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大鼠下颌下腺腺泡和颗粒导管在分级自主神经刺激下蛋白质的差异分泌。

Differential secretion of proteins by rat submandibular acini and granular ducts on graded autonomic nerve stimulations.

作者信息

Anderson L C, Garrett J R, Zhang X, Proctor G B, Shori D K

机构信息

Department of Oral Biology, University of Washington, Seattle, USA.

出版信息

J Physiol. 1995 Jun 1;485 ( Pt 2)(Pt 2):503-11. doi: 10.1113/jphysiol.1995.sp020746.

Abstract
  1. The influence of graded parasympathetic and sympathetic nerve stimulations on the secretion of protein from rat submandibular gland was studied. Peroxidase was used as a marker for the acini and rat tissue kallikrein (official nomenclature rK1) as the marker for granular ducts. Tonin (rK2) was also measured, and the ratio of rK2:rK1 was calculated as an indication of the cellular route of secretion. 2. Continuous parasympathetic nerve stimulation caused a copious flow of saliva that had a low protein content. The secretion of peroxidase (acini) showed a gradual moderate increase as the frequency increased. However, the concentrations of rK1 and rK2 (granular ducts) showed little change throughout, and the ratio of rK2:rK1 remained relatively constant. 3. Graded sympathetic stimulation was applied against a background of parasympathetic stimulation. Secretion of peroxidase was increased by the addition of 0.1 Hz continuous sympathetic stimulation. The amount increased thereafter up to 2 Hz, but showed no further increase if the stimulation was applied as bursts of 10 or 20 Hz. In comparison, the secretion of proteinase activity showed little change with superimposed continuous sympathetic stimulation, and the rK2:rK1 ratio was similar to that in saliva produced by parasympathetic stimulation alone. Sympathetic stimulation applied in bursts, however, caused a large increase in the secretion of proteinase activity, and with 20 Hz burst stimulation the rK2:rK1 ratio was indistinguishable from that of sympathetic saliva per se. There was an augmented secretion of both peroxidase and kallikrein when 20 Hz burst stimulation was combined with parasympathetic stimulation. The effects of sympathetic stimulation were abolished by alpha- and beta-adrenoceptor blockade.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 研究了分级副交感神经和交感神经刺激对大鼠下颌下腺蛋白质分泌的影响。过氧化物酶用作腺泡的标志物,大鼠组织激肽释放酶(官方命名为rK1)用作颗粒管的标志物。还测定了托宁(rK2),并计算rK2:rK1的比值以指示分泌的细胞途径。2. 持续的副交感神经刺激导致唾液大量分泌,其蛋白质含量较低。随着频率增加,过氧化物酶(腺泡)的分泌呈逐渐适度增加。然而,rK1和rK2(颗粒管)的浓度在整个过程中变化不大,rK2:rK1的比值保持相对恒定。3. 在副交感神经刺激的背景下施加分级交感神经刺激。添加0.1Hz连续交感神经刺激可增加过氧化物酶的分泌。此后,分泌量增加至2Hz,但如果以10或20Hz的脉冲形式施加刺激则不再进一步增加。相比之下,叠加连续交感神经刺激时蛋白酶活性的分泌变化不大,rK2:rK1的比值与仅由副交感神经刺激产生的唾液中的比值相似。然而,脉冲形式的交感神经刺激导致蛋白酶活性分泌大幅增加,在20Hz脉冲刺激下,rK2:rK1的比值与交感神经唾液本身的比值无法区分。当20Hz脉冲刺激与副交感神经刺激相结合时,过氧化物酶和激肽释放酶的分泌均增加。α和β肾上腺素能受体阻断可消除交感神经刺激的作用。(摘要截短至250字)

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