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1
Effects of sympathetic innervation and temperature on the properties of rat heart adrenoceptors.交感神经支配和温度对大鼠心脏肾上腺素能受体特性的影响。
Br J Pharmacol. 1977 Apr;59(4):603-14. doi: 10.1111/j.1476-5381.1977.tb07728.x.
2
Thyroid hormone-dependent interconversion of myocardial alpha- and beta-adrenoceptors in the rat.大鼠心肌α-和β-肾上腺素能受体的甲状腺激素依赖性相互转化
Br J Pharmacol. 1977 Jan;59(1):177-89. doi: 10.1111/j.1476-5381.1977.tb06992.x.
3
Temperature-induced interconversion of alpha-and beta-adrenoceptors in the frog heart.温度诱导青蛙心脏中α-和β-肾上腺素能受体的相互转化。
J Physiol. 1976 Mar;256(1):23-40. doi: 10.1113/jphysiol.1976.sp011309.
4
The influence of hormonal and neuronal factors on rat heart adrenoceptors.激素和神经因素对大鼠心脏肾上腺素能受体的影响。
Br J Pharmacol. 1980;71(2):371-86. doi: 10.1111/j.1476-5381.1980.tb10950.x.
5
Cardiac adrenoceptors at low temperature and the adrenoceptor interconversion hypothesis.低温下的心脏肾上腺素能受体与肾上腺素能受体相互转化假说
Br J Pharmacol. 1977 Oct;61(2):167-73. doi: 10.1111/j.1476-5381.1977.tb08401.x.
6
Characterization of adrenoceptors mediating positive inotropic responses in the ventricular myocardium of the dog.犬心室肌中介导正性肌力反应的肾上腺素能受体的特性研究
Br J Pharmacol. 1978 Sep;64(1):53-61. doi: 10.1111/j.1476-5381.1978.tb08640.x.
7
Cardiac inotropic beta adrenoceptors are fully active at low temperature.心脏变力性β肾上腺素能受体在低温时完全激活。
J Pharmacol Exp Ther. 1979 Sep;210(3):429-32.
8
Influence of temperature on the sensitivity of the adrenoceptors in the isolated atria of guinea pigs and rats.温度对豚鼠和大鼠离体心房肾上腺素能受体敏感性的影响。
Eur J Pharmacol. 1979 Apr 15;55(2):189-97. doi: 10.1016/0014-2999(79)90391-1.
9
Cardiac adrenoceptors at low temperature: what is the experimental evidence for the adrenoceptor interconversion hypothesis?低温下的心脏肾上腺素能受体:肾上腺素能受体相互转化假说的实验证据是什么?
Fed Proc. 1977 Nov;36(12):2575-9.
10
Do both adrenaline and noradrenaline stimulate cardiac alpha-adrenoceptors to induce positive inotropy of rat atria?肾上腺素和去甲肾上腺素都会刺激心脏α-肾上腺素能受体以诱导大鼠心房产生正性肌力作用吗?
Br J Pharmacol. 1989 Oct;98(2):597-611. doi: 10.1111/j.1476-5381.1989.tb12634.x.

