Bibliometric Analysis of Research Trends on Cigarette Smoke Exposure and Childhood Asthma

Penulis

  • Adelia Amarantine Pritasari Universitas Muhammadiyah Yogyakarta
  • Titih Huriah Universitas Muhammadiyah Yogyakarta

DOI:

https://doi.org/10.57218/jkj.Vol5.Iss3.2812

Kata Kunci:

anak, kebiasaan merokok orang tua, kehamilan

Abstrak

Parental cigarette smoke exposure is an environmental risk factor that may negatively affect children’s respiratory and overall health. Exposure during pregnancy and after birth may increase the risk of respiratory disorders, particularly asthma, and affect lung function development. This study aimed to analyze publication trends, citation patterns, country distribution, and research themes related to parental cigarette smoke exposure and childhood asthma. A bibliometric analysis was conducted using Scopus data covering publications from 2015 to 2025. A total of 484 articles meeting the inclusion criteria were analyzed using VOSviewer to map publication trends, country contributions, keyword relationships, and thematic developments. The results showed continued research development, with the highest number of publications recorded in 2022, totaling 61 articles. The United States was the leading contributor with 119 publications, followed by the United Kingdom with 70 publications. The article by Castro-Rodriguez et al. (2016), entitled Risk and Protective Factors for Childhood Asthma: What Is the Evidence?, received the highest number of citations, with 233 citations. Keyword analysis identified children, maternal smoking, pregnancy, asthma, and risk factors as dominant themes. Thematic evolution indicated increasing attention to prenatal and postnatal cigarette smoke exposure and its association with childhood asthma and respiratory health. Overall, research on parental cigarette smoke exposure and childhood asthma developed substantially during 2015–2025. The bibliometric mapping provides insights into publication trends, leading countries, influential articles, and dominant themes, supporting future research and family-based strategies to prevent children’s exposure to cigarette smoke.

Referensi

Accordini, S., Calciano, L., Johannessen, A., Portas, L., Benediktsdóttir, B., Jacobsen Bertelsen, R., Bråbäck, L., Gomez Real, F., Heinrich, J., Holloway, J. W., Holm, M., Janson, C., Jögi, R., Leynaert, B., Malinovschi, A., Marcon, A., Martínez-Moratalla Rovira, J., Raherison, C., Luis Sánchez-Ramos, J., … Dorado Arenas, S. (n.d.). Online Supplementary Appendix A three-generation study on the association of tobacco smoking with asthma. Retrieved https://academic.oup.com/ije/article/47/4/1106/4925526

Asher, M. I., Rutter, C. E., Bissell, K., Chiang, C. Y., El Sony, A., Ellwood, E., Ellwood, P., García-Marcos, L., Marks, G. B., Morales, E., Mortimer, K., Pérez-Fernández, V., Robertson, S., Silverwood, R. J., Strachan, D. P., Pearce, N., Bissell, K., Masekela, R., Strachan, D., … Shah, J. (2021). Worldwide trends in the burden of asthma symptoms in school-aged children: Global Asthma Network Phase I cross-sectional study. The Lancet, 398(10311), 1569–1580. https://doi.org/10.1016/S0140-6736(21)01450-1

Booalayan, H., Abdualrasool, M., Al-Shanfari, S., Boujarwa, A., Al-Mukaimi, A., Alkandery, O., & Akhtar, S. (2020). Exposure to environmental tobacco smoke and prevalence of asthma among adolescents in a middle eastern country. BMC Public Health, 20(1). https://doi.org/10.1186/s12889-020-09245-9

Castro-Rodriguez, J. A., Forno, E., Rodriguez-Martinez, C. E., & Celedón, J. C. (2016). Risk and Protective Factors for Childhood Asthma: What Is the Evidence? The Journal of Allergy and Clinical Immunology: In Practice, 4(6), 1111–1122. https://doi.org/https://doi.org/10.1016/j.jaip.2016.05.003

Dai, X., Bui, D. S., Perret, J. L., Lowe, A. J., Frith, P. A., Bowatte, G., Thomas, P. S., Giles, G. G., Hamilton, G. S., Tsimiklis, H., Hui, J., Burgess, J., Win, A. K., Abramson, M. J., Walters, E. H., Dharmage, S. C., & Lodge, C. J. (2021). Exposure to household air pollution over 10 years is related to asthma and lung function decline. European Respiratory Journal, 57(1). https://doi.org/10.1183/13993003.00602-2020

Dixit, S., Pletcher, M. J., Vittinghoff, E., Imburgia, K., Maguire, C., Whitman, I. R., Glantz, S. A., Olgin, J. E., & Marcus, G. M. (2016). Secondhand smoke and atrial fibrillation: Data from the Health eHeart Study. Heart Rhythm, 13(1), 3–9. https://doi.org/https://doi.org/10.1016/j.hrthm.2015.08.004

Flor, L. S., Reitsma, M. B., Gupta, V., Ng, M., & Gakidou, E. (2021). The effects of tobacco control policies on global smoking prevalence. Nature Medicine, 27(2), 239–243. https://doi.org/10.1038/s41591-020-01210-8

Harju, M., Keski-Nisula, L., Georgiadis, L., & Heinonen, S. (2016). Parental smoking and cessation during pregnancy and the risk of childhood asthma. BMC Public Health, 16(1). https://doi.org/10.1186/s12889-016-3029-6

