Garrett J R, Zhang X S, Proctor G B, Anderson L C, Shori D K
Department of Oral Pathology, King's College School of Medicine and Dentistry, London, UK.
Acta Physiol Scand. 1996 Jun;157(2):299-304. doi: 10.1111/1464-0597.00001-i1.
Sequential samples of saliva evoked by low frequency parasympathetic nerve stimulation were collected from cannulated submandibular ducts of anaesthetized rats following periods of varying length without stimulation. After such rest periods the first samples of saliva were found to contain much higher levels of tissue kallikrein (rK1) activity and protein than the ensuing samples from the same stimulation period and the latter contained levels similar to those found previously in parasympathetically evoked saliva rK1 activity in first samples increased with the length of the preceding interval, indicating that a continuous secretion of rK1 occurs from ductal cells into glandular lumina and accumulates there in the absence of stimulation or fluid secretion. The protein secretory pattern following rest pauses was unaffected by alpha-adrenergic receptor blockade and a high percentage of the proteinase activity was resistant to soya bean trypsin inhibitor, showing that the secretion was not caused by exocytosis of storage granules from ductal cells and therefore was likely to be a result of a constitutive secretion of newly synthesized enzyme. The pattern of continuous secretion into lumina detected for total protein in the absence of stimulation, suggests that other secretory proteins may also be secreted similarly but at different rates.
在对麻醉大鼠的下颌下腺导管进行插管后,于不同时长的无刺激期后,收集低频副交感神经刺激诱发的连续唾液样本。在这些休息期后,发现唾液的首个样本中组织激肽释放酶(rK1)活性和蛋白质水平远高于同一刺激期随后的样本,且后者的水平与先前在副交感神经诱发唾液中发现的水平相似。首个样本中rK1活性随前一间隔时长增加,表明rK1从导管细胞持续分泌至腺腔并在无刺激或液体分泌时在那里积累。休息期后的蛋白质分泌模式不受α-肾上腺素能受体阻断影响,且大部分蛋白酶活性对大豆胰蛋白酶抑制剂有抗性,表明该分泌并非由导管细胞储存颗粒的胞吐作用引起,因此可能是新合成酶组成性分泌的结果。在无刺激情况下检测到的总蛋白质持续分泌至腺腔的模式表明,其他分泌蛋白可能也以类似方式分泌,但速率不同。