Page 113 - Read Online
P. 113
Page 20 of 22 Borrego-Ruiz et al. Microbiome Res Rep. 2025;4:20 https://dx.doi.org/10.20517/mrr.2024.78
124. Torres J, Hu J, Seki A, et al. Infants born to mothers with IBD present with altered gut microbiome that transfers abnormalities of the
adaptive immune system to germ-free mice. Gut. 2020;69:42-51. DOI
125. Fritsch J, Abreu MT. The microbiota and the immune response: what is the chicken and what is the egg? Gastrointest Endosc Clin N
Am. 2019;29:381-93. DOI
126. Indrio F, Martini S, Francavilla R, et al. Epigenetic matters: the link between early nutrition, microbiome, and long-term health
development. Front Pediatr. 2017;5:178. DOI PubMed PMC
127. Mischke M, Plösch T. More than just a gut instinct-the potential interplay between a baby’s nutrition, its gut microbiome, and the
epigenome. Am J Physiol Regul Integr Comp Physiol. 2013;304:R1065-9. DOI PubMed
128. Bavineni M, Wassenaar TM, Agnihotri K, Ussery DW, Lüscher TF, Mehta JL. Mechanisms linking preterm birth to onset of
cardiovascular disease later in adulthood. Eur Heart J. 2019;40:1107-12. DOI PubMed PMC
129. Kurilshikov A, van den Munckhof ICL, Chen L, et al; LifeLines DEEP Cohort Study, BBMRI Metabolomics Consortium. Gut
microbial associations to plasma metabolites linked to cardiovascular phenotypes and risk. Circ Res. 2019;124:1808-20. DOI
130. Zhao Y, Wang Z. Gut microbiome and cardiovascular disease. Curr Opin Cardiol. 2020;35:207-18. DOI PubMed PMC
131. Hansson GK, Hermansson A. The immune system in atherosclerosis. Nat Immunol. 2011;12:204-12. DOI PubMed
132. Legein B, Temmerman L, Biessen EA, Lutgens E. Inflammation and immune system interactions in atherosclerosis. Cell Mol Life
Sci. 2013;70:3847-69. DOI PubMed PMC
133. Ziganshina EE, Sharifullina DM, Lozhkin AP, Khayrullin RN, Ignatyev IM, Ziganshin AM. Bacterial communities associated with
atherosclerotic plaques from russian individuals with atherosclerosis. PLoS One. 2016;11:e0164836. DOI PubMed PMC
134. Jebari-Benslaiman S, Galicia-García U, Larrea-Sebal A, et al. Pathophysiology of atherosclerosis. Int J Mol Sci. 2022;23:3346. DOI
PubMed PMC
135. Eshghjoo S, Jayaraman A, Sun Y, Alaniz RC. Microbiota-mediated immune regulation in atherosclerosis. Molecules. 2021;26:179.
DOI PubMed PMC
136. Sun X, Jiao X, Ma Y, et al. Trimethylamine N-oxide induces inflammation and endothelial dysfunction in human umbilical vein
endothelial cells via activating ROS-TXNIP-NLRP3 inflammasome. Biochem Biophys Res Commun. 2016;481:63-70. DOI
137. Hantsoo L, Zemel BS. Stress gets into the belly: early life stress and the gut microbiome. Behav Brain Res. 2021;414:113474. DOI
PubMed PMC
138. LeMoult J, Humphreys KL, Tracy A, Hoffmeister JA, Ip E, Gotlib IH. Meta-analysis: exposure to early life stress and risk for
depression in childhood and adolescence. J Am Acad Child Adolesc Psychiatry. 2020;59:842-55. DOI PubMed PMC
139. Nikkheslat N, McLaughlin AP, Hastings C, et al; NIMA Consortium. Childhood trauma, HPA axis activity and antidepressant
response in patients with depression. Brain Behav Immun. 2020;87:229-37. DOI PubMed PMC
140. depressive disorder. Neuroreport. 2018;29:417-25. DOI
Coley EJL, Mayer EA, Osadchiy V, et al. Early life adversity predicts brain-gut alterations associated with increased stress and mood.
Neurobiol Stress. 2021;15:100348. DOI PubMed PMC
141. Borrego-Ruiz A, Borrego JJ. An updated overview on the relationship between human gut microbiome dysbiosis and psychiatric and
psychological disorders. Prog Neuropsychopharmacol Biol Psychiatry. 2024;128:110861. DOI PubMed
142. Tan X, Zhang L, Wang D, et al. Influence of early life stress on depression: from the perspective of neuroendocrine to the
participation of gut microbiota. Aging. 2021;13:25588-601. DOI PubMed PMC
143. Yang Z, Li J, Gui X, et al. Updated review of research on the gut microbiota and their relation to depression in animals and human
beings. Mol Psychiatry. 2020;25:2759-72. DOI
144. Kelly JR, Borre Y, O’Brien C, et al. Transferring the blues: depression-associated gut microbiota induces neurobehavioural changes
in the rat. J Psychiatr Res. 2016;82:109-18. DOI
145. Simpson CA, Diaz-Arteche C, Eliby D, Schwartz OS, Simmons JG, Cowan CSM. The gut microbiota in anxiety and depression - a
systematic review. Clin Psychol Rev. 2021;83:101943. DOI PubMed
146. Zheng P, Yang J, Li Y, et al. Gut microbial signatures can discriminate unipolar from bipolar depression. Adv Sci. 2020;7:1902862.
DOI PubMed PMC
147. Chen Z, Li J, Gui S, et al. Comparative metaproteomics analysis shows altered fecal microbiota signatures in patients with major
148. Chung YE, Chen HC, Chou HL, et al. Exploration of microbiota targets for major depressive disorder and mood related traits. J
Psychiatr Res. 2019;111:74-82. DOI
149. Jiang H, Ling Z, Zhang Y, et al. Altered fecal microbiota composition in patients with major depressive disorder. Brain Behav
Immun. 2015;48:186-94. DOI
150. Lai WT, Deng WF, Xu SX, et al. Shotgun metagenomics reveals both taxonomic and tryptophan pathway differences of gut
microbiota in major depressive disorder patients. Psychol Med. 2021;51:90-101. DOI
151. Rong H, Xie XH, Zhao J, et al. Similarly in depression, nuances of gut microbiota: evidences from a shotgun metagenomics
sequencing study on major depressive disorder versus bipolar disorder with current major depressive episode patients. J Psychiatr
Res. 2019;113:90-9. DOI
152. Zheng P, Zeng B, Zhou C, et al. Gut microbiome remodeling induces depressive-like behaviors through a pathway mediated by the
host’s metabolism. Mol Psychiatry. 2016;21:786-96. DOI PubMed
153. Stevens BR, Roesch L, Thiago P, et al. Depression phenotype identified by using single nucleotide exact amplicon sequence variants
of the human gut microbiome. Mol Psychiatry. 2021;26:4277-87. DOI PubMed PMC

