Author:
Voss Ulrikke,Sand Elin,Hellström Per M,Ekblad Eva
Abstract
Abstract
Background
Neuropathy is believed to be a common feature of functional and inflammatory intestinal diseases. Vasoactive intestinal peptide (VIP) is an acknowledged neuroprotective agent in peripheral, including enteric, and central neurons. The proglucagon-like hormones glucagon-like peptide 1 and 2 (GLP1 and GLP2) belong to the secretin/glucagon/VIP superfamily of peptides and GLP1 and GLP2 receptors are expressed in enteric neurons. Possible neuroprotective effects of these peptides were investigated in the present study.
Methods
GLP1, GLP2 and VIP were added to cultured myenteric neurons from rat small intestine or to co-cultures of myenteric neurons and rat peritoneal mast cells. Receptor selectivity was tested by the simultaneous presence of a GLP1 receptor antagonist (exendin (9-39) amide) or a VIP receptor antagonist (hybrid of neurotensin 6-11 and VIP 7-28). Neuronal survival was examined using immunocytochemistry and cell counting.
Results
GLP1, GLP2 and VIP significantly and concentration-dependently enhanced neuronal survival. In addition the peptides efficiently counteracted mast cell-induced neuronal cell death in a concentration-dependent manner. Exendin(9-39)amide reversed GLP1-induced neuroprotection while GLP2- and VIP-induced enhanced neuronal survival were unaffected. The VIP receptor antagonist reversed GLP1- and VIP-induced neuroprotection while the GLP2-induced effect on neuronal survival was unaffected.
Conclusions
By activating separate receptors VIP, GLP1 and GLP2 elicit neuroprotective effects on rat myenteric neurons cultured with or without mast cells. This implies a powerful therapeutic potential of these peptides in enteric neuropathies with a broad spectrum of applications from autoimmunity to functional disorders.
Publisher
Springer Science and Business Media LLC
Subject
Gastroenterology,General Medicine
Reference46 articles.
1. Hammar J, Howell S, Bytzer P, Horowitz M, Talley NJ: Symptom clustering in subjects with and without diabetes mellitus: A population-based study of 15 000 Australian adults. Am J Gastroenterol. 2003, 98: 391-398.
2. Chandrasekharan B, Srinivasan S: Diabetes and the enteric nervous system. Neurogastroenterol Motil. 2007, 19: 951-960.
3. Guo C, Quobatari A, Shangguan Y, Hong S, Wiley JW: Diabetic autonomic neuropathy: evidence for apoptosis in situ in the rat. Neurogastroenterol Motil. 2004, 16: 335-345. 10.1111/j.1365-2982.2004.00524.x.
4. Shotton HR, Broadbent S, Lincoln J: Prevention and partial reversal of diabetes-induced changes in enteric nerves of rat ileum by combined treatment with alpha-lipoic acid and evening primrose oil. Autonom Neurosci. 2004, 111: 57-65. 10.1016/j.autneu.2004.02.004.
5. Voukali E, Shotton HR, Lincoln J: Selective responses of myenteric neurons to oxidative stress and disbetic stimuli. Neurogastroenterol Motil. 2011, 23: 964-e411. 10.1111/j.1365-2982.2011.01778.x.
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