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临床试验/NCT03378167
NCT03378167已完成1 期

PediCRaFT: Pediatric Crohn's Disease Fecal Microbiota Transplant Pilot Study

McMaster Children's Hospital4 个研究点 分布在 1 个国家目标入组 17 人开始时间: 2018年12月1日最近更新:
适应症

试验速览

阶段
1 期
状态
已完成
入组人数
17
试验地点
4
主要终点
Dropout Rate Post Enrolment

研究概览

简要总结

The objective of this study is to assess the feasibility of a novel colonic and oral fecal microbiota transplantation protocol for the treatment of active pediatric Crohn's disease (CD). Specifically, we will test the hypothesis that a protocol of combination fecal microbiota colonoscopic infusion and oral microbiota capsules (OMC), using live fecal material from anonymous unrelated donors, can improve the disease activity of pediatric CD patients.

详细描述

Several recent studies have assessed the role of fecal microbiota transplantation (FMT) in the treatment of inflammatory bowel disease (IBD). IBD is a chronic autoimmune gastrointestinal disorder that has been associated with disease-specific microbial signatures in the host. The vast majority of literature on the therapeutic role of FMT has assessed its role in the treatment of acute Clostridium difficile colitis, but its effectiveness at treating this disease condition suggests a central role of the microbiome in host immune tolerance.

A. Alterations in the IBD Microbiome Investigators have characterized specific alterations of the gut microbiota in ulcerative colitis and Crohn's disease, compared to healthy controls. Patients with active IBD may have a relative depletion in anaerobic microbes, such as Bacteroides vulgatus, Lachnospiraceae (p: Firmicutes), and an increase in Proteobacteria and Bacillus (p: Firmicutes). These microbial signatures of IBD have led to several hypotheses about the protective, and pathological roles of different resident intestinal bacterial species. Conte et al have suggested that B. vulgatus may have a protective role against colitis, downregulating inflammation. Other studies have suggested that dysbiosis in IBD leads to decreased production of key short-chain fatty acids, such as butyric acid metabolized by Faecalibacterium prausnitzii. Directly, butyric acid and other short-chain fatty acids are key substrates absorbed by colonocytes, and indirectly, butyrate may inhibit inflammatory processes in the intestinal mucosa by suppressing cytokines, like interleukin-8. These studies have attempted to define canonical "intestinal-microbial-immune axes," supporting the hypothesis that IBD may occur secondary to an altered microbiome in a genetically, immunologically susceptible host. This constant host-microbial cross-talk may thus be altered by the introduction of key bacterial species that are otherwise absent, or decreased as a consequence of active mucosal inflammation, in the IBD gut. While FMT would not provide targeted, species-specific inoculations, whole stool transplant would theoretically introduce a broad range of bacteria, including those that are theoretically "favorable" to the host.

B. The Pediatric Microbiome Pediatric IBD, and the pediatric microbiome, have several unique features that suggest microbial-based therapies could be particularly effective. Crohn's disease and ulcerative colitis typically have a much more aggressive course in the pediatric age group, suggesting that the pediatric IBD phenotype may have a pathophysiology that is distinct from adult-onset IBD. In pediatric IBD, the early age of onset makes the cumulative burden of medications, nutritional impairment, and surgery greater. Several standard IBD medication therapies have unique, age-specific toxicities in children. The overlap of pediatric chronic disease with critical periods of growth, bone accretion, and psychosocial development can make disease exacerbations disproportionately affect a child's long-term outcome. The pediatric microbiome itself has key differences. The shorter latency of disease may offer a unique window to reverse an underlying state of "dysbiosis." The pediatric microbiome may be more malleable than a fully defined adult microbiome, and the relatively immature immune system of children may be more influenced by FMT.

C. FMT for the Treatment of Pediatric IBD Four case series have been published for the treatment of pediatric ulcerative colitis (UC) and CD using FMT. Protocols varied between all studies, and three main routes of administration were used: serial enemas, serial enemas with supplementary colonoscopic administration, and nasogastric tube. The first published study, involved five enemas administered daily to 9 UC patients, ages 7-21. Outcomes included clinical improvement from baseline using Pediatric Ulcerative Colitis Activity Index (PUCAI) scores, at one-week, and one-month post-treatment. 6/9 patients maintained clinical response at their one-month follow-up assessment. In 2015, two case series of FMT for CD and UC patients were published. A single FMT infusion was administered via nasogastric tube (NGT) to 4 UC, and 9 CD patients. No clinical response was seen in UC through NGT administration. In contrast, remission was induced in 7/9 CD patients within 2-weeks post-treatment, with 5/9 maintaining remission at week 6 and week 12. The most recent pediatric case series from 2015 included a cohort of pediatric UC patients treated with oral 5-ASA monotherapy, who received a combination of serial FMT enemas and colonoscopic infusions. 3 patients were included; 100% went into clinical remission at week 2, sustained clinical remission at week 4, and had complete withdrawal of immunotherapy at time of publication. Within the limitations of this small case series, there was a correlation between the number of FMT administrations, and the duration of remission.

