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2.
Atherosclerosis ; 391: 117503, 2024 Apr.
Article En | MEDLINE | ID: mdl-38447435

BACKGROUND AND AIMS: Acetylcholine (ACh) provocation testing can detect vasomotor disorders in patients with ischemia and non-obstructed coronary arteries (INOCA) or myocardial infarction and non-obstructed coronary arteries (MINOCA). We aimed to derive and validate a simple risk score to predict a positive ACh test response. METHODS: We prospectively enrolled consecutive INOCA and MINOCA patients undergoing ACh provocation testing. Patients were split in two cohorts (derivation and validation) according to time of enrolment. The score was derived in 386 patients (derivation cohort) and then validated in 165 patients (validation cohort). RESULTS: 551 patients were enrolled, 371 (67.3%) INOCA and 180 (32.7%) MINOCA. ACh test was positive in 288 (52.3%) patients. MINOCA, myocardial bridge (MB), C-reactive protein (CRP) and dyslipidaemia were independent predictors of a positive ACh test in the derivation cohort. The ABCD (Acute presentation, Bridge, CRP, Dyslipidaemia) score was derived: 2 points were assigned to MINOCA, 3 to MB, 1 to elevated CRP and 1 to dyslipidaemia. The ABCD score accurately identified patients with a positive ACh test response with an AUC of 0.703 (CI 95% 0.652-0.754,p < 0.001) in the derivation cohort, and 0.705 (CI 95% 0.626-0.784, p < 0.001) in the validation cohort. In the whole population, an ABCD score ≥4 portended 94.3% risk of a positive ACh test and all patients with an ABCD score ≥6 presented a positive test. CONCLUSIONS: The ABCD score could avoid the need of ACh provocation testing in patients with a high score, reducing procedural risks, time, and costs, and allowing the implementation of a tailored treatment strategy. These results are hypothesis generating and further research involving larger cohorts and multicentre trials is needed to validate and refine the ABCD score.


Coronary Artery Disease , Coronary Vasospasm , Dyslipidemias , Myocardial Infarction , Humans , Acetylcholine , Coronary Vessels , MINOCA , Coronary Angiography/methods , C-Reactive Protein , Coronary Artery Disease/diagnosis
3.
Article En | MEDLINE | ID: mdl-38414273

BACKGROUND: Myocardial injury is prevalent among patients hospitalized for COVID-19. However, the role of COVID-19 vaccines in modifying the risk of myocardial injury is unknown. OBJECTIVES: To assess the role of vaccines in modifying the risk of myocardial injury in COVID-19. METHODS: We enrolled COVID-19 patients admitted from March 2021 to February 2022 with known vaccination status and ≥1 assessment of hs-cTnI within 30 days from the admission. The primary endpoint was the occurrence of myocardial injury (hs-cTnI levels >99th percentile upper reference limit). RESULTS: 1019 patients were included (mean age 67.7±14.8 years, 60.8% male, 34.5% vaccinated against COVID-19). Myocardial injury occurred in 145 (14.2%) patients. At multivariate logistic regression analysis, advanced age, chronic kidney disease and hypertension, but not vaccination status, were independent predictors of myocardial injury. In the analysis according to age tertiles distribution, myocardial injury occurred more frequently in the III tertile (≥76 years) compared to other tertiles (I tertile:≤60 years;II tertile:61-75 years) (p<0.001). Moreover, in the III tertile, vaccination was protective against myocardial injury (OR 0.57, CI 95% 0.34-0.94; p=0.03), while a previous history of coronary artery disease was an independent positive predictor. In contrast, in the I tertile, chronic kidney disease (OR 6.94, 95% CI 1.31-36.79, p=0.02) and vaccination (OR 4.44, 95% CI 1.28-15.34, p=0.02) were independent positive predictors of myocardial injury. CONCLUSIONS: In patients ≥76 years, COVID-19 vaccines were protective for the occurrence of myocardial injury, while in patients ≤60 years, myocardial injury was associated with previous COVID-19 vaccination. Further studies are warranted to clarify the underlying mechanisms.

