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Published in: Journal of Mammary Gland Biology and Neoplasia 2/2014

01-07-2014

Inflammatory Mediators in Mastitis and Lactation Insufficiency

Authors: Wendy V. Ingman, Danielle J. Glynn, Mark R. Hutchinson

Published in: Journal of Mammary Gland Biology and Neoplasia | Issue 2/2014

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Abstract

Mastitis is a common inflammatory disease during lactation that causes reduced milk supply. A growing body of evidence challenges the central role of pathogenic bacteria in mastitis, with disease severity associated with markers of inflammation rather than infection. Inflammation in the mammary gland may be triggered by microbe-associated molecular patterns (MAMPs) as well as danger-associated molecular patterns (DAMPs) binding to pattern recognition receptors such as the toll-like receptors (TLRs) on the surface of mammary epithelial cells and local immune cell populations. Activation of the TLR4 signalling pathway and downstream nuclear factor kappa B (NFkB) is critical to mediating local mammary gland inflammation and systemic immune responses in mouse models of mastitis. However, activation of NFkB also induces epithelial cell apoptosis and reduced milk protein synthesis, suggesting that inflammatory mediators activated during mastitis promote partial involution. Perturbed milk flow, maternal stress and genetic predisposition are significant risk factors for mastitis, and could lead to a heightened TLR4-mediated inflammatory response, resulting in increased susceptibility and severity of mastitis disease in the context of low MAMP abundance. Therefore, heightened host inflammatory signalling may act in concert with pathogenic or commensal bacterial species to cause both the inflammation associated with mastitis and lactation insufficiency. Here, we present an alternate paradigm to the widely held notion that breast inflammation is driven principally by infectious bacterial pathogens, and suggest there may be other therapeutic strategies, apart from the currently utilised antimicrobial agents, that could be employed to prevent and treat mastitis in women.
Literature
1.
go back to reference Tang, L., et al., Mastitis in Chinese Breastfeeding Mothers: A Prospective Cohort Study. Breastfeed Med, 2013. Tang, L., et al., Mastitis in Chinese Breastfeeding Mothers: A Prospective Cohort Study. Breastfeed Med, 2013.
2.
3.
go back to reference Kinlay JR, O’Connell DL, Kinlay S. Risk factors for mastitis in breastfeeding women: results of a prospective cohort study. Aust N Z J Public Health. 2001;25(2):115–20.PubMedCrossRef Kinlay JR, O’Connell DL, Kinlay S. Risk factors for mastitis in breastfeeding women: results of a prospective cohort study. Aust N Z J Public Health. 2001;25(2):115–20.PubMedCrossRef
4.
go back to reference Foxman B et al. Lactation mastitis: occurrence and medical management among 946 breastfeeding women in the United States. Am J Epidemiol. 2002;155(2):103–14.PubMedCrossRef Foxman B et al. Lactation mastitis: occurrence and medical management among 946 breastfeeding women in the United States. Am J Epidemiol. 2002;155(2):103–14.PubMedCrossRef
5.
go back to reference Vogel A, Hutchison BL, Mitchell EA. Mastitis in the first year postpartum. Birth. 1999;26(4):218–25.PubMedCrossRef Vogel A, Hutchison BL, Mitchell EA. Mastitis in the first year postpartum. Birth. 1999;26(4):218–25.PubMedCrossRef
6.
go back to reference Wambach KA. Lactation mastitis: a descriptive study of the experience. J Hum Lact. 2003;19(1):24–34.PubMedCrossRef Wambach KA. Lactation mastitis: a descriptive study of the experience. J Hum Lact. 2003;19(1):24–34.PubMedCrossRef
7.
go back to reference Amir LH et al. Incidence of breast abscess in lactating women: report from an Australian cohort. BJOG. 2004;111(12):1378–81.PubMedCrossRef Amir LH et al. Incidence of breast abscess in lactating women: report from an Australian cohort. BJOG. 2004;111(12):1378–81.PubMedCrossRef
8.
go back to reference Fetherston C. Characteristics of lactation mastitis in a Western Australian cohort. Breastfeed Rev. 1997;5(2):5–11.PubMed Fetherston C. Characteristics of lactation mastitis in a Western Australian cohort. Breastfeed Rev. 1997;5(2):5–11.PubMed
10.
