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Annals of Medicine and Surgery logoLink to Annals of Medicine and Surgery
. 2021 Sep 8;70:102774. doi: 10.1016/j.amsu.2021.102774

Meta-analysis evaluating the impact of chili-pepper intake on all-cause and cardiovascular mortality: A systematic review

Naser Yamani a, Adeena Musheer b, Priyanka Gosain c, Saba Sarfraz d, Humera Qamar e, Muhammad Maaz Waseem f, Muhammad Sameer Arshad b, Talal Almas g,, Vincent Figueredo h
PMCID: PMC8463741  PMID: 34603712

Abstract

Background

Dietetics today occupy a significant place in the field of research, helping to discover cardiovascular benefits of healthy diets and consumption of organic foods such as fruits, vegetables, legumes, nuts, and whole grains. One of the components of vegetable-based diet is chili pepper (CP) which has been found to affect all-cause mortality.

Methods

MEDLINE, EMBASE, Scopus, EBSCO, and Cochrane (Wiley) Central Register of Controlled Trials were searched from inception till January 9, 2020, identifying all relevant studies using keywords and truncations. Studies were included if (1) they were observational or randomized in nature (2) included patients consuming CP and (3) evaluated direct comparison between regular and rarely/never CP consumption.

Results

Our preliminary search yielded 6976 articles. Post exclusion and after full-text screening, four potential observational studies with a population of 570,762. Pooled analysis found reduced all-cause mortality in CP consumers compared to nonconsumers with a risk ratio (RR) of 0.75 [95% CI: 0.64–0.88; p = 0.0004; I 2 = 97%]. The RR for CVD, cancer related and CVA deaths were 0.74 [95% CI: 0.62–0.88; p = 0.0006, I 2 = 66%], 0.77 [95% CI: 0.71–0.84; p = 0.0001; I 2 = 49%] and 0.76 [95% CI: 0.36–1.60; p = 0.47; I2 = 93%], respectively.

Conclusion

Statistically significant results of our analysis put forward a rationale indicating an association between lower risk of all-cause, cardiovascular and cancer related deaths and CP consumption.

Keywords: Chili pepper, Mortality, Cardiovascular mortality, Cerebrovascular accident deaths, Cancer related mortality

Highlights

  • Cardiovascular diseases have been observed to be a major cause of mortality.

  • Recent transition to vegetable-based diet including Chili Pepper is positively impacting health of cardiovascular patients.

  • Capsaicin affects TRPV1 Receptors and consequently weight-reduction.

1. Introduction

Dietetics today occupy a significant place in the field of research, helping to discover cardiovascular benefits of healthy diets and consumption of organic foods such as fruits, vegetables, legumes, nuts, and whole grains. One of the components of vegetable-based diet is chili pepper (CP) which has been found to affect all-cause mortality [1]. The chemical constituent of CP, capsaicin, has been shown to reduce all-cause mortality and deaths caused by CVD (cardiovascular disease), cancer and CVA (cerebrovascular accidents). However, absence of randomization and insufficient evidence [2] in previous studies has hindered demonstrating an association between CP consumption and mortality. This warrants a meta-analysis to study CP effects and benefits.

2. Methods

MEDLINE, EMBASE, Scopus, EBSCO, and Cochrane (Wiley) Central Register of Controlled Trials were searched from inception till January 9, 2020, identifying all relevant studies using keywords and truncations. Studies were included if (1) they were observational or randomized in nature (2) included patients consuming CP and (3) evaluated direct comparison between regular and rarely/never CP consumption. Primary outcome of interest was all-cause mortality and secondary outcomes included deaths by CVD, CVA and cancer. Pooled risk ratios and 95% confidence intervals were calculated using random-effect and generic inverse variance methods. A p-value <0.05 was considered significant. Reporting quality was evaluated using Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) [3] and methodological quality using the Assessment of Multiple Systematic Reviews (AMSTAR-2) tool [4].