4.
Atherosclerosis ; 390: 117393, 2024 Mar.
Article En | MEDLINE | ID: mdl-38061973

BACKGROUND AND AIMS: Air pollution is emerging as an important risk factor for acute coronary syndrome (ACS). In this study, we investigated the association between short-term air pollution exposure and mechanisms of coronary plaque instability evaluated by optical coherence tomography (OCT) imaging in ACS patients. METHODS: Patients with ACS undergoing OCT imaging were retrospectively selected. Mechanism of culprit lesion instability was classified as plaque rupture (PR) or intact fibrous cap (IFC) by OCT. Based on each case's home address, the mean daily exposures to several pollutants, including particulate matter 2.5 (PM2.5), on the same day of ACS and in the immediate days (up to 6 days) prior to the index ACS, were collected. RESULTS: 139 ACS patients were included [69 (49.6%) had PR and 70 (50.4%) IFC]. Patients with PR, compared to those with IFC, had higher PM2.5 exposure levels on the same day of ACS, without differences in the immediate 6 days before index ACS. At multivariate analysis, PM2.5 exposure on the same day of ACS was the only independent predictor of PR [OR = 1.912 per SD (8.6 µg/m3), CI95 % (1.087-3.364), p = 0.025]. Patients with PR presented a steady increase in PM2.5 daily exposure levels in the days preceding the occurrence of ACS, with a peak the day of ACS (p for trend = 0.042) CONCLUSIONS: This study demonstrates for the first time that a higher short-term PM2.5 exposure, on the same day of ACS, is associated with an increased risk of PR as a pathobiological mechanism of coronary plaque instability.


Acute Coronary Syndrome , Plaque, Atherosclerotic , Humans , Acute Coronary Syndrome/diagnostic imaging , Acute Coronary Syndrome/etiology , Acute Coronary Syndrome/epidemiology , Tomography, Optical Coherence/methods , Retrospective Studies , Rupture, Spontaneous/complications , Rupture, Spontaneous/pathology , Plaque, Atherosclerotic/complications , Fibrosis , Particulate Matter/adverse effects , Coronary Vessels/diagnostic imaging , Coronary Vessels/pathology , Coronary Angiography/methods
6.
Eur Heart J Suppl ; 25(Suppl B): B60-B64, 2023 Apr.
Article En | MEDLINE | ID: mdl-37091631

Air pollution, noise pollution, and light pollution have emerged as important but often overlooked risk factors for cardiovascular disease. In this review, we examine the emerging concept of the exposome, highlighting the close relationship between environmental exposure (e.g. PM2.5, traffic noise, and night light) and cardiovascular disease, finally addressing the possible mitigation strategies that should be implemented to reduce the impact of air, noise, and light pollution on cardiovascular morbidity and mortality.

