 6 months of age

    Time frame: 1 year

    Bayley Scales of Infant and Toddler Development, Third Edition (Bayley-III); a higher score indicates better performance

Secondary outcomes

  1. Mother depression scale

    Time frame: 1 year

    Mother's Depression Test; a lower score indicates better performance

  2. Birth weight

    Time frame: 4 month

    Baby weighing scale

  3. Child's Growth

    Time frame: 6 months

    Change in weight-for-age z-score

  4. Child's linear growth

    Time frame: 6 months

    Change in Length-for-age z-score

  5. Head circumference

    Time frame: 6 months

    Change in Head-circumference-for-age

  6. Child nutritional status

    Time frame: 6 months

    Change in weight-for-length z score

  7. Quality of interaction with parents

    Time frame: 1 year

    Maternal involvement using HOME inventory questionnaires

  8. Maternal blood micronutrient & macronutrient status

    Time frame: 1 year

    Zinc, iron, folate, omega-3 blood level

  9. Incidence of gestational diabetes

    Time frame: 1 year

    Based on blood glucose assessment

  10. Incidence of pre-eclampsia

    Time frame: 1 year

    Diagnosed by physician

  11. Incidence of preterm birth

    Time frame: 4 month

    Gestational age

  12. Mother's dietary quality

    Time frame: 1 year

    actual dietary intake, dietary pattern and quality

  13. Maternal fecal microbiota composition

    Time frame: 1 year

    Microbiota composition by S16rRNA analysis

  14. Child fecal microbiota composition

    Time frame: 4 months

    Microbiota composition by S16rRNA analysis

  15. Maternal omega-3 level in breast milk at 4 months of age

    Time frame: 1 year

    Omega-3 level assessment using Gas Chromatography-Mass Spectrometry

  16. Human milk oligosaccharides at 6 months of age

    Time frame: 1 year

    2-FL HMO assessment in breast milk

  17. Maternal glucagon-like peptide-1 (GLP-1) profile

    Time frame: 1 year

    GLP-1 assessment using enzyme-linked immunosorbent assay

  18. Maternal peptide-YY (PYY) profile

    Time frame: 1 year

    PYY assessment using enzyme-linked immunosorbent assay

  19. Maternal fecal short chain fatty acids (SCFAs)

    Time frame: 1 year

    SCFAs analysis using Gas Chromatography-Mass Spectrometry

  20. Child fecal short chain fatty acids

    Time frame: 1 year

    SCFAs analysis using Gas Chromatography-Mass Spectrometry

  21. Post-partum weight retention

    Time frame: 1 year

    Monthly changes in maternal weight

  22. Maternal weight circumference

    Time frame: 1 year

    Post-partum monthly changes in weight circumference

  23. Gestational weight gain

    Time frame: 1 year

    Changes in maternal height throughout pregnancy period

  24. Head circumference

    Time frame: 25 months

    Change in Head-circumference-for-age

  25. Mid-Upper Arm Circumference

    Time frame: 25 months

    Change in Mid-Upper Arm Circumference

  26. Toddler Body Weight

    Time frame: 25 months

    Toddler weighing scale

  27. Toddler Height

    Time frame: 25 months

    Toddler height measurement

  28. Mother Body weight

    Time frame: 1 year

    Mother's body weight

  29. Mother Depression Test

    Time frame: 1 year

    Mother depression score

  30. Mother Quality of Life

    Time frame: 1 year

    Mother quality of life score

  31. Maternal History of COVID-19 during follow-up

    Time frame: 2 years

    Frequency of COVID-19 case during the follow-up period

  32. Maternal Occurrence of COVID-19 during intervention period

    Time frame: 1 year

    Frequency of COVID-19 case during the intervention period

  33. Child cognitive at 25-28 months of age

    Time frame: 1 year

    Bayley Scales of Infant and Toddler Development, Third Edition (Bayley-III); a higher score indicates better performance

  34. Eye tracking tasks at 25-28 months of age

    Time frame: 1 year

    Visual paired comparison memory task and Infant Orienting with Attention task at 24 months of age

  35. Mother Height

    Time frame: 1 year

    Mother's height

  36. Mother Fat Percentage

    Time frame: 1 year

    Mother's fat percentage

Sponsors and collaborators

Lead sponsor

Indonesia University

Other

Collaborators

  • Grand Challenges Canada

Registry information

Official study title

Promotion of Maternal Gut Microbiota and Psychological Stimulation on Child Cognitive Development at 6 Months of Age

Acronym: BRAVE

Important dates

Study start
2019
Primary completion
2022
Study completion
2024
First posted
Feb 22, 2019
Registry last updated
Aug 29, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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