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PreviewIssue DateTitleAuthor(s)
2013Linaclotide inhibits colonic nociceptors and relieves abdominal pain via guanylate cyclase-c and extracellular cyclic guanosine 3′,5′-monophosphateCastro, J.; Harrington, A.; Hughes, P.; Martin, C.; Ge, P.; Shea, C.; Jin, H.; Jacobson, S.; Hannig, G.; Mann, E.; Cohen, M.; MacDougall, J.; Lavins, B.; Kurtz, C.; Silos-Santiago, I.; Johnston, J.; Blackshaw, L.; Brierley, S.
2008New insights in the neural regulation of the lower oesophageal sphincterBlackshaw, L.
2001Receptors and transmission in the brain-gut axis: Potential for novel therapies IV. GABAB receptors in the brain-gastroesophageal axisBlackshaw, L.
2013Sensory neuro-immune interactions differ between Irritable Bowel Syndrome subtypesHughes, P.; Harrington, A.; Castro Kraftchenko, J.; Liebregts, T.; Adam, B.; Grasby, D.; Isaacs, N.; Maldeniya, M.; Martin, C.; Persson, J.; Andrews, J.; Holtmann, G.; Blackshaw, L.; Brierley, S.
2010PrefaceBlackshaw, L.; Grundy, D.
2002The pharmacology of gastrointestinal nociceptive pathwaysBlackshaw, L.; Gebhart, G.
2007Sensory transmission in the gastrointestinal tractBlackshaw, L.; Brookes, S.; Grundy, D.; Schemann, M.
2010TRP channels: new targets for visceral painBlackshaw, L.; Brierley, S.; Hughes, P.
2009(R)-(3-Amino-2-fluoropropyl) Phosphinic Acid (AZD3355), a Novel GABA(B) Receptor Agonist, Inhibits Transient Lower Esophageal Sphincter Relaxation through a Peripheral Mode of ActionLehmann, A.; Antonsson, M.; Holmberg, A.; Blackshaw, L.; Branden, L.; Brauner-Osborne, H.; Christiansen, B.; Dent, J.; Elebring, T.; Jacobson, B.; Jensen, J.; Mattsson, J.; Nilsson, K.; Oja, S.; Page, A.; Saransaari, P.; von Unge, S.
2009Expression of taste molecules in the upper gastrointestinal tract in humans with and without type 2 diabetesYoung, R.; Sutherland, K.; Pezos, N.; Brierley, S.; Horowitz, M.; Rayner, C.; Blackshaw, L.