Rinaman L
Department of Neuroscience, University of Pittsburgh, Pennsylvania 15260, USA.
J Comp Neurol. 1998 Sep 14;399(1):101-9. doi: 10.1002/(sici)1096-9861(19980914)399:1<101::aid-cne8>3.0.co;2-5.
The paraventricular nucleus of the hypothalamus (PVN) modulates vagal digestive motor functions via oxytocinergic projections to the nucleus of the solitary tract (NST) and dorsal motor nucleus of the vagus (DMV) in adult rats. Little is known regarding the structural or functional maturation of these projections. The present study examines the postnatal development of immunocytochemically identified oxytocinergic fibers in gastric subregions of the medial NST-DMV. For this purpose, a monoclonal antibody (PS36) that recognizes both oxytocin (OT)-neurophysin and its prohormone was used to identify oxytocinergic fibers. PS36-positive fibers already were present within the NST-DMV in rats on the day of birth. Retrograde transport of cholera toxin neural tracer from the NST-DMV in newborn rats confirmed that PVN neurons were the sole source of these oxytocinergic fibers. The cumulative length of PS36-positive fibers in sampled subregions of the medial NST and DMV increased approximately 23-fold and 94-fold, respectively, between birth and adulthood. The observed postnatal increases in PS36 immunolabeling could reflect increased delivery of immunoreactive antigen from hypothalamic perikarya to distal axons and/or increasing oxytocinergic innervation of the NST-DMV. Additional work will be needed to address these questions and to determine the time course during which central oxytocinergic pathways become mature in their ability to influence vagally mediated digestive functions.
下丘脑室旁核(PVN)通过催产素能投射至成年大鼠孤束核(NST)和迷走神经背运动核(DMV)来调节迷走神经的消化运动功能。关于这些投射的结构或功能成熟情况,人们知之甚少。本研究考察了内侧NST-DMV胃亚区中经免疫细胞化学鉴定的催产素能纤维的出生后发育情况。为此,使用一种能识别催产素(OT)-神经垂体素及其前体激素的单克隆抗体(PS36)来鉴定催产素能纤维。出生当天的大鼠,NST-DMV内已存在PS36阳性纤维。新生大鼠中,霍乱毒素神经示踪剂从NST-DMV的逆行运输证实,PVN神经元是这些催产素能纤维的唯一来源。在内侧NST和DMV的采样亚区中,PS36阳性纤维的累积长度在出生至成年之间分别增加了约23倍和94倍。观察到的出生后PS36免疫标记增加可能反映了免疫反应性抗原从下丘脑胞体向远端轴突的递送增加和/或NST-DMV的催产素能神经支配增加。需要进一步的研究来解决这些问题,并确定中枢催产素能通路在影响迷走神经介导的消化功能方面成熟的时间进程。