Coffee Consumption and Heart Rate Variability: The Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort Study
Abstract
1. Introduction
2. Materials and Methods
2.1. Study Design and Population
2.2. Heart Rate Variability
2.3. Coffee Consumption
2.4. Co-Variables
2.5. Statistical Analysis
2.6. Ethical Aspects
3. Results
4. Discussion
5. Conclusions
Acknowledgments
Author Contributions
Conflicts of Interest
References
- Cornelis, M.C.; El-Sohemy, A. Coffee, caffeine, and coronary heart disease. Curr. Opin. Clin. Nutr. Metab. Care 2007, 10, 745–751. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- O’Keefe, J.H.; Bhatti, S.K.; Patil, H.R.; DiNicolantonio, J.J.; Lucan, S.C.; Lavie, C.J. Effects of habitual coffee consumption on cardiometabolic disease, cardiovascular health, and all-cause mortality. J. Am. Coll. Cardiol. 2013, 62, 1043–1051. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Riksen, N.P.; Rongen, G.A.; Smits, P. Acute and long-term cardiovascular effects of coffee: Implications for coronary heart disease. Pharmacol. Ther. 2009, 121, 185–191. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Godos, J.; Pluchinotta, F.R.; Marventano, S.; Buscemi, S.; Li Volti, G.; Galvano, F.; Grosso, G. Coffee components and cardiovascular risk: Beneficial and detrimental effects. Int. J. Food Sci. Nutr. 2014, 65, 925–936. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Higdon, J.V.; Frei, B. Coffee and health: A review of recent human research. Crit. Rev. Food Sci. Nutr. 2006, 46, 101–123. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Ding, M.; Bhupathiraju, S.N.; Satija, A.; van Dam, R.M.; Hu, F.B. Long-term coffee consumption and risk of cardiovascular disease: A systematic review and a dose-response meta-analysis of prospective cohort studies. Circulation 2014, 129, 643–659. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Yarmolinsky, J.; Mueller, N.T.; Duncan, B.B.; Molina, M.; Del, C.; Goulart, A.C.; Schmidt, M.I. Coffee Consumption, Newly Diagnosed Diabetes, and Other Alterations in Glucose Homeostasis: A Cross-Sectional Analysis of the Longitudinal Study of Adult Health (ELSA-Brasil). PLoS ONE 2015, 10, e0126469. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Araújo, L.F.; Giatti, L.; Reis, R.C.; Goulart, A.C.; Schmidt, M.I.; Duncan, B.B.; Barreto, S.M. Inconsistency of Association between Coffee Consumption and Cognitive Function in Adults and Elderly in a Cross-Sectional Study (ELSA-Brasil). Nutrients 2015, 7, 9590–9601. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Camm, A.J.; Malik, M.; Bigger, T.; Breithardt, G.; Cerutti, S.; Richard, J.C.; Coumel, P.; Fallen, E.L.; Kennedy, H.L.; Kleiger, R.E.; et al. Heart rate variability. Standards of measurement, physiological interpretation, and clinical use. Task Force of the European Society of Cardiology and the North American Society of Pacing and Electrophysiology. Eur. Heart J. 1996, 17, 354–381. [Google Scholar]
