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Biomedical subjects

A Bignami

Publications and source records attributed to A Bignami.

At least 127 records · Page 7Linked to original sources

In vitro astrocytic differentiation from embryoid bodies of an experimental mouse testicular teratoma.

Astrocytic differentiation in monolayer cultures of ascitic embryoid bodies from the experimental teratoma OTT-6050 was studied by conventional light microscopy and by indirect immunofluorescence with antisera to glial fibrillary acidic (GFA) protein, a protein specific for astorcytes. Primitive neuroepithelial cells were identified in 24-hour cultures. Within 72 hours, two cell types diverged. One cell type, with a flattened epithelial morphology in early cultures, demonstrated delicate GFA protein-positive fibrils within 48 hours. In later cultures, this type progressively displayed more typical stellate astrocytic features, with denser, more compact GFA protein-positive fluorescence in the perinuclear cytoplasm and cell processes. As indicated by GFA protein expression, the appearance of astrocytes of typical morphology therefore was preceded by biochemical differentiation. The second cell type, interpreted as neuroblastic, failed to demonstrate GFA protein and had a small perikaryon with slender bipolar processes that were argyrophilic with Bodian's protargol in late cultures. Divergent neuroepithelial differentiation occurred within mitotically active cell populations and proceeded without apparent tissue relationships to other germ layer derivatives.

Animals↗

Glial fibrillary acidic protein from normal and gliosed human brain. Demonstration of multiple related polypeptides.

An improved purification method for the glial fibrillary acidic protein from normal human brain is reported. Preparations of high purity were obtained by substituting DEAE and phosphocellulose chromatography with one step of hydroxylapatite chromatography. The glial fibrillary acidic protein from normal and gliosed brain was separated into 4 bands (components 1-4) ranging in molecular weight from 54 000 plus or minus 1000 to 40500 plus or minus 1000 by sodium dodecylsulfate gel electrophoresis at 7.5% and 12.5% acrylamide concentration. A better separation of the components was obtained on 12.5% acrylamide gels by increasing the time of electrophoresis to 15-17 h. In these conditions each component was split into a doublet. Preparations identical to those previously reported, i.e. 2-band preparations with an average molecular weight of 43 000, were obtained by incubating multiple sclerosis plaques at 24C for 48 h. These 2-band preparations co-migrated with the 2 lower molecular weight components (component 3, 45 000 plus or minus 1000; component 4, 40 500 plus or minus 1000) in 4-band preparations. The components cross-reacted with antisera against different preparations with an immunodiffusion pattern of complete identity and appeared to be chemically related. Most cyanogen bromide peptides were common to 2-band and 4-band preparations. A unique amino-terminal sequence of alanine-glycine-phenyl-alanine was found in all preparations, regardless of the source and of the number of components. The amino acid composition of 2-band and 4-band preparations was similar.

Adult↗

An experimental mouse testicular teratoma as a model for neuroepithelial neoplasia and differentiation. I. Light microscopic and tissue and organ culture observations.

The various stages of divergent neuroepithelial differentiation were studied in the solid transplants of a transplantable mouse testicular teratoma (OTT-6050) maintained in both ascitic and solid forms. They included: a) areas of undifferentiated medullary epithelium corresponding to the rare human medulloepithelioma; b) areas of neuroblastic differentiation corresponding to neuroblastoma, with more mature neuronal differentiation corresponding to ganglioneuroma or, when mixed with glial elements, to ganglioglioma; and c) more mature neuroglial areas resembling astrocytoma, oligodendroglioma or ependymoma, as well as more primitive areas corresponding to ependymoblastoma. In tissue culture using collagen-coated coverslips, astrocytic differentiation was found in the outgrowth zone after 15 days, confirmed by immunofluorescence with antibodies to an astroglia-specific protein. In organ culture systems, glial components, including ependymal structures, were preserved in tumor explants, and astrocytic differentiation, as expressed by glial fiber formation, was increased after 4 to 6 weeks in vitro. No neuronal differentiation was demonstrable, however. The neuroepithelial component of this experimental teratoma may provide a model for the study of neoplastic neuroepithelial differentiation.

Animals↗