11.
go back to reference Filteau SM et al. Milk cytokines and subclinical breast inflammation in Tanzanian women: effects of dietary red palm oil or sunflower oil supplementation. Immunology. 1999;97(4):595–600.PubMedCentralPubMedCrossRef Filteau SM et al. Milk cytokines and subclinical breast inflammation in Tanzanian women: effects of dietary red palm oil or sunflower oil supplementation. Immunology. 1999;97(4):595–600.PubMedCentralPubMedCrossRef
12.
go back to reference Morton JA. The clinical usefulness of breast milk sodium in the assessment of lactogenesis. Pediatrics. 1994;93(5):802–6.PubMed Morton JA. The clinical usefulness of breast milk sodium in the assessment of lactogenesis. Pediatrics. 1994;93(5):802–6.PubMed
13.
go back to reference Aryeetey RN et al. Subclinical mastitis is common among Ghanaian women lactating 3 to 4 months postpartum. J Hum Lact. 2008;24(3):263–7.PubMedCrossRef Aryeetey RN et al. Subclinical mastitis is common among Ghanaian women lactating 3 to 4 months postpartum. J Hum Lact. 2008;24(3):263–7.PubMedCrossRef
14.
go back to reference AIHW, 2010 Australian national infant feeding survey: indicator results. 2011: Cat. no. PHE 156. Australian Institute for Health and Welfare, Canberra. AIHW, 2010 Australian national infant feeding survey: indicator results. 2011: Cat. no. PHE 156. Australian Institute for Health and Welfare, Canberra.
16.
go back to reference Osterman KL, Rahm VA. Lactation mastitis: bacterial cultivation of breast milk, symptoms, treatment, and outcome. J Hum Lact. 2000;16(4):297–302.PubMedCrossRef Osterman KL, Rahm VA. Lactation mastitis: bacterial cultivation of breast milk, symptoms, treatment, and outcome. J Hum Lact. 2000;16(4):297–302.PubMedCrossRef
17.
18.
go back to reference Delgado S et al. Staphylococcus epidermidis strains isolated from breast milk of women suffering infectious mastitis: potential virulence traits and resistance to antibiotics. BMC Microbiol. 2009;9:82.PubMedCentralPubMedCrossRef Delgado S et al. Staphylococcus epidermidis strains isolated from breast milk of women suffering infectious mastitis: potential virulence traits and resistance to antibiotics. BMC Microbiol. 2009;9:82.PubMedCentralPubMedCrossRef
19.
go back to reference Carmichael AR, Dixon JM. Is lactation mastitis and shooting breast pain experienced by women during lactation caused by Candida albicans? Breast. 2002;11(1):88–90.PubMedCrossRef Carmichael AR, Dixon JM. Is lactation mastitis and shooting breast pain experienced by women during lactation caused by Candida albicans? Breast. 2002;11(1):88–90.PubMedCrossRef
20.
go back to reference Fetherston C. Mastitis in lactating women: physiology or pathology? Breastfeed Rev. 2001;9(1):5–12.PubMed Fetherston C. Mastitis in lactating women: physiology or pathology? Breastfeed Rev. 2001;9(1):5–12.PubMed
21.
go back to reference Lindberg E et al. Long-time persistence of superantigen-producing Staphylococcus aureus strains in the intestinal microflora of healthy infants. Pediatr Res. 2000;48(6):741–7.PubMedCrossRef Lindberg E et al. Long-time persistence of superantigen-producing Staphylococcus aureus strains in the intestinal microflora of healthy infants. Pediatr Res. 2000;48(6):741–7.PubMedCrossRef
22.