- Thayer, J.F.; Yamamoto, S.S.; Brosschot, J.F. The relationship of autonomic imbalance, heart rate variability and cardiovascular disease risk factors. Int. J. Cardiol. 2010, 141, 122–131. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Huikuri, H.V.; Stein, P.K. Heart rate variability in risk stratification of cardiac patients. Prog. Cardiovasc. Dis. 2013, 56, 153–159. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Hibino, G.; Moritani, T.; Kawada, T.; Fushiki, T. Caffeine enhances modulation of parasympathetic nerve activity in humans: Quantification using power spectral analysis. J. Nutr. 1997, 127, 1422–1427. [Google Scholar] [PubMed]
- Monda, M.; Viggiano, A.; Vicidomini, C.; Iannaccone, T.; Tafuri, D.; De Luca, B. Espresso coffee increases parasympathetic activity in young, healthy people. Nutr. Neurosci. 2009, 12, 43–48. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Rauh, R.; Burkert, M.; Siepmann, M.; Mueck-Weymann, M. Acute effects of caffeine on heart rate variability in habitual caffeine consumers. Clin. Physiol. Funct. Imaging 2006, 26, 163–166. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Zimmermann-Viehoff, F.; Thayer, J.; Koenig, J.; Herrmann, C.; Weber, C.S.; Deter, H.C. Short-term effects of espresso coffee on heart rate variability and blood pressure in habitual and non-habitual coffee consumers—A randomized crossover study. Nutr. Neurosci. 2016, 19, 169–175. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Sondermeijer, H.P.; van Marle, A.G.; Kamen, P.; Krum, H. Acute effects of caffeine on heart rate variability. Am. J. Cardiol. 2002, 90, 906–907. [Google Scholar] [CrossRef] [Scilit]
- Richardson, T.; Baker, J.; Thomas, P.W.; Meckes, C.; Rozkovec, A.; Kerr, D. Randomized control trial investigating the influence of coffee on heart rate variability in patients with ST-segment elevation myocardial infarction. QJM 2009, 102, 555–561. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Richardson, T.; Rozkovec, A.; Thomas, P.; Ryder, J.; Meckes, C.D.K. Influence of caffeine on heart rate variability in patients with long—Standing type 1diabetes. Diabetes Care 2004, 27, 1127–1131. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Notarius, C.F.; Floras, F.J. Caffeine Enhances Heart Rate Variability in Middle-Aged Healthy, But Not Heart Failure Subjects. J. Caffeine Res. 2012, 2, 77–82. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Aquino, E.M.; Barreto, S.M.; Bensenor, I.M.; Carvalho, M.S.; Chor, D.; Duncan, B.B.; Lotufo, P.A.; Mill, J.G.; del Molina, M.C.; Mota, E.L.A.; et al. Brazilian Longitudinal Study of Adult Health (ELSA-Brasil): Objectives and design. Am. J. Epidemiol. 2012, 175, 315–324. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Schmidt, M.I.; Duncan, B.B.; Mill, J.G.; Lotufo, P.A.; Chor, D.; Barreto, S.M.; Aquino, E.M.L.; Passos, V.M.A.; Matos, S.M.A.; del Molina, M.C.B.; et al. Cohort Profile: Longitudinal Study of Adult Health (ELSA-Brasil). Int. J. Epidemiol. 2015, 44, 68–75. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Mill, J.G.; Pinto, K.; Griep, R.H.; Goulart, A.; Foppa, M.; Lotufo, P.A.; Maestri, M.K.; Ribeiro, A.L.; Andreão, R.V.; Dantas, E.M.; et al. Medical assessments and measurements in ELSA-Brasil. Rev. Saude Publ. 2013, 47, 54–62. [Google Scholar] [CrossRef] [Scilit]
