PUBLICATION

DHCR7 Expression Predicts Porsusor Outcomes and Mortality From Sepsis

Authors
Guirgis, F.W., Jacob, V., Wu, D., Henson, M., Daly-Crews, K., Hopson, C., Black, L.P., DeVos, E.L., Sulaiman, D., Labilloy, G., Brusko, T.M., Shavit, J.A., Bertrand, A., Feldhammer, M., Baskovich, B., Graim, K., Datta, S., Reddy, S.T.
ID
ZDB-PUB-230619-36
Date
2023
Source
Critical care explorations   5: e0929e0929 (Journal)
Registered Authors
Shavit, Jordan
Keywords
genetics, lipids, sepsis, transcriptomics, zebrafish
MeSH Terms
none
PubMed
37332366 Full text @ Crit Care Explor
Abstract
This is a study of lipid metabolic gene expression patterns to discover precision medicine for sepsis.
Sepsis patients experience poor outcomes including chronic critical illness (CCI) or early death (within 14 d). We investigated lipid metabolic gene expression differences by outcome to discover therapeutic targets.
Secondary analysis of samples from prospectively enrolled sepsis patients (first 24 hr) and a zebrafish endotoxemia model for drug discovery. Patients were enrolled from the emergency department or ICU at an urban teaching hospital. Enrollment samples from sepsis patients were analyzed. Clinical data and cholesterol levels were recorded. Leukocytes were processed for RNA sequencing and reverse transcriptase polymerase chain reaction. A lipopolysaccharide zebrafish endotoxemia model was used for confirmation of human transcriptomic findings and drug discovery.
The derivation cohort included 96 patients and controls (12 early death, 13 CCI, 51 rapid recovery, and 20 controls) and the validation cohort had 52 patients (6 early death, 8 CCI, and 38 rapid recovery).
The cholesterol metabolism gene 7-dehydrocholesterol reductase (DHCR7) was significantly up-regulated in both derivation and validation cohorts in poor outcome sepsis compared with rapid recovery patients and in 90-day nonsurvivors (validation only) and validated using RT-qPCR analysis. Our zebrafish sepsis model showed up-regulation of dhcr7 and several of the same lipid genes up-regulated in poor outcome human sepsis (dhcr24, sqlea, cyp51, msmo1, and ldlra) compared with controls. We then tested six lipid-based drugs in the zebrafish endotoxemia model. Of these, only the Dhcr7 inhibitor AY9944 completely rescued zebrafish from lipopolysaccharide death in a model with 100% lethality.
DHCR7, an important cholesterol metabolism gene, was up-regulated in poor outcome sepsis patients warranting external validation. This pathway may serve as a potential therapeutic target to improve sepsis outcomes.
Genes / Markers
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Expression
Phenotype
Mutations / Transgenics
Human Disease / Model
Sequence Targeting Reagents
Fish
Antibodies
Orthology
Engineered Foreign Genes
Mapping