We evaluated the contribution of darkfield and epi-polarization microscopy to the detection of leukocyte cell surface antigens with immunogold-silver staining (IGSS). Lymphocyte cell surface differentiation antigens were labeled with monoclonal antibodies and IGSS as described for brightfield microscopy. In darkfield and epi-polarization microscopy the labeling appeared as bright spots on a dark background. The sensitivity of detection was much higher than that of brightfield microscopy. Sixteenfold higher dilutions of the monoclonal antibody could be used to detect all cells expressing the antigen in the cell suspension. However, non-specific staining was also better visualized. The latter could be reduced to a level comparable to that of brightfield microscopy only by use of weaker labeling conditions. A 25% reduction of the silver enhancement time was necessary for this purpose. However, these weaker labeling conditions also reduced the intensity of the specific staining. Therefore, the efficiency of IGSS, as detected with darkfield and epi-polarization microscopy, was only fourfold greater than that found with brightfield microscopy or that of an immunofluorescence procedure. Especially in combination with transmitted light, to improve cell identification, epi-polarization microscopy is a reliable and sensitive method for detection of immunogold-silver-labeled cell surface antigens for diagnostic and research purposes.
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http://dx.doi.org/10.1177/36.6.3259250 | DOI Listing |
Plant Physiol
February 1995
Department of Biochemistry and Molecular Biology, Center for Biological Resource Recovery, University of Georgia, Athens, Georgia 30602-7229.
Cerium is becoming an increasingly popular reagent for histochemical localization of oxidases and phosphatases because it combines directly with reaction products to form fine precipitates of electron-dense materials that can be easily detected using transmission electron microscopy or laser confocal scanning microscopy. We used epi-polarization microscopy to detect cerium perhydroxide deposits formed when H2O2 was produced by diamine oxidase in pea (Pisum sativum L.) epicotyls exposed to exogenous putrescine.
View Article and Find Full Text PDFCurr Eye Res
May 1994
Department of Ophthalmology, University of California, Davis 95616.
The MAS proto-oncogene codes for a seven transmembrane protein which has been previously localized to specific regions of the hippocampus and cerebral cortex in the rat central nervous system. Because MAS has biological properties related to the growth and differentiation of cells of neuroectodermal origin, we investigated the distribution of MAS expression in the rhesus macaque retina by in situ hybridization. A 330 base pair (bp) segment of the human MAS sequence was subcloned and used to generate single-stranded cRNA probes for these studies.
View Article and Find Full Text PDFJ Histochem Cytochem
March 1994
Department of Cardiovascular Pathology, Academical Medical Center, Amsterdam, The Netherlands.
We present a method for an epi-illumination immunohistochemical double staining approach. The method combines the use of an immuno-alkaline phosphatase technique and the immunogold-silver technique, visualized with epifluorescence and epi-polarization illumination, respectively. Out of six tested alkaline phosphatase activity-revealing methods, only the reaction product obtained with the Becton Dickinson CAS Red kit showed an intense red fluorescence with a rhodamine filter set and no signal with epi-polarization illumination.
View Article and Find Full Text PDFCell Tissue Res
August 1992
Institut für Zoophysiologie, Rheinische Friedrich-Wilhelms-Universität, Bonn, Federal Republic of Germany.
The sinus gland of the shore crab, Carcinus maenas, is a compact assembly of interdigitating neurosecretory axon endings abutting upon the thin basal lamina of a central hemolymph lacuna. Four types of axon endings are distinguishable by the size distribution, shape, electron density and core structure of their neurosecretory granules. One additional type of axon ending is characterized by electron-lucent vacuoles and vesicles.
View Article and Find Full Text PDFJ Neurosci Methods
March 1992
Department of Anatomy, University of Sydney, NSW, Australia.
Difficulty encountered in resolving grains of exposed photographic emulsion in autoradiographs of the densely melanized retinal pigment epithelium was solved by using epi-polarized or incident light microscopy. The apparatus used included a metallurgical illuminator specifically designed for epi-polarization microscopy or, as a less expensive but only slightly less effective alternative, a modified fluorescence illuminator. The black melanin granules absorb incident light (as they do in vivo) while the silver grains reflect it producing a "darkfield-like" representation.
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