Department of Anatomy and Neurobiology, College of Medicine, University of Vermont, Burlington, VT 05405, USA.
J Mol Neurosci. 2012 Nov;48(3):713-20. doi: 10.1007/s12031-012-9810-9. Epub 2012 May 15.
Autonomic neurons commonly respond to injury/axotomy with an increased expression of neuropeptides including galanin and pituitary adenylyl cyclase-activating polypeptide (PACAP). The increased peptide expression may enhance neuronal survival and axonal regeneration. Using quantitative (Q) PCR and immunocytochemistry, the present study tested whether galanin expression increased in male mouse major pelvic ganglia (MPG) neurons in response to injury. Galanin transcript expression increased significantly in MPG neurons following 72 h in explant culture and 72 h after unilateral transection of the cavernous nerve. Under both conditions, the increase in galanin transcript levels was greater than the increase in PACAP transcript levels. In control MPG, galanin-IR nerve fibers formed pericellular arrangements around MPG neurons although few galanin-IR cells were evident and many of the galanin-IR cells may be small intensely fluorescent (SIF) cells. In 3-day-cultured MPGs, many more galanin-IR cells and nerve fibers were noted. The increased galanin expression was most apparent in neurons that were also immunoreactive for neuronal nitric oxide synthase, rather than tyrosine hydroxylase. Some explant-cultured MPG neurons exhibited immunoreactivity to galanin and PACAP. As reported previously for PACAP, there is an injury-induced increase in MPG galanin expression, which occurs preferentially in the parasympathetic postganglionic neurons.
自主神经元通常对损伤/轴突切断作出反应,增加神经肽的表达,包括甘丙肽和垂体腺苷酸环化酶激活肽(PACAP)。增加的肽表达可能增强神经元的存活和轴突再生。本研究使用定量(Q)PCR 和免疫细胞化学技术,检测了雄性小鼠主要盆神经节(MPG)神经元在损伤后甘丙肽表达是否增加。在器官培养 72 小时和海绵体神经单侧横切 72 小时后,MPG 神经元中的甘丙肽转录表达显著增加。在这两种情况下,甘丙肽转录水平的增加大于 PACAP 转录水平的增加。在对照 MPG 中,甘丙肽-IR 神经纤维在 MPG 神经元周围形成细胞周围排列,尽管很少有甘丙肽-IR 细胞明显,并且许多甘丙肽-IR 细胞可能是小而强烈荧光(SIF)细胞。在 3 天培养的 MPG 中,注意到更多的甘丙肽-IR 细胞和神经纤维。甘丙肽表达的增加在同时对神经元型一氧化氮合酶而不是酪氨酸羟化酶呈免疫反应性的神经元中最为明显。一些器官培养的 MPG 神经元表现出对甘丙肽和 PACAP 的免疫反应性。如先前报道的 PACAP 一样,MPG 中的甘丙肽表达存在损伤诱导增加,这种增加主要发生在副交感节后神经元中。