Two single-center pediatric case reports have recently been published showing marked clinical improvement in two patients with severe colitis. A 2015 case report describes a 4-month old female presenting with an early-onset colitis with UC-like phenotype. The patient was refractory to treatment with azathioprine and corticosteroids, and did not respond to further treatment with probiotics, a trial of amino-acid based formula, or infliximab. 2 serial FMT infusions with anonymous donor stool were administered via colonoscope, and a subsequent 5 infusions via nasoduodenal tube. These interventions led to clinical improvement, and complete resolution of histopathologic changes 6-months post FMT. A recent, 2016 case report describes an 11-year old female with corticosteroid-dependent UC who was unresponsive to treatment with 5-aminosalicylic acid and tacrolimus14. An initial FMT using her father's donor stool was performed via colonoscopy, and subsequent daily FMTs via fecal retention enema over the next 4 days, followed by 11 additional FMTs via retention enema every 2 to 4 weeks over 10 months. The patient remained in clinical remission at 40 weeks post final FMT, and showed complete endoscopic healing.

研究设计

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

盲法说明

COLONOSCOPY:

  1. Microbial enemas are drawn up in a 500cc syringe that is concealed with an opaque bag, used to infuse contents through the colonoscope. This will insure contents are blinded to non-study personnel in the room
  2. Patients randomized to the control study arm will have identical concealment of the 500cc syringe used to infuse contents through the colonoscope. For the NS infusion, study personnel will add an additional 0.75 ml of commercially available (Club House® brand), food-grade food coloring (2 drops red, 3 drops green, 7 drops yellow) to confer a brown color to the clear normal saline solution. This step will maintain blinding for the patient and non-study personnel in the room, as the contents of the liquid will be visible endoscopically, but will still retain a similarly-colored brown appearance akin to human stool.

ORAL CAPSULAR THERAPY:

a), b) The opaque color of both the OMC and OPC will insure that blinding is preserved to the study patient.

入排标准

年龄范围
3 Years 至 17 Years(Child)
性别
All
接受健康志愿者

入选标准

  • Pediatric patients
  • Crohn's disease, or IBD-Unclassified favoring Crohn's disease (as deemed by the patient's primary pediatric gastroenterologist)
  • Active symptoms

排除标准

  • Currently enrolled in another clinical trial
  • Unable to give informed consent or assent
  • Severe comorbid medical illness (at discretion of patient's primary pediatric gastroenterologist)
  • Concomitant Clostridium difficile infection
  • Severe Crohn's disease flare requiring hospitalization
  • Commenced new, or temporary medical therapies (ie. corticosteroids, antibiotics, prebiotics) within 4 weeks prior to commencing the trial; NB: Weaning doses of corticosteroid will be permitted (≤ 0.25mg/kg/day)

结局指标

主要结局

Dropout Rate Post Enrolment

时间窗: 30 weeks

Rate of patients leaving the trial (patient, or protocol directed exclusion) after enrolment

Rate of Patient Protocol Adherence

时间窗: 30 weeks

Rate of patients providing all required blood, stool and urine samples per protocol

Monthly Recruitment Rate

时间窗: 30 weeks

Assessment of recruitment rate (based on patients meeting all eligibility criteria who were approached for trial entry)

Rate of Adverse Events

时间窗: 30 weeks

Rate of patients requiring hospitalization, or experiencing PCDAI increase ≥20 x 2 successive measures

次要结局

  • Clinical: Improvement in Disease Symptoms(Baseline, Week 6, Week 30)
  • Clinical: Improvement in Serum Inflammatory Markers(Baseline, Week 6, Week 30)
  • Clinical: Remission in Disease Symptoms(Week 6, Week 30)
  • Clinical: Improvement in Mucosal Inflammatory Markers(Baseline, Week 6, Week 30)
  • Clinical: Change in Urine Metabolomics(Baseline, Week 6, Week 30)
  • Clinical: Change in Fecal Microbiome(Baseline, Week 6, Week 30)

研究者

申办方类型
Other
责任方
Principal Investigator
主要研究者

Nikhil Pai

Associate Professor, Division of Pediatric Gastroenterology & Nutrition

McMaster Children's Hospital

研究点 (4)

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