About this trial
Burden: Environmental Enteric Dysfunction (EED) is an enteropathic condition characterized by altered gut permeability, infiltration of immune cells and changes in villous architecture and cell differentiation. EED is a major reason of malnourishment, poor neurological development, stunting, oral vaccine failure, and infection. It is believed that EED is responsible for 40% of all childhood stunting.
Knowledge gap: To date the focus of research on childhood stunting has been on the young child. It is increasingly appreciated, however, that stunting often begins in utero and the focus has shifted to women's health and pregnancy. Results from rural Bangladesh reveal poor gestational weight gain that ultimately leads to intrauterine growth restriction, low birth weight and ultimately stunting and wasting. Another study recently completed in slum settlements of Dhaka, Bangladesh demonstrated a high prevalence of EED among undernourished women. Intestinal histopathology was abnormal in more than 80% of women. We postulate that growth retardation in utero is a consequence of EED in the mother during pregnancy and lactation. This leads to systemic inflammation, which lead to disadvantageous partitioning of nutrients, and reduced nutrient availability.
Relevance: This trial will explore the conceptual framework that a probiotic or live biotherapeutic product that can improve the composition of gut microbiota, can also displace enteropathogens and reduce biomarkers of intestinal inflammation to promote gut health. This will restore healthy microbial signaling to the host epithelium, ameliorate barrier function through secretion of mucus and antimicrobial factors, and improve nutrient availability.
Objectives: The primary objective is to assess if administration of oral vancomycin followed by VE818 to pregnant women colonized with at least 2 out of 11 selected bacterial enteropathogens results in a significant change in the mean count of these organisms between the baseline and 2 weeks after completion of the intervention (Study Day 35d +2), compared to oral vancomycin followed by placebo.
Methods: Pregnant women will be recruited in antenatal clinics and in the community in Matlab in Bangladesh, Bobo-Dioulasso in Burkina Faso, Matiari in Pakistan, and Lusaka in Zambia. Study population will be women aged 18 years or older in the first trimester or early second trimester of pregnancy. Study procedures will be explained in detail and written consent will be taken before enrollment. Those women who give consent to participation will undergo a screening process which will check if any exclusion criteria are fulfilled. After consent and screening they will be randomized into either of the three arms: intervention arm (oral vancomycin followed by VE818), placebo-control arm (oral vancomycin followed by placebo), or observation-only arm. The allocation sequence will be generated by the trial statistician using a code with block permutation. The participant will remain free to withdraw at any time from the trial without giving reasons and without prejudicing her further treatment. Biological samples, including blood, saliva, urine, stool, vaginal swab, and intestinal luminal contents through CapScan. CapScan is a non-invasive device (capsule) that collects gastrointestinal samples along the gastrointestinal tract following ingestion and passes into stool.
Outcome measures/variables: The primary endpoint is the change in the mean count in the number of 11 selected fecal bacterial pathogen groups present between baseline and 2 weeks after completion of the 14-day course with Placebo or VE818 (Study arms 2 and 3), which corresponds to 35th day, +2 from the first dose of oral vancomycin.
The 11 enteropathogen targets will be detected by customized real-time quantitative PCR-based TaqMan Array Cards (TAC-qPCR) and include the following organisms: Aeromonas, Campylobacter coli, Campylobacter jejuni, Campylobacter Pan, Enteroaggregative Escherichia coli (E. coli), Enteropathogenic E. coli, Enterotoxigenic E. coli, Plesiomonas, Shigella\_Enteroinvasive E. coli (EIEC), Salmonella and Klebsiella pneumoniae.
Eligibility criteria
This trial does not accept healthy volunteersQualifiers
Women aged 18 years or older in their first or early second trimester of pregnancy (13-17 weeks of gestational age [GA]), living in defined geographical areas of Bangladesh (Matlab), Pakistan, Zambia, and Burkina Faso, where it can be assumed that environmental enteropathy is prevalent
Presence of any 2 out of 11 selected bacterial pathogen targets (Aeromonas, Campylobacter coli, Campylobacter jejuni, Campylobacter Pan, Enteroaggregative Escherichia coli, Enteropathogenic Escherichia coli, Enterotoxigenic Escherichia coli, Plesiomonas, Shigella_EIEC, Salmonella and Klebsiella pneumoniae in fecal samples measured by TAC-qPCR.