He, Z., Wu, H., Zhang, S., Lin, Y., Li, R., Xie, L., Li, Z., Sun, W., Huang, X., Zhang, C. J. P., & Ming, W.-K. (2020). The association between secondhand smoke and childhood asthma: A systematic review and meta-analysis. Pediatric Pulmonology, 55(10), 2518–2531. https://doi.org/10.1002/ppul.24961

Joubert, B. R., Felix, J. F., Yousefi, P., Bakulski, K. M., Just, A. C., Breton, C., Reese, S. E., Markunas, C. A., Richmond, R. C., Xu, C. J., Küpers, L. K., Oh, S. S., Hoyo, C., Gruzieva, O., Söderhäll, C., Salas, L. A., Baïz, N., Zhang, H., Lepeule, J., … London, S. J. (2016). DNA Methylation in Newborns and Maternal Smoking in Pregnancy: Genome-wide Consortium Meta-analysis. American Journal of Human Genetics, 98(4), 680–696. https://doi.org/10.1016/j.ajhg.2016.02.019

Li, X., Jing, R., Feng, S., Zhang, H., Zhang, J., Li, J., Cao, W., Jiang, M., & Liu, Y. (2022). Association between prenatal or postpartum exposure to tobacco smoking and allergic rhinitis in the offspring: An updated meta-analysis of nine cohort studies. Tobacco Induced Diseases, 20(4). https://doi.org/10.18332/tid/146905

Merianos, A. L., Matt, G. E., Jandarov, R. A., & Mahabee-Gittens, E. M. (2025). Tobacco Smoke Exposure Biomarker Profiles and Healthcare Utilization Patterns Among U.S. Children. Toxics, 13(11). https://doi.org/10.3390/toxics13110909

Philips, E. M., Santos, S., Trasande, L., Aurrekoetxea, J. J., Barros, H., von Berg, A., Bergström, A., Bird, P. K., Brescianini, S., Chaoimh, C. N., Charles, M. A., Chatzi, L., Chevrier, C., Chrousos, G. P., Costet, N., Criswell, R., Crozier, S., Eggesbø, M., Fantini, M. P., … Jaddoe, V. W. V. (2020). Changes in parental smoking during pregnancy and risks of adverse birth outcomes and childhood overweight in Europe and North America: An individual participant data meta-analysis of 229,000 singleton births. PLoS Medicine, 17(8). https://doi.org/10.1371/JOURNAL.PMED.1003182

Reifenberg, J., Gecili, E., Pestian, T., Andrinopoulou, E.-R., Ryan, P. H., Brokamp, C., Collaco, J. M., & Szczesniak, R. D. (2023). Lung function and secondhand smoke exposure among children with cystic fibrosis: A Bayesian meta-analysis. Journal of Cystic Fibrosis, 22(4), 694–701. https://doi.org/https://doi.org/10.1016/j.jcf.2023.04.020

Shrivastava, S. R. B. L., Bobhate, P. S., & Lubis, R. I. P. (2025). A Comprehensive Approach to Minimize Secondhand Smoke Exposure in Children to Improve Cardiovascular Health. International Journal of Preventive Medicine, 16. https://doi.org/10.4103/ijpvm.ijpvm_374_24

Silvestri, M., Franchi, S., Pistorio, A., Petecchia, L., & Rusconi, F. (2015). Smoke exposure, wheezing, and asthma development: A systematic review and meta-analysis in unselected birth cohorts. Pediatric Pulmonology, 50(4), 353–362. https://doi.org/10.1002/ppul.23037

Thacher, J. D., Gruzieva, O., Pershagen, G., Neuman, Van Hage, M., Wickman, M., Kull, I., Melén, E., & Bergström, A. (2016). Parental smoking and development of allergic sensitization from birth to adolescence. Allergy: European Journal of Allergy and Clinical Immunology, 71(2), 239–248. https://doi.org/10.1111/all.12792

Vardavas, C. I., Hohmann, C., Patelarou, E., Martinez, D., Henderson, A. J., Granell, R., Sunyer, J., Torrent, M., Fantini, M. P., Gori, D., Annesi-Maesano, I., Slama, R., Duijts, L., De Jongste, J. C., Aurrekoetxea, J. J., Basterrechea, M., Morales, E., Ballester, F., Murcia, M., … Kogevinas, M. (2016). The independent role of prenatal and postnatal exposure to active and passive smoking on the development of early wheeze in children. European Respiratory Journal, 48(1), 115–124. https://doi.org/10.1183/13993003.01016-2015

Zanobetti, A., Ryan, P. H., Coull, B. A., Luttmann-Gibson, H., Datta, S., Blossom, J., Brokamp, C., Lothrop, N., Miller, R. L., Beamer, P. I., Visness, C. M., Andrews, H., Bacharier, L. B., Hartert, T., Johnson, C. C., Ownby, D. R., Khurana Hershey, G. K., Joseph, C. L. M., Mendonça, E. A., … Gold, D. R. (2024). Early-Life Exposure to Air Pollution and Childhood Asthma Cumulative Incidence in the ECHO CREW Consortium. JAMA Network Open, 7(2), E240535. https://doi.org/10.1001/jamanetworkopen.2024.0535

Zhou, Y., Chen, J. R., Dong, Y., Shen, J., Tian, M., Yang, Y., Song, L., & Li, J. (2021). Maternal tobacco exposure during pregnancy and allergic rhinitis in offspring: A systematic review and meta-analysis. In Medicine (United States) (Vol. 100, Number 34, p. E26986). Lippincott Williams and Wilkins. https://doi.org/10.1097/MD.0000000000026986.

Unduhan

Diterbitkan

2026-09-28