α 1b肾上腺素受体和Rho激酶参与大鼠主动脉和小鼠脾脏收缩。

IF 1.6 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Hadeel A Alsufyani, James R Docherty
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引用次数: 1

摘要

α1-肾上腺素受体通过g蛋白Gq/G11连接Ca2+的进入和释放,但也可能激活Rho激酶,导致钙致敏。本研究旨在确定大鼠主动脉和小鼠脾脏中参与Rho激酶介导反应的α1-肾上腺素能受体亚型,其收缩涉及多种α1-肾上腺素能受体亚型。在拮抗剂或载体存在之前和存在时,组织随着去甲肾上腺素(NA)的累积浓度以0.5 log单位增量收缩。NA在大鼠主动脉中产生的收缩完全是α - 1肾上腺素受体介导的,因为它们被哌唑嗪竞争性地阻断。α α -肾上腺素受体拮抗剂RS100329在大鼠主动脉内的效价较低。α 1d -肾上腺素受体拮抗剂BMY7378呈低浓度阻断α 1d -肾上腺素受体和高浓度阻断α 1b -肾上腺素受体双相拮抗大鼠主动脉收缩。Rho激酶抑制剂法舒地尔(10 μM)在最大反应方面显著降低主动脉收缩,提示抑制α 1b -肾上腺素能受体介导的反应。在小鼠脾脏中,α1-肾上腺素受体3种亚型均参与NA的收缩,法舒地尔(3 μM)显著降低NA的早期和晚期成分,早期成分涉及α1B-和α 1d -肾上腺素受体,晚期成分涉及α1B-和α 1a -肾上腺素受体。这表明法舒地尔抑制α 1b肾上腺素受体介导的反应。综上所述,α1D-和α 1b -肾上腺素受体在大鼠主动脉中相互作用,α1D-、α1A-和α 1b -肾上腺素受体在小鼠脾脏中相互作用产生收缩,这些相互作用表明其中一种受体优先激活Rho激酶,最有可能是α 1b -肾上腺素受体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Involvement of α<sub>1B</sub>-adrenoceptors and Rho kinase in contractions of rat aorta and mouse spleen.

Involvement of α<sub>1B</sub>-adrenoceptors and Rho kinase in contractions of rat aorta and mouse spleen.

Involvement of α<sub>1B</sub>-adrenoceptors and Rho kinase in contractions of rat aorta and mouse spleen.

Involvement of α1B-adrenoceptors and Rho kinase in contractions of rat aorta and mouse spleen.

α1-adrenoceptors link via the G-protein Gq/G11 to both Ca2+ entry and release from stores, but may also activate Rho kinase, which causes calcium sensitization. This study aimed to identify the subtype(s) of α1-adrenoceptor involved in Rho kinase-mediated responses in both rat aorta and mouse spleen, tissues in which contractions involve multiple subtypes of α1-adrenoceptor. Tissues were contracted with cumulative concentrations of noradrenaline (NA) in 0.5 log unit increments, before and in the presence of an antagonist or vehicle. Contractions produced by NA in rat aorta are entirely α1-adrenoceptor mediated as they are competitively blocked by prazosin. The α1A-adrenoceptor antagonist RS100329 had low potency in rat aorta. The α1D-adrenoceptor antagonist BMY7378 antagonized contractions in rat aorta in a biphasic manner: low concentrations blocking α1D-adrenoceptors and high concentrations blocking α1B-adrenoceptors. The Rho kinase inhibitor fasudil (10 μM) significantly reduced aortic contractions in terms of maximum response, suggesting inhibition of α1B-adrenoceptor mediated responses. In the mouse spleen, a tissue in which all 3 subtypes of α1-adrenoceptor are involved in contractions to NA, fasudil (3 μM) significantly reduced both early and late components to the NA contraction, the early component involving α1B- and α1D-adrenoceptors, and the late component involving α1B- and α1A-adrenoceptors. This suggests that fasudil inhibits α1B-adrenoceptor mediated responses. It is concluded that α1D- and α1B-adrenoceptors interact in rat aorta and α1D-, α1A- and α1B-adrenoceptors interact in the mouse spleen to produce contractions and these interactions suggest that one of the receptors preferentially activates Rho kinase, most likely the α1B-adrenoceptor.

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来源期刊
Korean Journal of Physiology & Pharmacology
Korean Journal of Physiology & Pharmacology PHARMACOLOGY & PHARMACY-PHYSIOLOGY
CiteScore
3.20
自引率
5.00%
发文量
53
审稿时长
6-12 weeks
期刊介绍: The Korean Journal of Physiology & Pharmacology (Korean J. Physiol. Pharmacol., KJPP) is the official journal of both the Korean Physiological Society (KPS) and the Korean Society of Pharmacology (KSP). The journal launched in 1997 and is published bi-monthly in English. KJPP publishes original, peer-reviewed, scientific research-based articles that report successful advances in physiology and pharmacology. KJPP welcomes the submission of all original research articles in the field of physiology and pharmacology, especially the new and innovative findings. The scope of researches includes the action mechanism, pharmacological effect, utilization, and interaction of chemicals with biological system as well as the development of new drug targets. Theoretical articles that use computational models for further understanding of the physiological or pharmacological processes are also welcomed. Investigative translational research articles on human disease with an emphasis on physiology or pharmacology are also invited. KJPP does not publish work on the actions of crude biological extracts of either unknown chemical composition (e.g. unpurified and unvalidated) or unknown concentration. Reviews are normally commissioned, but consideration will be given to unsolicited contributions. All papers accepted for publication in KJPP will appear simultaneously in the printed Journal and online.
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