ORIGINAL PAPER
The influence of maternal dietary habits on children’s eating behaviours and nutritional status in Poland
 
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1
Department of Commodity Science, Faculty of Health Sciences, Medical University, Gdańsk, Poland
 
2
Institute of Health Sciences, College of Medical Sciences, University of Rzeszów, Rzeszów, Poland
 
3
Students’ Scientific Circle of Pediatrics, Medical University, Gdańsk, Poland
 
 
Submission date: 2024-11-12
 
 
Final revision date: 2024-12-30
 
 
Acceptance date: 2025-01-03
 
 
Publication date: 2025-04-15
 
 
Corresponding author
Magdalena Skotnicka
Gdański Uniwersytet Medyczny, Gdańsk, Poland
 
 
Pediatr Pol 2025;61(1):29-37
 
KEYWORDS
TOPICS
ABSTRACT
Introduction::
The aim of the study was to investigate the relationship between mothers’ declared dietary patterns and nutritional status and eating habits in children. It was hypothesised that children who follow a balanced diet would demonstrate better health indicators compared to those who do not adhere to any particular dietary guidelines.

Material and methods::
The research was conducted in 6 public primary schools within the Pomeranian Voivodeship from September 2022 to January 2023, with the participation of 515 mothers or legal guardians. Children’s eating habits were evaluated through questionnaires, specifically employing the children’s eating behaviour questionnaire and the food frequency questionnaire.

Results::
The findings revealed that children adhering to a Mediterranean or vegetarian diet were more likely to maintain a healthy body weight and to choose healthier snacks, such as fruits, when compared to those who did not follow any specific diet. In contrast, children without a defined dietary plan were more prone to being overweight and exhibited a higher consumption of sweets.

Conclusions::
These results suggest that structured diets, particularly the Mediterranean and vegetarian options, can positively influence children’s eating habits and body composition.
REFERENCES (31)
1.
Gungor N. Overweight and obesity in children and adolescents. J Clin Res Pediatr Endocrinol 2014; 6: 129-143.
 
2.
Skinner A, Skelton J. Prevalence and trends in obesity and severe obesity among children in the United States, 1999–2012. JAMA Pediatr 2014; 168: 561-566.
 
3.
Lo J. Prevalence of obesity and extreme obesity in children aged 3–5 years. Pediatric Obesity 2014; 9: 167-175.
 
4.
Horesh A, Tsur AM, Bardugo A, Twig G. Adolescent and childhood obesity and excess morbidity and mortality in young adulthood-a systematic review. Curr Obes Rep 2021; 10: 301-310.
 
5.
Jebeile H, Cardel M, Kyle T. Addressing psychosocial health in the treatment and care of adolescents with obesity. Obesity 2021; 29: 1413-1422.
 
6.
Saltaouras G, Kyrkili A, Bathrellou E, et al. Associations between meal patterns and risk of overweight/obesity in children and adolescents in western countries: a systematic review of longitudinal studies and randomised controlled trials. Children 2024; 11: 1100.
 
7.
Jimeno-Martínez A, Maneschy I, Rupérez A, Moreno L. Factores determinantes del comportamiento alimentario y su impacto sobre la ingesta y la obesidad en ninos. JBF 2024; 1: 60-71.
 
8.
Simmonds M, Llewellyn A, Owen C, Woolacott N. Predicting adult obesity from childhood obesity: a systematic review and meta-analysis. Obes Rev 2016; 17: 95-107.
 
9.
Ródenas-Munar M, García S, Cepeda V, Martín-Calvo N, Tur JA, Bouzas C. Preschool children’s dietary patterns are associated with food shopping establishments: the SENDO project. Foods 2024; 13: 2930.
 
10.
Chatelan A, Lebacq T, Rouche M, et al. Long-term trends in the consumption of sugary and diet soft drinks among adolescents: a cross-national survey in 21 European countries. Eur J Nutr 2022; 61: 2799-2813.
 
11.
Liu X, Wu Y, Bennett S, Zou J, Xu J, Zhang L. The effects of different dietary patterns on bone health. Nutrients 2024; 16: 2289.
 
12.
Bengin E, Kırtepe A, Çınar V, et al. Leptin, ghrelin, irisin, asprosin and subfatin changes in obese women: effect of exercise and different nutrition types. Medicina 2024; 60: 1118.
 
