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临床试验/NCT05501470
NCT05501470已完成2 期

Ability of the Probiotic Vivomixx to Improve Environmental Enteropathy in Pregnant Women: a Proof of Concept Trial in Senegal

Institut Pasteur de Dakar2 个研究点 分布在 1 个国家目标入组 76 人开始时间: 2024年6月6日最近更新:
适应症
干预措施
相关药物

试验速览

阶段
2 期
状态
已完成
入组人数
76
试验地点
2
主要终点
Change in inflammation and epithelial damage in pregnant women with environmental enteropathy

研究概览

简要总结

Stunting in young children refers to attenuated linear growth. In the year 2020, 149.2 million children under the age of 5 were stunted, accounting for 22% of stunting globally. Stunting has short- and long-term consequences of increased morbidity and mortality, impairment of neurocognitive development , impaired responses to oral vaccines, and increased risk of non-communicable diseases. Stunting is partly driven by Environmental Enteric Dysfunction (EED), an enteropathic condition characterised by altered gut permeability, infiltration of immune cells and changes in villous architecture and cell differentiation. EED may help explain why nutritional supplementation either during pregnancy or early childhood has minimal value in correcting childhood stunting.

Probiotics may serve to overcome the problem of EED through all mechanisms of pathogenicity, by providing additional bacteria that may help in intestinal decolonization of pathogenic microorganisms (changing the microbiological niche), promoting epithelial healing, improving nutrient absorption, and restoration of an appropriate immune balance between tolerance and responsiveness.

This trial will explore the conceptual framework, that a well known probiotic, that can improve the composition of the gut microbiota, can reduce biomarkers of intestinal inflammation and gut health. This will restore healthy microbial signalling to the host epithelium, ameliorate barrier function through secretion of mucus and antimicrobial factors, and improve nutrient availability.

详细描述

Stunting in young children refers to attenuated linear growth. In the year 2020, 149.2 million children under the age of 5 years of age were stunted, accounting for 22% of stunting globally. Stunting has short- and long-term consequences of increased morbidity and mortality, impairment of neurocognitive development5 , impaired responses to oral vaccines, and increased risk of non-communicable diseases. Stunting is partly driven by Environmental Enteric Dysfunction (EED), an enteropathic condition characterised by altered gut permeability, infiltration of immune cells and changes in villous architecture and cell differentiation. EED may help explain why nutritional supplementation either during pregnancy or early childhood has minimal value in correcting childhood stunting. Indeed, EED is believed to be responsible for 40% of childhood stunting. Disruption in intestinal barrier function affects gut immune homeostasis, nutrient flows, and consequently dysbiosis in the gut microbiome. The gut microbiota consists of 100 trillion bacteria which interact with epithelial cells, the mucus layer and the mucosal immune system that balances tolerance and effector functions. Thus the gut microbiome has an important role in shaping the responsiveness of the gut immune system. The mucus barrier and the normal gut microbiota limit enteropathogen colonisation. Influx of bacteria from the lumen to the systemic circulation represents microbial translocation and initiation of systemic of inflammatory process through recognition of pathogen-associated molecular patterns (PAMPs) by Pattern Recognition Receptors (PRRs) present on Antigen Presenting Cells (APCs). Three fundamental processes drive the epithelial damage which is so important in EED: infection, undernutrition, and immune dysfunction. Multiple clinical trials show that efforts to correct malnutrition through conventional therapies and improving hygiene and sanitation do not overcome growth deficits by more than about 10%. There is increasing interest in the use of probiotics which may allow pathogen decolonization, improve barrier function and restore overall gut homeostasis. Such therapies are at early stage of trials but may have potential in addressing the global burden of EED, by improving barrier function and gut pathophysiology.

Colonization of gut by enteropathogens is common in children with EED. These include ETEC, Campylobacter, Shigella and Salmonella species. Consistent data from Bangladesh and Zambia show that children with refractory stunting carry over four pathogens on average, whilst controls carry less than two. There is also clear evidence of altered composition of the microbiota in children with EED.

