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Ultrastructural localization of intracellular antigen using enzyme-labeled antibody fragments

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TLDR
The efficiency of small enzyme-labeled tracers for the demonstration of intracellular antigen was investigated in tissues fixed with picric acid-formaldehyde and the influence of fixation on the immunological activity was tested in vitro by radial immunodiffusion.
Abstract
The efficiency of small enzyme-labeled tracers for the demonstration of intracellular antigen was investigated in tissues fixed with picric acid-formaldehyde. The influence of fixation on the immunological activity was tested in vitro by radial immunodiffusion. The experimental model consisted of newborn pig jejunum after absorption of ferritin from the intestinal lumen. Ferritin was located after 1 hr in vacuoles scattered in the cytoplasm of the absorptive cells and represented an easily recognizable intracellular antigen. After immunohistochemical treatments with antiferritin preparations, the distribution of labeling enzyme reaction product was examined by morphometry. The ratio of the labeled volume to the total volume of vacuoles containing ferritin indicated the degree of specific labeling of the antigen. In both direct and indirect methods, the degree of labeling was low when enzyme-labeled immunoglobulin G was the tracer. With antigen binding fragments (Fab), the labeling was significantly increased. In the indirect method, the degree of labeling was influenced by the first-step reagents. Onlywhen the serum titer was optimum was a high degree of labeling obtained. With antigen binding fragments or papain-digested serum the effect of the titer was negligible and maximum labeling was achieved. In both methods, with peroxidase as the labeling enzyme, a diffuse nonspecific deposition of reaction product was observed. This could be avoided by using cytochrome c instead.

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Citations
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Journal ArticleDOI

Coupling of Enzymes to Antibodies and Antigens

TL;DR: It is evident that selective coupling producing an exclusive homogeneous enzyme-protein conjugate is too difficult to achieve and that even when a procedure has been shown to produce satisfactory results in any given system, its extrapolation to another system calls for circumspection.
Journal ArticleDOI

Recent progress in the peroxidase-labeled antibody method.

TL;DR: Improvements in the methodologies associated with the conjugation of peroxidase to immunoglobulin, the fixation of antigens, and the penetration of peroxin-labeled antibodies into tissues should greatly facilitate successful application of the peroxidaselabeled antibody method.
Journal ArticleDOI

Ultrastructural localization of immunoglobulins in bullous pemphigoid skin. Employment of a new peroxidase-antiperoxidase multistep method.

TL;DR: In vivo bound IgG in bullous pemphigoid skin and of circulating antibasement membrane antibodies using rhesus esophagus as substrate using horseradish peroxidase as an immunologically bound marker appear to be a true basal lamina phenomenon.
Journal ArticleDOI

Resolution and limitations of the immunoperoxidase procedure in the localization of extracellular matrix antigens.

TL;DR: Results indicate that oxidized DAB reaction product can diffuse over long distances and be reabsorbed onto cell membranes and the value and limitations of the DAB-peroxidase procedures are discussed.

Cities in locating cell surface antigens by electron microscopy.

TL;DR: This method of hybrid antibody with dual specificity for mouse γG and ferritin was prepared from the corresponding rabbit antisera, providing a precise reagent for locating mouse εG on cell surfaces and clearly lends itself to the introduction of visual markers other thanferritin.
References
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Journal ArticleDOI

Immunochemical quantitation of antigens by single radial immunodiffusion

TL;DR: By standardizing the technical conditions of the experiment it is possible to use this principle for the immunochemical determination of antigens, and the lower limit of the method was found to correspond to 0·0025 μg of antigen, and to an antigen concentrations of 1·25 μg per ml.
Journal ArticleDOI

The early stages of absorption of injected horseradish peroxidase in the proximal tubules of mouse kidney: ultrastructural cytochemistry by a new technique.

TL;DR: The early stages of absorption of intravenously injected horseradish peroxidase in proximal tubules of mouse kidney were studied with a new ultrastructural cytochemical technique, which gives sharp localization and is sensitive to protein transport.
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