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兔气管中儿茶酚胺反应的成熟及非神经元摄取

Maturation of catecholamine response and extraneuronal uptake in rabbit trachea.

作者信息

Varlotta L, Schramm C M

机构信息

Division of Pulmonary Medicine, Joseph Stokes' Jr. Research Institute, Children's Hospital of Philadelphia, Pennsylvania.

出版信息

Am J Physiol. 1994 Mar;266(3 Pt 1):L217-22. doi: 10.1152/ajplung.1994.266.3.L217.

Abstract

The present study investigated whether maturational changes in extraneuronal catecholamine clearance accounted for the ontogenetic attenuation of isoproterenol responsiveness in rabbit tracheal segments. Following half-maximal contraction with acetylcholine (ACh) or KCl, tracheal ring segments (TS) isolated from newborn, 1-mo, and adult rabbits were relaxed with cumulative administration of isoproterenol. With postnatal maturation, there occurred a significant decrease in both maximal relaxation and sensitivity to isoproterenol in both ACh- and KCl-contracted TS. Inhibition of extraneuronal catecholamine uptake with methylprednisolone resulted in enhanced sensitivity to isoproterenol in 1-mo and adult, but not in newborn tracheal segments. In separate studies, extraneuronal catecholamine uptake was directly assayed in tracheal segments isolated from rabbits of similar age and pretreated with neuronal uptake and monoamine oxidase inhibitors. Maximal extraneuronal uptake of [3H]norepinephrine significantly decreased with age in tracheal tissues. In contrast, the sensitivity of the uptake process to norepinephrine increased with age. The relative catecholamine reserve markedly decreased with age in rabbit tracheal segments and was directly related to the maximal degree of relaxation elicited with the beta-adrenergic catecholamine, isoproterenol, in age-matched TS precontracted with either ACh or KCl. These findings suggest that, with maturation, extraneuronal uptake more effectively competes with beta-adrenoreceptor stimulation and, accordingly, may contribute to the ontogenetic attenuation of beta-adrenergic responsiveness in rabbit tracheal tissues.

摘要

本研究调查了神经外源性儿茶酚胺清除的成熟变化是否是兔气管段异丙肾上腺素反应性个体发育衰减的原因。用乙酰胆碱(ACh)或氯化钾使气管环段(TS)产生半数最大收缩后,分别从新生兔、1月龄兔和成年兔分离出气管环段,通过累积给予异丙肾上腺素使其舒张。随着出生后成熟,在ACh和氯化钾收缩的TS中,最大舒张和对异丙肾上腺素的敏感性均显著降低。用甲基强的松龙抑制神经外源性儿茶酚胺摄取,可增强1月龄和成年兔气管段对异丙肾上腺素的敏感性,但对新生兔气管段无效。在另外的研究中,直接检测了从相似年龄的兔分离出并经神经元摄取和单胺氧化酶抑制剂预处理的气管段中的神经外源性儿茶酚胺摄取。气管组织中[3H]去甲肾上腺素的最大神经外摄取量随年龄显著降低。相反,摄取过程对去甲肾上腺素的敏感性随年龄增加。兔气管段中相对儿茶酚胺储备随年龄显著降低,并且与在与ACh或氯化钾预收缩的年龄匹配的TS中由β-肾上腺素能儿茶酚胺异丙肾上腺素引起的最大舒张程度直接相关。这些发现表明,随着成熟,神经外摄取与β-肾上腺素能受体刺激的竞争更有效,因此可能是兔气管组织中β-肾上腺素能反应性个体发育衰减的原因。

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