Mesce K A, Amos T M, Clough S M
Department of Entomology, University of Minnesota, St. Paul 55108.
Biotech Histochem. 1993 Jul;68(4):222-8. doi: 10.3109/10520299309104702.
Modified protocols for cobalt-filling and silver intensification of neurons in the larval and adult stages of the moth, Manduca sexta, have led to improved neuronal visualization and minimal background staining. In particular, long distance projecting multisegmental interneurons, originating in the pterothoracic or terminal abdominal ganglion, were best visualized when a cobalt:lysine complex was used to fill hemi-connectives for several days at 4 C. Ganglia closest to the placement of tracer, which became flooded with cobalt:lysine during the filling period, were removed from the insect. This step eliminated the artifactual filling of neurons that may have taken up the tracer from such pooled regions. This led to a more accurate assessment of whether a multisegmental interneuron projected through the full length of nerve cord to the original site of tracer placement. The protocol for light insensitive silver intensification of cobalt-filled neurons was modified to include an important pH adjustment. NaOH was used to alter the pH of the protective colloid, sodium tungstate, to 10.4 or greater in solution. Especially in larvae, our techniques produced intensely stained cobalt-filled neurons within ganglia that remained transparent and relatively free of nonspecific silver deposition.
针对烟草天蛾幼虫和成虫阶段神经元的钴填充及银强化的改良方案,已实现了神经元可视化的改善以及背景染色的最小化。特别是,起源于翅胸节或腹部末端神经节的长距离投射多节段中间神经元,当在4℃下使用钴:赖氨酸复合物填充半连接体数天时,可视化效果最佳。在填充过程中被钴:赖氨酸淹没的、最靠近示踪剂放置位置的神经节,会从昆虫身上移除。这一步骤消除了可能从这些汇集区域摄取示踪剂的神经元的人为填充。这使得对多节段中间神经元是否通过神经索全长投射到示踪剂放置的原始位置进行更准确的评估成为可能。钴填充神经元的光不敏感银强化方案进行了修改,包括重要的pH值调整。使用氢氧化钠将保护胶体钨酸钠溶液的pH值改变为10.4或更高。特别是在幼虫中,我们的技术在神经节内产生了染色强烈的钴填充神经元,神经节保持透明且相对没有非特异性银沉积。