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1
Decreased cAMP Level and Decreased Downregulation of β-Adrenoceptor Expression in Therapeutic Hypothermia-Resuscitated Myocardium Are Associated With Improved Post-Resuscitation Myocardial Function.治疗性低温复律后心肌 cAMP 水平降低和β肾上腺素能受体表达下调与复苏后心肌功能改善相关。
J Am Heart Assoc. 2018 Mar 23;7(6):e006573. doi: 10.1161/JAHA.117.006573.
2
Lusitropic effects of alpha- and beta-adrenergic stimulation in amphibian heart.α-和β-肾上腺素能刺激对两栖类心脏的变时性效应。
Mol Cell Biochem. 1994 Dec 21;141(2):87-95. doi: 10.1007/BF00926171.
3
The influence of hormonal and neuronal factors on rat heart adrenoceptors.激素和神经因素对大鼠心脏肾上腺素能受体的影响。
Br J Pharmacol. 1980;71(2):371-86. doi: 10.1111/j.1476-5381.1980.tb10950.x.
4
Effect of hypothermia on beta 1-adrenoceptor-mediated relaxation of pig bronchus.低温对猪支气管β1-肾上腺素能受体介导的舒张作用的影响。
Br J Pharmacol. 1983 Dec;80(4):699-702. doi: 10.1111/j.1476-5381.1983.tb10060.x.
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Temperature related effects on the binding characteristics of beta-adrenergic receptor agonists and antagonists by rabbit lung.温度对兔肺β-肾上腺素能受体激动剂和拮抗剂结合特性的相关影响
Naunyn Schmiedebergs Arch Pharmacol. 1981 Jul;316(4):278-87. doi: 10.1007/BF00501358.
6
[Alpha-adrenoceptors in the myocardium: incidence and functional significance].[心肌中的α-肾上腺素能受体:发生率及功能意义]
Klin Wochenschr. 1985 Nov 4;63(21):1087-97. doi: 10.1007/BF02291089.
7
Alpha-adrenoceptor-mediated chronotropic response: influence of temperature and basal spontaneous rate.α-肾上腺素能受体介导的变时反应:温度和基础自发率的影响
Naunyn Schmiedebergs Arch Pharmacol. 1989 Mar;339(3):315-9. doi: 10.1007/BF00173585.
8
Temperature-dependent effects of halothane and isoflurane on the isolated left atrium.氟烷和异氟烷对离体左心房的温度依赖性效应。
Can J Anaesth. 1990 May;37(4 Pt 1):482-5. doi: 10.1007/BF03005633.
9
Effect of variations in temperature on antimuscarinic activity in guinea-pig atria.温度变化对豚鼠心房抗毒蕈碱活性的影响。
Experientia. 1978 May 15;34(5):641-3. doi: 10.1007/BF01937009.
10
Lack of evidence for a temperature-mediated change of adrenoceptor type in the rat heart.缺乏大鼠心脏中温度介导的肾上腺素能受体类型变化的证据。
Naunyn Schmiedebergs Arch Pharmacol. 1978 Jan-Feb;301(3):217-22. doi: 10.1007/BF00507040.

本文引用的文献

1
Blockade of epinephrine-induced cardio-acceleration in the frog.对青蛙中肾上腺素诱导的心脏加速的阻滞。
Am J Physiol. 1950 Dec;163(3):484-504. doi: 10.1152/ajplegacy.1950.163.3.484.
2
ADRENOTROPIC RECEPTORS IN THE FROG.青蛙体内的肾上腺素能受体
J Pharmacol Exp Ther. 1965 Jul;149:65-70.
3
Reactions of dibenamine and some congeners with substances of biological interest in relation to the mechanism of adrenergic blockade.二苯胺及其某些同系物与具有生物学意义的物质的反应与肾上腺素能阻断机制的关系。
J Pharmacol Exp Ther. 1954 Nov;112(3):274-90.
4
Dibenamine blockade in strips of rabbit aorta and its use in differentiating receptors.二苯乙胺对兔主动脉条的阻断作用及其在受体鉴别中的应用。
J Pharmacol Exp Ther. 1954 Jul;111(3):265-84.
5
The chemical transformations of dibenamine and dibenzyline and biological activity.双苄胺和双苄苯胺的化学转化及其生物活性。
J Pharmacol Exp Ther. 1953 Nov;109(3):328-39.
6
Axonal delivery of neuroplasmic components to muscle cells.神经浆成分向肌肉细胞的轴突运输。
Science. 1967 Jan 20;155(3760):342-5. doi: 10.1126/science.155.3760.342.
7
Effect of sympathetic denervation on the alpha receptors of the cat nictitating membrane.交感神经去神经支配对猫瞬膜α受体的影响。
J Pharmacol Exp Ther. 1966 Jul;153(1):48-61.
8
Effects of a haloalkylamine on responses to and disposition of sympathomimetic amines.卤代烷基胺对拟交感神经胺反应及处置的影响。
Br J Pharmacol. 1969 Mar;35(3):440-55. doi: 10.1111/j.1476-5381.1969.tb08285.x.
9
Decrease in effectiveness of phenoxybenzamine after chronic denervation and chronic decentralization of the nictitating membrane of the pithed cat.去脑猫瞬膜慢性去神经支配和慢性去中枢支配后苯氧苄胺效能的降低
J Pharmacol Exp Ther. 1968 Oct;163(2):290-9.
10
Factors influencing noradrenaline uptake by the perfused spleen of the cat.影响猫灌注脾脏去甲肾上腺素摄取的因素。
J Physiol. 1968 Feb;194(3):609-26. doi: 10.1113/jphysiol.1968.sp008428.

交感神经支配和温度对大鼠心脏肾上腺素能受体特性的影响。

Effects of sympathetic innervation and temperature on the properties of rat heart adrenoceptors.

作者信息

Kunos G, Nickerson M

出版信息

Br J Pharmacol. 1977 Apr;59(4):603-14. doi: 10.1111/j.1476-5381.1977.tb07728.x.