- Dantas, E.M.; Andreão, R.V.; da Silva, V.J.; Ribeiro, A.L.; Kemp, A.H.; Brunoni, A.R.; Lotufo, P.A.; Rodrigues, S.L.; Bensenor, I.M.; Mill, J.G. Comparison between symbolic and spectral analyses of short-term heart rate variability in a subsample of the ELSA-Brasil study. Physiol. Meas. 2015, 36, 2119–2134. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Molina, M.D.C.B.; Benseñor, I.M.; Cardoso, L.O.; Velasquez-Melendez, G.; Drehmer, M.; Pereira, T.S.S.; Faria, C.P.; Melere, C.; Manato, L.; Gomes, A.L.C.; et al. Reprodutibilidade e validade relativa do Questionário de Frequência Alimentar do ELSA-Brasil. Cad. Saúde Públ. 2013, 29, 379–389. [Google Scholar] [CrossRef]
- Lindsey, J.K.; Jones, B. Choosing among generalized linear models applied to medical data. Stat. Med. 1998, 17, 59–68. [Google Scholar] [CrossRef]
- Bender, R.; Lange, S. Adjusting for multiple testing—When and how? J. Clin. Epidemiol. 2001, 54, 343–349. [Google Scholar] [CrossRef] [Scilit]
- Dickhaus, T. Multiple testing and model selection. In Simultaneous Statistical Inference: With Applications in the Life Science; Dickhaus, T., Ed.; Springer: Heidelberg, Germany, 2014; pp. 103–115. [Google Scholar]
- Reyes del Paso, G.A.; Langewitz, W.; Mulder, L.J.; van Roon, A.; Duschek, S. The utility of low frequency heart rate variability as an index of sympathetic cardiac tone: A review with emphasis on a reanalysis of previous studies. Psychophysiology 2013, 50, 477–487. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Tsuji, H.; Larson, M.G.; Venditti, F.J., Jr.; Manders, E.S.; Evans, J.C.; Feldman, C.L.; Levy, D. Impact of reduced heart rate variability on risk for cardiac events. The Framingham Heart Study. Circulation 1996, 94, 2850–2855. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Felber, D.; Schindler, C.; Schwartz, J.; Barthélémy, J.C.; Tschopp, J.M.; Roche, F.; von Eckardstein, A.; Bradli, O.; Leuenberg, P.; Gold, D.R.; et al. Heart rate variability in an ageing population and its association with lifestyle and cardiovascular risk factors: Results of the SAPALDIA study. Europace 2006, 8, 521–529. [Google Scholar]
- Schrieks, I.C.; Stafleu, A.; Kallen, V.L.; Grootjen, M.; Witkamp, R.F.; Hendriks, H.F. The biphasic effects of moderate alcohol consumption with a meal on ambiance—Induced mood and autonomic nervous system balance: A randomized crossover trial. PLoS ONE 2014, 9, e86199. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Loftfield, E.; Freedman, N.D.; Dodd, K.W.; Vogtmann, E.; Xiao, Q.; Sinha, R.; Graubard, B.I. Coffee Drinking Is Widespread in the United States, but Usual Intake Varies by Key Demographic and Lifestyle Factors. J. Nutr. 2016, 146, 1762–1768. [Google Scholar] [CrossRef] [Scilit] [PubMed]
- Treur, J.L.; Taylor, A.E.; Ware, J.J.; Nivard, M.G.; Neale, M.C.; McMahon, G.; Hottenga, J.J.; Baselmans, B.M.L.; Boomsma, D.I.; Munafò, M.R.; et al. Smoking and caffeine consumption: A genetic analysis of their association. Addict. Biol. 2016. [Google Scholar] [CrossRef] [Scilit] [PubMed]
| Variables | Coffee (Cups/Day) | ||||
|---|---|---|---|---|---|
| Never or Almost Never (n = 1261) | ≤1 Cup/Day (n = 4266) | 2–3 Cups/Day (n = 4616) | ≥3 Cups/Day (n = 3127) | p-Value | |
| Sex (women), % | 52.3 | 54.8 | 59.3 | 48.1 | <0.001 |
| Age (years), mean (SD) | 50.4 (9.1) | 52.2 (9.4) | 52.7 (9.1) | 51.3 (8.0) | <0.001 |
| Educational Attainment, % | |||||