go back to reference Kluytmans J, van Belkum A, Verbrugh H. Nasal carriage of Staphylococcus aureus: epidemiology, underlying mechanisms, and associated risks. Clin Microbiol Rev. 1997;10(3):505–20.PubMedCentralPubMed Kluytmans J, van Belkum A, Verbrugh H. Nasal carriage of Staphylococcus aureus: epidemiology, underlying mechanisms, and associated risks. Clin Microbiol Rev. 1997;10(3):505–20.PubMedCentralPubMed
23.
go back to reference Zdrazilek J. Staphylococcus aureus at a maternity ward. I. Colonization of mothers and neonates and survival of various S. aureus types in colonized individuals. J Hyg Epidemiol Microbiol Immunol. 1988;32(1):49–57.PubMed Zdrazilek J. Staphylococcus aureus at a maternity ward. I. Colonization of mothers and neonates and survival of various S. aureus types in colonized individuals. J Hyg Epidemiol Microbiol Immunol. 1988;32(1):49–57.PubMed
24.
25.
go back to reference Thomsen AC, Espersen T, Maigaard S. Course and treatment of milk stasis, noninfectious inflammation of the breast, and infectious mastitis in nursing women. Am J Obstet Gynecol. 1984;149(5):492–5.PubMedCrossRef Thomsen AC, Espersen T, Maigaard S. Course and treatment of milk stasis, noninfectious inflammation of the breast, and infectious mastitis in nursing women. Am J Obstet Gynecol. 1984;149(5):492–5.PubMedCrossRef
26.
go back to reference Thomsen AC, Hansen KB, Moller BR. Leukocyte counts and microbiologic cultivation in the diagnosis of puerperal mastitis. Am J Obstet Gynecol. 1983;146(8):938–41.PubMed Thomsen AC, Hansen KB, Moller BR. Leukocyte counts and microbiologic cultivation in the diagnosis of puerperal mastitis. Am J Obstet Gynecol. 1983;146(8):938–41.PubMed
27.
go back to reference WHO, Mastitis: causes and management. WHO/FCH/CAH/00, ed. D.o.C.a.A.h.a. Development. 2000, Geneva, Switerzland: World Health Organization. WHO, Mastitis: causes and management. WHO/FCH/CAH/00, ed. D.o.C.a.A.h.a. Development. 2000, Geneva, Switerzland: World Health Organization.
28.
go back to reference Crepinsek, M.A., et al., Interventions for preventing mastitis after childbirth. Cochrane Database Syst Rev, 2012;10: p. CD007239. Crepinsek, M.A., et al., Interventions for preventing mastitis after childbirth. Cochrane Database Syst Rev, 2012;10: p. CD007239.
29.
go back to reference Jahanfar, S., C.J. Ng, and C.L. Teng, Antibiotics for mastitis in breastfeeding women. Cochrane Database Syst Rev, 2013. 2: p. CD00545. Jahanfar, S., C.J. Ng, and C.L. Teng, Antibiotics for mastitis in breastfeeding women. Cochrane Database Syst Rev, 2013. 2: p. CD00545.
30.
go back to reference Kvist LJ. Toward a clarification of the concept of mastitis as used in empirical studies of breast inflammation during lactation. J Hum Lact. 2010;26(1):53–9.PubMedCrossRef Kvist LJ. Toward a clarification of the concept of mastitis as used in empirical studies of breast inflammation during lactation. J Hum Lact. 2010;26(1):53–9.PubMedCrossRef
31.
go back to reference Fetherston CM, Lai CT, Hartmann PE. Relationships between symptoms and changes in breast physiology during lactation mastitis. Breastfeed Med. 2006;1(3):136–45.PubMedCrossRef Fetherston CM, Lai CT, Hartmann PE. Relationships between symptoms and changes in breast physiology during lactation mastitis. Breastfeed Med. 2006;1(3):136–45.PubMedCrossRef
32.
