Role of Intestinal Microbiota in Ulcerative Colitis

Role of Intestinal Microbiota in Ulcerative Colitis Role of Intestinal Microbiota in Ulcerative Colitis

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References Haarman,M. and Knol,J. (2005). Quantitative real‐time PCR assays to identify and quantify fecal Bifidobacterium species in infants receiving a prebiotic infant formula. Applied and Environmental Microbiology. 71:2318‐2324. Hafer,A., Kramer,S., Duncker,S., Kruger,M., Manns,M.P., and Bischoff,S.C. (2007). Effect of oral lactulose on clinical and immunohistochemical parameters in patients with inflammatory bowel disease: A pilot study. Bmc Gastroenterology doi:10.1186/1471‐230X‐7‐36. Hanai,H. et al. (2004). Germinated barley foodstuff prolongs remission in patients with ulcerative colitis. International Journal of Molecular Medicine. 13:643‐647. Hansson,G.C. and Johansson,M.E. (2010c). The inner of the two Muc2 mucin‐dependent mucus layers in colon is devoid of bacteria. Gut Microbes. 1:51‐54. Hansson,G.C. and Johansson,M.E. (2010b). The inner of the two Muc2 mucin‐dependent mucus layers in colon is devoid of bacteria. Gut Microbes. 1:51‐54. Hansson,G.C. and Johansson,M.E. (2010a). The inner of the two Muc2 mucin‐dependent mucus layers in colon is devoid of bacteria. Gut Microbes. 1:51‐54. Hase,K., Eckmann,L., Leopard,J.D., Varki,N., and Kagnoff,M.F. (2002). Cell differentiation is a key determinant of cathelicidin LL‐37/human cationic antimicrobial protein 18 expression by human colon epithelium. Infection and Immunity. 70:953‐963. Hayashi,F., Smith,K.D., Ozinsky,A., Hawn,T.R., Yi,E.C., Goodlett,D.R., Eng,J.K., Akira,S., Underhill,D.M., and Aderem,A. (2001). The innate immune response to bacterial flagellin is mediated by Toll‐like receptor 5. Nature. 410:1099‐1103. Heilig,H.G.H.J., Zoetendal,E.G., Vaughan,E.E., Marteau,P., Akkermans,A.D.L., and de Vos,W.M. (2002). Molecular diversity of Lactobacillus spp. and other lactic acid bacteria in the human intestine as determined by specific amplification of 16S ribosomal DNA. Applied and Environmental Microbiology. 68:114‐123. Hemmi,H. et al. (2000). A Toll‐like receptor recognizes bacterial DNA. Nature. 408:740‐745. Himmel,M.E., Hardenberg,G., Piccirillo,C.A., Steiner,T.S., and Levings,M.K. (2008). The role of T‐regulatory cells and Toll‐like receptors in the pathogenesis of human inflammatory bowel disease. Immunology. 125:145‐153. Hoarau,C., Lagaraine,C., Martin,L., Velge‐Roussel,F., and Lebranchu,Y. (2006). Supernatant of Bifidobacterium breve induces dendritic cell maturation, activation, and survival through a Toll‐like receptor 2 pathway. Journal of Allergy and Clinical Immunology. 117:696‐702. Hoentjen,F., Welling,G.W., Harmsen,H.J.M., Zhang,X.Y., Snart,J., Tannock,G.W., Lien,K., Churchill,T.A., Lupicki,M., and Dieleman,L.A. (2005). Reduction of colitis by prebiotics in HLA‐1327 transgenic rats is associated with microflora changes and immunomodulation. Inflammatory Bowel Diseases. 11:977‐ 985. Holck,J., Hjernø,K., Lorentzen,A., Vigsnæs,L., Hemmingsen,L., Licht,T.R., Mikkelsen,J.D., and Meyer,A.S. (2011). Tailored enzymatic production of oligosaccharides from sugar beet pectin and evidence of differential effects of a single DP chain length difference on human faecal microbiota composition after in vitro fermentation. Process Biochemistry. 46:1039‐1049. Holzapfel,W.H., Haberer,P., Snel,J., Schillinger,U., and Huis in't Veld,J.H.J. (1998). Overview of gut flora and probiotics. International Journal of Food Microbiology. 41:85‐101. Hooper,L.V., Midtvedt,T., and Gordon,J.I. (2002). How host‐microbial interactions shape the nutrient environment of the mammalian intestine. Annual Review of Nutrition. 22:283‐307. Growt h pro moti on of benefi ci al bact eri a Hotchkiss,A.T., Nunez,A., Rastall,R.A., and Gibson,G.R. (2010). i n gut of hu man co mpri ses ad mi ni st eri ng co mpositi on co mpri si ng arabi no oli gosacchari de as prebi oti c . U. S. 2010316766‐A1. 171

References<br />

Haarman,M. and Knol,J. (2005). Quantitative real‐time PCR assays to identify and quantify fecal<br />

Bifidobacterium species <strong>in</strong> <strong>in</strong>fants receiv<strong>in</strong>g a prebiotic <strong>in</strong>fant formula. Applied and Environmental<br />

Microbiology. 71:2318‐2324.<br />

Hafer,A., Kramer,S., Duncker,S., Kruger,M., Manns,M.P., and Bisch<strong>of</strong>f,S.C. (2007). Effect <strong>of</strong> oral lactulose<br />

on cl<strong>in</strong>ical and immunohistochemical parameters <strong>in</strong> patients with <strong>in</strong>flammatory bowel disease: A<br />

pilot study. Bmc Gastroenterology doi:10.1186/1471‐230X‐7‐36.<br />

Hanai,H. et al. (2004). Germ<strong>in</strong>ated barley foodstuff prolongs remission <strong>in</strong> patients with ulcerative colitis.<br />

