| Literature DB >> 30453974 |
Hans Scheers1, Tim S Nawrot1,2, Benoit Nemery1, Lidia Casas3.
Abstract
BACKGROUND: Short-term exposure to ambient air pollution triggers acute cardiovascular events. Here, we evaluate the association of exposure to ambient air pollution with two intermediate cardiovascular endpoints: blood pressure and carotid stiffness.Entities:
Keywords: Air pollution; Blood pressure; Carotid stiffness; Quasi-experimental study
Mesh:
Substances:
Year: 2018 PMID: 30453974 PMCID: PMC6245927 DOI: 10.1186/s12940-018-0425-7
Source DB: PubMed Journal: Environ Health ISSN: 1476-069X Impact factor: 5.984
Fig. 1Timeline of the study. All variables mentioned in the text were measured in 20 study volunteers in all 11 periods, except for and plasma levels of cholesterol and glucose which was only measured at baseline (assessment period 1)
Baseline characteristics of the study participants (n = 20)
| Median (range) | |
|---|---|
| Age, y | 65 (58–76) |
| Sex (female)a | 10 (50%) |
| Body-mass index, kg/m2 | 24.3 (18.9–29.4) |
| Smoking statusa | |
| Former | 10 (50%) |
| Never | 10 (50%) |
| Plasma cholesterol, mg/dL | |
| Total | 206 (144–282) |
| LDL | 133 (57–212) |
| Plasma glucose, mg/dL | 99 (86–131) |
| Medication for hypertensiona | 6 (30%) |
| Blood pressure, mm Hg | |
| Systolic | 132 (109–165) |
| Diastolic | 80 (65–105) |
| Pulse pressure | 49 (40–68) |
| Carotid stiffness | |
| PWV, m/s | 8.64 (6.65–20.16) |
| DC, 10− 3/kPa | 0.01 (0.00–0.02) |
| CC, mm2/kPa | 0.66 (0.04–1.66) |
| YEM, kPa | 0.77 (0.48–2.10) |
an and %
PWV Pulse wave velocity, DC Distensibility coefficient, CC Compliance coefficient, YEM Young’s elastic modulus
Description (mean and standard deviation) of five day average concentrations (μg/m3) of PM10, PM2.5 in each measurement time point performed in Leuven (Belgium), Milan (Italy) and Vindeln (Sweden) between September 2013 and September 2014
| Monitoring stations | Personal samplers | ||||||
|---|---|---|---|---|---|---|---|
| Year | Month | Location | Visit name | PM10 | PM2.5 | NO2 | NO2 |
| 2013 | September | Leuven | L1 | 21.9 (4.6) | 15.9 (5.6) | 25.1 (6.8) | 29.8 (5.3) |
| October | Milan | M1 | 35.5 (2.6) | 31.5 (2.6) | 54.9 (1.6) | – | |
| M2 | 28.9 (2.1) | 19.1 (1.5) | 46.3 (0.9) | 63.7 (4.7) | |||
| November | Leuven | L2 | 9.4 (0.8) | 5.9 (0.8) | 19.4 (4.2) | 28.5 (8.9) | |
| 2014 | January | Leuven | L3 | 15.0 (2.5) | 11.4 (2.2) | 26.0 (5.2) | 21.5 (8.1) |
| March | Leuven | L4 | 19.8 (4.7) | 14.5 (5.0) | 27.5 (8.2) | 21.4 (6.0) | |
| May | Leuven | L5 | 13.9 (2.0) | 7.1 (2.4) | 16.9 (6.3) | 16.8 (5.0) | |
| June | Vindeln | S1 | 19.0 (0.5) | 6.0 (0.4) | 19.2 (1.0) | – | |
| S2 | 15.4 (0.8) | 6.4 (0.6) | 11.2 (0.3) | 4.4 (0.4) | |||
| July | Leuven | L6 | 13.8 (1.4) | 6.9 (1.0) | 16.9 (3.9) | 16.3 (3.8) | |
| September | Leuven | L7 | 22.1 (3.7) | 15.9 (3.2) | 22.8 (6.0) | 19.1 (5.9) | |
Adjusteda changes (95% CI) in blood pressure and measures of arterial stiffness associated with an increase in five-day averages of PM10, PM2.5, or NO2 concentrations (n observations = 220)
| Monitoring stations | Personal exposure | |||
|---|---|---|---|---|
| PM10 | PM2.5 | NO2 | NO2 | |
| per 10 μg/m3 | per 5 μg/m3 | per 10 μg/m3 | per 10 μg/m3 | |
| Blood pressure (unit change) | ||||
| Systolic, mm Hg | −0.01 (−2.16;2.15) | 0.26 (−0.72;1.24) | −0.98 (− 2.23;0.26) | −0.14 (−1.17;0.88) |
| Diastolic, mm Hg | − 1.14 (− 2.59;0.30) | − 0.28 (− 0.94;0.38) | −0.66 (− 1.52;0.19) | −0.28 (− 1.00;0.43) |
| Pulse pressure, mm Hg | 1.11 (− 0.43;2.65) | 0.53 (− 0.17;1.22) | −0.35 (− 1.24;0.54) | 0.11 (− 0.62;0.83) |
| Carotid stiffness (% change)b | ||||
| PWV, m/s |
|
| 0.78 (−0.05;1.61) | 0.63 (− 0.04;1.30) |
| DC, 10−3/kPa |
|
| −1.58 (− 3.28;0.12) | −1.31 (− 2.69;0.07) |
| CC, mm2/kPa |
|
|
|
|
| YEM, kPa |
|
| 1.56 (− 0.34;3.45) | 1.36 (− 0.14;2.86) |
aAdjusted for age at baseline, sex, heart rate, smoking status, having a cold, medication use for blood pressure, date, temperature, relative humidity
bModels additionally adjusted for arterial pressure
Bold indicates p-value< 0.05
PWV Pulse wave velocity, DC Distensibility coefficient, CC Compliance coefficient, YEM Young’s elastic modulus