Duve H, Thorpe A, Strausfeld N J
J Neurocytol. 1983 Oct;12(5):847-61. doi: 10.1007/BF01258155.
Certain neurons of the blowfly, Calliphora erythrocephala, show immunoreactivity to anti-gastrin/cholecystokinin (CCK) COOH terminal specific antisera. However, as is common to immunocytochemical staining, much of the structure of the immunoreactive neurons escapes detection. We describe here whole-neuron identification by backfilling with Co2+ and subsequent silver reduction, combined with immunocytochemistry of the filled cells. Cobalt-silver filled neurons can be examined directly by fluorescence microscopy for the presence of a secondary, rhodamine-conjugated antibody linked to the primary one. Two peptide-containing pathways have been resolved, one leading out of the brain to the corpus cardiacum, the other innervating certain higher brain centres, such as the central body. Both arise from neurosecretory cells of the mid-brain. Immunoreactive peptidergic neurons leading, respectively, to the corpus cardiacum and to the central body have been matched to single nerve cells visualized by Golgi impregnation, cobalt backfilling or focal injection of cobalt into the brain.
红头丽蝇的某些神经元对抗胃泌素/胆囊收缩素(CCK)羧基末端特异性抗血清呈免疫反应性。然而,与免疫细胞化学染色常见情况一样,免疫反应性神经元的大部分结构难以检测到。我们在此描述通过用Co2+回填并随后进行银还原结合填充细胞的免疫细胞化学来进行全神经元鉴定。可以通过荧光显微镜直接检查钴银填充的神经元,以确定与一级抗体相连的二级罗丹明偶联抗体的存在。已解析出两条含肽通路,一条从大脑通向心侧体,另一条支配某些高级脑中枢,如中央体。两者均从中脑的神经分泌细胞发出。分别通向心侧体和中央体的免疫反应性肽能神经元已与通过高尔基浸染、钴回填或向脑内局部注射钴可视化的单个神经细胞相匹配。