Presence of any of the following WASH conditions -
Disqualifiers
have MUAC ≥30 cm
are carrying more than one fetus (i.e., multiple pregnancy)
have diarrhea, defined as the passage of three or more loose stools per 24 hours, or have had diarrhea in the preceding 14 days
have fever or an active infection
Trial design
Parallel
Treatments tested in this trial
VE818
DrugVE818, is an 11-strain bacterial consortium rationally designed by Vedanta Biosciences Inc., to displace enteropathogens and reduce intestinal inflammation in pregnant women
Placebo
DrugEnteric capsules filled with approximately 400mg of microcrystalline cellulose (bulking agent)
Oral Vancomycin
DrugOral vancomycin in capsule form will be administered three times daily for 5 days at 250mg per dose. Because oral vancomycin is a non-absorbable antibiotic, the likelihood of systemic absorption is minimal and therefore, it is not associated with the adverse events attributable to the intravenous formulation
Treatment groups
Trial outcomes
Primary outcomes
Change in the mean count in the number of 11 selected fecal bacterial pathogen groups present between baseline and endline
The primary endpoint is the change in the mean count in the number of 11 selected fecal bacterial pathogen groups present between baseline and 2 weeks after completion of the 14-day course with Placebo or VE818 (Study arms 2 and 3), which corresponds to 35th day, +2 from the first dose of oral vancomycin.
Secondary outcomes
Change in prevalence of specific enteropathogens not included in the primary endpoint in pregnant women
Change in prevalence of specific enteropathogens (i.e., rotavirus, norovirus, Giardia, Cryptosporidium, and bacterial pathogens not included in the primary endpoint) in pregnant women detected in feces by TAC-qPCR between baseline (Day 0), end of oral vancomycin treatment (Day 6) the last dose of the 14-day VE818 intervention (21st day, +2), 14 days after the last dose of VE818 (35th day, +2), 42 days after the last dose of VE818 (63rd day, +2), and 7 day post-partum in the Treatment arm compared to Placebo arm and Observation-only arm (comparable timepoints)
Engraftment of VE818 strains in pregnant women
Engraftment of VE818 strains in pregnant women as measured by shotgun metagenomic sequencing of fecal samples collected at the end of the 14-day VE818 intervention (21st day, +2), 14 days after the last dose of VE818 (35th day, +2), 42 days after the last dose of VE818 (63rd day, +2) and 7 days post-partum
Change in a panel of plasma biomarkers in pregnant women as measured by ELISA
Change in a panel of plasma biomarkers (CRP, AGP, sCD14, LBP, CD163 and iFABP) in pregnant women as measured by ELISA between baseline (Day 0), end of oral vancomycin treatment (Day 6), 14 days after the last dose the of 14-day intervention (35th day, +2) and, 42 days after the last dose of VE818 (63rd day, +2) in the Treatment arm compared to Placebo arm and Observation-only arm (comparable timepoints)
Change in a panel of fecal biomarkers in pregnant women as measured by ELISA
Change in a panel of fecal biomarkers (myeloperoxidase, neopterin, calprotectin and lipocalin) in pregnant women as measured by ELISA between baseline (Day 0) , end of oral vancomycin treatment (Day 6), the last dose of the 14-day VE818 intervention (21st day, +2), 14 days after the last dose of VE818 (35th day, +2) 42 days after the last dose VE818 (63rd day, +2), and 7 day post-partum in the Treatment arm, compared to Placebo arm and Observation-only arm (comparable timepoints)
Other outcomes
Difference in the rate of weight gain during the second and third trimester of pregnancy
Difference in the rate of weight gain during the second and third trimester of pregnancy between Treatment arm and Placebo and Observation-only arms
Difference in fetal growth trajectories
Difference in fetal growth trajectories as measured by serial ultrasound evaluation of intrauterine growth between Treatment arm and Placebo and Observation-only arms
Difference in placental insufficiency
Difference in placental insufficiency as measured by ultrasound-derived cerebroplacental ratio (CPR) between Treatment arm and Placebo and Observation-only arms
Difference in placental stress
Difference in placental stress measured through sFlt-1/PlGF ratio between Treatment arm and Placebo and Observation-only arms
Sponsors and contacts
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University Ghent
Lead sponsor
Institut de Recherche en Sciences de la Santé (IRSS)
Collaborator
Agence de Formation, de Recherche & d'Expertise en Santé pour l'Afrique (AFRICSanté)
Collaborator
Bill and Melinda Gates Foundation
Collaborator