| Under graduate school or more | 51.1 | 50.5 | 54.2 | 52.5 | <0.001 |
| Complete high school | 37.2 | 35.7 | 34.0 | 34.0 | |
| Complete elementary school | 7.3 | 7.4 | 6.3 | 7.1 | |
| Incomplete elementary school | 4.0 | 6.4 | 5.5 | 6.4 | |
| Occupational Status, % | |||||
| Active | 9.9 | 30.9 | 33.8 | 25.4 | <0.001 |
| Retired | 8.0 | 37.3 | 38.9 | 15.8 | |
| Alcohol Consumption, % | |||||
| Never or almost never | 43.1 | 30.5 | 30.1 | 26.7 | <0.001 |
| Moderate | 51.2 | 61.6 | 63.6 | 63.6 | |
| Heavy | 5.6 | 7.9 | 6.3 | 9.7 | |
| Smoking Status, % | |||||
| Never | 70.3 | 60.5 | 60.4 | 42.5 | <0.001 |
| Former | 23.4 | 30.0 | 29.7 | 32.2 | |
| Current | 6.3 | 9.5 | 9.8 | 25.3 | |
| Physical activity, % | |||||
| Heavy | 11.7 | 9.4 | 8.1 | 8.1 | <0.001 |
| Moderate | 15.1 | 14.6 | 14.1 | 12.3 | |
| Weak | 73.1 | 76.0 | 77.7 | 79.6 | |
| BMI (Kg/m2), mean (SD) | 4.9 | 4.7 | 4.6 | 4.6 | 0.007 |
| Diabetes status, % | 19.7 | 20.3 | 19.0 | 18.9 | 0.385 |
| Systolic blood pressure (mmHg), mean (SD) | 121.1 (17.7) | 122.3 (17.8) | 121.4 (17.0) | 120.1 (16.9) | <0.001 |
| Total/HDL-Cholesterol ratio (mg/deciliters), mean (SD) | 3.9 (1.0) | 4.0 (1.0) | 3.9 (1.1) | 4.0 (1.0) | <0.001 |
| Coronary Heart Disease Status, % | 3.0 | 3.0 | 3.2 | 2.8 | 0.837 |
| HRV Indexes | Coffee (Cups/Day) | |||||
|---|---|---|---|---|---|---|
| Never or Almost Never (n = 1261) | ≤1 Cup/Day (n = 4266) | 2–3 Cups/Day (n = 4616) | ≥3 Cups/Day (n = 3127) | p-Value | p-Value Tendency c | |
| Time domain | ||||||
| SDNN (ms) a, mean (SD) | 42.3 (17.7) | 40.2 (17.3) | 40.6 (16.7) | 41.4 (17.0) | 0.066 | 0.208 |
| RMSSD (ms) b, median (1° and 4° quartile) | 27.0 (18.9–37.8) | 24.7 (16.9–35.6) | 24.8 (17.2–35.6) | 25.7 (17.4–35.8) | <0.001 | 0.274 |
| pNN50 (%) b, median (1° and 4° quartile) | 4.7 (0.9–15.1) | 3.3 (0.5–12.3) | 3.4 (0.5–12.7) | 4.0 (0.6–12.9) | <0.001 | 0.354 |
| Mean RR interval (ms) a, mean (SD) | 916.7 (125,2) | 911.6 (126.7) | 913.1 (127.3) | 913.2 (122.3) | 0.080 | 0.905 |
| Frequency domain | ||||||
| HF (ms2) b, median (1° and 4° quartile) | 262.3 (115.9–540.5) | 211.0 (95.8–447.8) | 218.4 (96.5–470.8) | 223.4 (97.7–468.2) | <0.001 | 0.143 |
| LF (ms2), median (1° and 4° quartile) | 263.8 (122.7–498.3) | 225.1 (106.5–454.4) | 232.4 (105.1–481.6) | 251.6 (117.0–530.8) | <0.001 | 0.164 |
| HRV Indexes | Coffee (Cups/Day) | ||||
|---|---|---|---|---|---|
| Model 1 Coefficient (95%CI) | Model 2 Coefficient (95% CI) | Model 3 Coefficient (95% CI) | Model 4 Coefficient (95% CI) | Model 5 Coefficient (95% CI) | |
| Time domain | |||||
| SDNN (ms) | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.95 (0.93, 0.98) ** | 0.97 (0.94, 0.99) * | 0.97 (0.95, 0.99) * | 0.97 (0.95, 1.00) | 0.97 (0.94, 1.01) |
| 2–3 cups/day | 0.96 (0.93, 0.98) ** | 0.98 (0.96, 1.01) | 0.99 (0.96, 1.01) | 0.99 (0.96, 1.02) | 0.99 (0.96, 1.03) |
| ≥3 cups/day | 0.98 (0.95, 1.00) | 0.98 (0.96, 1.01) | 0.98 (0.96, 1.01) | 0.99 (0.96, 1.01) | 0.99 (0.95, 1.02) |
| RMSSD (ms) | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.93 (0.90, 0.97) ** | 0.96 (0.92, 0.99) * | 0.96 (0.92, 0.99) * | 0.97 (0.93, 1.01) | 0.97 (0.92, 1.02) |
| 2–3 cups/day | 0.94 (0.91, 0.98) ** | 0.97 (0.93, 1.00) | 0.97 (0.94, 1.01) | 0.98 (0.94, 1.02) | 0.98 (0.93, 1.03) |
