Proctor G B, Asking B, Garrett J R
Institute of Physiology and Biophysics, University of Lund, Sweden.
Arch Oral Biol. 1989;34(8):609-13. doi: 10.1016/0003-9969(89)90014-9.
Stimulation of the nerves to the rat parotid gland demonstrated that increases in serum amylase levels can originate exclusively from this gland. However, whilst parasympathetic nerve stimulation caused a significant movement of parotid amylase into the blood, sympathetic nerve stimulation did not, despite the higher concentration of amylase in the saliva evoked. Experiments in which conscious animals were fed for a short period showed that parotid amylase reaches the blood during normal activity. The mechanisms underlying the movement of parotid amylase into the circulation are still unknown but there appears to be some dependence on the volume of saliva being produced.
对大鼠腮腺神经的刺激表明,血清淀粉酶水平的升高可能完全源于该腺体。然而,虽然副交感神经刺激会导致腮腺淀粉酶大量进入血液,但交感神经刺激却不会,尽管交感神经刺激诱发的唾液中淀粉酶浓度更高。对清醒动物进行短期喂食的实验表明,在正常活动期间腮腺淀粉酶会进入血液。腮腺淀粉酶进入循环系统的潜在机制尚不清楚,但似乎与唾液分泌量存在一定关联。