Page 86 - Read Online
P. 86
Page 16 of 19 Misera et al. Microbiome Res Rep 2024;3:48 https://dx.doi.org/10.20517/mrr.2023.81
neuropsychological diseases. Front Microbiol 2023;14:1191445. DOI PubMed PMC
5. Yan J, Sheng L, Li H. Akkermansia muciniphila: is it the Holy Grail for ameliorating metabolic diseases? Gut Microbes
2021;13:1984104. DOI PubMed PMC
6. Wang J, Xu W, Wang R, Cheng R, Tang Z, Zhang M. The outer membrane protein Amuc_1100 of Akkermansia muciniphila
promotes intestinal 5-HT biosynthesis and extracellular availability through TLR2 signalling. Food Funct 2021;12:3597-610. DOI
PubMed
7. Jones LA, Sun EW, Martin AM, Keating DJ. The ever-changing roles of serotonin. Int J Biochem Cell Biol 2020;125:105776. DOI
PubMed
8. Sun Y, Zhu H, Cheng R, Tang Z, Zhang M. Outer membrane protein Amuc_1100 of Akkermansia muciniphila alleviates antibiotic-
induced anxiety and depression-like behavior in mice. Physiol Behav 2023;258:114023. DOI PubMed
9. Segers A, de Vos WM. Mode of action of Akkermansia muciniphila in the intestinal dialogue: role of extracellular proteins,
metabolites and cell envelope components. Microbiome Res Rep 2023;2:6. DOI PubMed PMC
10. Bleibel L, Dziomba S, Waleron KF, Kowalczyk E, Karbownik MS. Deciphering psychobiotics’ mechanism of action: bacterial
extracellular vesicles in the spotlight. Front Microbiol 2023;14:1211447. DOI PubMed PMC
11. Yaghoubfar R, Behrouzi A, Ashrafian F, et al. Modulation of serotonin signaling/metabolism by Akkermansia muciniphila and its
extracellular vesicles through the gut-brain axis in mice. Sci Rep 2020;10:22119. DOI PubMed PMC
12. Labellarte MJ, Walkup JT, Riddle MA. The new antidepressants. Selective serotonin reuptake inhibitors. Pediatr Clin North Am
1998;45:1137-55, ix. DOI PubMed
13. Song M, Cui M, Fang Z, Liu K. Advanced research on extracellular vesicles based oral drug delivery systems. J Control Release
2022;351:560-72. DOI PubMed
14. Hallal S, Tűzesi Á, Grau GE, Buckland ME, Alexander KL. Understanding the extracellular vesicle surface for clinical molecular
biology. J Extracell Vesicles 2022;11:e12260. DOI PubMed PMC
15. EFSA. Safety of pasteurised Akkermansia muciniphila as a novel food pursuant to regulation (EU) 2015/2283. Available from: https:/
/www.efsa.europa.eu/en/efsajournal/pub/6780. [Last accessed on 4 Sep 2024].
16. Paoletti P, Pellegrino M, Ben-Soussan TD. A three-fold integrated perspective on healthy development: an opinion paper. Brain Sci
2023;13:857. DOI PubMed PMC
17. Lazarus R, Folkman S. Stress, appraisal, and coping. Springer Publishing Company; 1984. Available from: https://books.google.com/
books/about/Stress_Appraisal_and_Coping.html?id=i-ySQQuUpr8C. [Last accessed on 4 Sep 2024].
18. Scott SB, Graham-Engeland JE, Engeland CG, et al. The Effects of Stress on Cognitive Aging, Physiology and Emotion (ESCAPE)
Project. BMC Psychiatry 2015;15:146. DOI PubMed PMC
19. Rademacher L, Kraft D, Eckart C, Fiebach CJ. Individual differences in resilience to stress are associated with affective flexibility.
Psychol Res 2023;87:1862-79. DOI PubMed PMC
20. Palomero-Gallagher N, Amunts K. A short review on emotion processing: a lateralized network of neuronal networks. Brain Struct
Funct 2022;227:673-84. DOI PubMed PMC
21. Skonieczna-Żydecka K, Łoniewski I, Marlicz W, Karakiewicz B. Gut microbiota and its potential contribution to human emotional
disorders. Available online: http://www.medmikro.org/mikrobiota-jelitowa-jako-potencjalna-przyczyna-zaburzen-funkcjonowania-
emocjonalnego-czlowieka?lang=pl. [Last accessed on 4 Sep 2024].
22. Landowski J. Neurobiology of stress. Neuropsych Neuro Pol 2007;2:26-36. Available from: https://www.termedia.pl/Artykul-
pogladowy-Neurobiologia-reakcji-stresowej,46,8682,0,0.html. [Last accessed on 4 Sep 2024]
23. Chu B, Marwaha K, Sanvictores T, Awosika AO, Ayers D. Physiology, stress reaction. In: StatPearls; StatPearls Publishing: Treasure
Island (FL), 2023. PubMed
24. Mayer EA. The neurobiology of stress and gastrointestinal disease. Gut 2000;47:861-9. DOI PubMed PMC
25. Marlicz W, Yung DE, Skonieczna-Żydecka K, et al. From clinical uncertainties to precision medicine: the emerging role of the gut
barrier and microbiome in small bowel functional diseases. Expert Rev Gastroenterol Hepatol 2017;11:961-78. DOI PubMed
26. Silvernale C, Garcia-Fischer I, Staller K. Relationship between psychological trauma and irritable bowel syndrome and functional
dyspepsia in a joint hypermobility syndrome/ehlers-danlos syndrome patient population. Dig Dis Sci 2024;69:870-5. DOI PubMed
27. Santucci NR, Velasco-Benitez CA, Cunningham N, et al. Psychological distress and coping efficacy in children with disorders of gut-
brain interaction. Neurogastroenterol Motil 2024;36:e14724. DOI PubMed PMC
28. Stachowska E, Maciejewska D, Ryterska K, et al. Abdominal pain and disturbed bowel movements are frequent among young
people. A population based study in young participants of the Woodstock Rock Festival in Poland. J Gastrointestin Liver Dis
2018;27:379-83. DOI PubMed
29. Skonieczna-Żydecka K, Stachowska E, Maciejewska D, et al. The digestive health among participants of the Woodstock Rock
Festival in Poland - a cross-sectional survey. Int J Environ Res Public Health 2018;15:2256. DOI PubMed PMC
30. Nazarewska A, Lewandowski K, Kaniewska M, Rosołowski M, Marlicz W, Rydzewska G. Irritable bowel syndrome following
COVID-19: an underestimated consequence of SARS-CoV-2 infection. Pol Arch Intern Med 2022;132:16323. DOI PubMed
31. Nazarewska A, Lewandowski K, Kaniewska M, et al. Long-lasting dyspeptic symptoms - another consequence of the COVID-19
pandemic? Prz Gastroenterol 2023;18:175-82. DOI PubMed PMC
32. Person H, Keefer L. Psychological comorbidity in gastrointestinal diseases: update on the brain-gut-microbiome axis. Prog
Neuropsychopharmacol Biol Psychiatry 2021;107:110209. DOI PubMed PMC

