Green P G, Miao F J, Jänig W, Levine J D
Department of Oral Surgery, University of California, San Francisco 94143, USA.
J Neurosci. 1995 Jun;15(6):4678-86. doi: 10.1523/JNEUROSCI.15-06-04678.1995.
We describe that an ongoing inflammatory response at one site (produced by complete Freund's adjuvant injection in the hindpaw) produces a negative feedback inhibition on plasma extravasation, produced by perfusion of the inflammatory mediator, bradykinin (160 nM), at a second site (the knee joint). This negative feedback process is abolished in rats that have been neonatally treated with capsaicin to deplete most of their unmyelinated primary afferent fibers, which suggests that this negative feedback process is mediated by activation of primary afferent fibers. Electrical stimulation of the hindpaw at intensities that excite C-fibers also inhibited bradykinin-induced plasma extravasation. Stimulation at intensities that only excite A-fibers had no effect on bradykinin-induced plasma extravasation. Platelet activating factor-induced plasma extravasation, which is not dependent on the innervation of the joint, was not inhibited by stimulation of C-fibers from the hindpaw. Acute surgical interruption of the lumbar sympathetic outflow to the hind limb (the paravertebral ganglia between L2 and L4) did not attenuate the depression of bradykinin-induced plasma extravasation produced by C-fiber stimulation. This indicates that the depression is not mediated by activity in the sympathetic outflow. Transection of the spinal cord, hypophysectomy, inhibition of corticosterone synthesis, and adrenalectomy (but not adrenal medullectomy) all prevented the inhibition of BK-induced plasma extravasation by electrical simulation, indicating that the negative feedback inhibition on plasma extravasation is dependent on an intact neuraxis and an intact hypothalamic-pituitary-adrenocortical axis. In summary, our data demonstrate a negative feedback inhibition of an inflammatory process, which is elicited by stimulation of C-fiber afferents.(ABSTRACT TRUNCATED AT 250 WORDS)
我们描述了一个部位(后爪注射完全弗氏佐剂所产生的)持续的炎症反应对血浆外渗产生负反馈抑制,该血浆外渗是由炎症介质缓激肽(160 nM)灌注到另一个部位(膝关节)所引发的。在新生期用辣椒素处理以耗尽其大部分无髓初级传入纤维的大鼠中,这种负反馈过程被消除,这表明该负反馈过程是由初级传入纤维的激活介导的。以激发C纤维的强度电刺激后爪也抑制了缓激肽诱导的血浆外渗。以仅激发A纤维的强度进行刺激对缓激肽诱导的血浆外渗没有影响。血小板活化因子诱导的血浆外渗不依赖于关节的神经支配,不受后爪C纤维刺激的抑制。对后肢(L2和L4之间的椎旁神经节)进行腰交感神经传出急性手术切断,并未减弱C纤维刺激所产生的对缓激肽诱导的血浆外渗的抑制作用。这表明该抑制作用不是由交感神经传出活动介导的。脊髓横断、垂体切除、皮质酮合成抑制和肾上腺切除(但不是肾上腺髓质切除)均阻止了电刺激对BK诱导的血浆外渗的抑制作用,表明对血浆外渗的负反馈抑制依赖于完整的神经轴和完整的下丘脑 - 垂体 - 肾上腺皮质轴。总之,我们的数据证明了由C纤维传入刺激引发的对炎症过程的负反馈抑制。(摘要截断于250字)