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Biomedical subjects

B J Hall

Publications and source records attributed to B J Hall.

24 records · Page 2Linked to original sources

An immunoperoxidase study of senile cerebral amyloidosis with pathogenetic considerations.

Samples of human cerebral cortex were obtained from twelve autopsied patients with Alzheimer's disease or "normal" aging. Rabbit or goat anti-human antisera to the following plasma proteins: IgG, F(ab')2, Fc, kappa and lambda light chains, IgM, IgA, fibrinogen, albumin, C3, lysozyme, haptoglobin, macroglobulin, and microglobulin; antibodies to the following intracellular proteins: glial fibrillary acidic (GFA) protein, filamin, actin, non-muscle myosin, tubulin, cholinergic vesicle proteins, and neurofilament (NF) proteins were utilized in the immunoglobulin peroxidase bridge. Amyloid cores of classical or perivascular plaques and dyshoric angiopathy exhibited a strong reaction for intact IgG and for both of its light chains, moderate reactions for lysozyme, fibrinogen, albumin and IgA, and weak reactions for IgM, C3, Fc, F(ab')2, haptoglobin, macroglobulin and microglobulin. Antibodies to all three NF proteins, individually and pooled, stained dyshoric and plaque amyloid, while antibodies to other intracellular proteins did not. The coronae of classical plaques and many primitive plaques stained for GFA, but inconsistently for IgG, both light chains, lysozyme, actin, tubulin, and NF proteins. Affected vessels of three patients with Congophilic angiopathy were reactive for all plasma proteins (especially IgG, fibrinogen, and albumin) and for NF proteins. NF staining in Congophilic blood vessels, although variable, revealed a peripheral or adventitial distribution, whereas plasma proteins tended to be localized in the media of the vessel wall. The distributions of Congo red and NF positivity were often identical. Both NF and Congo red staining was sensitive to oxidation. Isolated NF proteins were Congophilic and capable of displaying apple-green birefringence. A hypothesis concerning the role of NF proteins in senile cerebral amyloid is presented.

Amyloid↗

Immunocytochemical localization of lysozymes in respiratory and other tissues.

Immunostaining paraffin sections of appropriately fixed tissues with an antiserum to human urinary lysozyme as the primary step in an immunoglobulin-peroxidase bridge method has localized lysozyme in previously recognized sites such as Paneth cells, renal tubules, and lymph node macrophages in several species. In addition, lysozyme was demonstrated in the ciliary layer of the trachea, and type II pneumocytes, as well as cells of presumed mucoid nature in laryngotracheal glands. Large stellate cells in follicle centers in the lymph nodes and spleen and in the medulla of the thymus evidenced strong lysozyme reactivity. Granular pneumocytes disclosed immunoreactivity for lysozyme also at the ultrastructural level. Lysoplate assay demonstrated lysozyme in abundance in both the cellular pellet and acellular supernatant of rat alveolar wash fluid and in rat lung after repeated washing of alveoli. Hamster lung differed from the others in failing to immunostain for lysozyme and affording no evidence for content of lysozyme as determined by lysoplate assay. Sites stained with antiserum to human urinary lysozyme failed to stain with antiserum to egg white lysozyme. However, the pyloric glands, Golgi elements in intestinal epithelium, the surface of the colon, and the proximal straight renal tubule of the mouse stained exclusively with the antiserum to hen egg white lysozyme. Many sites staining with antiserum to urinary lysozyme in respiratory, renal, and lymphoid tissue lacked reactivity in control sections exposed to this antiserum after it was absorbed with purified urinary lysozyme. However, mucous acini in submandibular glands, although failing to stain with other control procedures, retained towared the absorbed antiserum, possibly through reacting with an antibody other than that for human urinary lysozyme. A number of cell types containing proteinaceous cytoplasmic granules stained in control sections exposed to normal serum in place of antilysozyme serum in the immunoglobulin-peroxidase bridge procedure and, thus, possessed selective, but nonimmunospecific affinity for immunoglobulin. Cell types that stained with antiserum to hen egg white lysozyme lost affinity for the antiserum after its absorption with egg white lysozyme but retained the affinity after absorption with urinary lysozyme.

Animals↗

Cytochemical differentiation of nucleic acids with a Schiff-methylene blue sequence.

A method is described whereby a Feulgen type of hydrolysis of deoxyribonucleic acid is carried out on paraffin sections of routinely fixed tissues by controlled exposure of the sections to Bouin's fluid. Subsequent staining with Schiff reagent followed by methylene blue distinguishes red-to purple-stained deoxyribonucleic acid from blue-stained ribonucleic acid. This Schiff-methylene blue sequence visualizes ribonucleic acid in nucleoli and the chromidial substance of various normal and neoplastic cells and provides an assessment of their protein synthetic activity. The method has proved valuable in demonstrating normal immunocytes and immunoglobulin-forming tumor cells in pathologic specimens.

Animals↗