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A Methodological Approach to Non-invasive Assessments of Vascular Function and Morphology
Published on: February 7, 2015
The Relationship between Job Strain and Ischemic Heart Disease Mediated by Endothelial Dysfunction Markers and
Paloma Moisii1,2, Irina Jari3,4, Andra Mara Ursu4
11st Medical Department, "Gr.T.Popa" University of Medicine and Pharmacy, 16 Universitatii Street, 700115 Iasi, Romania.
Insights
Job strain, a workplace stress, significantly elevates high-sensitivity C-reactive protein (hs-CRP) and albumin urine excretion rate (AUER), key indicators of cardiovascular risk. Interventions to reduce job strain are recommended for coronary artery disease prevention.
Area of Science:
- Cardiology
- Occupational Health
- Psychosomatic Medicine
Background:
- Job strain, a significant workplace stressor, is linked to over double the risk of coronary artery disease (CAD).
- Understanding the physiological markers associated with job strain is crucial for cardiovascular risk assessment and prevention strategies.
Purpose of the Study:
- To investigate the association between job strain and specific biomarkers: high-sensitivity C-reactive protein (hs-CRP) and albumin urine excretion rate (AUER).
- To explore the relationship between job strain and secondary-level cardiological assessments, including electrocardiogram (ECG), echocardiography, and enhanced contrast computed tomography (ECCT).
Main Methods:
- A descriptive cross-sectional study involving 210 participants (105 with chronic coronary syndromes [CCS] and 105 without) assessed between October 2023 and February 2024.
- Data collected included baseline characteristics, hs-CRP, AUER, ECG, echocardiography, ECCT, and psychological questionnaires (PHQ-9 for depression, SWWS for job strain).
- Statistical analysis was performed to determine significant associations between job strain, biomarkers, and cardiac imaging findings.
Main Results:
- Job strain was significantly associated with elevated hs-CRP levels (p < 0.001) and increased AUER (p < 0.001) in both CCS and no-CCS groups.
- Significant associations were found between job strain and ECG abnormalities (ST depression, T-waves, q-waves; p < 0.001), echocardiographic findings (p = 0.018), and ECCT results (p = 0.005).
- Depression, often diagnosed in individuals with job strain, showed a significant association with coronary calcification (p = 0.013) and CCS status (p = 0.021).
Conclusions:
- Job strain is a significant contributing factor to elevated hs-CRP and AUER, indicating increased inflammation and endothelial dysfunction.
- The study highlights the detrimental impact of job strain on cardiovascular health, evidenced by its association with objective cardiac parameters.
- Integrating job strain reduction strategies into primary and secondary prevention programs for coronary heart disease (CHD) is recommended.
Abstract:
Background and Objectives: Job strain is a psychological, physical, and behavioral stress that occurs at the workplace. Job strain is associated with more than double the normal risk of coronary artery disease (CAD). The main aim of this study was to determine the association between job strain and the following parameters: high-sensitivity C-reactive protein (hs-CRP), the albumin urine excretion rate (AUER), and secondary-level testing. Materials and Methods: This study was a descriptive cross-sectional study conducted on patients who underwent cardiological assessment between October 2023 and February 2024 at the Promedicanon Cardiology Center. This study comprised 210 participants, with two groups: 105 chronic coronary syndromes (CCS) patients and 105 no-CCS patients. The baseline characteristics collected were age, gender, education, rural/urban environment, traditional CAD risk factors, hs-CRP, and AUER. The secondary-level testing included an electrocardiogram (ECG), echocardiography, and enhanced contrast computed tomography (ECCT). Psychological questionnaires comprised the tertiary-level testing, including the PHQ-9 depression questionnaire, and the satisfaction with work scale (SWWS) for job strain (Likert score). Results: The baseline characteristics were all significantly different between the groups (p < 0.05) except for total cholesterol. The hs-CRP level had a mean value of 0.4837 ± 0.19082 in the CCS group; for the no-CCS group, the hs-CRP mean value was 0.2289 ± 0.11009; p-value < 0.001. The AUER had a mean value of 42.770 ± 12.8658 for the CCS group and 26.432 ± 9.7338 for the no-CCS group; p-value < 0.001. For the associations between secondary-level testing and job strain: p < 0.001 for ST depression, negative T-waves, and q-waves; p = 0.415 for atrial fibrillation (AF); p = 0.018 for wall motion studies; p = 0.005 for ECCT. The association between job strain and AF had no statistical significance. The contractility of left ventricle walls and coronary calcification score were associated with job strain, with statistical significance. The p-value was 0.013 for the relationship between depression and the ECCT; for the association between depression and CCS status, the p-value was 0.021. Depression is usually diagnosed in job strain. The association between depression, and coronary calcification, as well as depression and CCS status had statistical significance. Conclusions: Job strain increased the hs-CRP level and AUER in both the CCS and no-CCS patients. The primary and secondary prevention of CHD could also include interventions to reduce job strain.
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