Page 80 - GALENIKA MEDICAL JOURNAL
P. 80
Literatura 24. Yano JM, Yu K, Donaldson GP, Shastri GG, Ann P, Ma L, et al. Indigenous
bacteria from the gut microbiota regulate host serotonin biosynthesis.
Cell. 2015 Apr 9;161(2):264-76.
1. Karakan T, Ozkul C, Küpeli Akkol E, Bilici S, Sobarzo-Sánchez E, et al. 25. Haghikia A, Jörg S, Duscha A, Berg J, Manzel A, Waschbisch A, et
Gut-Brain-Microbiota Axis: Antibiotics and Functional Gastrointestinal al. Dietary Fatty Acids Directly Impact Central Nervous System
Disorders. Nutrients. 2021 Jan 27;13(2):389. Autoimmunity via the Small Intestine. Immunity. 2015 Oct 20;43(4):817-
2. Raskov H, Burcharth J, Pommergaard HC, Rosenberg J. Irritable bowel 29.
syndrome, the microbiota and the gut-brain axis. Gut Microbes. 2016 26. Goehler LE, Gaykema RP, Opitz N, Reddaway R, Badr N, Lyte M.
Sep 2;7(5):365-83. Activation in vagal afferents and central autonomic pathways: early
3. Black CJ, Drossman DA, Talley NJ, Ruddy J, Ford AC. Functional responses to intestinal infection with Campylobacter jejuni. Brain Behav
gastrointestinal disorders: advances in understanding and Immun. 2005 Jul;19(4):334-44.
management. Lancet. 2020 Nov 21;396(10263):1664-74. 27. Minuk GY. Gamma-aminobutyric acid (GABA) production by eight
4. Jones MP, Dilley JB, Drossman D, Crowell MD. Brain-gut connections common bacterial pathogens. Scand J Infect Dis. 1986;18(5):465-7.
in functional GI disorders: anatomic and physiologic relationships. 28. Asano Y, Hiramoto T, Nishino R, Aiba Y, Kimura T, Yoshihara K, et al.
Neurogastroenterol Motil. 2006 Feb;18(2):91-103. Critical role of gut microbiota in the production of biologically active,
5. Gaman A, Kuo B. Neuromodulatory processes of the brain-gut axis. free catecholamines in the gut lumen of mice. Am J Physiol Gastrointest
Neuromodulation. 2008 Oct 1;11(4):249-59. Liver Physiol. 2012 Dec 1;303(11):G1288-95.
6. Drossman DA, Thompson WG, Talley NJ, Funch-Jeasen P, Janssens J. 29. Ozogul F. Effects of specific lactic acid bacteria species on biogenic
Identification of subgroups of functional bowel disorders. Gastroenterol amine production by foodborne pathogen. Int J Food Sci Tech.
Int. 1990;3:159–72. 2011;46:478–84.
7. Drossman DA, Chang L, Chey WD, Kellow J, Tack J, Whitehead WE. The 30. Simrén M, Barbara G, Flint HJ, Spiegel BM, Spiller RC, Vanner S, et al;
Rome IV Committees. Rome IV functional gastrointestinal disorders – Rome Foundation Committee. Intestinal microbiota in functional bowel
disorders of gut-brain interaction. I. Raleigh, NC: The Rome Foundation; disorders: a Rome foundation report. Gut. 2013 Jan;62(1):159-76.
2016. 31. Labus JS, Hollister EB, Jacobs J, Kirbach K, Oezguen N, Gupta A, et al.
8. Drossman DA. Functional Gastrointestinal Disorders: History, Differences in gut microbial composition correlate with regional brain
Pathophysiology, Clinical Features and Rome IV. Gastroenterology. 2016 volumes in irritable bowel syndrome. Microbiome. 2017 May 1;5(1):49.
Feb 19:S0016-5085(16)00223-7. 32. Jeffery IB, O'Toole PW, Öhman L, Claesson MJ, Deane J, Quigley EM, et
9. Aziz I, Palsson OS, Törnblom H, Sperber AD, Whitehead WE, Simrén al. An irritable bowel syndrome subtype defined by species-specific
M. The Prevalence and Impact of Overlapping Rome IV-Diagnosed alterations in faecal microbiota. Gut. 2012 Jul;61(7):997-1006.
Functional Gastrointestinal Disorders on Somatization, Quality of Life, 33. Tap J, Derrien M, Törnblom H, Brazeilles R, Cools-Portier S, Doré J,
and Healthcare Utilization: A Cross-Sectional General Population Study et al. Identification of an Intestinal Microbiota Signature Associated
in Three Countries. Am J Gastroenterol. 2018 Jan;113(1):86-96. With Severity of Irritable Bowel Syndrome. Gastroenterology. 2017
10. Nicholson JK, Holmes E, Kinross J, Burcelin R, Gibson G, Jia W, Pettersson Jan;152(1):111-23.e8.
S. Host-gut microbiota metabolic interactions. Science. 2012 Jun 34. Kerckhoffs APM, Ben-Amor K, Samsom M, van der Rest ME, de Vogel
8;336(6086):1262-7. J, Knol J, et al. Molecular analysis of faecal and duodenal samples
11. Margolis KG, Cryan JF and Mayer E. The Microbiota-Gut-Brain Axis: From reveals significantly higher prevalence and numbers of Pseudomonas
Motility to Mood. Gastroenterology. 2021 Apr; 160(5): 1486–501. aeruginosa in irritable bowel syndrome. J Med Microbiol. 2011 Feb;60(Pt
2):236-45.