go back to reference Fetherston CM, Wells JI, Hartmann PE. Severity of mastitis symptoms as a predictor of C-reactive protein in milk and blood during lactation. Breastfeed Med. 2006;1(3):127–35.PubMedCrossRef Fetherston CM, Wells JI, Hartmann PE. Severity of mastitis symptoms as a predictor of C-reactive protein in milk and blood during lactation. Breastfeed Med. 2006;1(3):127–35.PubMedCrossRef
33.
go back to reference Zheng J, Watson AD, Kerr DE. Genome-wide expression analysis of lipopolysaccharide-induced mastitis in a mouse model. Infect Immun. 2006;74(3):1907–15.PubMedCentralPubMedCrossRef Zheng J, Watson AD, Kerr DE. Genome-wide expression analysis of lipopolysaccharide-induced mastitis in a mouse model. Infect Immun. 2006;74(3):1907–15.PubMedCentralPubMedCrossRef
34.
go back to reference Mizuno K et al. Mastitis is Associated with IL-6 Levels and Milk Fat Globule Size in Breast Milk. Journal of Human Lactation. 2012;28(4):529–34.PubMedCrossRef Mizuno K et al. Mastitis is Associated with IL-6 Levels and Milk Fat Globule Size in Breast Milk. Journal of Human Lactation. 2012;28(4):529–34.PubMedCrossRef
35.
go back to reference Perkins ND. Integrating cell-signalling pathways with NF-kappaB and IKK function. Nat Rev Mol Cell Biol. 2007;8(1):49–62.PubMedCrossRef Perkins ND. Integrating cell-signalling pathways with NF-kappaB and IKK function. Nat Rev Mol Cell Biol. 2007;8(1):49–62.PubMedCrossRef
36.
go back to reference Notebaert S et al. In vivo imaging of NF-kappaB activity during Escherichia coli-induced mammary gland infection. Cell Microbiol. 2008;10(6):1249–58.PubMedCrossRef Notebaert S et al. In vivo imaging of NF-kappaB activity during Escherichia coli-induced mammary gland infection. Cell Microbiol. 2008;10(6):1249–58.PubMedCrossRef
37.
go back to reference Kawai T, Akira S. Pathogen recognition with Toll-like receptors. Curr Opin Immunol. 2005;17(4):338–44.PubMedCrossRef Kawai T, Akira S. Pathogen recognition with Toll-like receptors. Curr Opin Immunol. 2005;17(4):338–44.PubMedCrossRef
38.
go back to reference Sirard JC, Bayardo M, Didierlaurent A. Pathogen-specific TLR signaling in mucosa: mutual contribution of microbial TLR agonists and virulence factors. Eur J Immunol. 2006;36(2):260–3.PubMedCrossRef Sirard JC, Bayardo M, Didierlaurent A. Pathogen-specific TLR signaling in mucosa: mutual contribution of microbial TLR agonists and virulence factors. Eur J Immunol. 2006;36(2):260–3.PubMedCrossRef
39.
go back to reference Glynn DJ, Hutchinson MR, Ingman WV. Toll-Like Receptor 4 Regulates Lipopolysaccharide-Induced Inflammation and Lactation Insufficiency in a Mouse Model of Mastitis. Biol Reprod. 2014;90(5):91.PubMedCrossRef Glynn DJ, Hutchinson MR, Ingman WV. Toll-Like Receptor 4 Regulates Lipopolysaccharide-Induced Inflammation and Lactation Insufficiency in a Mouse Model of Mastitis. Biol Reprod. 2014;90(5):91.PubMedCrossRef
40.
go back to reference Kawai T, Akira S. The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors. Nat Immunol. 2010;11(5):373–84.PubMedCrossRef Kawai T, Akira S. The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors. Nat Immunol. 2010;11(5):373–84.PubMedCrossRef
41.
go back to reference Gonen E et al. Toll-like receptor 4 is needed to restrict the invasion of Escherichia coli P4 into mammary gland epithelial cells in a murine model of acute mastitis. Cell Microbiol. 2007;9(12):2826–38.PubMedCrossRef Gonen E et al. Toll-like receptor 4 is needed to restrict the invasion of Escherichia coli P4 into mammary gland epithelial cells in a murine model of acute mastitis. Cell Microbiol. 2007;9(12):2826–38.PubMedCrossRef
42.