7.
J Clin Med ; 11(19)2022 Oct 10.
Article En | MEDLINE | ID: mdl-36233830

Background: Cardiovascular sequelae after COVID-19 are frequent. However, the predictors for their occurrence are still unknown. In this study, we aimed to assess whether myocardial injury during COVID-19 hospitalization is associated to CV sequelae and death after hospital discharge. Methods: In this prospective observational study, consecutive patients who were admitted for COVID-19 in a metropolitan COVID-19 hub in Italy, between March 2021 and January 2022, with a ≥ 1 assessment of high sensitivity cardiac troponin I (hs-cTnI) were included in the study, if they were alive at hospital discharge. Myocardial injury was defined as elevation hs-cTnI > 99th percentile of the upper reference limit. The incidence of all-cause mortality and major adverse cardiovascular and cerebrovascular events (MACCE, including cardiovascular death, admission for acute or chronic coronary syndrome, hospitalization for heart failure, and stroke/transient ischemic attack) at follow-up were the primary outcomes. Arrhythmias, inflammatory heart diseases, and/or thrombotic disorders were analyzed as well. Results: Among the 701 COVID-19 survivors (mean age 66.4 ± 14.4 years, 40.2% female), myocardial injury occurred in 75 (10.7%) patients. At a median follow-up of 270 days (IQR 165, 380), all-cause mortality (21.3% vs. 6.1%, p < 0.001), MACCE (25.3% vs. 4.5%, p < 0.001), arrhythmias (9.3% vs. 5.0%, p = 0.034), and inflammatory heart disease (8.0% vs. 1.1%, p < 0.001) were more frequent in patients with myocardial injury compared to those without. At multivariate analysis, myocardial injury (HR 1.95 [95% CI:1.05−3.61]), age (HR 1.09 [95% CI:1.06−1.12]), and chronic kidney disease (HR 2.63 [95% CI:1.33−5.21]) were independent predictors of death. Myocardial injury (HR 3.92 [95% CI:2.07−7.42]), age (HR 1.05 [95% CI:1.02−1.08]), and diabetes (HR 2.35 [95% CI:1.25−4.43]) were independent predictors of MACCE. Conclusion: In COVID-19 survivors, myocardial injury during the hospital stay portends a higher risk of mortality and cardiovascular sequelae and could be considered for the risk stratification of COVID-19 sequelae in patients who are successfully discharged.

8.
J Am Coll Cardiol ; 80(19): 1818-1828, 2022 11 08.
Article En | MEDLINE | ID: mdl-36049556

BACKGROUND: Coronary vasomotor abnormalities are important causes of myocardial ischemia in patients with nonobstructive coronary artery disease (NOCAD). However, the role of air pollution in determining coronary vasomotor disorders has never been investigated. OBJECTIVES: We aimed to evaluate the association between long-term exposure to particulate matter 2.5 (PM2.5) and 10 (PM10), and coronary vasomotor disorders in NOCAD patients. METHODS: Patients with myocardial ischemia and NOCAD undergoing coronary angiography and intracoronary provocation test with acetylcholine were prospectively studied. Both patients with chronic myocardial ischemia and nonobstructive coronary arteries and myocardial infarction with nonobstructive coronary arteries (MINOCA) were enrolled. Based on each case's home address, exposure to PM2.5 and PM10 was assessed. RESULTS: We included 287 patients (median age, 62.0 years [IQR: 52.0-70.0 years], 149 [51.9%] males); there were 161 (56.1%) myocardial ischemia and nonobstructive coronary arteries and 126 (43.9%) MINOCA cases. One hundred seventy-six patients (61.3%) had positive provocation test. Exposure to PM2.5 and PM10 was higher in patients with a positive provocation test (P < 0.001). At multivariate logistic regression analysis, PM2.5 and PM10 were independent predictors of a positive provocation test (P = 0.001 and P = 0.029, respectively). Interestingly, among these patients, PM2.5 and PM10 were both independent predictors of MINOCA (P < 0.001 and P = 0.001, respectively) as clinical presentation, whereas PM2.5 was independently associated with the occurrence of epicardial spasm as opposed to microvascular spasm (P = 0.001). CONCLUSIONS: Higher exposure to PM2.5 and PM10 in patients with myocardial ischemia and NOCAD is associated with coronary vasomotor abnormalities. In particular, PM2.5 is an independent risk factor for the occurrence of epicardial spasm and MINOCA as clinical presentation.


Air Pollution , Coronary Artery Disease , Coronary Vasospasm , Myocardial Ischemia , Male , Humans , Middle Aged , Female , Coronary Vessels/diagnostic imaging , Myocardial Ischemia/diagnosis , Myocardial Ischemia/epidemiology , Myocardial Ischemia/etiology , Coronary Angiography/adverse effects , Air Pollution/adverse effects , Particulate Matter/adverse effects , Spasm/complications
9.
J Neurol ; 266(12): 3174-3175, 2019 12.
Article En | MEDLINE | ID: mdl-30923932
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