International Journal <strong>of</strong> Molecular Medic<strong>in</strong>e. 13:643‐647.<br />

Hansson,G.C. and Johansson,M.E. (2010c). The <strong>in</strong>ner <strong>of</strong> the two Muc2 muc<strong>in</strong>‐dependent mucus layers <strong>in</strong><br />

colon is devoid <strong>of</strong> bacteria. Gut Microbes. 1:51‐54.<br />

Hansson,G.C. and Johansson,M.E. (2010b). The <strong>in</strong>ner <strong>of</strong> the two Muc2 muc<strong>in</strong>‐dependent mucus layers <strong>in</strong><br />

colon is devoid <strong>of</strong> bacteria. Gut Microbes. 1:51‐54.<br />

Hansson,G.C. and Johansson,M.E. (2010a). The <strong>in</strong>ner <strong>of</strong> the two Muc2 muc<strong>in</strong>‐dependent mucus layers <strong>in</strong><br />

colon is devoid <strong>of</strong> bacteria. Gut Microbes. 1:51‐54.<br />

Hase,K., Eckmann,L., Leopard,J.D., Varki,N., and Kagn<strong>of</strong>f,M.F. (2002). Cell differentiation is a key<br />

determ<strong>in</strong>ant <strong>of</strong> cathelicid<strong>in</strong> LL‐37/human cationic antimicrobial prote<strong>in</strong> 18 expression by human<br />

colon epithelium. Infection and Immunity. 70:953‐963.<br />

Hayashi,F., Smith,K.D., Oz<strong>in</strong>sky,A., Hawn,T.R., Yi,E.C., Goodlett,D.R., Eng,J.K., Akira,S., Underhill,D.M.,<br />

and Aderem,A. (2001). The <strong>in</strong>nate immune response to bacterial flagell<strong>in</strong> is mediated by Toll‐like<br />

receptor 5. Nature. 410:1099‐1103.<br />

Heilig,H.G.H.J., Zoetendal,E.G., Vaughan,E.E., Marteau,P., Akkermans,A.D.L., and de Vos,W.M. (2002).<br />

Molecular diversity <strong>of</strong> Lactobacillus spp. and other lactic acid bacteria <strong>in</strong> the human <strong>in</strong>test<strong>in</strong>e as<br />

determ<strong>in</strong>ed by specific amplification <strong>of</strong> 16S ribosomal DNA. Applied and Environmental Microbiology.<br />

68:114‐123.<br />

Hemmi,H. et al. (2000). A Toll‐like receptor recognizes bacterial DNA. Nature. 408:740‐745.<br />

Himmel,M.E., Hardenberg,G., Piccirillo,C.A., Ste<strong>in</strong>er,T.S., and Lev<strong>in</strong>gs,M.K. (2008). The role <strong>of</strong> T‐regulatory<br />

cells and Toll‐like receptors <strong>in</strong> the pathogenesis <strong>of</strong> human <strong>in</strong>flammatory bowel disease. Immunology.<br />

125:145‐153.<br />

Hoarau,C., Lagara<strong>in</strong>e,C., Mart<strong>in</strong>,L., Velge‐Roussel,F., and Lebranchu,Y. (2006). Supernatant <strong>of</strong><br />

Bifidobacterium breve <strong>in</strong>duces dendritic cell maturation, activation, and survival through a Toll‐like<br />

receptor 2 pathway. Journal <strong>of</strong> Allergy and Cl<strong>in</strong>ical Immunology. 117:696‐702.<br />

Hoentjen,F., Well<strong>in</strong>g,G.W., Harmsen,H.J.M., Zhang,X.Y., Snart,J., Tannock,G.W., Lien,K., Churchill,T.A.,<br />

Lupicki,M., and Dieleman,L.A. (2005). Reduction <strong>of</strong> colitis by prebiotics <strong>in</strong> HLA‐1327 transgenic rats is<br />

associated with micr<strong>of</strong>lora changes and immunomodulation. Inflammatory Bowel Diseases. 11:977‐<br />

985.<br />

Holck,J., Hjernø,K., Lorentzen,A., Vigsnæs,L., Hemm<strong>in</strong>gsen,L., Licht,T.R., Mikkelsen,J.D., and Meyer,A.S.<br />

(2011). Tailored enzymatic production <strong>of</strong> oligosaccharides from sugar beet pect<strong>in</strong> and evidence <strong>of</strong><br />

differential effects <strong>of</strong> a s<strong>in</strong>gle DP cha<strong>in</strong> length difference on human faecal microbiota composition<br />

after <strong>in</strong> vitro fermentation. Process Biochemistry. 46:1039‐1049.<br />

Holzapfel,W.H., Haberer,P., Snel,J., Schill<strong>in</strong>ger,U., and Huis <strong>in</strong>'t Veld,J.H.J. (1998). Overview <strong>of</strong> gut flora<br />

and probiotics. International Journal <strong>of</strong> Food Microbiology. 41:85‐101.<br />

Hooper,L.V., Midtvedt,T., and Gordon,J.I. (2002). How host‐microbial <strong>in</strong>teractions shape the nutrient<br />

environment <strong>of</strong> the mammalian <strong>in</strong>test<strong>in</strong>e. Annual Review <strong>of</strong> Nutrition. 22:283‐307.<br />

Growt h pro moti on <strong>of</strong> benefi ci al bact eri a<br />

Hotchkiss,A.T., Nunez,A., Rastall,R.A., and Gibson,G.R. (2010).<br />

i n gut <strong>of</strong> hu man co mpri ses ad mi ni st eri ng co mpositi on co mpri si ng arabi no oli gosacchari de as<br />

prebi oti c . U. S. 2010316766‐A1.<br />

171

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