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生长激素细胞富集的原代培养大鼠垂体细胞对生长抑素的电生理反应

Electrophysiological responses to somatostatin of rat hypophysial cells in somatotroph-enriched primary cultures.

作者信息

Chen C, Israel J M, Vincent J D

机构信息

Laboratoire de Neurobiologie des Comportements INSERM-U. 176, Bordeaux, France.

出版信息

J Physiol. 1989 Jan;408:493-510. doi: 10.1113/jphysiol.1989.sp017472.

Abstract
  1. Somatotroph cells were obtained from pituitaries of adult male rats by dissociation, separation and enrichment on a continuous gradient of bovine serum albumin at unit gravity. They were kept in culture for 7-15 days before electrophysiological experiments. 2. Immunofluorescent staining of the resulting gradient fractions (numbered F2 to F9) indicated that the majority of somatotrophs (75-85%) were located in the heavy fractions (F8 and F9). However, a small percentage (15-20%) of cells in these fractions were identified as lactotrophs. 3. Perifusion experiments indicated that on the one hand release of growth hormone from somatotroph-enriched fractions was stable at the level of 6 ng (2 min)-1 (10(6) cells)-1 and was markedly inhibited by somatostatin (1.9 ng (2 min)-1 (10(6) cells)-1) but not by dopamine. On the other hand, in the same cell preparations, basal prolactin release (1.6 ng (2 min)-1 (10(6) cells)-1) was significantly reduced by dopamine (0.08 ng (2 min)-1 (10(6) cells)-1) but remained unchanged by somatostatin treatment. 4. The inhibitory effect of somatostatin on growth hormone release was dose dependent. This effect was not abolished by tetraethylammonium (40 mM) or 4-aminopyridine (5 mM), but somatostatin decreased high-potassium-induced release. 5. In all the cells recorded (n = 187), 14% (n = 26) displayed a low resting potential (less than -30 mV) and poor membrane resistance (less than 50 M omega). The recording was unstable and resting potentials decreased regularly to 0 mV in less than 5 min. The other 86% of the cells displayed resting potentials varying from -45 to -65 mV and had a membrane resistance of more than 150 M omega. Only cells which displayed these membrane characteristics showed clear responses to somatostatin or dopamine, and were therefore chosen for experiments. 6. In all the cells selected for the experiments (n = 161), 78% (n = 126) showed either triggered or spontaneous action potentials. The action potentials remained insensitive to sodium-free bath solution, but were reversibly blocked by the calcium channel blockers cobalt (5 mM) or nickel (5 mM). 7. When the cells were at resting potential, somatostatin induced a hyperpolarizing response associated with a decrease of membrane resistance. During this response, spontaneous or triggered action potentials were inhibited. The hyperpolarizing response induced by somatostatin was dose-dependent.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 通过解离、分离并在单位重力的牛血清白蛋白连续梯度上富集,从成年雄性大鼠的垂体中获取生长激素细胞。在进行电生理实验前,将它们培养7 - 15天。2. 对所得梯度级分(编号为F2至F9)进行免疫荧光染色表明,大多数生长激素细胞(75 - 85%)位于较重的级分(F8和F9)中。然而,这些级分中有一小部分(15 - 20%)的细胞被鉴定为催乳素细胞。3. 灌流实验表明,一方面,富含生长激素细胞的级分中生长激素的释放稳定在6 ng(2分钟)-1(10^6个细胞)-1的水平,并且显著受到生长抑素(1.9 ng(2分钟)-1(10^6个细胞)-1)的抑制,但不受多巴胺的抑制。另一方面,在相同的细胞制剂中,基础催乳素释放(1.6 ng(2分钟)-1(10^6个细胞)-1)被多巴胺(0.08 ng(2分钟)-1(10^6个细胞)-1)显著降低,但生长抑素处理后保持不变。4. 生长抑素对生长激素释放的抑制作用呈剂量依赖性。这种作用不会被四乙铵(40 mM)或4 - 氨基吡啶(5 mM)消除,但生长抑素会降低高钾诱导的释放。5. 在所有记录的细胞(n = 187)中,14%(n = 26)表现出低静息电位(小于 - 30 mV)和低膜电阻(小于50 MΩ)。记录不稳定,静息电位在不到5分钟内定期降至0 mV。其他86%的细胞表现出 - 45至 - 65 mV的静息电位,膜电阻大于150 MΩ。只有表现出这些膜特性的细胞对生长抑素或多巴胺有明显反应,因此被选用于实验。6. 在所有选用于实验的细胞(n = 161)中,78%(n = 126)表现出触发或自发动作电位。动作电位对无钠浴液不敏感,但被钙通道阻滞剂钴(5 mM)或镍(5 mM)可逆性阻断。7. 当细胞处于静息电位时,生长抑素诱导超极化反应,伴随着膜电阻降低。在此反应期间,自发或触发的动作电位受到抑制。生长抑素诱导的超极化反应呈剂量依赖性。(摘要截短至400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c17/1190416/c4141e169dcc/jphysiol00496-0508-a.jpg

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