The human immune system is usually tolerant of the millions of beneficial commensal bacteria (the microbiome), which colonize the healthy intestinal tract. In contrast, patients with Inflammatory Bowel Disease (IBD) may play host to an imbalanced mix of such intestinal bacteria, which initiates abnormal immune responses in susceptible individuals. The resulting inflammation that occurs in the gastrointestinal tract damages the intestinal lining, leading to symptoms (such as intractable diarrhea, pain or weight loss), heightened cancer risk, other serious complications with substantial morbidity and even death. Current therapies for IBD focus on suppressing the excessive immune response to these bacteria, but have major side effects and do not address any role of the microbiome in disease development. The investigators hypothesize that there is heightened intraluminal generation of pro-inflammatory factors by luminal "pathogenic" bacteria, such as extracellular nucleotides and purinergic derivatives, which trigger host immune cells. This results in loss of suppressive T regulatory cells with unrestrained immune cell deviation to pathogenic T helper cells that cause inflammatory responses. The investigators' proposal is that correcting the disease-provoking microbiome would beneficially improve gut microbial diversity, alter immune responses elicited in patients by such microbial products of pathogenic bacteria, and ultimately limit and suppress disease activity. To test the hypothesis, the investigators propose to enroll patients with active Crohn's Disease, and introduce the microbiome of healthy and unrelated individuals to patient's intestinal tract, via fecal biotherapy (FBT) with all applicable safety measures. The investigators propose to comprehensively test the effects of FBT on the host microbiome, determine microbial production of inflammatory nucleotides and derivatives, which the investigators suggest might impact the host immune response and disease activity in patients with IBD.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
22
Beth Israel Deaconess Medical Center
Boston, Massachusetts, United States
Safety of FMT in patients with Crohn's disease, as measured by number and nature of adverse events
Time frame: 24 weeks
Recipients' fecal microbial diversity after FMT, when compared to baseline
Time frame: 12 weeks
Recipients' fecal microbial diversity at 4 and 8 weeks after FMT, when compared to baseline
Time frame: 8 weeks
Mean change in Harvey Bradshaw Index (HBI) score
Time frame: 12 weeks
Percentage of patients in clinical remission (those with an HBI score at week 12 <5)
Time frame: 12 weeks
Mean change in Short Inflammatory Bowel Disease Questionnaire (sIBDQ) score
Time frame: 12 weeks
Percentage of patients in endoscopic remission (CDEIS score <3)
Time frame: 12 weeks
Percentage of patients with mucosal healing (CDEIS score <1)
Time frame: 12 weeks
Mean change in CRP levels
Time frame: 12 weeks
Mean change in Crohn's Disease Endoscopic Index of Severity (CDEIS) score
Time frame: 12 weeks
Tolerability score
Time frame: 2 weeks
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.