Gut Oxygen Therapy for Ischemic-Hypoxic Bowel Disease
Efficacy and Safety of Gut Oxygen Therapy for Ischemic-Hypoxic Bowel Disease: A Single-center, Double-blind, Randomized, Intra-individual Crossover Controlled Study
Study Overview
Status
Status
Conditions
Conditions
Intervention / Treatment
Intervention / Treatment
Detailed Description
Study Type
Study Type
Enrollment (Estimated)
Enrollment
Phase
Phase
- Not Applicable
Contacts and Locations
Study Contact
Study Contact
- Name: Faming Zhang, PhD
- Phone Number: 086-25-58509883
- Email: fzhang@njmu.edu.cn
Study Locations
-
-
Jiangsu
-
Nanjing, Jiangsu, China, 210011
- Recruiting
- The Second Affiliated Hospital of Nanjing Medical University
-
Contact:
- Faming Zhang, Professor
- Phone Number: 086-25-58509883
- Email: fzhang@njmu.edu.cn
-
-
Participation Criteria
Eligibility Criteria
Eligibility Criteria
Ages Eligible for Study
- Adult
- Older Adult
Accepts Healthy Volunteers
Description
Inclusion Criteria:
- Definite diagnosis of chronic heart failure or obstructive sleep apnea (OSA) with chronic hypoxia;
- Comorbid intestinal dysmotility (abdominal distension, constipation, diarrhea, or abdominal pain);
- Disease duration ≥1 month with poor response to conventional treatment;
- Tolerability of transendoscopic enteral tubing (TET) with successful placement of the tube at the ileocecal junction;
- Age 18-80 years;
- Able to cooperate with bed rest therapy and provide written informed consent.
Exclusion Criteria:
- Oxygenation index >400 without supplemental oxygen and/or resting oxygen saturation ≥96%;
- Primary organic gastrointestinal diseases, intestinal obstruction, inflammatory bowel disease, or severe hepatic/renal failure;
- Hemodynamically unstable, unable to tolerate sequential intervention (time-sequenced intervention);
- Presence of cough or spinal disorders that prevent maintaining a resting state during bed rest;
- Failure of arterial catheterization or endoscopic tube placement;
- Mental or cognitive impairment that precludes cooperation with assessments.
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Treatment
- Allocation: Randomized
- Interventional Model: Crossover Assignment
- Masking: Triple
Number of Arms
Arms and Interventions
Participant Group / ArmParticipant Group / Arm |
Intervention / TreatmentIntervention / Treatment |
|---|---|
|
Experimental: Crossover Sequence A - O2 then Sham
Eligible subjects meeting all inclusion criteria and none of the exclusion criteria randomized to this sequence will receive interventions at three separate time points over one day via a deep intestinal catheter
|
Subjects will receive interventions in a crossover manner at three separate time points over one day as follows: Time 1: 500 mL of oxygen (flow rate: 1 L/min) Time 2: 500 mL of no air (no oxygen) Time 3: 500 mL of oxygen (flow rate: 1 L/min) |
|
Experimental: Crossover Sequence B - Sham then Oxygen (O2)
Eligible subjects meeting all inclusion criteria and none of the exclusion criteria randomized to this sequence will receive reverse interventions at three separate time points over one day via a deep intestinal catheter.
|
Subjects will receive interventions in a crossover manner at three separate time points over one day as follows: Time 1: 500 mL of no air (no oxygen) Time 2: 500 mL of oxygen (flow rate: 1 L/min) Time 3: 500 mL of oxygen (flow rate: 1 L/min) |
What is the study measuring?