3. Results

Our preliminary search yielded 6976 articles. Post exclusion and after full-text screening, four potential observational studies with a population of 570,762 (259,184 consumed CP; 311,578 rarely/never consumed CP) met the inclusion criteria and thus included in the meta-analysis [1,[5], [6], [7]]. The studies used Food Frequency Questionnaire (FFQ), National Health and Nutrition Examination Survey (NHANES) to study the effects of CP consumption. Study characteristics are summarized in Table 1. Pooled analysis found reduced all-cause mortality in CP consumers compared to non-consumers with a risk ratio (RR) of 0.75 [95% CI: 0.64–0.88; p = 0.0004; I2 = 97%]. The RR for CVD, cancer related and CVA deaths were 0.74 [95% CI: 0.62–0.88; p = 0.0006, I2 = 66%], 0.77 [95% CI: 0.71–0.84; p = 0.0001; I2 = 49%] and 0.76 [95% CI: 0.36–1.60; p = 0.47; I2 = 93%], respectively (Fig. 1).

Table 1.

Characteristics of the studies included in the meta-analysis.

Study Country Years of enroll-ment Type of study Participants Type of pepper Intervention vs Control group (based on frequency of CP consumption) Outcome Data Assessment Ethnic Background Food questionnaire Follow-up (median in years) Potential bias (adjustment)
Bonaccio et al. (2019) Italy 2005 to 2010 Prospective cohort study; non-randomized Men and women≥35 years of age Chili pepper CP consumers (n = 15122): up to 2 times/week to >4 times/week
Rare/Non-consumers (n = 7689)
Italian mortality registry. Other outcome data were collected from medical records using ICD-9 coding Moli-Sani, a southern Medi- terranean region in Italy European Prospective Investigation into Cancer Food Frequency Questionnaire 8.2 Information/recall bias (confirmation of outcomes data with medical records). Possibility of residual and unobserved confounding
Hashemian et al. (2019) Iran
2004 to 2008
Prospective cohort study; non-randomized Individuals 40–75 years of age Black or chili pepper CP consumers (n = 31071): ever consumer of CP
Non-consumers (n = 13327)
Death certificate and two internists evaluating the cause of death. Cause-specific mortality from the medical records using ICD-10 codes Turkmen, non-Turkmen 116-item Food Frequency Questionnaire (FFQ) 11.1 At risk of selection bias
Chopan et al. (2017) USA 1988 to 1994 Prospective cohort study; non-randomized Adults ≥18 years including Mexican-American, other Hispanic, or non-Hispanic subjects Hot red chili pepper CP consumers (n = 4107): once per month or more
Non-consumers (n = 12071)
Matching with National Death Index. Cause specific mortality was collected from medical records using ICD-10 codes Multi-culture (White, Black, Hispanics) 81-item Food Frequency Questionnaire 18.9 Information/recall bias (extensive interviews)
Lv et al. (2015)
China
2004 to 2008 Prospective cohort study; non-randomized 10 geographically diverse areas across China, aged 30–79 years Various types: fresh chili pepper, dried chili pepper, chili sauce, chili oil CP consumers (n = 208884): At least once a week
Rare/Non-consumers (n = 278491)
Linkage with death registries and residential records. Cause-specific mortality was collected using ICD*-10 codes Chinese Food Questionnaire: frequency of chili pepper intake (Never or almost never, only occasionally,
1 or 2 days a week, 3–5 days a week, or 6 or 7 days a week)
7.2 Residual confounding (inverse association between spicy food and mortality toward the null); At risk of selection bias

*International Classification of Diseases.

Fig. 1.

Fig. 1

Forest plot displaying the effect of chili pepper consumption on all-cause mortality, cardiovascular mortality, cancer mortality, and cerebrovascular accident deaths using risk ratios (CI: Confidence Interval; M–H: Mantel-Haenzel).

