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Biomedical subjects

W D Perkins

Publications and source records attributed to W D Perkins.

15 recordsLinked to original sources

Severe recurrent bacterial infections associated with defective adherence and chemotaxis in two patients with neutrophils deficient in a cell-associated glycoprotein.

We studied two patients with delayed umbilical cord detachment, recurrent bacterial infections, inability to form pus, rapidly progressive periodontitis, and persistent leukocytosis. The phagocytes of both patients were strikingly abnormal in their ability to adhere to surfaces. The adherence of polymorphonuclear leukocytes to endotoxin-coated glass coverslips, glass beads, or nylon wool was markedly reduced. Scanning electron microscopy of the few adherent polymorphonuclear leukocytes from both patients showed a failure to flatten and form fine pseudopods. In vivo polymorphonuclear leukocyte and monocyte chemotaxis assessed by skin window and skin chamber methods was dramatically impaired, and in vitro chemotaxis was severely depressed. Chemiluminescence of zymosan- but not phorbol-stimulated polymorphonuclear leukocytes was markedly reduced. Allogeneic polymorphonuclear leukocytes transfused into these patients functional normally, indicating that the defect is intrinsic to the cells and not a secondary phenomenon. A 180-kilodalton glycoprotein normally present in the particulate fraction of polymorphonuclear leukocytes was found to be completely absent in Patient 1 and present in low concentration in Patient 2. We postulate that the glycoprotein deficiency interferes with the migration of polymorphonuclear leukocytes from the bloodstream into the interstitial space and to the site of infection.

Bacterial Infections↗

A scanning electron microscope study of the caecal tonsil: the identification of a bacterial attachment to the villi of the caecal tonsil and the possible presence of lymphatics in the caecal tonsil.

A scanning electron microscope (SEM) was used to compare the proximal region (PR) and distal region (DR) of the caecum. The caecal tonsil (CT) occupied the initial 4-10 mm of the PR. Villi were present in the PR and absent from the DR. Segmented structures were attached to the surface of PR. Transmission electron microscopy (TEM) revealed these structures to be bacteria. No difference in surface morphology could be discerned between the CT and the remainder of the PR. Lymphatic vessels were observed in the CT by employing TEM.

Animals↗

Contact sites between lymphoid cells of the bursa of Fabricius, in vivo and in vitro.

Contact sites between lymphocytes and between lymphocytes and macrophages were demonstrated by electron microscopy in the lymphoid follicles of the bursa of Fabricius. When compared with nonspecialized regions of the cell membranes, these contact sites were characterized by a decreased intercellular distance, subplasmalemmal densities and coated pits. Microfilaments, microtubules and coated vesicles of the subjacent cytoplasm were frequently associated with these contact sites. When the same cells were isolated and introduced into culture, they formed cluster-like assemblies in which cells were closely approximated along broadly contacting surfaces. The morphology of the sites appeared to involve primarily the plasma membrane (including coated pits) and the cell coat. These observations indicated that the same cells of a given lymphoid tissue can form one type of contact site in vivo and another, dissimilar type of contact site, in vitro.

Animals↗

Comparison of lymphocyte populations bearing surface immunoglobulins in avian bone marrow, bursa, spleen and thymus.

Rabbit anti-chicken gamma-globulin was labeled with 125I and then incubated with cells from the bursa, thymus, spleen, and bone marrow of 4- and 8-week old birds. The same procedure was carried out on 11-week-old agammaglobulinemic chickens. Autoradiography revealed that the majority of large, medium, and small bursal lymphocytes bind the antibodies while labeled lymphocytes of each type in the spleen and thymus never exceeded 11 or 4 percent, respectively. Labeled medium and small lymphocytes in the bone marrow increased from 4.2 and 1.7%, respectively, at 4 weeks of age, to 9.5 and 8.8%, respectively, at 8 weeks of age. Labeled lymphocytes of all sizes were completely absent in all tissues of agammaglobulinemic chicks, including the marrow. Therefore, the increase in frequency of labeled lymphocytes in the bone marrow with age may be a result of recruitment of cells from the bursa of Fabricius. The majority of lymphocytes in the bone marrow do not label. Therefore, lymphocytes from the bone marrow may be T cells, subsets of B cells, or neither T or B cells.

Agammaglobulinemia↗

3H-uridine incorporation by small lymphocytes of tolerant rats: relationship to T and B lymphocytes.

Tissue tolerance was induced in neonatal rats by the intravenous injection of bone marrow cells from adult allogeneic rat donors. After 6 to 8 weeks, lymphoid cells from rats in which tolerance had been induced were tested for mixed lymphocyte reactivity (MLR), 3H-uridine uptake, and the relationship of uridine incorporation to B and T lymphocytes. Lymph node (LN) and spleen (SPL) cells from the adult inoculated rats showed no reactivity in the MLR or normal lymphocyte transfer reaction (NLTRx), indicating that the animals were tolerant. After in vitro exposure to 3H-uridine, an abundance of small lymphocytes (SL) from these same tolerant rats were heavily labeled, in contrast to nontolerant controls, where relatively few SL were heavily labeled. In order to determine whether the heavily uridine-labeled cells were T cells or B cells, lymphoid cells from the LN and SPL of tolerant animals were exposed to either rabbit anti-AKR brain serum or rabbit anti-rat Ig conjugated with ferritin. The results showed that the heavily uridine-labeled SL of the tolerant rats were mainly Ig-positive cells.

Animals↗

Ligand-induced movement of lymphocyte membrane macromolecules. I. Analysis by immunofluorescence and ultrastructural radioautography.

The fate of different complexes on the membrane of thymocytes and spleen lymphocytes was studied with the use of both immunofluorescence and ultrastructural radioautography. The complexes of anti-immunoglobulin (Ig) with the surface Ig of B lymphocytes were present all around the membrane at 4 degrees C; an increase in temperature produced a rapid aggregation of the complex into a cap which was readily interiorized in vesicles. Ultrastructural details of this process were given. The movement of the complexes depended upon the amount of anti-Ig and the temperature. The complexes of anti-lymphocyte antibody with surface antigen(s) did not result in formation of a single large aggregate (or cap) unless an anti-antibody was brought into the reaction. The caps formed by this trilayered complex were not interiorized. Concanavalin A (Con A) bound to cell surface carbohydrate moieties and the complexes of Con A readily formed a cap and were interiorized. Finally, antibodies to H-2 determinants did not form in most instances a single cap aggregate even when anti-antibodies were used. With time the H-2 complexes tended to form several large aggregates with some endocytosis.

Animals↗

An ultrastructural study of lymphocytes with surface-bound immunoglobulin.

This report is on a radioautographic study of lymphocytes exposed to (125)I-labeled anti-Ig in an attempt to identify surface-bound Ig molecules. The results as studied by ultrastructural radioautography confirmed the presence of surface-bound Ig on a certain population of lymphocytes. The specificity of the anti-Ig was determined by using appropriate controls that included the use of an absorbed anti-Ig and anti-hemocyanin antibody. The labeling pattern resulting from the interaction of labeled anti-Ig and Ig was found to be specifically associated with the cell surface and random in its distribution. Morphological differences were not apparent between labeled and nonlabeled lymphocytes in the spleen and lymph nodes. In the thymus, most lymphocytes did not exhibit detectable Ig. The few thymic lymphocytes that were labeled had unique morphological characteristics that included fewer ribosomes, many of which were monoribosomes. Relative to the amount in their cytoplasmic organelles, plasma cells had surface Ig but to a lesser degree than lymphocytes. Finally, macrophages were nonspecifically labeled and contained antibody on their membranes as well as intracellularly.

Animals↗