13.
Dyńka D, Rodzeń Ł, Rodzeń M, et al. Beneficial effects of the ketogenic diet on nonalcoholic fatty liver disease (NAFLD/MAFLD). J Clin Med 2024; 13: 4857.
 
14.
Marcos-Pasero H, Aguilar-Aguilar E, Colmenarejo G, De Molina AR, Reglero G, Loria-Kohen V. Dietary and physical activity habits as conditioning factors of nutritional status among children of GENYAL study. Int J Env Research and Public Health 2023; 20: 866.
 
15.
D’Innocenzo S, Biagi C, Lanari M. Obesity and the mediterranean diet: a review of evidence of the role and sustainability of the mediterranean diet. Nutrients 2019; 11: 1306.
 
16.
Papadaki A, Nolen-Doerr E, Mantzoros CS. The effect of the mediterranean diet on metabolic health: a systematic review and meta- analysis of controlled trials in adults. Nutrients 2020; 12: 3342.
 
17.
Martínez-González M, Gea A, Ruiz-Canela M. The mediterranean diet and cardiovascular health. Circ Res 2019; 124: 779-798.
 
18.
Salas-Salvadó J, Becerra-Tomás N, García-Gavilán JF, Bulló M, Barrubés L. Mediterranean diet and cardiovascular disease prevention: what do we know? Prog Cardiovasc Dis 2018; 61: 62-67.
 
19.
Mahfouz A, Alsaleem S, Alsaleem M, Ghazy R. Prevalence of obesity and associated dietary habits among medical students at King Khalid University, Southwestern Saudi Arabia. Medicina 2024; 60: 347.
 
20.
Xu Z, Zhao Y, Sun J, Luo L, Ling Y. Association between dietary knowledge and overweight and obesity in Chinese children and adolescents: evidence from the China health and nutrition survey in 2004 –2015. PLoS One 2022; 17: 1313.
 
21.
Pereira-da-Silva L, Rego C, Pietrobelli A. The diet of preschool children in the mediterranean countries of the European Union: a systematic review. Int J Env Res Public Health 2016; 13: 572.
 
22.
FAO. Mediterranean food consumption patterns – diet, environment, society, economy and health. FAO, Italy, Rome 2015.
 
23.
Grosso G, Galvano F. Mediterranean diet adherence in children and adolescents in southern European countries. NFS J 2016; 3: 13-19.
 
24.
Do Amaral E, Melo G, Silva P, Nakabayashi J, Bandeira M, Toral N, Monteiro R. Family meal frequency and its association with food consumption and nutritional status in adolescents: a systematic review. PLoS One 2020; 15: e0239274.
 
25.
Mattson MP, Allison DB, Fontana L, et al. Częstotliwość i czas posiłków w zdrowiu i chorobie. Proc USA 2014; 111: 16647-16653.
 
26.
Paoli A, Tinsley G, Bianco A, Moro T. The influence of meal frequency and timing on health in humans: the role of fasting. Nutrients 2019; 11: 719.
 
27.
Żwirska J, Błaszczyk-Bębenek E, Jagielski P. Frequency of consumption of fast-food products and good food and the nutritional state of junior school students in the Myślenice Powiat in the years 2016–2017. Proceedings 2023; 91: 433.
 
28.
Dunford E, Popkin B. 37 year snacking trends for US children 1977–2014. Pediatric Obesity 2018; 13: 247-255.
 
29.
Piórecka B, Kozioł-Kozakowska A, Jagielski P, Schlegel-Zawadzka M. Częstotliwość oraz wybory dotyczące spożycia płynów w grupie dzieci i młodzieży szkolnej z Niepołomic i Krakowa. Bromat Chem Toksykol 2019; 2: 168-174.
 
30.
Bielaszka A, Grochowska-Niedworok E, Kiciak A, et al. Nutrition preferences of children ages 7–10. Ann Acad Med Siles 2014; 4: 187-191.
 
31.
Jessa J, Hozyasz K. Ocena spożycia wód smakowych przez dzieci kierowane do oddziału pediatrycznego. Pediatr Pol 2017; 4: 401-405.
 
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