Effect of motilin and erythromycin on intracellular Ca2+ mobilization in rat myenteric neurons in culture
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Effect of motilin and erythromycin on intracellular Ca2+ mobilization in rat myenteric neurons in culture
Military Medical ResearchIssue 3, Pages: 148-152(2006)
Affiliations:
1. Department of Gastroenterology Second Hospital of Xi’an Jiaotong University
2. ,Xi’an,710043
3. Department of General Surgery
4. Xi’an North Hospital
Author bio:
Funds:
DOI:
CLC:R96
Published:2006
Accepted:
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[1]杨侠,董蕾,杨希恩.Effect of motilin and erythromycin on intracellular Ca2+ mobilization in rat myenteric neurons in culture[J].Journal of Medical Colleges of PLA,2006(03):148-152.
DOI:
[1]杨侠,董蕾,杨希恩.Effect of motilin and erythromycin on intracellular Ca2+ mobilization in rat myenteric neurons in culture[J].Journal of Medical Colleges of PLA,2006(03):148-152.DOI:
Effect of motilin and erythromycin on intracellular Ca2+ mobilization in rat myenteric neurons in culture
摘要
Abstract
<正>Objective: To investigate the effects of motilin and erythromycin on intracellular Ca2+ mobi-lization in cultured myenteric neurons of rats. Methods: The cultured myenteric neurons were identified with immunofluorescence staining technique. Motilin-induced and erythromycin-induced intracellular Ca2+ mobilization was studied in primary cultures of myenteric neurons using the ratiometric Ca2+ indicator Furo3/AM
with a laser confocal microscope. Results: The effects of motilin and erythromycin on intracellular Ca2+ mobilization were as follows: (1)In Hank’s solution
10 -8
10-7
10-6 mol/L motilin could elevate intracellular Ca2+ concentration ([Ca2+]i)in a dose-dependent manner. (2) In Hank’s solution
10μg/ ml erythromycin also could induce the elevation of [Ca2+]i. (3) After pretreatment with antibody against the motilin receptor in Hank’s solution
the Ca2+ response to erythromycin was almost restricted. Conclusion: It is suggested that motilin could increase [Ca2+]i in myenteric neurons in a dose-dependent manner
and erythromycin may also have this effectivenesss by binding to the motilin receptor.
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