Effect of exogenous melatonin on the digestive tract of offspring of mice submitted to early weaning: a systematic review

Authors

DOI:

https://doi.org/10.33448/rsd-v9i10.8869

Keywords:

Early Weaning; Stress; Early weaning; Digestive system.

Abstract

The present study is a systematic review with the objective of characterizing the main findings in the literature, which report the action of exogenous melatonin in the digestive system of mice that suffered early weaning. The bibliographic research was carried out in PubMed, VHL and SCIELO using the following key words: melatonin, stress and digestive tract. A total of 118 articles were found in the 3 databases analyzed. However, after applying the inclusion/exclusion criteria, only 1 article left. The paper found addresses the action of melatonin in the small intestine of mice that were weaned early. Collectively, melatonin supplementation improves body weight gain and intestinal morphology, while exerting little effect on cell proliferation and apoptosis, as well as on goblet cells and Paneth cells in the ileum of weaning mice.

Author Biographies

Marcos Aurélio Santos da Costa, UFPE

Programa de Pós-Graduação em Morfotecnologia

Luiz Henrique da Silva Linhares, Universidade Federal de Pernambuco

Programa de Pós-graduação em Morfotecnologia

Thiago Oliveira Nascimento, Universidade Federal de Pernambuco

Programa de Pós-graduação em Morfotecnologia,

Juliana Pinto de Medeiros, Universidade Federal de Pernambuco

Programa de Pós-graduação em Morfotecnologia

Fernanda Chagas Angelo Mendes Tenorio, Universidade Federal de Pernambuco

Programa de Pós-graduação em Morfotecnologia

Sônia Pereira Leite, Universidade Federal de Pernambuco

Programa de Pós-graduação em Morfotecnologia

References

Arslanoglu, S., Bertino, E., Nicocia, M., &Moro, G. (2012). WAPM working Group on a Nutrition: potential chronobiotic role of human milk in sleep regulation. J Perinat Med 40, 1–8.

Bivolarski, B. L., & Vachkova, E. G. Morphological and functional events associated to weaning in rabbits. Journal of animal physiology and animal nutrition, 98, 1, 9-18, 2014.

Brainard, G. C., et al. "The suppression of pineal melatonin content and N-acetyItransferase activity by different light irradiances in the Syrian hamster: a dose-response relationship." Endocrinology 113.1 (1983). 293-296.

Cohen, E. A., Hadash, A., Shehadeh, N., & Pillar, G. (2012) Breast -feeding may improve nocturnal sleep and reduce infantile colic: potential role of breast milk melatonin. e ur J Pediatr 171, 729–732.

Crispel, Y., et al. "Effect of weaning age on the small intestine mucosa of rats." Applied Physiology, Nutrition, and Metabolism 44.9 (2019): 985-989.

Cubero, J., et al. O ritmo circadiano do triptofano no leite materno afeta os ritmos da 6-sulfatoximelatonina e o sono no recém-nascido. Neuroendocrinology Letters, 26(6), 657-662, 2005.

De Talamoni, N. T., et al. Melatonin, Gastrointestinal Protection, and Oxidative Stress. In: Gastrointestinal Tissue. Academic Press, 2017. 317-325.

Illnerova, H., Buresova, M., Presl, J. (1993) Melatonin rhythm in human milk. J Clin Endocrinol Metab 77, 838–841.

Jaldo-Alba, F., et al. A privação de luz aumenta os níveis plasmáticos de melatonina durante as primeiras 72 horas de vida em bebês humanos. Revista Européia de Endocrinologia, 129(5), 442-445.

Jan, J., Wasdell, M. B., Freeman, R. D., Bax, M. (2007) e vidence supporting the use of melatonin in short gestation infants. J Pin -eal Res 42, 22–27.

Kikusui, T., Kiyokawa, Y., & Mori, Y. Deprivation of mother–pup interaction by early weaning alters myelin formation in male, but not female, ICR mice. Brain research, 1133, 115-122, 2007.

Montagne, L., Boudry, G., Favier, C., et al. Main intestinal markers associated with the changes in gut architecture and function in piglets after weaning. Br J Nutr.2007; 97, 45-57.

Pereira, A. S., Shitsuka, D. M., Parreira, F. J., & Shitsuka, R. (2018). Metodologia da pesquisa científica.

Oliveira, L. D. S., Souza, S. L. D., Castro, R. M. Behavioral satiety sequence: an experimental model for studying feeding behavior. Revista de Nutrição, 24, 4, 619- 628, 2011 “B”.

Oliveira, L. S., Silva, L. P., Silva, A. I., Magalhães, C. P., Souza, S. L., Castro, R. M. Effects of early weaning on the circadian rhythm and behavioral satiety sequence in rats. Behavioural processes, 86, 1, 119-124, 2011 “A”.

REN, W., et al. Melatonin alleviates weanling stress in mice: Involvement of intestinal microbiota. Journal of pineal research. 2018; 64, e12448.

Sahin, L., & Mariana, G. F. "Alerting effects of short-wavelength (blue) and long-wavelength (red) lights in the afternoon." Physiology & behavior 116 (2013): 1-7.

Wang, J., Zeng, L., Tan, B., et al. Developmental changes in intercellular junctions and Kv channels in the intestine of piglets during the suckling and post-weaning periods. J Anim SciBiotechnol.2016; 7:4.

Weaver, L. T. Milk and the neonatal gut: comparative lessons to be learnt. Equine veterinary journal, 18, 6, 427-429, 1986.

Published

08/10/2020

How to Cite

COSTA, M. A. S. da; REGES DOS SANTOS SILVA, R. . . . . . . . . . . . . . . . . . .; SILVA, M. E. da; LINHARES, L. H. da S. .; NASCIMENTO, T. O. .; OLIVEIRA, M. L. F. de .; GOMES, J. A. da S. .; SILVA, T. M. S. da .; SOBREIRA, R. C. B. .; MEDEIROS, J. P. de; TENORIO, F. C. A. M. .; LEITE, S. P. Effect of exogenous melatonin on the digestive tract of offspring of mice submitted to early weaning: a systematic review. Research, Society and Development, [S. l.], v. 9, n. 10, p. e5009108869, 2020. DOI: 10.33448/rsd-v9i10.8869. Disponível em: https://www.rsdjournal.org/index.php/rsd/article/view/8869. Acesso em: 19 apr. 2024.

Issue

Section

Review Article