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体内血流速率对棕色脂肪组织中去甲肾上腺素的分数提取及摄取的影响。

Effects of rate of blood flow on fractional extraction and on uptake of infused noradrenaline by brown adipose tissue in vivo.

作者信息

Foster D O, Depocas F, Zaror-Behrens G, Frydman M L, Lacelle S

出版信息

Can J Physiol Pharmacol. 1980 Oct;58(10):1212-20. doi: 10.1139/y80-184.

Abstract

The rate of blood flow (Q) to interscapular brown adipose tissue (IBAT) and the arteriovenous difference in plasma noradrenaline (NA) across the tissue were measured in warm-acclimated (WA) or cold-acclimated (CA) rats during infusion of NA at doses of 1-12.5 ng min-1 g-0.74 (approximately 0.2-2.7 micrograms min-1 kg-1) and in the period of steady calorigenic response associated with steady concentration of NA in arterial plasma (ANA). ANA was linearly related to the dose of NA. Calorigenic response, percentage of cardiac output to IBAT, and Q per gram of IBAT were sigmoid functions of ANA and at their maxima were about 2.5 times greater in CA than in WA rats. The rate of uptake of NA by IBAT increased with ANA and Q, each of which had a major influence on rate, but the coefficient of extraction of NA by the tissue (ENAIBAT) declined. Measurements in rats given a dose of propranolol that partially inhibited the NA-induced increase in Q to IBAT indicated that the decline in ENAIBAT was attributable primarily to the increase in Q rather than to increasing saturation of uptake mechanisms. Diffusion-limited extraction of NA is the probable basis for the effect of Q on ENAIBAT. Possible implications of flow-dependent extraction of NA in studies involving measurements of the uptake of exogenous NA by tissues or organs are discussed.

摘要

在对暖适应(WA)或冷适应(CA)大鼠输注剂量为1 - 12.5 ng min⁻¹ g⁻⁰.⁷⁴(约0.2 - 2.7 μg min⁻¹ kg⁻¹)的去甲肾上腺素(NA)期间,以及在与动脉血浆中NA稳定浓度(ANA)相关的稳定产热反应期,测量了肩胛间棕色脂肪组织(IBAT)的血流速率(Q)以及该组织的血浆去甲肾上腺素动静脉差值。ANA与NA剂量呈线性相关。产热反应、流向IBAT的心输出量百分比以及每克IBAT的Q均为ANA的S形函数,且在最大值时,CA大鼠比WA大鼠大约高2.5倍。IBAT对NA的摄取速率随ANA和Q增加,二者对摄取速率均有主要影响,但该组织对NA的提取系数(ENAIBAT)下降。对给予一定剂量普萘洛尔的大鼠进行测量,该剂量部分抑制了NA诱导的流向IBAT的Q增加,结果表明ENAIBAT的下降主要归因于Q的增加,而非摄取机制饱和度的增加。NA的扩散受限提取可能是Q对ENAIBAT产生影响的基础。本文讨论了在涉及测量组织或器官对外源性NA摄取的研究中,NA的流量依赖性提取可能产生的影响。

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