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非环磷酸腺苷依赖性、具有正性肌力作用且伴有负性变时性的环缩酚酸肽

Non-cyclic AMP-dependent, positive inotropic cyclodepsipeptides with negative chronotropy.

作者信息

Tsunoo A, Kamijo M

机构信息

Meiji Institute of Health Science, Meiji Milk Products Co., Ltd., Odawara, Kanagawa, Japan.

出版信息

J Pharmacol Exp Ther. 1999 Sep;290(3):1006-12.

Abstract

The effects of natural cyclodepsipeptides (CDPs) on isolated rat cardiac tissue preparations were examined in vitro. Destruxin A, destruxin B (DB), roseotoxin B (RB), and roseocardin (RC), a novel CDP, each caused a concentration-dependent increase in the contraction force of the right atrium and the papillary and trabecular muscles of the right ventricle at 0.6 to 600 microM. RB, destruxin A, and DB did not affect the half-decay time of relaxation of the papillary muscles, but RC slightly prolonged it, although to a much lesser extent than BA 41899, a calcium sensitizer. This inotropic effect is accompanied by a prolongation of the automatic atrial contraction intervals. The RB-induced increase in the contraction force of papillary muscle was not affected by phentolamine, propranolol, pyrilamine, or cimetidine. RB- and RC-induced increases in the contraction force of papillary muscles were not affected by 3-isobutyl-1-methylxanthine or carbachol. Neither peptide changed the cyclic AMP levels in trabecular muscles. Neither RB nor RC affected the activity of Na(+),K(+)-ATPase from rat kidney. Neither RB, RC, nor DB affected the resting membrane potential or the apparent input resistance of papillary muscles. These results suggest that these CDPs produce both non-cyclic AMP-dependent positive inotropic and negative chronotropic effects.

摘要

在体外研究了天然环缩肽(CDP)对离体大鼠心脏组织制剂的影响。杆孢菌素A、杆孢菌素B(DB)、玫瑰霉素B(RB)和一种新型CDP玫瑰心菌素(RC),在0.6至600微摩尔浓度下,均引起右心房以及右心室乳头肌和小梁肌收缩力呈浓度依赖性增加。RB、杆孢菌素A和DB不影响乳头肌舒张的半衰期,但RC使其略有延长,不过延长程度远小于钙敏化剂BA 41899。这种正性肌力作用伴随着心房自动收缩间期的延长。酚妥拉明、普萘洛尔、吡苄明或西咪替丁不影响RB诱导的乳头肌收缩力增加。3-异丁基-1-甲基黄嘌呤或卡巴胆碱不影响RB和RC诱导的乳头肌收缩力增加。两种肽均未改变小梁肌中的环磷酸腺苷水平。RB、RC和DB均不影响大鼠肾脏钠钾ATP酶的活性。RB、RC和DB均不影响乳头肌的静息膜电位或表观输入电阻。这些结果表明,这些CDP产生非环磷酸腺苷依赖性的正性肌力和负性变时作用。

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