UF Health at Shands hospital
Gainesville, Florida, 32610, United States
Location status: Recruiting
Location contact
Jennifer Lanz, MSN
CONTACT
Ruth Davis, BSN
CONTACT
NCT Number: NCT05110937
Adverse outcomes in surgical sepsis patients are secondary to dysregulated emergency myelopoiesis, and expansion of myeloid-derived suppressor cells. Here we propose to determine the underlying mechanisms behind the increased expansion of these leukocyte populations and the underlying mechanisms that drive inflammation and immune suppression.
Interested in participating?
Request Info18 year–100 year
All sexes
Observational
Gainesville, Florida, 32610, United States
Location status: Recruiting
Jennifer Lanz, MSN
CONTACT
Ruth Davis, BSN
CONTACT
Our overarching hypothesis is that the consequences of surgical sepsis (death and poor quality of life) are the result of an unresolving host leukocyte dyscrasia, similar to other chronic conditions such as cancer and autoimmune disease. Specifically, the preferential expansion and self-perpetuation of myeloid-derived suppressor cells (MDSCs), propagated in part through epigenetic changes in both bone marrow (BM) progenitors and MDSCs, drives non-acute infectious and noninfectious complications after sepsis.
This Program will investigate in human surgical sepsis the underlying mechanisms that drive 'dysfunctional myelopoiesis', expansion of MDSC populations, suppressed T-cell quantities/function, and the development of patient's immunosuppressive/inflammatory endotypes. We will primarily focus on how MDSC expansion evolves over time in an observational study that follows surgical sepsis patients who do or do not rapidly recover. There are three specific aims: Aim 1. To test the hypothesis that perpetuation of host MDSCs after acute surgical sepsis drives poor long-term clinical outcomes in surgical sepsis, including but not limited to increased secondary infections. Aim 2. To test the hypothesis that failure to recover from surgical sepsis is driven by modifiable epigenetic alterations in circulating MDSCs that induce and prolong immunosuppressive endotypes. Aim 3. To identify the distinct immunosuppressive mechanisms of MDSCs from surgical sepsis patients over time, including immunometabolism, check-point inhibition, reactive oxygen and nitrogen production, and substrate availability. Using the established clinical infrastructure of the Sepsis and Critical Illness Research Center (SCIRC), a team science approach will be employed with collaborating PI's coming from multiple clinical and basic science disciplines. Aim 4. To test the hypothesis that in response to an initial inflammatory stimulus (severe blunt trauma) associated with a high risk of in-hospital sepsis, bone marrow (BM) hematopoietic stem cells (HSCs) promote immunosuppressive myelopoiesis at the expense of lymphopoiesis. With subsequent sepsis development, MDSCs induce their continued expansion through exocrine and paracrine signaling to HSCs. HSCs and MDSCs derived from severe blunt trauma patients will be analyzed for epigenetic and functional changes that initiate sepsis and continue the expansion of immunosuppressive MDSCs.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Sepsis participant:
Inclusion criteria
Exclusion criteria
a. irreversible shock (death <12 hours) b. uncontrollable surgical source of sepsis c. patients deemed to be futile care or have advanced directives limiting resuscitative efforts d. alternative diagnoses causing shock state (e.g., hemorrhage, myocardial infarction or pulmonary embolus) e. known HIV infection with CD4+ count <200 cells/mm3 g. severe traumatic brain injury with unencumbered assessment of GCS equaling 3 on admission to the intensive care unit.
Trauma Participant:
Inclusion criteria
OR
c. ISS > 15 and two of the following: i. Age > 55 ii. AIS > 2 chest iii. +ETOH (ethyl alcohol) on arrival iv. Any red blood cell transfusion in first 24 hours
Exclusion criteria
Blood sampling
Time frame: 6 months
The total number of neutrophils and early Myeloid derived suppressor cells will be measured at sepsis onset and during hospitalization and at 3 and 6 months.
Contact information is provided by the study sponsor or research team.
Jennifer Lanz, MSN
CONTACT
Ruth Davis, BSN
CONTACT
University of Florida
Other
Dysfunctional Myelopoiesis and Myeloid-Derived Suppressor Cells in Sepsis Pathobiology Subtitle: Pathological Myeloid Activation After Sepsis and Trauma
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