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Global data analysis and risk factors associated with morbidity and mortality of COVID-19
Sina Salajegheh Tazerji1,2, Fatemeh Shahabinejad3, Mahya Tokasi4
1Young Researchers and Elites Club, Science and Research Branch, Islamic Azad University, Tehran, Iran.
Insights
Global analysis of coronavirus disease 2019 (COVID-19) reveals males face higher risks of infection and death due to biological factors like ACE2 levels and immune responses, and lifestyle choices such as smoking.
Area of Science:
- Epidemiology
- Immunology
- Public Health
Background:
- Coronavirus disease 2019 (COVID-19) has caused significant global morbidity and mortality.
- Understanding risk factors is crucial for epidemic preparedness and mitigation.
Purpose of the Study:
- To review global data on COVID-19 morbidity and mortality.
- To identify key risk factors associated with COVID-19 outcomes across various countries.
Main Methods:
- Global data analysis of COVID-19 cases and fatalities.
- Review of risk factors including gender, age, and comorbidities.
Main Results:
- Males exhibited higher confirmed cases and mortality rates compared to females globally.
- Older adults and individuals with comorbidities faced increased mortality risk.
- Biological factors (e.g., ACE2 expression, immune response) and lifestyle factors (e.g., smoking) contribute to gender-based risk variations.
Conclusions:
- Males are more vulnerable to COVID-19 due to biological and lifestyle factors.
- Age and comorbidities significantly increase mortality risk.
- Insights gained are essential for future epidemic preparedness and response strategies.
Abstract:
This review was focused on global data analysis and risk factors associated with morbidity and mortality of coronavirus disease 2019 from different countries, including Bangladesh, Brazil, China, Central Eastern Europe, Egypt, India, Iran, Pakistan, and South Asia, Africa, Turkey and UAE. Male showed higher confirmed and death cases compared to females in most of the countries. In addition, the case fatality ratio (CFR) for males was higher than for females. This gender variation in COVID-19 cases may be due to males' cultural activities, but similar variations in the number of COVID-19 affected males and females globally. Variations in the immune system can illustrate this divergent risk comparatively higher in males than females. The female immune system may have an edge to detect pathogens slightly earlier. In addition, women show comparatively higher innate and adaptive immune responses than men, which might be explained by the high density of immune-related genes in the X chromosome. Furthermore, SARS-CoV-2 viruses use angiotensin-converting enzyme 2 (ACE2) to enter the host cell, and men contain higher ACE2 than females. Therefore, males may be more vulnerable to COVID-19 than females. In addition, smoking habit also makes men susceptible to COVID-19. Considering the age-wise distribution, children and older adults were less infected than other age groups and the death rate. On the contrary, more death in the older group may be associated with less immune system function. In addition, most of these group have comorbidities like diabetes, high pressure, low lungs and kidney function, and other chronic diseases. Due to the substantial economic losses and the numerous infected people and deaths, research examining the features of the COVID-19 epidemic is essential to gain insight into mitigating its impact in the future and preparedness for any future epidemics.
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