go back to reference Goodridge HS et al. Phosphorylcholine mimics the effects of ES-62 on macrophages and dendritic cells. Parasite Immunol. 2007;29(3):127–37.PubMedCrossRef Goodridge HS et al. Phosphorylcholine mimics the effects of ES-62 on macrophages and dendritic cells. Parasite Immunol. 2007;29(3):127–37.PubMedCrossRef
43.
go back to reference Ichinose T et al. Mouse strain differences in eosinophilic airway inflammation caused by intratracheal instillation of mite allergen and diesel exhaust particles. J Appl Toxicol. 2004;24(1):69–76.PubMedCrossRef Ichinose T et al. Mouse strain differences in eosinophilic airway inflammation caused by intratracheal instillation of mite allergen and diesel exhaust particles. J Appl Toxicol. 2004;24(1):69–76.PubMedCrossRef
44.
go back to reference Tokunaga Y et al. Genetic susceptibility to the induction of murine experimental autoimmune orchitis (EAO) without adjuvant. I. Comparison of pathology, delayed type hypersensitivity, and antibody. Clin Immunol Immunopathol. 1993;66(3):239–47.PubMedCrossRef Tokunaga Y et al. Genetic susceptibility to the induction of murine experimental autoimmune orchitis (EAO) without adjuvant. I. Comparison of pathology, delayed type hypersensitivity, and antibody. Clin Immunol Immunopathol. 1993;66(3):239–47.PubMedCrossRef
45.
go back to reference Uddin MH et al. Strain variation in the susceptibility and immune response to Clonorchis sinensis infection in mice. Parasitol Int. 2012;61(1):118–23.PubMedCrossRef Uddin MH et al. Strain variation in the susceptibility and immune response to Clonorchis sinensis infection in mice. Parasitol Int. 2012;61(1):118–23.PubMedCrossRef
46.
go back to reference Elazar S et al. Neutrophil recruitment in endotoxin-induced murine mastitis is strictly dependent on mammary alveolar macrophages. Vet Res. 2010;41(1):10.PubMedCentralPubMedCrossRef Elazar S et al. Neutrophil recruitment in endotoxin-induced murine mastitis is strictly dependent on mammary alveolar macrophages. Vet Res. 2010;41(1):10.PubMedCentralPubMedCrossRef
47.
48.
go back to reference Connelly L et al. Activation of nuclear factor kappa B in mammary epithelium promotes milk loss during mammary development and infection. J Cell Physiol. 2010;222(1):73–81.PubMedCentralPubMedCrossRef Connelly L et al. Activation of nuclear factor kappa B in mammary epithelium promotes milk loss during mammary development and infection. J Cell Physiol. 2010;222(1):73–81.PubMedCentralPubMedCrossRef
49.
go back to reference Kesaraju P et al. Experimental autoimmune breast failure: a model for lactation insufficiency, postnatal nutritional deprivation, and prophylactic breast cancer vaccination. Am J Pathol. 2012;181(3):775–84.PubMedCentralPubMedCrossRef Kesaraju P et al. Experimental autoimmune breast failure: a model for lactation insufficiency, postnatal nutritional deprivation, and prophylactic breast cancer vaccination. Am J Pathol. 2012;181(3):775–84.PubMedCentralPubMedCrossRef
50.
go back to reference Clarkson RW et al. NF-kappaB inhibits apoptosis in murine mammary epithelia. J Biol Chem. 2000;275(17):12737–42.PubMedCrossRef Clarkson RW et al. NF-kappaB inhibits apoptosis in murine mammary epithelia. J Biol Chem. 2000;275(17):12737–42.PubMedCrossRef
51.
