4.6 Article

A novel role for the extracellular matrix glycoprotein-Tenascin-X in gastric function

期刊

JOURNAL OF PHYSIOLOGY-LONDON
卷 597, 期 6, 页码 1503-1515

出版社

WILEY
DOI: 10.1113/JP277195

关键词

Gastric emptying; gastric hypersensitivity; enteric neurons

资金

  1. Wellcome Trust University Award
  2. Henry Smith Charity Grant
  3. Bowel and Cancer Research PhD studentship
  4. Ehlers Danlos Society Award

向作者/读者索取更多资源

Tenascin-X (TNX) is a glycoprotein that regulates tissue structure via anti-adhesive interactions with collagen in the extracellular matrix. TNX deficiency causes a phenotype similar to hypermobility Ehlers-Danlos syndrome involving joint hypermobility, skin hyperelasticity, pain and gastrointestinal dysfunction. Previously, we have shown that TNX is required for neural control of the bowel by a specific subtype of mainly cholinergic enteric neurones and regulates sprouting and sensitivity of nociceptive sensory endings in mouse colon. These findings correlate with symptoms shown by TNX-deficient patients and mice. We aimed to identify whether TNX is similarly present in neural structures found in mouse and human gastric tissue. We then determined whether TNX has a functional role, specifically in gastric motor and sensory function and nodose ganglia neurones. We report that TNX was present in calretinin-immunoreactive extrinsic nerve endings in mouse and human stomach. TNX deficient mice had accelerated gastric emptying and markedly increased vagal afferent responses to gastric distension that could be rescued with GABA(B) receptor agonist. There were no changes in nodose ganglia excitability in TNX deficient mice, suggesting that vagal afferent responses are probably the result of altered peripheral mechanosensitivity. In TNXB-deficient patients, significantly greater symptoms of reflux, indigestion and abdominal pain were reported. In the present study, we report the first role for TNX in gastric function. Further studies are required in TNX deficient patients to determine whether symptoms can be relieved using GABA(B) agonists.

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