4. Discussion

This is the first meta-analysis carried out to assess the impact of CP consumption on all-cause, CVD and cancer related mortality. Our results show significant benefit from CP consumption in preventing such deaths as opposed to rare or no CP consumption. The lack of data on mode, quantity and frequency of CP consumption leads to non-standardization, along with variable populations in control and intervention groups leading to high heterogeneity level. The significant reduction of relative risk is supported by two potential processes. First, capsaicin promotes the activation of the TRPV1 (Transient receptor potential cation channel sub-family V member 1) receptor which through a cascade effect leads to thermogenesis, fat metabolism and other energy dissipation processes [8]. This way energy equilibrium shifts help in weight-reduction, consequently lowering the risk of CVD incidence [9]. Likewise, weight-reduction was observed in 30 participants in the study by Yoshioka et al. [10] where a diet rich in fat was supplemented with capsaicin. Second, theTRPV1, receptor found in epicardium, has been proposed to prevent myocardial infarction, through the release of substance P [11]. The TRPV1 dependent release of serotonin helps thrombin in platelet activation. This mechanism accounts for the pro-coagulating property of capsaicin and justifies the negative impact of CP on CVD and CVA deaths [12].

5. Conclusion

To our knowledge, this is the first systematic review and meta-analysis that attempt to identify association between CP consumption and mortality. Statistically significant results of our analysis put forward a rationale indicating an association between lower risk of all-cause, cardiovascular and cancer related deaths and CP consumption (Fig. 1).

Declaration of competing interest

None to declare.

Acknowledgements

None to declare.

Footnotes

Appendix A

Supplementary data to this article can be found online at https://doi.org/10.1016/j.amsu.2021.102774.

Ethical approval

NA.

Sources of funding

NA.

Author contribution

Naser Yamani conceived the idea and designed the study. Muhammad Maaz Waseem collected the data and analysed it. Adeena Musheer drafted the manuscript. Priyanka Gosain conducted literature search. Saba Sarfraz created the illustrations. Humera Qamar refined the illustrations. Muhammad Sameer Arshad revised the manuscript critically.

Registration of research studies

1. Name of the registry: NA.

2. Unique Identifying number or registration ID: NA.

3. Hyperlink to your specific registration (must be publicly accessible and will be checked): NA.

Guarantor

Adeena Musheer.

Dow University of Health Sciences.

Consent

NA.

Provenance and peer review

Not commissioned, externally peer-reviewed.

Appendix A. Supplementary data

The following are the Supplementary data to this article:

Multimedia component 1
mmc1.docx (31KB, docx)
Multimedia component 2
mmc2.docx (179.9KB, docx)
Multimedia component 3
mmc3.docx (17.2KB, docx)