go back to reference Geymayer S, Doppler W. Activation of NF-kappaB p50/p65 is regulated in the developing mammary gland and inhibits STAT5-mediated beta-casein gene expression. FASEB J. 2000;14(9):1159–70.PubMed Geymayer S, Doppler W. Activation of NF-kappaB p50/p65 is regulated in the developing mammary gland and inhibits STAT5-mediated beta-casein gene expression. FASEB J. 2000;14(9):1159–70.PubMed
52.
go back to reference Baxter FO et al. IKKbeta/2 induces TWEAK and apoptosis in mammary epithelial cells. Development. 2006;133(17):3485–94.PubMedCrossRef Baxter FO et al. IKKbeta/2 induces TWEAK and apoptosis in mammary epithelial cells. Development. 2006;133(17):3485–94.PubMedCrossRef
53.
go back to reference Zaragoza R et al. Nitric oxide triggers mammary gland involution after weaning: remodelling is delayed but not impaired in mice lacking inducible nitric oxide synthase. Biochem J. 2010;428(3):451–62.PubMedCrossRef Zaragoza R et al. Nitric oxide triggers mammary gland involution after weaning: remodelling is delayed but not impaired in mice lacking inducible nitric oxide synthase. Biochem J. 2010;428(3):451–62.PubMedCrossRef
54.
go back to reference O’Brien J et al. Macrophages are crucial for epithelial cell death and adipocyte repopulation during mammary gland involution. Development. 2012;139(2):269–75.PubMedCrossRef O’Brien J et al. Macrophages are crucial for epithelial cell death and adipocyte repopulation during mammary gland involution. Development. 2012;139(2):269–75.PubMedCrossRef
56.
go back to reference McDermott MF, Tschopp J. From inflammasomes to fevers, crystals and hypertension: how basic research explains inflammatory diseases. Trends Mol Med. 2007;13(9):381–8.PubMedCrossRef McDermott MF, Tschopp J. From inflammasomes to fevers, crystals and hypertension: how basic research explains inflammatory diseases. Trends Mol Med. 2007;13(9):381–8.PubMedCrossRef
58.
go back to reference Abou-Dakn M et al. Inflammatory Breast Diseases during Lactation: Milk Stasis, Puerperal Mastitis, Abscesses of the Breast, and Malignant Tumors - Current and Evidence-Based Strategies for Diagnosis and Therapy. Breast Care (Basel). 2010;5(1):33–7.CrossRef Abou-Dakn M et al. Inflammatory Breast Diseases during Lactation: Milk Stasis, Puerperal Mastitis, Abscesses of the Breast, and Malignant Tumors - Current and Evidence-Based Strategies for Diagnosis and Therapy. Breast Care (Basel). 2010;5(1):33–7.CrossRef
59.
go back to reference El Mezayen R et al. Endogenous signals released from necrotic cells augment inflammatory responses to bacterial endotoxin. Immunol Lett. 2007;111(1):36–44.PubMedCentralPubMedCrossRef El Mezayen R et al. Endogenous signals released from necrotic cells augment inflammatory responses to bacterial endotoxin. Immunol Lett. 2007;111(1):36–44.PubMedCentralPubMedCrossRef
60.
go back to reference Samuvel DJ et al. Lactate boosts TLR4 signaling and NF-kappaB pathway-mediated gene transcription in macrophages via monocarboxylate transporters and MD-2 up-regulation. J Immunol. 2009;182(4):2476–84.PubMedCentralPubMedCrossRef Samuvel DJ et al. Lactate boosts TLR4 signaling and NF-kappaB pathway-mediated gene transcription in macrophages via monocarboxylate transporters and MD-2 up-regulation. J Immunol. 2009;182(4):2476–84.PubMedCentralPubMedCrossRef
61.
go back to reference Davis SR et al. Milk L-lactate concentration is increased during mastitis. J Dairy Res. 2004;71(2):175–81.PubMedCrossRef Davis SR et al. Milk L-lactate concentration is increased during mastitis. J Dairy Res. 2004;71(2):175–81.PubMedCrossRef
62.