Probiotics may serve to overcome the problem of EED through all mechanisms of pathogenicity, by providing additional bacteria that may help in intestinal decolonization of pathogenic microorganisms (changing the microbiological niche), promoting epithelial healing, improving nutrient absorption, and restoration of an appropriate immune balance between tolerance and responsiveness.

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. For example, the Lancet 2021 Series on maternal and child undernutrition states that "Investments to reduce undernutrition in women are important not only for women's own health but also for the health and nutrition of their children". Results from rural Bangladesh reveal poor gestational weight gain that ultimately leads to intrauterine growth restriction, low birth weight and ultimately stunting and wasting. Furthermore, 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 leads to disadvantageous partitioning of nutrients, and reduced nutrient availability.

This trial will explore the conceptual framework that a well known probiotic, that can improve the composition of the gut microbiota, can reduce biomarkers of intestinal inflammation and gut health. This will restore healthy microbial signalling to the host epithelium, ameliorate barrier function through secretion of mucus and antimicrobial factors, and improve nutrient availability.

研究设计

研究类型
Interventional
分配方式
Randomized
干预模型
Parallel
主要目的
Treatment
盲法
Quadruple (Participant, Care Provider, Investigator, Outcomes Assessor)

盲法说明

Randomisation will be carried out using sealed envelopes, using a randomisation code prepared by the trial statistician, which will be stratified by study centre. Each woman who gives consent will be given a trial identification (TID) number which will match the number on the randomisation envelopes.

The trial will be blinded with an identical placebo (by Next Gen Pharma India Pvt. India). Samples will be run and analysed using TID only, with all data cleaning and re-assays carried out blinded. The trial statistician will unblind lab data once databases are finalised.

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
Female
接受健康志愿者

入选标准

  • Women over the age of 18, living in Guediawaye district, Senegal

排除标准

  • • have had diarrhea, defined as the passage of three or more loose stools per 24 hours, in the preceding 14 days
  • have taken antibiotics or probiotics in the preceding 14 days
  • have taken non-steroidal anti-inflammatory drugs in the preceding 14 days
  • have any illness which in the opinion of the investigator will complicate assessment of safety or efficacy
  • have any gastrointestinal contraindication to ingestion of a capsule (known or suspected gastrointestinal obstruction, stricture, fistula, gastroparesis, or any swallowing disorder.)
  • have a plan to leave the study area within the follow-up period
  • but may be enrolled if/when these disqualifiers have expired.

研究组 & 干预措施

Probiotic

Experimental

Participant in the treatment arm will receive a daily dose of the probiotic for 8 weeks.

干预措施: Placebo (Drug)

Placebo

Placebo Comparator

Participant in the control arm will receive a daily dose of a placebo for 8 weeks.

干预措施: Placebo (Drug)

Placebo

Placebo Comparator

Participant in the control arm will receive a daily dose of a placebo for 8 weeks.

干预措施: CapScan® (Device)

Probiotic

Experimental

Participant in the treatment arm will receive a daily dose of the probiotic for 8 weeks.

干预措施: Probiotic (Drug)

结局指标

主要结局

Change in inflammation and epithelial damage in pregnant women with environmental enteropathy

时间窗: Day 0 (screening) - Day 56

Percentage change (mean, unweighted) in a multiple panel of biomarkers between baseline and last sample collected after 56 days of treatment, compared to control group.

次要结局

  • Change in enteropathogen colonisation(Day 1 - Day 56)
  • Impact on the structure and function of the microbiome(Day 1 - Day 56)
  • Change in permeability(Day 1 - Day 56)
  • Impact of the host metabolome in pregnant woman(Day 1 - Day 56)
  • Rate of weight gain in the 2nd trimester of pregnancy(Day 0 (screening) - Day 56)
  • Variability in endpoints across geographies and participating laboratories(Beginning of recruitment in the first study site - end of recruitment in the last study site (approximately 12 months))

研究者

申办方类型
Other
责任方
Sponsor

研究点 (2)

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