Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens

Context: The rhizome of Ligusticum chuaxiong Hort. (Umbelliferae) has been used by Chinese for several thousand years. Its main constituent, butylidenephthalide (Bdph), was proved to be active in inhibiting rat uterine contractions induced by prostaglandin F2α and was reported to be a nonspecific an...

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Main Authors: Chung-Hung Shih, Chi-Ming Chen, Wun-Chang Ko
Format: Article
Language:English
Published: Taylor & Francis Group 2018-01-01
Series:Pharmaceutical Biology
Subjects:
Online Access:http://dx.doi.org/10.1080/13880209.2018.1495749
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spelling doaj-e9cf2919a63f42db97ece4db6189d2992020-11-25T01:28:53ZengTaylor & Francis GroupPharmaceutical Biology1388-02091744-51162018-01-0156137838410.1080/13880209.2018.14957491495749Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferensChung-Hung Shih0Chi-Ming Chen1Wun-Chang Ko2Taipei Medical University HospitalTaipei Medical UniversityTaipei Medical UniversityContext: The rhizome of Ligusticum chuaxiong Hort. (Umbelliferae) has been used by Chinese for several thousand years. Its main constituent, butylidenephthalide (Bdph), was proved to be active in inhibiting rat uterine contractions induced by prostaglandin F2α and was reported to be a nonspecific antispamodic and a blocker of voltage-dependent Ca2+ channels (VDCCs). Objectives: The present study investigates the mechanisms of Bdph for twitch facilitation in ICR mouse vas deferens (MVD). Materials and methods: Electrical field stimulation (EFS, supramaximal voltage ranging from 60–90 V, 1 ms, 0.2 Hz) was applied to the isolated MVD in Krebs solution. Interactions between Bdph (50 µM) and calcium antagonist (verapamil, diltiazem or aspaminol) on the EFS-evoked twitch responses were determined. The number of experiments was 3–18. Results: Bdph (50 µM)-induced twitch facilitations from 100 to 391.9% were unrelated to activation of postjunctional cholinergic or adrenergic receptors. Verapamil and Bdph unabolished the twitch facilitation each other. Diltiazem unabolished the Bdph-induced twitch facilitation. In contrast, Bdph abolished those induced by diltiazem. Aspaminol at 20 μM abolished the Bdph-induced twitch facilitation. In contrast, Bdph abolished those induced by aspaminol. Tetraethylammonium and 4-aminopyridine, the K+ channel blockers, significantly augmented the Bdph-induced twitch facilitation. Discussion and conclusions: Bdph may bind to the different, more and same subtypes of VDCCs from verapamil, than diltiazem, and as aspaminol does on prejunctional membrane, respectively. Besides a blocker of VDCCs, Bdph may be a blocker of K+ channels on prejunctional membrane. Thus, Bdph depolarized the membrane and facilitated the cumulative Ca2+-induced twitch responses.http://dx.doi.org/10.1080/13880209.2018.1495749adrenergic prejunctional membranepotassium channel blockervoltage-dependent calcium channel blocker
collection DOAJ
language English
format Article
sources DOAJ
author Chung-Hung Shih
Chi-Ming Chen
Wun-Chang Ko
spellingShingle Chung-Hung Shih
Chi-Ming Chen
Wun-Chang Ko
Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
Pharmaceutical Biology
adrenergic prejunctional membrane
potassium channel blocker
voltage-dependent calcium channel blocker
author_facet Chung-Hung Shih
Chi-Ming Chen
Wun-Chang Ko
author_sort Chung-Hung Shih
title Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
title_short Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
title_full Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
title_fullStr Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
title_full_unstemmed Mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
title_sort mechanisms of butylidenephthalide for twitch facilitation in electrically stimulated mouse vas deferens
publisher Taylor & Francis Group
series Pharmaceutical Biology
issn 1388-0209
1744-5116
publishDate 2018-01-01
description Context: The rhizome of Ligusticum chuaxiong Hort. (Umbelliferae) has been used by Chinese for several thousand years. Its main constituent, butylidenephthalide (Bdph), was proved to be active in inhibiting rat uterine contractions induced by prostaglandin F2α and was reported to be a nonspecific antispamodic and a blocker of voltage-dependent Ca2+ channels (VDCCs). Objectives: The present study investigates the mechanisms of Bdph for twitch facilitation in ICR mouse vas deferens (MVD). Materials and methods: Electrical field stimulation (EFS, supramaximal voltage ranging from 60–90 V, 1 ms, 0.2 Hz) was applied to the isolated MVD in Krebs solution. Interactions between Bdph (50 µM) and calcium antagonist (verapamil, diltiazem or aspaminol) on the EFS-evoked twitch responses were determined. The number of experiments was 3–18. Results: Bdph (50 µM)-induced twitch facilitations from 100 to 391.9% were unrelated to activation of postjunctional cholinergic or adrenergic receptors. Verapamil and Bdph unabolished the twitch facilitation each other. Diltiazem unabolished the Bdph-induced twitch facilitation. In contrast, Bdph abolished those induced by diltiazem. Aspaminol at 20 μM abolished the Bdph-induced twitch facilitation. In contrast, Bdph abolished those induced by aspaminol. Tetraethylammonium and 4-aminopyridine, the K+ channel blockers, significantly augmented the Bdph-induced twitch facilitation. Discussion and conclusions: Bdph may bind to the different, more and same subtypes of VDCCs from verapamil, than diltiazem, and as aspaminol does on prejunctional membrane, respectively. Besides a blocker of VDCCs, Bdph may be a blocker of K+ channels on prejunctional membrane. Thus, Bdph depolarized the membrane and facilitated the cumulative Ca2+-induced twitch responses.
topic adrenergic prejunctional membrane
potassium channel blocker
voltage-dependent calcium channel blocker
url http://dx.doi.org/10.1080/13880209.2018.1495749
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