Genetics
CETP variant rs1800777 predicts low HDL cholesterol and acute kidney injury risk during sepsis, replicated across two cohorts (Sci Rep 2018)
Original title: CETP genetic variant rs1800777 (allele A) is associated with abnormally low HDL-C levels and increased risk of AKI during sepsis
This study investigated whether genetic polymorphisms in ten HDL-C-regulating genes are associated with HDL-cholesterol (HDL-C) levels and acute kidney injury (AKI) during sepsis, since low HDL-C has been linked to increased AKI risk. A Derivation Cohort (202 sepsis patients, Vancouver, 2011-2014) and a Validation Cohort (604 septic shock patients from the VASST trial) were retrospectively analyzed. In the Derivation Cohort, the CETP variant rs1800777 (allele A) was strongly associated with lower HDL-C (17.4 vs 32.9 mg/dL, P=0.002), greater CETP mass (3.43 vs 1.32 microgram/mL, P=0.034), and increased risk of clinically significant sepsis-associated AKI (OR 8.28, p=0.013). The same allele predicted sepsis-associated AKI in the Validation Cohort (OR 2.38, p=0.020). The authors conclude CETP modulates HDL-C levels in sepsis and its genotype may identify patients at high risk of sepsis-associated AKI.
Original abstract
High-density cholesterol (HDL-C) levels are influenced by genetic variation in several genes. Low levels of HDL-C have been associated with increased risk of acute kidney injury (AKI). We investigated whether genetic polymorphisms in ten genes known to regulate HDL-C levels are associated with both HDL-C levels and AKI development during sepsis. Two cohorts were retrospectively analyzed: Derivation Cohort (202 patients with sepsis enrolled at the Emergency Department from 2011 to 2014 in Vancouver, Canada); Validation Cohort (604 septic shock patients enrolled into the Vasopressin in Septic Shock Trial (VASST)). Associations between HDL-related genetic polymorphisms and both HDL-C levels, and risk for clinically significant sepsis-associated AKI (AKI KDIGO stages 2 and 3) were evaluated. In the Derivation Cohort, one genetic variant in the Cholesteryl Ester Transfer Protein (CETP) gene, rs1800777 (allele A), was strongly associated with lower HDL-C levels (17.4 mg/dL vs. 32.9 mg/dL, P = 0.002), greater CETP mass (3.43 µg/mL vs. 1.32 µg/mL, P = 0.034), and increased risk of clinically significant sepsis-associated AKI (OR: 8.28, p = 0.013). Moreover, the same allele was a predictor of sepsis-associated AKI in the Validation Cohort (OR: 2.38, p = 0.020). Our findings suggest that CETP modulates HDL-C levels in sepsis. CETP genotype may identify patients at high-risk of sepsis-associated AKI.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.