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Biomedical subjects

H Gelderblom

Publications and source records attributed to H Gelderblom.

At least 91 records · Page 5Linked to original sources

Histopathological Examinations of nasal polyps of different etiology.

A safe differentiation between allergic and non-allergic polyps appears impossible by means of light or electron microscopical examination of polyp tissue. There are some indications, however, which point to the allergic or non-allergic origin and it seems that the relationship between eosinophils and plasma cells with a low index is characteristic for polyps of allergic origin. Eosinophils and round-cell infiltrations are present in all types of polyps. An index of eosinophils to plasma cells below 5 is indicative for allergy and should induce the pathologist to give a hint to the clinican for allergological work-up. An index above 5 is more corresponding with infective etiology. Any changes of the basement membrane, i.e., smaller or larger gaps or even absence, are found only very irregularly and are not typical findings in either way. An increased number of glands and collagenic fibres, especially under the epithelium, are more an expression of the age of the polyp. Since the conservative therapy as mentioned above leads to good therapeutical results, it is desirable that an allergological work-up should be done in any case which shows the histological findings indicative for allergic etiology. Thus, repeated operations with all the risks and uncertain therapeutical benefit can be avoided.

Adolescent↗

New human adenovirus (candidate adenovirus 36), a novel member of subgroup D.

A new adenovirus (candidate Ad36) was isolated from the feces of a girl with enteritis. It has been biological and biophysical properties of an adenovirus, with a particle diameter of 750 +/- 10 A in thin sections and with a fiber length of 190 A. The virus belongs to subgroup D. It is distinct both in neutralization and hemagglutination-inhibition from all other human adenoviruses; it also shows a unique DNA restriction pattern.

Adenoviruses, Human↗

Immuno-electron microscopic localization of lipopolysaccharide antigens on ultrathin sections of Salmonella typhimurium.

Lipopolysaccharide antigens were demonstrated on ultrathin sections of styrene-embedded Salmonella typhimurium by direct postembedding staining with ferritin-labeled antibodies. The antigenicity, partially masked in the embedding process, could be satisfactorily recovered by treatment of ultrathin sections with nonspecific protease. As judged from the reaction site of the ferritin-labeled antibodies, the lipopolysaccharides were localized in two zones. The broader zone of densely distributed ferritin molecules was superimposed over the whole outer cellwall, and a smaller zone revealing antigenicity was found over the cell membrane, which strongly supports the concept that the latter is the site of synthesis of lipopolysaccharides. The well-defined labeled areas between these two antigenic zones may be the routes whereby the synthesized polysaccharide molecules reach the cell wall.

Antigen-Antibody Reactions↗

Biological and biophysical characteristics of mouse adenovirus, strain FL.

Mouse adenovirus, strain FL (MAV), is best propagated in primary rather than secondary cultures of mouse kidney cells. Virus release from the cells into the medium is fairly efficient; the average yield per cell is about 1000 TCID50. Morphological and other biophysical characteristics are those of a typical adenovirus: the icosahedral shell with a diameter of 74 nm, fiber projections of 29 nm length, its localization inside the infected kidney cells, a buoyant density in CsC1 of 1.34 g/ml, inhibition of multiplication by inhibitors of DNA synthesis. The thermostability is higher than that of human adenoviruses, whereas, in contrast to these, MAV is inactivated to a great extent by trypsin. Complete or incomplete hemagglutinin or toxin-like activity were not detected. The virus shows no cross-neutralization with human adenoviruses and a one-side cross-reaction with another murine adenovirus strain K-87. Soluble complement-fixing antigen of MAX exhibits a sedimentation rate of 12S identical to the hexon component of human adenoviruses; both antigens show a partial antigenic relationship in tests with appropriate antisera.

Adenoviridae↗

RELATIONSHIP BETWEEN THE Mason-Pfizer monkey virus and Hela virus: immunoelectron microscopy.

Envelope antigens of the Mason-Pfizer monkey virus (MPMV) and the morphologically similar HeLa virus, which is continuously produced in some HeLa cell lines, were compared by indirect immunoferritin techniques. Antisera raised against MPMV and HeLa virus revealed cross-reacting antigenic specificities on the surfaces of both agents, and cross-absorption and end-point dilution techniques indicated the presence of identical envelope antigens. The results demonstrated a close relationship, if not an identity, between MPMV and HeLa virus.

Animals↗

Immune response to oncornaviruses and tumor-associated antigens in the chicken.

Two principal virus-directed antigens have been identified on the surface of oncornavirus-infected chick embryo cells. One is identical with the major virus type-specific envelope antigen, which is a glycoprotein with a molecular weight of 85,000. The 2nd antigen (tumor-specific cell surface antigen) is specific for transformed cells, i.e., absent from productively infected but nontransformed cells. This antigen has been identified as a glycoprotein with a molecular weight of 100,000 and was not found in the mature virion. Remarkably, both antigens induce humoral as well as cellular immunity in the chicken. It could be shown that cells can be killed in cytotoxic assays via either the tumor-specific cell surface antigen or the virus envelope glycoprotein alone.

Alpharetrovirus↗