INTRACELLULAR INJECTION IN FIXED SLICES IN COMBINATION WITH NEUROANATOMICAL TRACING TECHNIQUES AND ELECTRON-MICROSCOPY TO DETERMINE MULTISYNAPTIC PATHWAYS IN THE BRAIN

被引:23
作者
BUHL, EH
机构
[1] MRC Anatomical Neuropharmacology Unit, University Department of Pharmacology, Oxford
关键词
LUCIFER YELLOW; PHOTOCONVERSION; RETROGRADE TRACING; ANTEROGRADE DEGENERATION;
D O I
10.1002/jemt.1070240104
中图分类号
R602 [外科病理学、解剖学]; R32 [人体形态学];
学科分类号
100101 [人体解剖与组织胚胎学];
摘要
Intracellular Lucifer Yellow filling in fixed tissue has been recently introduced as a novel neuroanatomical approach to reveal the detailed morphology of individual neurons in isolated preparations of the central nervous system. Since dye injections are performed under visual control, the method is characterized by a high degree of inherent staining selectivity, thus circumventing the element of randomness often considered to be the crux of classical Golgi-impregnation techniques. Moreover, the opportunity to optically monitor the injection procedure renders fixed slice preparations highly advantageous to be used in combination with retrograde fluorescent tracing. Subsequently, dye-filled neurons may be subjected to a simple photoconversion procedure leading to the intracellular formation of a stable polymer thus obtaining permanent specimens for light microscopy purposes. Due to the osmiophilic nature of the precipitate the photoconverted material is equally suitable for correlated electron microscopy, thus enabling the analysis of neuronal microcircuitry. At the ultrastructural level, sources of afferent input to identified projection neurons may be revealed by lesion-induced anterograde degeneration of synaptic terminals, therefore enabling the direct demonstration of multisynaptic links. Finally, morphologically identified neurons may be immunocytochemically characterized at the pre- and postembedding levels. It is therefore suggested that their methodological versatility and relative technical ease render intracellular fixed-slice injections a promising complement to the catalogue of anatomical techniques.
引用
收藏
页码:15 / 30
页数:16
相关论文
共 88 条
[1]
QUANTITATIVE-DETERMINATION OF COLLATERAL ANTERIOR OLFACTORY NUCLEUS PROJECTIONS USING A FLUORESCENT TRACER WITH AN ALGEBRAIC-SOLUTION TO THE PROBLEM OF DOUBLE RETROGRADE LABELING [J].
ALHEID, GF ;
CARLSEN, J ;
DEOLMOS, J ;
HEIMER, L .
BRAIN RESEARCH, 1984, 292 (01) :17-22
[2]
DYE TRANSFER THROUGH GAP-JUNCTIONS BETWEEN NEUROENDOCRINE CELLS OF RAT HYPOTHALAMUS [J].
ANDREW, RD ;
MACVICAR, BA ;
DUDEK, FE ;
HATTON, GI .
SCIENCE, 1981, 211 (4487) :1187-1189
[3]
FLUORESCENT RETROGRADE NEURONAL LABELING IN RAT BY MEANS OF SUBSTANCES BINDING SPECIFICALLY TO ADENINE-THYMINE RICH DNA [J].
BENTIVOGLIO, M ;
KUYPERS, HGJM ;
CATSMANBERREVOETS, CE ;
DANN, O .
NEUROSCIENCE LETTERS, 1979, 12 (2-3) :235-240
[4]
RETROGRADE NEURONAL LABELING BY MEANS OF BIS-BENZIMIDE AND NUCLEAR YELLOW (HOECHST S 769121) - MEASURES TO PREVENT DIFFUSION OF THE TRACERS OUT OF RETROGRADELY LABELED NEURONS [J].
BENTIVOGLIO, M ;
KUYPERS, HGJM ;
CATSMANBERREVOETS, CE .
NEUROSCIENCE LETTERS, 1980, 18 (01) :19-24
[5]
2 NEW FLUORESCENT RETROGRADE NEURONAL TRACERS WHICH ARE TRANSPORTED OVER LONG DISTANCES [J].
BENTIVOGLIO, M ;
KUYPERS, HGJM ;
CATSMANBERREVOETS, CE ;
LOEWE, H ;
DANN, O .
NEUROSCIENCE LETTERS, 1980, 18 (01) :25-30
[6]
PHOTOCONVERSION OF FLUORESCENT RETROGRADE TRACERS [J].
BENTIVOGLIO, M ;
SU, HS .
NEUROSCIENCE LETTERS, 1990, 113 (02) :127-133
[7]
PHOTOMETRIC ANALYSIS OF ANTIFADING REAGENTS FOR IMMUNOFLUORESCENCE WITH LASER AND CONVENTIONAL ILLUMINATION SOURCES [J].
BOCK, G ;
HILCHENBACH, M ;
SCHAUENSTEIN, K ;
WICK, G .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1985, 33 (07) :699-705
[8]
Buhl E.H., 1991, Hippocampus, V1, P131, DOI 10.1002/hipo.450010203
[9]
INTRACELLULAR LUCIFER YELLOW INJECTION IN FIXED BRAIN-SLICES COMBINED WITH RETROGRADE TRACING, LIGHT AND ELECTRON-MICROSCOPY [J].
BUHL, EH ;
LUBKE, J .
NEUROSCIENCE, 1989, 28 (01) :3-16
[10]
BASAL DENDRITES ARE A REGULAR FEATURE OF HIPPOCAMPAL GRANULE CELLS IN FLYING FOX HIPPOCAMPUS [J].
BUHL, EH ;
DANN, JF .
NEUROSCIENCE LETTERS, 1990, 116 (03) :263-268