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The predictors of 3- and 30-day mortality in 660 MERS-CoV patients
1Associate Professor, College of Public Health and Health Informatics, King Saud bin Abdulaziz University for Health Sciences, Riyadh, Saudi Arabia. ahmeda5@vcu.edu.
Background:
The mortality rate of Middle East Respiratory Syndrome Coronavirus (MERS-CoV) patients is a major challenge in all healthcare systems worldwide. Because the MERS-CoV risk-standardized mortality rates are currently unavailable in the literature, the author concentrated on developing a method to estimate the risk-standardized mortality rates using MERS-CoV 3- and 30-day mortality measures.
Methods:
MERS-CoV data in Saudi Arabia is publicly reported and made available through the Saudi Ministry of Health (SMOH) website. The author studied 660 MERS-CoV patients who were reported by the SMOH between December 2, 2014 and November 12, 2016. The data gathered contained basic demographic information (age, gender, and nationality), healthcare worker, source of infection, pre-existing illness, symptomatic, severity of illness, and regions in Saudi Arabia. The status and date of mortality were also reported. Cox-proportional hazard (CPH) models were applied to estimate the hazard ratios for the predictors of 3- and 30-day mortality.
Results:
3-day, 30-day, and overall mortality were found to be 13.8%, 28.3%, and 29.8%, respectively. According to CPH, multivariate predictors of 3-day mortality were elderly, non-healthcare workers, illness severity, and hospital-acquired infections (adjusted hazard ratio (aHR) =1.7; 8.8; 6.5; and 2.8, respectively). Multivariate predictors of 30-day mortality were elderly, non-healthcare workers, pre-existing illness, severity of illness, and hospital-acquired infections (aHR =1.7; 19.2; 2.1; 3.7; and 2.9, respectively).
Conclusions:
Several factors were identified that could influence mortality outcomes at 3 days and 30 days, including age (elderly), non-healthcare workers, severity of illness, and hospital-acquired infections. The findings can serve as a guide for healthcare practitioners by appropriately identifying and managing potential patients at high risk of death.
Insights
Middle East Respiratory Syndrome Coronavirus (MERS-CoV) mortality rates are high. This study identified elderly patients, non-healthcare workers, severe illness, and hospital-acquired infections as key predictors of MERS-CoV mortality.
Area of Science:
- Infectious Diseases
- Epidemiology
- Public Health
Background:
- Middle East Respiratory Syndrome Coronavirus (MERS-CoV) poses a significant global health challenge.
- Risk-standardized mortality rates for MERS-CoV are not well-established in current literature.
- This study aimed to develop a method for estimating MERS-CoV risk-standardized mortality rates.
Purpose of the Study:
- To estimate risk-standardized mortality rates for Middle East Respiratory Syndrome Coronavirus (MERS-CoV).
- To identify predictors of 3-day and 30-day mortality in MERS-CoV patients.
- To provide insights for healthcare practitioners in managing high-risk patients.
Main Methods:
- Utilized data from 660 MERS-CoV patients reported by the Saudi Ministry of Health (SMOH) between December 2014 and November 2016.
- Collected demographic information, healthcare worker status, infection source, comorbidities, symptom status, illness severity, and region.
- Applied Cox-proportional hazard (CPH) models to determine predictors of 3-day and 30-day mortality.
Main Results:
- Observed 3-day, 30-day, and overall mortality rates of 13.8%, 28.3%, and 29.8%, respectively.
- Identified elderly status, non-healthcare worker role, severe illness, and hospital-acquired infections as significant predictors of 3-day mortality (aHRs ranging from 1.7 to 8.8).
- Found elderly status, non-healthcare worker role, pre-existing illness, severe illness, and hospital-acquired infections as significant predictors of 30-day mortality (aHRs ranging from 1.7 to 19.2).
Conclusions:
- Key factors influencing MERS-CoV mortality include advanced age, non-healthcare worker status, illness severity, and hospital-acquired infections.
- These findings can guide healthcare professionals in identifying and managing MERS-CoV patients at higher risk of mortality.
- The study contributes to understanding MERS-CoV patient outcomes and risk stratification.
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