DOI:10.1111/j.1476-5381.1977.tb07728.x
PMID:870123
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1667749/
Abstract
  1. The pharmacological characteristics of adrenoceptors at different temperatures were assessed on the basis of the effects of various alpha- and beta-adrenoceptor agonists and antagonists on electrically-driven left atria and spontaneously-beating pairs of atria from rats. 2. Phenoxybenzamine (Pbz) potentiated inotropic responses of left atria to noradrenaline (NA) at 31 degrees C, produced significantly less potentiation at 24 degrees C and inhibited responses at 17 degrees C; it had little effect on responses to CaCl2. Both Pbz and phentolamine inhibited responses to phenylephrine more effectively at 17 than at 31 degrees C. N-cyclohexylmethyl-N-ethyl-beta-chloroethylamine hydrochloride (GD-131), a haloalkylamine with negligible alpha-adrenoceptor blocking activity, caused only potentiation of responses to NA at 17 degrees C. 3. The presence of phentolamine during incubation with Pbz eliminated block of responses to NA and revealed a potentiation that was equivalent at all three temperatures tested. Phentolamine did not alter the block of responses to 5-hydroxytryptamine by Pbz. Protection of alpha-adrenoceptors by phentolamine during exposure to [3H]-Pbz significantly decreased the amount of label bound to the myocardium at 17 degrees C, but did not alter binding at 31 degrees C. 4. Inhibition of responses to NA by propranolol decreased with temperature, and the magnitude of the change increased with the concentration of propranolol. Compared to 31 degrees C, the effect of the highest concentration of propranolol. (4.0 micronM) was significantly decreased at 24 degrees C, and the effects of all except the lowest concentration (0.04 micronM) were significantly decreased at 17 degrees C. 5. The potency of isoprenaline decreased and that of phenylephrine increased at low temperatures, and their potency ratio was much lower at 17 than at 31 degrees C for both the inotropic and chronotropic responses of spontaneously-beating atria. However, the ratio was unaffected by temperature in electrically-driven left atria. A similar difference between spontaneously-beating and driven preparations is apparent in the data of other workers, but its basis is not clear. 6. Atria from rats pretreated with 6-hydroxydopamine (6-OHDA) were sensitized to the effects of NA, and there was no increase in alpha-adrenoceptor properties at low temperatures. Little alpha-adrenoceptor activity could be demonstrated in chemically denervated atria at any temperature, 6-OHDA pretreatment did not alter the binding of [3H]-Pbz at 31 degrees C, but decreased it significantly at 17 degrees C. Pretreatment with reserpine caused some sensitization, but not significantly after the characteristics of the adrenoceptors or their responses to temperature. 7. It is concluded that the adrenoceptors of atria are affected by temperature in much the same way as those of frog hearts, although the transition from beta- to alpha-adrenoceptor properties may begin at a slightly higher temperature...
摘要
  1. 根据各种α和β肾上腺素能受体激动剂及拮抗剂对大鼠电驱动左心房和自发搏动的心房对的作用,评估了不同温度下肾上腺素能受体的药理学特性。2. 酚苄明(Pbz)在31℃时增强左心房对去甲肾上腺素(NA)的变力反应,在24℃时增强作用明显减弱,在17℃时抑制反应;它对氯化钙的反应影响很小。与31℃相比,Pbz和酚妥拉明在17℃时对去氧肾上腺素反应的抑制作用更有效。N-环己基甲基-N-乙基-β-氯乙胺盐酸盐(GD-131),一种α肾上腺素能受体阻断活性可忽略不计的卤代烷基胺,仅在17℃时增强对NA的反应。3. 在与Pbz共同孵育期间加入酚妥拉明可消除对NA反应的阻断,并显示在所有三个测试温度下均有等效的增强作用。酚妥拉明未改变Pbz对5-羟色胺反应的阻断作用。在暴露于[3H]-Pbz期间,酚妥拉明对α肾上腺素能受体的保护在17℃时显著降低了与心肌结合的标记物量,但在31℃时未改变结合情况。4. 普萘洛尔对NA反应的抑制作用随温度降低,且变化幅度随普萘洛尔浓度增加而增大。与31℃相比,最高浓度(4.0μM)的普萘洛尔在24℃时作用显著降低,除最低浓度(0.04μM)外,所有浓度在17℃时作用均显著降低。5. 低温下异丙肾上腺素的效能降低,去氧肾上腺素的效能增加,对于自发搏动心房的变力和变时反应,其效能比在17℃时比在