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大鼠尾动脉生长和成熟过程中离体节段诱发反应的电生理研究。

An electrophysiological study of responses evoked in isolated segments of rat tail artery during growth and maturation.

作者信息

Jobling P, McLachlan E M

机构信息

Department of Physiology and Pharmacology, University of Queensland, Australia.

出版信息

J Physiol. 1992 Aug;454:83-105. doi: 10.1113/jphysiol.1992.sp019255.

Abstract
  1. Intracellular recordings from the smooth muscle of isolated segments of the main caudal artery of rats at various ages between 45 and 150 days postnatal were made in order to relate the spontaneous depolarizations and responses to perivascular stimulation at different levels along the artery to the differences in vessel structure and innervation density during growth of the animals. 2. In the outermost smooth muscle cells close to the neuromuscular junctions, spontaneous depolarizations with fast time courses (spontaneous excitatory junction potentials or SEJPs) were recorded. In cells lying deeper in the media, spontaneous depolarizations had a wide range of time courses and amplitudes, but only a few of those could be attributed to electrotonic attenuation of SEJPs. 3. In arterial segments taken from animals of all ages, stimuli which evoked maximal amplitude excitatory junction potentials (EJPs) 1-2 mm caudal to a suction electrode also evoked neurogenic alpha-depolarizations (NADs) with time to peak of 15 s and duration nearly 1 min. Both responses decreased progressively in amplitude along the length of the artery. NADs were blocked by phentolamine (10(-6) M) or idazoxan (10(-7) M) which were without effects on EJPs. 4. During short trains of stimuli (5 at 1 or 10 Hz), EJPs facilitated but to a lesser extent with distance along the tail. Such trains evoked NADs of greater amplitude than those following a single stimulus; these were often preceded by contractions of the artery which were restricted to the region close to the stimulating electrode. 5. Increasing stimulus voltage led to progressive prolongation of the decay phase of the EJP. After the addition of tetrodotoxin (10(-7) M), or in the presence of reduced Ca2+ and raised Mg2+ concentration, slow depolarizing potentials (SDPs) (with time to peak of 150-300 ms and decay lasting > 2 s) were recorded which were graded in amplitude with stimulus voltage. SDPs were attenuated by increasing Ca2+ concentration to 5 mM. These responses often added to the EJP at supramaximal stimulus voltages. 6. The mean amplitudes of the EJP and NAD declined significantly with age, the former to a greater degree than the latter. These changes may be explained by changes in the electrical properties of the media related to hypertrophy of smooth muscle cells as the animals grew, and emphasize the need to allow for such growth effects in studies of young rats.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 为了将出生后45至150天不同年龄段大鼠主尾动脉分离段平滑肌的自发去极化以及对血管周围不同水平刺激的反应,与动物生长过程中血管结构和神经支配密度的差异联系起来,进行了细胞内记录。2. 在靠近神经肌肉接头的最外层平滑肌细胞中,记录到了具有快速时间进程的自发去极化(自发兴奋性接头电位或SEJPs)。在中膜较深处的细胞中,自发去极化具有广泛的时间进程和幅度,但其中只有少数可归因于SEJPs的电紧张性衰减。3. 在取自所有年龄段动物的动脉段中,在吸引电极尾侧1 - 2毫米处诱发最大幅度兴奋性接头电位(EJPs)的刺激,也诱发了神经源性α去极化(NADs),其峰值时间为15秒,持续时间近1分钟。两种反应沿动脉长度的幅度都逐渐降低。NADs被酚妥拉明(10⁻⁶ M)或咪唑克生(10⁻⁷ M)阻断,而这两种药物对EJPs无影响。4. 在短串刺激(1或10 Hz,每次5个)期间,EJPs有易化现象,但沿尾部的易化程度较小。这样的串刺激诱发的NADs幅度比单个刺激后的大;这些NADs之前常常伴有动脉收缩,且收缩仅限于靠近刺激电极的区域。5. 增加刺激电压导致EJP衰减相逐渐延长。加入河豚毒素(10⁻⁷ M)后,或在降低Ca²⁺浓度并提高Mg²⁺浓度的情况下,记录到了缓慢去极化电位(SDPs)(峰值时间为150 - 300毫秒,衰减持续>2秒),其幅度随刺激电压分级变化。将Ca²⁺浓度增加到5 mM可使SDPs衰减。在超最大刺激电压下,这些反应常常叠加到EJP上。6. EJP和NAD的平均幅度随年龄显著下降,前者下降程度大于后者。这些变化可能由随着动物生长平滑肌细胞肥大导致的中膜电特性变化来解释,并强调在幼鼠研究中需要考虑这种生长效应。(摘要截短至400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8b9/1175596/f45ba3c869f7/jphysiol00428-0095-a.jpg

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