go back to reference Wockel A et al. Predictors of inflammatory breast diseases during lactation–results of a cohort study. Am J Reprod Immunol. 2010;63(1):28–37.PubMedCrossRef Wockel A et al. Predictors of inflammatory breast diseases during lactation–results of a cohort study. Am J Reprod Immunol. 2010;63(1):28–37.PubMedCrossRef
63.
go back to reference Frank MG, Watkins LR, Maier SF. Stress-induced glucocorticoids as a neuroendocrine alarm signal of danger. Brain Behav Immun. 2013;33:1–6.PubMedCrossRef Frank MG, Watkins LR, Maier SF. Stress-induced glucocorticoids as a neuroendocrine alarm signal of danger. Brain Behav Immun. 2013;33:1–6.PubMedCrossRef
64.
go back to reference Garate I et al. Origin and consequences of brain Toll-like receptor 4 pathway stimulation in an experimental model of depression. J Neuroinflammation. 2011;8:151.PubMedCentralPubMedCrossRef Garate I et al. Origin and consequences of brain Toll-like receptor 4 pathway stimulation in an experimental model of depression. J Neuroinflammation. 2011;8:151.PubMedCentralPubMedCrossRef
65.
go back to reference McCusker RH, Kelley KW. Immune-neural connections: how the immune system’s response to infectious agents influences behavior. J Exp Biol. 2013;216(Pt 1):84–98.PubMedCentralPubMedCrossRef McCusker RH, Kelley KW. Immune-neural connections: how the immune system’s response to infectious agents influences behavior. J Exp Biol. 2013;216(Pt 1):84–98.PubMedCentralPubMedCrossRef
66.
go back to reference Hines DJ et al. Prevention of LPS-induced microglia activation, cytokine production and sickness behavior with TLR4 receptor interfering peptides. PLoS One. 2013;8(3):e60388.PubMedCentralPubMedCrossRef Hines DJ et al. Prevention of LPS-induced microglia activation, cytokine production and sickness behavior with TLR4 receptor interfering peptides. PLoS One. 2013;8(3):e60388.PubMedCentralPubMedCrossRef
67.
go back to reference Miller AH, Maletic V, Raison CL. Inflammation and its discontents: the role of cytokines in the pathophysiology of major depression. Biol Psychiatry. 2009;65(9):732–41.PubMedCentralPubMedCrossRef Miller AH, Maletic V, Raison CL. Inflammation and its discontents: the role of cytokines in the pathophysiology of major depression. Biol Psychiatry. 2009;65(9):732–41.PubMedCentralPubMedCrossRef
68.
go back to reference Bienkowski MS, Rinaman L. Noradrenergic inputs to the paraventricular hypothalamus contribute to hypothalamic-pituitary-adrenal axis and central Fos activation in rats after acute systemic endotoxin exposure. Neuroscience. 2008;156(4):1093–102.PubMedCentralPubMedCrossRef Bienkowski MS, Rinaman L. Noradrenergic inputs to the paraventricular hypothalamus contribute to hypothalamic-pituitary-adrenal axis and central Fos activation in rats after acute systemic endotoxin exposure. Neuroscience. 2008;156(4):1093–102.PubMedCentralPubMedCrossRef
69.
go back to reference Ringgold KM et al. Prolonged sleep fragmentation of mice exacerbates febrile responses to lipopolysaccharide. J Neurosci Methods. 2013;219(1):104–12.PubMedCentralPubMedCrossRef Ringgold KM et al. Prolonged sleep fragmentation of mice exacerbates febrile responses to lipopolysaccharide. J Neurosci Methods. 2013;219(1):104–12.PubMedCentralPubMedCrossRef
70.
go back to reference Sharma BS et al. Association of toll-like receptor 4 polymorphisms with somatic cell score and lactation persistency in Holstein bulls. J Dairy Sci. 2006;89(9):3626–35.PubMedCrossRef Sharma BS et al. Association of toll-like receptor 4 polymorphisms with somatic cell score and lactation persistency in Holstein bulls. J Dairy Sci. 2006;89(9):3626–35.PubMedCrossRef
71.