References

  • 1.Bonaccio M., Di Castelnuovo A., Costanzo S., Ruggiero E., De Curtis A., Persichillo M., Tabolacci C., Facchiano F., Cerletti C., Donati M.B., de Gaetano G., Iacoviello L. Chili pepper consumption and mortality in Italian adults. J. Am. Coll. Cardiol. 2019;74:3139–3149. doi: 10.1016/j.jacc.2019.09.068. [DOI] [PubMed] [Google Scholar]
  • 2.Zawadzki N.K., Gong C.L., Cho S.K., Hay J.W. There is insufficient evidence to support a causal relationship between chili pepper consumption and mortality. J. Am. Coll. Cardiol. 2020;75:1864. doi: 10.1016/j.jacc.2020.01.059. [DOI] [PubMed] [Google Scholar]
  • 3.Page M.J., McKenzie J.E., Bossuyt P.M., Boutron I., Hoffmann T.C., Mulrow C.D., Shamseer L., Tetzlaff J.M., Akl E.A., Brennan S.E., Chou R., Glanville J., Grimshaw J.M., Hróbjartsson A., Lalu M.M., Li T., Loder E.W., Mayo-Wilson E., McDonald S., McGuinness L.A., Stewart L.A., Thomas J., Tricco A.C., Welch V.A., Whiting P., Moher D. The PRISMA 2020 statement: an updated guideline for reporting systematic reviews. Int. J. Surg. 2021;88:105906. doi: 10.1016/j.ijsu.2021.105906. [DOI] [PubMed] [Google Scholar]
  • 4.Shea B.J., Reeves B.C., Wells G., Thuku M., Hamel C., Moran J., Moher D., Tugwell P., Welch V., Kristjansson E., Henry D.A. AMSTAR 2: a critical appraisal tool for systematic reviews that include randomised or non-randomised studies of healthcare interventions, or both. BMJ. 2017;358:j4008. doi: 10.1136/bmj.j4008. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 5.Hashemian M., Poustchi H., Murphy G., Etemadi A., Kamangar F., Pourshams A., Khoshnia M., Gharavi A., Brennan P.J., Boffetta P., Dawsey S.M., Abnet C.C., Malekzadeh R., Turmeric Pepper. Cinnamon, and saffron consumption and mortality. J. Am. Hear. Assoc. Cardiovasc. Cerebrovasc. Dis. 2019;8 doi: 10.1161/JAHA.119.012240. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 6.Chopan M., Littenberg B. The association of hot red chili pepper consumption and mortality: a large population-based cohort study. 2017. [DOI] [PMC free article] [PubMed]
  • 7.Lv J., Qi L., Yu C., Yang L., Guo Y., Chen Y., Bian Z., Sun D., Du J., Ge P., Tang Z., Hou W., Li Y., Chen J., Chen Z., Li L. Consumption of spicy foods and total and cause specific mortality: population based cohort study. BMJ. 2015;351:h3942. doi: 10.1136/bmj.h3942. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 8.Baskaran P., Krishnan V., Fettel K., Gao P., Zhu Z., Ren J., Thyagarajan B. TRPV1 activation counters diet-induced obesity through sirtuin-1 activation and PRDM-16 deacetylation in Brown adipose tissue. 2017. (n.d.) [DOI] [PMC free article] [PubMed]
  • 9.Wing R.R., Lang W., Wadden T.A., Safford M., Knowler W.C., Bertoni A.G., Hill J.O., Brancati F.L., Peters A., Wagenknecht L. Benefits of modest weight loss in improving cardiovascular risk factors in overweight and obese individuals with type 2 diabetes. 2011. [DOI] [PMC free article] [PubMed]
  • 10.Yoshioka M., St-Pierre S., Suzuki M., Tremblay A. Effects of red pepper added to high-fat and high-carbohydrate meals on energy metabolism and substrate utilization in Japanese women. Br. J. Nutr. 1998;80:503–510. doi: 10.1017/s0007114598001597. [DOI] [PubMed] [Google Scholar]
  • 11.Zahner M., Peart J.N., Xie R., Xu J., Du Q., Liao Q., Chen C., Yang X. The role of transient receptor potential vanilloid 1 in common diseases of the digestive tract and the cardiovascular and respiratory system. Front. Physiol. | Www.Frontiersin.Org. 2019;1:1064. doi: 10.3389/fphys.2019.01064. [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 12.Mittelstadt S.W., Nelson R.A., Daanen J.F., King A.J., Kort M.E., Kym P.R., Lubbers N.L., Cox B.F., Lynch J.J.I.I.I. Capsaicin-induced inhibition of platelet aggregation is not mediated by transient receptor potential vanilloid type 1. Blood Coagul. Fibrinolysis. 2012;23 doi: 10.1097/MBC.0b013e32834ddf18. https://journals.lww.com/bloodcoagulation/Fulltext/2012/01000/Capsaicin_induced_inhibition_of_platelet.18.aspx [DOI] [PubMed] [Google Scholar]

Associated Data

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Supplementary Materials

Multimedia component 1
mmc1.docx (31KB, docx)
Multimedia component 2
mmc2.docx (179.9KB, docx)
Multimedia component 3
mmc3.docx (17.2KB, docx)

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