[1] AKERS R M,NICKERSON S C.Mastitis and its impact on structure and function in the ruminant mammary gland[J].Journal of Mammary Gland Biology and Neoplasia,2011,16(4):275-289.

[2] VAN SOEST F J S,SANTMAN-BERENDS I M G A,LAM T J G M,et al.Failure and preventive costs of mastitis on Dutch dairy farms[J].Journal of Dairy Science,2016,99(10):8365-8374.

[3] ZADOKS R N,MIDDLETON J R,MCDOUGALL S,et al.Molecular epidemiology of mastitis pathogens of dairy cattle and comparative relevance to humans[J].Journal of Mammary Gland Biology and Neoplasia,2011,16(4):357-372.

[4] SANDHOLM M,KAARTINEN L,PYÖRÄLÄ S.Bovine mastitis-why does antibiotic therapy not always work? An overview[J].Journal of Veterinary Pharmacology and Therapeutics,1990,13(3):248-260.

[5] WITZEL D A.Rhythmic contractions of the teat sphincter in the bovine[J].Journal of Dairy Science,1965,48(2):251-252.
[6] SORDILLO L M,SHAFER-WEAVER K,DEROSA D.Immunobiology of the mammary gland[J].Journal of Dairy Science,1997,80(8):1851-1865.

[7] RAINARD P,RIOLLET C.Innate immunity of the bovine mammary gland[J].Veterinary Research,2006,37(3):369-400.

[8] RINALDI M,LI R W,CAPUCO A V.Mastitis associated transcriptomic disruptions in cattle[J].Veterinary Immunology and Immunopathology,2010,138(4):267-279.

[9] SCHUKKEN Y H,GÜNTHER J,FITZPATRICK J,et al.Host-response patterns of intramammary infections in dairy cows[J].Veterinary Immunology and Immunopathology,2011,144(3/4):270-289.
[10] MEADS M B,LI Z W,DALTON W S.A novel TNF receptor-associated factor 6 binding domain mediates NF-κB signaling by the common cytokine receptor β subunit[J].The Journal of Immunology,2010,185(3):1606-1615.

[11] HINES D J,CHOI H B,HINES R M,et al.Prevention of LPS-induced microglia activation,cytokine production and sickness behavior with TLR4 receptor interfering peptides[J].PLoS One,2013,8(3):e60388.
[12] CALZADO M A,BACHER S,SCHMITZ M L.NF-κB inhibitors for the treatment of inflammatory diseases and cancer[J].Current Medicinal Chemistry,2007,14(3):367-376.

[13] KERRO DEGO O,OLIVER S P,ALMEIDA R A.Host-pathogen gene expression profiles during infection of primary bovine mammary epithelial cells with
Escherichia coli strains associated with acute or persistent bovine mastitis[J].Veterinary Microbiology,2012,155(2/3/4):291-297.
[14] STREIT F,KOCH F,LARANJEIRA M C M,et al.Production of fungal chitosan in liquid cultivation using apple pomace as substrate[J].Brazilian Journal of Microbiology,2009,40(1):20-25.

[15] SONG C,YU H,ZHANG M,et al.Physicochemical properties and antioxidant activity of chitosan from the blowfly
Chrysomya megacephala larvae[J].International Journal of Biological Macromolecules,2013,60:347-354.
[16] ANITHA A,SOWMYA S,KUMAR P T S,et al.Chitin and chitosan in selected biomedical applications[J].Progress in Polymer Science,2014,39(9):1644-1667.

[17] KONG X F,ZHOU X L,LIAN G Q,et al.Dietary supplementation with chitooligosaccharides alters gut microbiota and modifies intestinal luminal metabolites in weaned
Huanjiang mini-piglets[J].Livestock Science,2014,160:97-101.
[18] TOMIDA H,FUJII T,FURUTANI N,et al.Antioxidant properties of some different molecular weight chitosans[J].Carbohydrate Research,2009,344(13):1690-1696.

[19] LI T,NA R,YU P,et al.Effects of dietary supplementation of chitosan on immune and antioxidative function in beef cattle[J].Czech Journal of Animal Science,2015,60(1):38-44.
[20] 毕崇亮.硒对金黄色葡萄球菌诱导的巨噬细胞和奶牛乳腺上皮细胞炎性损伤的保护作用研究[D].博士学位论文.扬州:扬州大学,2016.
[21] 杨德莲,童津津,孙铭维,等.无乳链球菌通过抑制酪氨酸激酶/信号转导及转录激活因子和哺乳动物雷帕霉素靶蛋白信号通路影响奶牛乳腺上皮细胞乳蛋白的合成[J].动物营养学报,2019,31(8):3706-3718.
[22] FU Y H,LIU B,FENG X S,et al.Lipopolysaccharide increases Toll-like receptor 4 and downstream Toll-like receptor signaling molecules expression in bovine endometrial epithelial cells[J].Veterinary Immunology and Immunopathology,2013,151(1/2):20-27.
[23] PORCHERIE A,CUNHA P,TROTEREAU A,et al.Repertoire of
Escherichia coli agonists sensed by innate immunity receptors of the bovine udder and mammary epithelial cells[J].Veterinary Research,2012,43:14.
[24] LI F Y,FU Y H,LIU B,et al.Stevioside suppressed inflammatory cytokine secretion by downregulation of NF-κB and MAPK signaling pathways in LPS-stimulated RAW264.7 cells[J].Inflammation,2012,35(5):1669-1675.

