[1] Chun J, Toldi G.The impact of short-chain fatty acids on neonatal regulatory T cells[J].Nutrients, 2022, 14(18):3670-3679. [2] Verhasselt V.Breastfeeding, a personalized medicine with influence on short-and long-term immune health[J].Nestle Nutr Inst Workshop Ser, 2020,(94):48-58. [3] Yokanovich LT, Newberry RD, Knoop KA.Regulation of oral antigen delivery early in life: Implications for oral tolerance and food allergy[J].Clin Exp Allergy, 2021, 51(4):518-526. [4] Acevedo N, Alashkar Alhamwe B, Caraballo L, et al.Perinatal and early-life nutrition, epigenetics, and allergy[J].Nutrients, 2021, 13(3):724. [5] Winkler B, Aulenbach J, Meyer T, et al.Formula-feeding is associated with shift towards Th1 cytokines[J].Eur J Nutr, 2015, 54(1):129-138. [6] Jarvinen KM, Martin H, Oyoshi MK.Immunomodulatory effects of breast milk on food allergy[J].Ann Allergy Asthma Immunol, 2019, 123(2):133-143. [7] Ogra P, Welliver RC.Effects of early environment on mucosal immunologic homeostasis, subsequent immune responses and disease outcome[J].Nestle Nutr Workshop Ser Pediatr Program, 2008(61):145-181. [8] Johnson CC, Ownby DR.The infant gut bacterial microbiota and risk of pediatric asthma and allergic diseases[J].Transl Res, 2017, 179:60-70. [9] Plaza-Diaz J, Fontana L, Gil A.Human milk oligosaccharides and immune system development[J].Nutrients, 2018, 10(8):1038. [10] 俞昊男, 刘志华.肠道微生物与黏膜免疫研究的前沿进展[J].中国免疫学杂志, 2019, 35(16):1921-1930. Yu HN, Liu ZH.Recent progress in intestinalmicrobiota and mucosal immunity[J].Chinese Journal of Immunology, 2019, 35(16):1921-1930.(in Chinese) [11] 杨阳, 何欣蓉, 刘萌,等.肠道菌群与食物过敏性疾病研究进展[J].食品安全质量检测学报, 2020, 11(23):8828-8835. Yang Y, He XR, Liu M, et al.Research advance of the relationship between gutmicrobiota and food allergic diseases[J].Journal of Food Safety and Quality, 2020, 11(23):8828-8835.(in Chinese) [12] Sproat T, Payne RP, Embleton ND, et al.T cells in preterm infants and the influence of milk Diet[J].Front Immunol, 2020(11):1035. [13] Goenka A, Kollmann TR.Development of immunity in early life[J].J Infect, 2015, 71(Suppl 1):3884-3898. [14] Zhu X, Zhu J.CD4 T helper cell subsets and related human immunological disorders[J].Int J Mol Sci, 2020, 21(21):8011. [15] Butcher MJ, Zhu J.Recent advances in understanding the Th1/Th2 effector choice[J].Fac Rev, 2021(10):30. [16] Asarat M, Apostolopoulos V, Vasiljevic T, et al.Short-chain fatty acids regulate cytokines and TH17/Treg cells in human peripheral blood mononuclear cells in vitro[J].Immunol Invest, 2016, 45(3):205-222. [17] Li N, Xie Q, Zhao L, et al.Human milk and infant formula modulate the intestinal microbiota and immune systems of human microbiota-associated mice[J].Food Funct, 2021, 12(6):2784-2798. [18] Cukrowska B, Bier?a JB, Zakrzewska M, et al.The relationship between the infant gut microbiota and allergy.the role of bifidobacterium breve and prebiotic oligosaccharides in the activation of anti-allergic mechanisms in early life[J].Nutrients, 2020, 12(4):946. [19] Moraes-Pinto MI, Suano-Souza F, Aranda CS.Immune system: development and acquisition of immunological competence[J].J Pediatr (Rio J), 2021, 97(Suppl 1):59-66. [20] Laouar A.Maternal leukocytes and infant immune programming during breastfeeding[J].Trends Immunol, 2020, 41(3):225-239. [21] Tlaskalová-Hogenová H, Kverka M, Hrdy J.Immunomodulatory components of human colostrum and milk[J].Nestle Nutr Inst Workshop Ser, 2020(94):38-47. [22] Burris AD, Pizzarello C, J?rvinen KM.Immunologic components in human milk and allergic diseases with focus on food allergy[J].Semin Perinatol, 2021, 45(2):151386. [23] Oddy WH.Breastfeeding, childhood asthma, and allergic disease[J].Ann Nutr Metab, 2017, 70(Suppl 2):26-36. [24] Rio-Aige K, Azagra-Boronat I, Castell M, et al.The breast milk immunoglobulinome[J].Nutrients, 2021, 13(6):1810. [25] Donovan SM, Comstock SS.Human milk oligosaccharides influence neonatal mucosal and systemic immunity[J].Ann Nutr