Primary Outcome Measures
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Changes in arterial blood gas
Time Frame: Perioperative/Periprocedural
|
Arterial blood gas analysis results, including partial pressure of oxygen, oxygen concentration, partial pressure of carbon dioxide, oxygenation index, and concentrations of various ions and electrolytes, were obtained at baseline and at intermittent time points within a 30-minute period
|
Perioperative/Periprocedural
|
Secondary Outcome Measures
Secondary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Changes in electrocardiographic data
Time Frame: Perioperative/Periprocedural
|
Electrocardiographic data, comprising P-wave morphology, QRS complex duration, QT interval, among other relevant indices, were acquired throughout the periprocedural course.
|
Perioperative/Periprocedural
|
|
Changes in electroencephalographic data
Time Frame: Perioperative/Periprocedural
|
Electroencephalographic parameters-specifically the wavelengths and amplitudes of alpha, beta, and other relevant frequency bands-were measured throughout the periprocedural course.
|
Perioperative/Periprocedural
|
|
Overall patient satisfaction with intervention.
Time Frame: Perioperative/Periprocedural
|
The patients' satisfaction with the treatment was graded into five levels: very dissatisfied, dissatisfied, average, relatively satisfied, and very satisfied.
The differences of treatment satisfaction among different groups were compared.
|
Perioperative/Periprocedural
|
|
The incidence rate of adverse events
Time Frame: Perioperative/Periprocedural
|
The number of adverse reactions reported from the start of treatment to the end of follow-up
|
Perioperative/Periprocedural
|
|
The changes in gut microbiota composition and metabolites before and after treatment.
Time Frame: Perioperative/Periprocedural
|
The 16s-RNA or meta-analysis of gut microbiota will be used.
|
Perioperative/Periprocedural
|
Collaborators and Investigators
Sponsor
Sponsor
Publications and helpful links
General Publications
- Chen A, Teng C, Wei J, Wu X, Zhang H, Chen P, Cai D, Qian H, Zhu H, Zheng X, Chen X. Gut microbial dysbiosis exacerbates long-term cognitive impairments by promoting intestinal dysfunction and neuroinflammation following neonatal hypoxia-ischemia. Gut Microbes. 2025 Dec;17(1):2471015. doi: 10.1080/19490976.2025.2471015. Epub 2025 Feb 26.
- Van Welden S, Selfridge AC, Hindryckx P. Intestinal hypoxia and hypoxia-induced signalling as therapeutic targets for IBD. Nat Rev Gastroenterol Hepatol. 2017 Oct;14(10):596-611. doi: 10.1038/nrgastro.2017.101. Epub 2017 Aug 30.
- Dvornikova KA, Platonova ON, Bystrova EY. Hypoxia and Intestinal Inflammation: Common Molecular Mechanisms and Signaling Pathways. Int J Mol Sci. 2023 Jan 26;24(3):2425. doi: 10.3390/ijms24032425.
Study record dates
Study Major Dates
Study Start (Estimated)
Study Start
Primary Completion (Estimated)
Primary Completion
Study Completion (Estimated)
Study Completion
Study Registration Dates
First Submitted
First Submitted
First Submitted That Met QC Criteria
First Submitted That Met QC Criteria
First Posted (Actual)
First Posted
Study Record Updates
Last Update Posted (Actual)
Last Update Posted
Last Update Submitted That Met QC Criteria
Last Update Submitted That Met QC Criteria
Last Verified
Last Verified
More Information
Terms related to this study
Keywords
Additional Relevant MeSH Terms
- Pain
- Neurologic Manifestations
- Cardiovascular Diseases
- Heart Diseases
- Signs and Symptoms, Digestive
- Pathological Conditions, Signs and Symptoms
- Signs and Symptoms
- Heart Failure
- Abdominal Pain
- Inorganic Chemicals
- Population Characteristics
- Elements
- Demography
- Chalcogens
- Gases
- Oxygen
- Population Groups
Other Study ID Numbers
Other Study ID Numbers
- GOT-RCT
Plan for Individual participant data (IPD)
Plan to Share Individual Participant Data (IPD)?
Drug and device information, study documents
Studies a U.S. FDA-regulated drug product
Studies a U.S. FDA-regulated device product
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