Linear Relationship between Hepatic Steatosis Index and Major Adverse Cardiovascular Events in Hypertensive Patients with Obstructive Sleep Apnea: A Real-World Cohort Study from China.

Rev Cardiovasc Med

Hypertension Center of People's Hospital of Xinjiang Uygur Autonomous Region, Xinjiang Hypertension Institute, NHC Key Laboratory of Hypertension Clinical Research, Key Laboratory of Xinjiang Uygur Autonomous Region "Hypertension Research Laboratory", Xinjiang Clinical Medical Research Center for Hypertension (Cardio-Cerebrovascular) Diseases, 830000 Urumqi, Xinjiang Uygur Autonomous Region, China.

Published: October 2023

AI Article Synopsis

  • - The study investigates the relationship between the hepatic steatosis index (HSI) and cardiovascular disease risk in hypertensive patients with obstructive sleep apnea, noting that these patients often face limitations due to other health conditions.
  • - Utilizing a cohort of 2467 patients, the research categorizes individuals based on their HSI and finds that those in the highest quartile (Q4) experience significantly worse survival outcomes and higher rates of major cardiovascular events.
  • - Results indicate a clear linear relationship where an increase in HSI correlates with a higher risk of new or recurring cardiovascular events, suggesting that tracking HSI could help in predicting CVD risks in this patient group.

Article Abstract

Background: Hypertensive patients with obstructive sleep apnea (OSA) are at a high risk of cardiovascular disease (CVD), but assessments of CVD risk in this population are frequently constrained by the presence of comorbid medical conditions. The noninvasive and convenient hepatic steatosis index (HSI) can not only predict the degree of fatty liver degeneration but also correlates well with the severity of numerous diseases. However, the relationship between the HSI and CVD in hypertensive patients with OSA remains unclear.

Methods: This retrospective cohort study included patients aged 18 years with hypertension and a primary diagnosis of OSA and grouped them according to their baseline HSI. The primary outcome was new or recurrent major adverse cardiovascular and cerebrovascular events (MACCE), while the secondary outcomes were cardiac and cerebrovascular events. The relationship between the baseline HSI and the risk of endpoint events was evaluated using Kaplan-Meier curves, risk-factor graphs, and Cox regression models, while generalized additive models were used to identify linear relationships. The C-statistic, integrated discrimination improvement (IDI), and net reclassification index (NRI) were used to evaluate the predictive value of HSI increments for endpoint events.

Results: A total of 2467 participants were included in the analysis and separated into four groups (Q1-Q4) based on their HSI quartiles. Kaplan-Meier survival curves indicated that patients in the Q4 group had the lowest survival time. The Q4 group also showed a significantly higher risk of MACCE (HR [hazard ratio], 2.95; 95% CI [confidence interva]: 1.99-4.39; 0.001), cardiac events (HR, 2.80; 95% CI: 1.68-4.66; 0.001), and cerebrovascular events (HR, 3.21; 95% CI: 1.71-6.03; 0.001). The dose-response curve revealed a linear association between the HSI and the occurrence of endpoint events. For every unit increase in the HSI, the risks of MACCE, cardiac events, and cerebrovascular events increased by 43%, 38%, and 51%, respectively. The C-statistic, IDI, and NRI all indicated that the model including the HSI showed better discriminatory and classification efficacy for endpoint events in comparison with the conventional model ( 0.05).

Conclusions: The HSI showed a linear relationship with the risk of MACCE in hypertensive OSA patients.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11273115PMC
http://dx.doi.org/10.31083/j.rcm2410280DOI Listing

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