Page 168 - MI-2-3
P. 168
Microbes & Immunity Hyphae and healthspan
158. Siddiqui MT, Cresci GAM. The immunomodulatory 170. Peng J, Wu Z. MTHFR act as a potential cancer biomarker
functions of butyrate. J Inflamm Res. 2021;14:6025-6041. in immune checkpoints blockades, heterogeneity, tumor
microenvironment and immune infiltration. Discov Oncol.
doi: 10.2147/JIR.S300989
2023;14(1):112.
159. Ivashkiv LB. IFNγ: Signalling, epigenetics and roles in
immunity, metabolism, disease and cancer immunotherapy. doi: 10.1007/s12672-023-00716-0
Nat Rev Immunol. 2018;18:545-558. 171. Reagan AM, Christensen KE, Haber A, et al. A common
doi: 10.1038/s41577-018-0029-z risk variant in the MTHFR gene contributes to age‐related
cerebrovascular dysfunction in VCID. Alzheimers Dement.
160. Liu S, Ren J, Ten Dijke P. Targeting TGFβ signal transduction 2020;16:e038657.
for cancer therapy. Sig Transduct Target Ther. 2021;6:8.
doi: 10.1002/alz.038657
doi: 10.1038/s41392-020-00436-9
172. Rodrigues RR, Gurung M, Li Z, et al. Transkingdom
161. Ku S, Haque MA, Jang MJ, et al. The role of Bifidobacterium interactions between Lactobacilli and hepatic mitochondria
in longevity and the future of probiotics. Food Sci Biotechnol. attenuate western diet-induced diabetes. Nat Commun.
2024;33:2097-2110. 2021;12:101.
doi: 10.1007/s10068-024-01631-y doi: 10.1038/s41467-020-20313-x
162. Badal VD, Vaccariello ED, Murray ER, et al. The gut 173. Li M, Chi X, Wang Y, Setrerrahmane S, Xie W, Xu H.
microbiome, aging, and longevity: A systematic review. Trends in insulin resistance: Insights into mechanisms and
Nutrients. 2020;12(12):3759. therapeutic strategy. Sig Transduct Target Ther. 2022;7:216.
doi: 10.3390/nu12123759 doi: 10.1038/s41392-022-01073-0
163. Yu R, Cao X, Sun L, et al. Inactivating histone deacetylase 174. Sohail MU, Yassine HM, Sohail A, Thani AAA. Impact of
HDA promotes longevity by mobilizing trehalose physical exercise on gut microbiome, inflammation, and
metabolism. Nat Commun. 2021;12:1981. the pathobiology of metabolic disorders. Rev Diabet Stud.
doi: 10.1038/s41467-021-22257-2 2019;15:35-48.
164. Seitz HK, Stickel F. Acetaldehyde as an underestimated risk doi: 10.1900/RDS.2019.15.35
factor for cancer development: Role of genetics in ethanol 175. Hu D, Liu J, Yu W, et al. Tryptophan intake, not always the
metabolism. Genes Nutr. 2010;5(2):121-128. more the better. Front Nutr. 2023;10:1140054.
doi: 10.1007/s12263-009-0154-1 doi: 10.3389/fnut.2023.1140054
165. Rehm J, Hasan OSM, Black SE, Shield KD, Schwarzinger M. 176. Nikolic DM, Dimitrijevic-Sreckovic V, Ranin LT, et al.
Alcohol use and dementia: A systematic scoping review. Homeostatic microbiome disruption as a cause of insulin
Alzheimers Res Ther. 2019;11(1):1. secretion disorders. Candida albicans, a new factor in
doi: 10.1186/s13195-018-0453-0 pathogenesis of diabetes: A STROBE compliant cross-
sectional study. Medicine (Baltimore). 2022;101(45):e31291.
166. Gibson A, Woodside JV, Young IS, et al. Alcohol increases
homocysteine and reduces B vitamin concentration doi: 10.1097/MD.0000000000031291
in healthy male volunteers--a randomized, crossover 177. Vazquez-Munoz R, Dongari-Bagtzoglou A. Anticandidal
intervention study. QJM. 2008;101(11):881-887. activities by Lactobacillus Species: An update on mechanisms
doi: 10.1093/qjmed/hcn112 of action. Front Oral Health. 2021;2:689382.
167. Hasan T, Arora R, Bansal AK, et al. Disturbed homocysteine doi: 10.3389/froh.2021.689382
metabolism is associated with cancer. Exp Mol Med. 178. Rastogi S, Singh A. Gut microbiome and human health:
2019;51:1-13.
Exploring how the probiotic genus Lactobacillus modulate
doi: 10.1038/s12276-019-0216-4 immune responses. Front Pharmacol. 2022;13:1042189.
168. Smith AD, Refsum H, Bottiglieri T, et al. Homocysteine doi: 10.3389/fphar.2022.1042189
and dementia: An international consensus statement. 179. Korkmaz H, Sirin FB, Torus B. Could there be a role of serum
J Alzheimers Dis. 2018;62(2):561-570. zonulin increase in the development of hypercalcemia in
doi: 10.3233/JAD-171042 primary hyperparathyroidism. Endocrine. 2021;72:234-238.
169. Hu X, Wang JB, Zhao Y, et al. Homocysteine as a trigger doi: 10.1007/s12020-020-02504-0
and potential therapeutic target for autoimmune diseases. 180. Lischka J, Schanzer A, Baumgartner M, de Gier C, Greber-
Autoimmun Rev. 2023;22(9):103389.
Platzer S, Zeyda M. Tryptophan metabolism is associated
doi: 10.1016/j.autrev.2023.103389 with bmi and adipose tissue mass and linked to metabolic
Volume 2 Issue 3 (2025) 160 doi: 10.36922/mi.4736