[25] BANNERMAN D D.Pathogen-dependent induction of cytokines and other soluble inflammatory mediators during intramammary infection of dairy cows[J].Journal of Animal Science,2009,87(Suppl.13):10-25.
[26] ZBINDEN C,STEPHAN R,JOHLER S,et al.The Inflammatory response of primary bovine mammary epithelial cells to
Staphylococcus aureus strains is linked to the bacterial phenotype[J].PLoS One,2014,9(1):e87374.
[27] KIM M S,SUNG M J,SEO S B,et al.Water-soluble chitosan inhibits the production of pro-inflammatory cytokine in human astrocytoma cells activated by amyloid β peptide and interleukin-1β[J].Neuroscience Letters,2002,321(1/2):105-109.
[28] ZHAI X C,YANG X,ZOU P,et al.Protective effect of chitosan oligosaccharides against cyclophosphamide-induced immunosuppression and irradiation injury in mice[J].Journal of Food Science,2018,83(2):535-542.

[29] YOON H J,MOON M E,PARK H S,et al.Chitosan oligosaccharide (COS) inhibits LPS-induced inflammatory effects in RAW 264.7 macrophage cells[J].Biochemical and Biophysical Research Communications,2007,358(3):954-959.

[30] YANG W,ZERBE H,PETZL W,et al.Bovine TLR2 and TLR4 properly transduce signals from
Staphylococcus aureus and
E. coli,but
S. aureus fails to both activate NF-κB in mammary epithelial cells and to quickly induce TNFα and interleukin-8(
CXCL8) expression in the udder[J].Molecular Immunology,2008,45(5):1385-1397.

[31] OVIEDO-BOYSO J,VALDEZ-ALARCÓN J J,CAJERO-JUÁREZ M,et al.Innate immune response of bovine mammary gland to pathogenic bacteria responsible for mastitis[J].Journal of Infection,2007,54(4):399-409.

[32] VUNTA H,DAVIS F,PALEMPALLI U D,et al.The anti-inflammatory effects of selenium are mediated through 15-deoxy-Δ
12,14-prostaglandin J2 in macrophages[J].The Journal of Biological Chemistry,2007,282(25):17964-17973.

[33] GHOSH S,HAYDEN M S.New regulators of NF-κB in inflammation[J].Nature Reviews Immunology,2008,8(11):837-848.

[34] LI J,PEET G W,BALZARANO D,et al.Novel NEMO/IκB kinase and NF-κB target genes at the pre-B to immature B cell transition[J].The Journal of Biological Chemistry,2001,276(21):18579-18590.

[35] LI X,MASSA P E,HANIDU A,et al.IKKα,IKKβ,and NEMO/IKKγ are each required for the NF-κB-mediated inflammatory response program[J].The Journal of Biological Chemistry,2002,277(47):45129-45140.

[36] FANG L,WU H M,DING P S,et al.TLR2 mediates phagocytosis and autophagy through JNK signaling pathway in
Staphylococcus aureus-stimulated RAW264.7 cells[J].Cellular Signalling,2014,26(4):806-814.

[37] ZHANG W,ZHANG R X,WANG T C,et al.Selenium inhibits LPS-induced pro-inflammatory gene expression by modulating MAPK and NF-κB signaling pathways in mouse mammary epithelial cells in primary culture[J].Inflammation,2014,37(2):478-485.

[38] CROY C H,BERGQVIST S,HUXFORD T,et al.Biophysical characterization of the free IκBα ankyrin repeat domain in solution[J].Protein Science,2004,13(7):1767-1777.

[39] HOFFMANN A,LEVCHENKO A,SCOTT M L,et al.The IκB-NF-κB signaling module:temporal control and selective gene activation[J].Science,2002,298(5596):1241-1245.

[40] KHODAGHOLI F,EFTEKHARZADEH B,MAGHSOUDI N,et al.Chitosan prevents oxidative stress-induced amyloid β formation and cytotoxicity in NT2 neurons:involvement of transcription factors Nrf2 and NF-κB[J].Molecular and Cellular Biochemistry,2010,337(1/2):39-51.
[41] CARIO E,ROSENBERG I M,BRANDWEIN S L,et al.Lipopolysaccharide activates distinct signaling pathways in intestinal epithelial cell lines expressing Toll-like receptors[J].The Journal of Immunology,2000,164(2):966-972.

[42] BEAUDOIN T,LAFAYETTE S,ROUSSEL L,et al.The level of p38α mitogen-activated protein kinase activation in airway epithelial cells determines the onset of innate immune responses to planktonic and biofilm
Pseudomonas aeruginosa[J].The Journal of Infectious Diseases,2013,207(10):1544-1555.

[43] PANGESTUTI R,BAK S S,KIM S K.Attenuation of pro-inflammatory mediators in LPS-stimulated BV2 microglia by chitooligosaccharides via the MAPK signaling pathway[J].International Journal of Biological Macromolecules,2011,49(4):599-606.