go back to reference Wang X et al. Genetic polymorphism of TLR4 gene and correlation with mastitis in cattle. J Genet Genomics. 2007;34(5):406–12.PubMedCrossRef Wang X et al. Genetic polymorphism of TLR4 gene and correlation with mastitis in cattle. J Genet Genomics. 2007;34(5):406–12.PubMedCrossRef
72.
go back to reference Catalani, E., et al., Short communication: Lymphoproliferative response to lipopolysaccharide and incidence of infections in periparturient dairy cows. J Dairy Sci, 2013. Catalani, E., et al., Short communication: Lymphoproliferative response to lipopolysaccharide and incidence of infections in periparturient dairy cows. J Dairy Sci, 2013.
74.
go back to reference Fu Y et al. Curcumin attenuates inflammatory responses by suppressing TLR4-mediated NF-kappaB signaling pathway in lipopolysaccharide-induced mastitis in mice. Int Immunopharmacol. 2014;20(1):54–8.PubMedCrossRef Fu Y et al. Curcumin attenuates inflammatory responses by suppressing TLR4-mediated NF-kappaB signaling pathway in lipopolysaccharide-induced mastitis in mice. Int Immunopharmacol. 2014;20(1):54–8.PubMedCrossRef
75.
go back to reference Ruifeng G et al. Chlorogenic acid attenuates lipopolysaccharide-induced mice mastitis by suppressing TLR4-mediated NF-kappaB signaling pathway. Eur J Pharmacol. 2014;729:54–8.PubMedCrossRef Ruifeng G et al. Chlorogenic acid attenuates lipopolysaccharide-induced mice mastitis by suppressing TLR4-mediated NF-kappaB signaling pathway. Eur J Pharmacol. 2014;729:54–8.PubMedCrossRef
76.
go back to reference Chen H et al. Alpinetin attenuates inflammatory responses by interfering toll-like receptor 4/nuclear factor kappa B signaling pathway in lipopolysaccharide-induced mastitis in mice. Int Immunopharmacol. 2013;17(1):26–32.PubMedCrossRef Chen H et al. Alpinetin attenuates inflammatory responses by interfering toll-like receptor 4/nuclear factor kappa B signaling pathway in lipopolysaccharide-induced mastitis in mice. Int Immunopharmacol. 2013;17(1):26–32.PubMedCrossRef
77.
go back to reference WHO. Global strategy for infant and young child feeding. Geneva: World Health Organization; 2003. WHO. Global strategy for infant and young child feeding. Geneva: World Health Organization; 2003.
78.
go back to reference NHMRC. Infant Feeding Guidelines. Canberra: National Health and Medical Research Council; 2012. NHMRC. Infant Feeding Guidelines. Canberra: National Health and Medical Research Council; 2012.
79.
go back to reference Geddes DT, Prescott SL. Developmental origins of health and disease: the role of human milk in preventing disease in the 21 (st) century. J Hum Lact. 2013;29(2):123–7.PubMedCrossRef Geddes DT, Prescott SL. Developmental origins of health and disease: the role of human milk in preventing disease in the 21 (st) century. J Hum Lact. 2013;29(2):123–7.PubMedCrossRef
80.
go back to reference Black RE et al. Maternal and child undernutrition: global and regional exposures and health consequences. Lancet. 2008;371(9608):243–60.PubMedCrossRef Black RE et al. Maternal and child undernutrition: global and regional exposures and health consequences. Lancet. 2008;371(9608):243–60.PubMedCrossRef
Metadata
Title
Inflammatory Mediators in Mastitis and Lactation Insufficiency
Authors
Wendy V. Ingman
Danielle J. Glynn
Mark R. Hutchinson
Publication date
01-07-2014
Publisher
Springer US
Published in
Journal of Mammary Gland Biology and Neoplasia / Issue 2/2014
Print ISSN: 1083-3021
Electronic ISSN: 1573-7039
DOI
https://doi.org/10.1007/s10911-014-9325-9

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