The Role of Brain-Bone Marrow-Gut Interaction Following Major Trauma
Study Overview
Status
Status
Conditions
Conditions
Intervention / Treatment
Intervention / Treatment
Detailed Description
Study Type
Study Type
Enrollment (Estimated)
Enrollment
Contacts and Locations
Study Contact
Study Contact
- Name: Ruth Davis, BSN
- Phone Number: 352-273-8759
- Email: ruth.davis@surgery.ufl.edu
Study Contact Backup
- Name: Jennifer Lanz, MSN
- Phone Number: 352-273-5497
- Email: jennifer.lanz@surgery.ufl.edu
Study Locations
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Florida
-
Gainesville, Florida, United States, 32610
- Recruiting
- UF Health at Shands hospital
-
Contact:
- Ruth Davis, BSN
- Phone Number: 352-273-8759
- Email: ruth.davis@surgery.ufl.edu
-
Contact:
- Jennifer Lanz, MSN
- Phone Number: 352-273-5497
-
Principal Investigator:
- Alicia Mohr, MD
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Gainesville, Florida, United States, 32610
- Recruiting
- UF Academic Research Building
-
Contact:
- Kolenkode B Kannan, PhD
- Phone Number: 352-273-8455
- Email: Kolenkode.Kannan@surgery.ufl.edu
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Contact:
- Alicia Mohr, MD
- Phone Number: 352-273-5670
- Email: alicia.mohr@surgery.ufl.edu
-
Gainesville, Florida, United States, 32610
- Recruiting
- UF Laboratory of Inflammation Biology and Surgical Science and Shands Hospital at UF
-
Principal Investigator:
- Alicia L Mohr, MD
-
-
Participation Criteria
Eligibility Criteria
Eligibility Criteria
Ages Eligible for Study
- Adult
- Older Adult
Accepts Healthy Volunteers
Sampling Method
Study Population
Description
Severe Trauma Cohort
Inclusion Criteria:
- All adults (age ≥18).
- Blunt trauma with an injury severity score > 15 and a long bone or pelvic fracture requiring open reduction internal fixation or intramedullary fixation
- Blunt trauma patients with shock, defined by either a systolic BP (SBP) <90 mm Hg or base deficit (BD) ≥5 meq or lactate ≥ 2 mmol/L or active red blood cell or whole blood transfusion within 6h or arrival
Exclusion Criteria:
- Patients not expected to survive greater than 48 hours
- Prisoners
- Pregnancy
- Previous bone marrow transplantation
- Patients receiving chronic corticosteroids or immunosuppression therapies
- Patients with End Stage Renal Disease
- Patients with any pre-existing hematological disease
- Surgery for repair of injury is greater than seven days after admission to the hospital for trauma
- Burn injury greater than 20% TBSA
Elective Hip Cohort
Inclusion Criteria
- All adults (age ≥55).
- Patient undergoing elective hip repair for non-infectious reasons.
- Ability to obtain Informed Consent prior to operation.
Exclusion Criteria
- Patients not expected to survive greater than 48 hours
- Prisoners
- Pregnancy
- Previous bone marrow transplantation
- Patients receiving chronic corticosteroids or immunosuppression therapies
- Patients with End Stage Renal Disease
- Patients with any pre-existing hematological disease
Study Plan
How is the study designed?
Design Details
Number of groups / cohorts
Cohorts and Interventions
Group / CohortGroup / Cohort |
Intervention / TreatmentIntervention / Treatment |
|---|---|
|
Major Trauma Injury
Severe blunt trauma patients diagnosed with shock with a long bone or pelvic fracture requiring open reduction internal fixation or intramedullary fixation.
|
Collection of bone marrow, blood, feces, medical record data, and patient response surveys.
|
|
Elective Hip Replacement
Patients undergoing elective hip replacement surgery
|
Collection of bone marrow, blood, feces, medical record data, and patient response surveys.
|
What is the study measuring?
Primary Outcome Measures
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Link the changes in HSPC and erythroid progenitor cell fate and function with sympathetic stress-induced changes establishing brain-bone marrow communication following trauma.
Time Frame: 3 years
|
The impact of the severity and duration of catecholamine secretion on the cellular biology of HSPCs and erythroid progenitor cells requires further detailed evaluation.
At each stage of proliferation and differentiation, there is a complex interaction of cytokines, transcription factors, post-translational modification of histones, and miRs.
Single-cell RNA-seq technologies using a novel second generation multi-omics technology, CITE-seq, will be used for identification of isolated HSPCs and erythroid progenitor cells.
Such single cell sequencing technology is ideal for cell populations with a great deal of heterogeneity and is well-suited for bone marrow analysis.
Isolated cells can then be characterized by their transcriptomic and epigenetic changes.
We will also evaluate EVM cargo (specific proteins/RNA/miR) from both plasma and bone marrow to determine links to chronic stress exposure.
|
3 years
|
|
Determine the connection between changes in the microbiome with sympathetic stress-induced changes establishing gut-brain communication following trauma.
Time Frame: 3 years
|
Focusing on the effects of autonomic nervous system on gut function and immune responses, in the setting of sympathetic activation, a serial evaluation of the gut microbiota and their metabolic products (ex.
SCFAs: butyrate, propionate, and acetate) will be performed in trauma patients.
Correlation of microbial diversity and alterations of the taxonomic composition will be correlated with plasma markers of inflammation and clinical outcomes.
Longitudinal study of the trauma pathobiome will elucidate clinical course patterns (recovery and CCI) with microbial composition.
The unique biology of the microbiome in different sexes and age groups will require additional subgroup analysis.
|
3 years
|
|
Link changes in the microbiome with altered HSPC and erythroid progenitor cells fate establishing gut-bone marrow communication following trauma
Time Frame: 3 years
|
We will examine how stress-induced changes following trauma create a pathobiome that modulates HPSC differentiation and maintains altered erythroid progenitor function.
The microbiota play a role in both lineage differentiation and also control systemic iron homeostasis by inhibiting intestinal absorption and increasing cellular iron storage.
Bone marrow macrophages have a key role in late-stage erythropoiesis by supplying local iron to erythroblasts for hemoglobin production.
Isolation of bone marrow macrophages and erythroblasts involved in EBIs and determination of local iron content will define microbiome-induced changes in terminal erythropoiesis.
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3 years
|
Collaborators and Investigators
Sponsor
Sponsor
Collaborators
Collaborators
Investigators
Investigators
- Principal Investigator: Alicia Mohr, MD, University of Florida
Study record dates
Study Major Dates
Study Start (Actual)
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
- Pathologic Processes
- Disease Attributes
- Hematologic Diseases
- Bone Marrow Diseases
- Pathological Conditions, Signs and Symptoms
- Hemic and Lymphatic Diseases
- Bone Marrow Failure Disorders
- Accidental Injuries
- Critical Illness
- Wounds and Injuries
- Inflammation
- Anemia
- Health Care Facilities Workforce and Services
- Biological Specimen Banks
- Health Facilities
- Tissue Banks
Other Study ID Numbers
Other Study ID Numbers
- IRB202400903
- 1R35GM152216-01 (U.S. NIH Grant/Contract: NIH/NIGMS)
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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