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Chronic linaclotide treatment reduces colitis-induced neuroplasticity and reverses persistent bladder dysfunction
Luke Grundy, Andrea M. Harrington, Joel Castro, Sonia Garcia-Caraballo, Annemie Deiteren, Jessica Maddern, Grigori Y. Rychkov, Pei Ge, Stefanie Peters, Robert Feil, Paul Miller, Andre Ghetti, Gerhard Hannig, Caroline B. Kurtz, Inmaculada Silos-Santiago, Stuart M. Brierley
Luke Grundy, Andrea M. Harrington, Joel Castro, Sonia Garcia-Caraballo, Annemie Deiteren, Jessica Maddern, Grigori Y. Rychkov, Pei Ge, Stefanie Peters, Robert Feil, Paul Miller, Andre Ghetti, Gerhard Hannig, Caroline B. Kurtz, Inmaculada Silos-Santiago, Stuart M. Brierley
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Research Article Gastroenterology Neuroscience

Chronic linaclotide treatment reduces colitis-induced neuroplasticity and reverses persistent bladder dysfunction

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Abstract

Irritable bowel syndrome (IBS) patients suffer from chronic abdominal pain and extraintestinal comorbidities, including overactive bladder (OAB) and interstitial cystitis/painful bladder syndrome (IC-PBS). Mechanistic understanding of the cause and time course of these comorbid symptoms is lacking, as are clinical treatments. Here, we report that colitis triggers hypersensitivity of colonic afferents, neuroplasticity of spinal cord circuits, and chronic abdominal pain, which persists after inflammation. Subsequently, and in the absence of bladder pathology, colonic hypersensitivity induces persistent hypersensitivity of bladder afferent pathways, resulting in bladder-voiding dysfunction, indicative of OAB/IC-PBS. Daily administration of linaclotide, a guanylate cyclase-C (GC-C) agonist that is restricted to and acts within the gastrointestinal tract, reverses colonic afferent hypersensitivity, reverses neuroplasticity-induced alterations in spinal circuitry, and alleviates chronic abdominal pain in mice. Intriguingly, daily linaclotide administration also reverses persistent bladder afferent hypersensitivity to mechanical and chemical stimuli and restores normal bladder voiding. Linaclotide itself does not inhibit bladder afferents, rather normalization of bladder function by daily linaclotide treatment occurs via indirect inhibition of bladder afferents via reduced nociceptive signaling from the colon. These data support the concepts that cross-organ sensitization underlies the development and maintenance of visceral comorbidities, while pharmaceutical treatments that inhibit colonic afferents may also improve urological symptoms through common sensory pathways.

Authors

Luke Grundy, Andrea M. Harrington, Joel Castro, Sonia Garcia-Caraballo, Annemie Deiteren, Jessica Maddern, Grigori Y. Rychkov, Pei Ge, Stefanie Peters, Robert Feil, Paul Miller, Andre Ghetti, Gerhard Hannig, Caroline B. Kurtz, Inmaculada Silos-Santiago, Stuart M. Brierley

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Figure 7

CVH mice display abnormal bladder afferent responses to mechanical and chemical stimuli that are reversed by chronic oral administration of linaclotide.

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CVH mice display abnormal bladder afferent responses to mechanical and c...
(A) Ex vivo bladder afferent firing in response to ramp distension is increased in CVH (N = 11) compared with control (N = 10) mice (****P < 0.0001). (B) Ex vivo bladder multiunit recording from control or CVH mice showing action potential firing during bladder distension with intravesical saline. (C) CVH mice chronically administered linaclotide (N = 7) show reduced bladder afferent responses to distension compared with vehicle-treated CVH mice (N = 11; ***P < 0.001). (D) Ex vivo bladder multiunit recording from CVH mice treated with vehicle or daily linaclotide showing action potential firing during bladder distension with intravesical saline. (E–G) Bladder afferent responses to bath application of (E) αβMe-ATP (30 μM, ***P < 0.001), (F) carbachol (1 μM; *P < 0.05), and (G) capsaicin (10 μM, ***P < 0.001) are all enhanced in CVH (N = 5–7 mice/group) compared with control (N = 6 mice/group). (H–J) Bladder afferent responses to bath application of (H) αβMe-ATP (***P < 0.001), (I) carbachol (***P < 0.001), and (J) capsaicin (***P < 0.001) are all attenuated in CVH mice chronically administered linaclotide (N = 5–7 mice per group) compared with vehicle-treated CVH mice (N = 7 mice per group). Data represent mean ± SEM. P values above are based on 2-way ANOVA (A, C, and E–J), with subsequent Bonferroni post hoc test significance at individual data points indicated on E–J.

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