Metab, 2016, 69(Suppl 2):42-51. [26] Carr LE, Virmani MD, Rosa F, et al.Role of human milk bioactives on infants' gut and immune health[J].Front Immunol, 2021(12):604080. [27] Lyons KE, Ryan CA, Dempsey EM, et al.Breast milk, a source of beneficial microbes and associated benefits for infant health[J].Nutrients, 2020, 12(4):1039. [28] van Stigt AH, Oude Rengerink K, Bloemenkamp KWM, et al.Analysing the protection from respiratory tract infections and allergic diseases early in life by human milk components: The PRIMA birth cohort[J].BMC Infect Dis, 2022, 22(1):152. [29] 张琦敏, 倪娓娓, 张欣,等.母乳成分影响婴儿肠道屏障功能的研究进展[J].食品科学, 2020, 41(9):194-203. Zhang QM, Ni WW, Zhang X, et al.Progress in understanding the effects of human milk components on intestinal barrier function in infants[J].Food Science, 2020, 41(9):194-203.(in Chinese) [30] 陈庆学, 石丰毅, 赵丽娜,等.母乳低聚糖的体内代谢与体外合成研究进展[J].食品科学, 2021, 42(19):379-387. Chen QX, Shi FY, Zhao LN, et al.Recent advances in vivo metabolism and in vitro synthesis of breast milk oligosaccharides[J].Food Science, 2021, 42(19):379-387.(in Chinese) [31] Kononova S, Litvinova E, Vakhitov T, et al.Acceptive immunity: The role of fucosylated glycans in human host-microbiome interactions[J].Int J Mol Sci, 2021, 22(8):3854. [32] Orczyk-Pawilowicz M, Lis-Kuberka J.The impact of dietary fucosylated oligosaccharides and glycoproteins of human milk on infant well-being[J].Nutrients, 2020, 12(4):1105. [33] Ayechu-Muruzabal V, Overbeek SA, Kostadinova AI, et al.Exposure of intestinal epithelial cells to 2'-fucosyllactose and CPG enhances galectin release and instructs dendritic cells to drive Th1 and regulatory-type immune development[J].Biomolecules, 2020, 10(5):784. [34] Wang Y, Ze X, Rui B, et al.Studies and application of sialylated milk components on regulating neonatal gut microbiota and health[J].Front Nutr, 2021,(8):766606. [35] Kim M, Galan C, Hill AA, et al.Critical role for the microbiota in CX(3)CR1(+) intestinal mononuclear phagocyte regulation of intestinal T cell responses[J].Immunity, 2018, 49(1):151-163.e155. [36] 江沿, 詹学.肠道菌群与儿童食物过敏研究进展[J].临床儿科杂志, 2021, 39(12):956-960. Jiang Y, Zhang X.Advances in researching the relationship between gutmicrobiota and food allergy in children[J].Journal of Clinical Pediatrics, 2021, 39(12):956-960.(in Chinese) [37] Le Doare K, Holder B, Bassett A, et al.Mother's milk: a purposeful contribution to the development of the infant microbiota and immunity[J].Front Immunol, 2018(9):361. [38] Arboleya S, Watkins C, Stanton C, et al.Gut bifidobacteria populations in human health and aging[J].Front Microbiol, 2016(7):1204. [39] Wang W, Luo X, Zhang Q, et al.Bifidobacterium infantis relieves allergic asthma in mice by regulating Th1/Th2[J].Med Sci Monit, 2020(26):e920583. [40] Henrick BM, Rodriguez L, Lakshmikanth T, et al.Bifidobacteria-mediated immune system imprinting early in life[J].Cell, 2021, 184(15):3884-3898. [41] Round JL, Mazmanian SK.Inducible foxp3+ regulatory T-cell development by a commensal bacterium of the intestinal microbiota[J].Proc Natl Acad Sci USA, 2010, 107(27):12204-12209. [42] Hsu PS, Nanan R.Does breast milk nurture T lymphocytes in their cradle?[J].Front Pediatr, 2018(6):268. [43] Zuurveld M, van Witzenburg NP, Garssen J, et al.Immunomodulation by human milk oligosaccharides:The potential role in prevention of allergic diseases[J].Front Immunol, 2020(11):801. [44] 金紫璇, 盛晓阳.人乳低聚糖对婴儿肠道菌群影响的研究进展[J].中华实用儿科临床杂志, 2022, 37(3):227-230. Jin ZX, Sheng XY.Research progress on the effects of human milk oligosaccharides on infant intestinalflor[J].Chinese Journal of Applied Clinical Pediatrics, 2022, 37(3):227-230.(in Chinese) [45] McKeen S, Young W, Mullaney J, et al.Infant Complementary Feeding of Prebiotics for theMicrobiome and Immunity[J].Nutrients, 2019, 11(2):364. [46] Luu M, Visekruna A.Short-chain fatty acids: Bacterial messengers modulating the immunometabolism of T cells[J].Eur J Immunol, 2019, 49(6):842-848. |