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The development of allergic inflammation in a murine house dust mite asthma model is suppressed by synbiotic mixtures of non-digestible oligosaccharides and Bifidobacterium breve M-16V.Galacto-oligosaccharides Protect the Intestinal Barrier by Maintaining the Tight Junction Network and Modulating the Inflammatory Responses after a Challenge with the Mycotoxin Deoxynivalenol in Human Caco-2 Cell Monolayers and B6C3F1 Mice.Dietary galacto-oligosaccharides prevent airway eosinophilia and hyperresponsiveness in a murine house dust mite-induced asthma model.Differential regulation of inflammation and immunity in mild and severe experimental asthma.Inflammation-induced expression of the alarmin interleukin 33 can be suppressed by galacto-oligosaccharides.Deoxynivalenol: a trigger for intestinal integrity breakdown.Measurement of airway function using invasive and non-invasive methods in mild and severe models for allergic airway inflammation in mice.A comparison of fixation methods on lung morphology in a murine model of emphysema.The Calcium-Dependent Protease Calpain-1 Links TRPC6 Activity to Podocyte InjuryThe Combination Therapy of Dietary Galacto-Oligosaccharides With Budesonide Reduces Pulmonary Th2 Driving Mediators and Mast Cell Degranulation in a Murine Model of House Dust Mite Induced AsthmaRegulatory T Cell Depletion Abolishes the Protective Effect of Dietary Galacto-Oligosaccharides on Eosinophilic Airway Inflammation in House Dust Mite-Induced Asthma in MiceXXIV World Allergy Congress 2015: Seoul, Korea. 14-17 October 2015
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description
investigador
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researcher
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wetenschapper
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name
K A T Verheijden
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K A T Verheijden
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type
label
K A T Verheijden
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K A T Verheijden
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K A T Verheijden
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K A T Verheijden
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P108
P31
P496
0000-0003-4622-4299