| ≥3 cups/day | 0.94 (0.91, 0.98) ** | 0.96 (0.92, 0.99) * | 0.95 (0.91, 0.99) * | 0.96 (0.92, 0.99) * | 0.96 (0.91, 1.01) |
| pNN50 (%)a | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.87 (0.80, 0.95) ** | 0.91 (0.83, 0.99) * | 0.92 (0.84, 1.00) | 0.94 (0.85, 1.03) | 0.95 (0.84, 1.06) |
| 2–3 cups/day | 0.88 (0.80, 0.96) ** | 0.94 (0.86, 1.03) | 0.95 (0.87, 1.04) | 0.97 (0.88, 1.07) | 0.98 (0.87, 1.10) |
| ≥3 cups/day | 0.88 (0.80, 0.96) ** | 0.92 (0.84, 1.01) | 0.90 (0.82, 0.99) * | 0.92 (0.83, 1.02) | 0.94 (0.83, 1.06) |
| Mean RR interval (ms) | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.99 (0.98, 1.00) | 0.99 (0.99, 1.00) | 0.99 (0.99, 1.00) | 0.99 (0.99, 1.01) | 0.99 (0.98, 1.01) |
| 2–3 cups/day | 0.99 (0.98, 1.00) | 0.99 (0.99, 1.01) | 0.99 (0.99, 1.01) | 1.00 (0.99, 1.01) | 1.00 (0.99, 1.01) |
| ≥3 cups/day | 0.99 (0.98, 1.00) | 0.99 (0.98, 1.00) | 0.99 (0.98, 1.00) | 0.99 (0.98, 1.00) | 0.99 (0.98, 1.01) |
| Frequency domain | |||||
| HF (ms2) | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.89 (0.82, 0.97) ** | 0.93 (0.85, 1.02) | 0.94 (0.86, 1.03) | 0.97 (0.88, 1.06) | 0.97 (0.86, 1.09) |
| 2–3 cups/day | 0.88 (0.81, 0.96) ** | 0.94 (0.86, 1.02) | 0.95 (0.87, 1.04) | 0.97 (0.89, 1.076) | 0.97 (0.87, 1.09) |
| ≥3 cups/day | 0.86 (0.79, 0.94) ** | 0.90 (0.82, 0.98) * | 0.89 (0.81, 0.98) * | 0.91 (0.832, 1.01) | 0.92 (0.81, 1.04) |
| LF (ms2) | |||||
| Never or almost never | Reference | Reference | Reference | Reference | Reference |
| ≤1 cup/day | 0.92 (0.85,0.99) ** | 0.95 (0.88, 1.03) | 0.95 (0.88, 1.03) | 0.96 (0.88, 1.04) | 0.96 (0.87,1.07) |
| 2–3 cups/day | 0.91 (0.85,0.98) ** | 0.98 (0.91, 1.06) | 0.98 (0.91, 1.06) | 1.01 (0.93, 1.10) | 1.01 (0.91, 1.11) |
| ≥3 cups/day | 0.99 (0.91,1.07) | 1.00 (0.93, 1.09) | 0.99 (0.91, 1.07) | 1.01 (0.92, 1.10) | 1.01 (0.90, 1.02) |
© 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
Share and Cite
De Oliveira, R.A.M.; Araújo, L.F.; De Figueiredo, R.C.; Goulart, A.C.; Schmidt, M.I.; Barreto, S.M.; Ribeiro, A.L.P. Coffee Consumption and Heart Rate Variability: The Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort Study. Nutrients 2017, 9, 741. https://doi.org/10.3390/nu9070741
De Oliveira RAM, Araújo LF, De Figueiredo RC, Goulart AC, Schmidt MI, Barreto SM, Ribeiro ALP. Coffee Consumption and Heart Rate Variability: The Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort Study. Nutrients. 2017; 9(7):741. https://doi.org/10.3390/nu9070741
Chicago/Turabian StyleDe Oliveira, Rackel Aguiar Mendes, Larissa Fortunato Araújo, Roberta Carvalho De Figueiredo, Alessandra C. Goulart, Maria Ines Schmidt, Sandhi Maria Barreto, and Antonio Luiz Pinho Ribeiro. 2017. "Coffee Consumption and Heart Rate Variability: The Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort Study" Nutrients 9, no. 7: 741. https://doi.org/10.3390/nu9070741
APA StyleDe Oliveira, R. A. M., Araújo, L. F., De Figueiredo, R. C., Goulart, A. C., Schmidt, M. I., Barreto, S. M., & Ribeiro, A. L. P. (2017). Coffee Consumption and Heart Rate Variability: The Brazilian Longitudinal Study of Adult Health (ELSA-Brasil) Cohort Study. Nutrients, 9(7), 741. https://doi.org/10.3390/nu9070741