12. Phillips RJ, Powley TL. Innervation of the gastrointestinal tract: patterns
of aging. Auton Neurosci. 2007 Oct 30;136(1-2):1-19. 35. Pimentel M.F. Giamarellos-Bourboulis E.J, Pyleris E et al. The first large
scale deep sequencing of the duodenal microbiome in irritable bowel
13. D'Argenio V, Salvatore F. The role of the gut microbiome in the healthy syndrome reveals striking differences compared to healthy controls.
adult status. Clin Chim Acta. 2015 Dec 7;451(Pt A):97-102. Gastroenterology. 2013;144:S59.
14. Dinan TG, Stilling RM, Stanton C, Cryan JF. Collective unconscious: how 36. Lyte M. Microbial endocrinology and the microbiota-gut-brain axis. Adv
gut microbes shape human behavior. J Psychiatr Res. 2015 Apr;63:1-9. Exp Med Biol. 2014;817:3-24.
15. Donia MS, Cimermancic P, Schulze CJ, Wieland Brown LC, Martin J, 37. Juruena MF, Eror F, Cleare AJ, Young AH. The Role of Early Life Stress in
Mitreva M, et al. A systematic analysis of biosynthetic gene clusters in HPA Axis and Anxiety. Adv Exp Med Biol. 2020;1191:141-53.
the human microbiome reveals a common family of antibiotics. Cell.
2014 Sep 11;158(6):1402-14. 38. Cryan JF, Dinan TG. Mind-altering microorganisms: the impact of
the gut microbiota on brain and behaviour. Nat Rev Neurosci. 2012
16. Gill SR, Pop M, Deboy RT, Eckburg PB, Turnbaugh PJ, Samuel BS, et al. Oct;13(10):701-12.
Metagenomic analysis of the human distal gut microbiome. Science.
2006 Jun 2;312(5778):1355-9. 39. Claesson MJ, Cusack S, O'Sullivan O, Greene-Diniz R, de Weerd H,
Flannery E, et al. Composition, variability, and temporal stability of the
17. Nicholson JK, Holmes E, Wilson ID. Gut microorganisms, mammalian intestinal microbiota of the elderly. Proc Natl Acad Sci U S A. 2011 Mar
metabolism and personalized health care. Nat Rev Microbiol. 2005 15;108 Suppl 1(Suppl 1):4586-91.
May;3(5):431-8.
40. Fröhlich EE, Farzi A, Mayerhofer R, Reichmann F, Jačan A, Wagner B, et
18. Cryan JF, O'Riordan KJ, Cowan CSM, Sandhu KV, Bastiaanssen TFS, al. Cognitive impairment by antibiotic-induced gut dysbiosis: Analysis
Boehme M, et al. The Microbiota-Gut-Brain Axis. Physiol Rev. 2019 Oct of gut microbiota-brain communication. Brain Behav Immun. 2016
1;99(4):1877-2013. Aug;56:140-55.
19. Martin CR, Osadchiy V, Kalani A, Mayer EA. The Brain-Gut-Microbiome 41. Soto M, Herzog C, Pacheco JA, Fujisaka S, Bullock K, Clish CB, et al. Gut
Axis. Cell Mol Gastroenterol Hepatol. 2018 Apr 12;6(2):133-48. microbiota modulate neurobehavior through changes in brain insulin
sensitivity and metabolism. Mol Psychiatry. 2018 Dec;23(12):2287-301.
20. Mayer EA. Gut feelings: the emerging biology of gut-brain
communication. Nat Rev Neurosci. 2011 Jul 13;12(8):453-66. 42. Kennedy EA, King KY, Baldridge MT. Mouse Microbiota Models:
Comparing Germ-Free Mice and Antibiotics Treatment as Tools for
21. Rhee SH, Pothoulakis C, Mayer EA. Principles and clinical implications of Modifying Gut Bacteria. Front Physiol. 2018 Oct 31;9:1534.
the brain-gut-enteric microbiota axis. Nat Rev Gastroenterol Hepatol.
2009 May;6(5):306-14. 43. Barrett E, Kerr C, Murphy K, O'Sullivan O, Ryan CA, Dempsey EM, et
al. The individual-specific and diverse nature of the preterm infant
22. Tolhurst G, Heffron H, Lam YS, Parker HE, Habib AM, Diakogiannaki E, microbiota. Arch Dis Child Fetal Neonatal Ed. 2013 Jul;98(4):F334-40.
et al. Short-chain fatty acids stimulate glucagon-like peptide-1 secretion
via the G-protein-coupled receptor FFAR2. Diabetes. 2012 Feb;61(2):364- 44. Dominguez-Bello MG, Costello EK, Contreras M, Magris M, Hidalgo G,
71. Fierer N, et al. Delivery mode shapes the acquisition and structure of
the initial microbiota across multiple body habitats in newborns. Proc
23. Wang Y, Telesford KM, Ochoa-Repáraz J, Haque-Begum S, Christy M, Natl Acad Sci U S A. 2010 Jun 29;107(26):11971-5.
Kasper EJ, et al. An intestinal commensal symbiosis factor controls
neuroinflammation via TLR2-mediated CD39 signalling. Nat Commun. 45. Guaraldi F, Salvatori G. Effect of breast and formula feeding on gut
2014 Jul 21;5:4432. microbiota shaping in newborns. Front Cell Infect Microbiol. 2012 Oct
16;2:94.
78 DOI: 10.5937/Galmed2305075N

