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Biomedical subjects

L A Boxer

Publications and source records attributed to L A Boxer.

At least 181 records · Page 10Linked to original sources

Membrane fluidity in human and mouse Chediak-Higashi leukocytes.

Polymorphonuclear leukocytes from humans and mice with the Chediak-Higashi syndrome were characterized by spin label electron spin resonance spectrometry. Our results suggest that cells from afflicted mice and humans have membranes more fluid than controls. Order parameters for a spin label that probes near the membrane surface were 0.652 for normals and 0.645 for two Chediak-Higashi patients. Cells from Chediak-Higashi mice showed similar differences, as did isolated plasma membrane fractions. An increased membrane fluidity was also detected with a spin label that probes deeper in the bilayer. In vitro treatment of Chediak-Higashi mouse cells with 0.01 M ascorbate increased the order parameter to normal levels. In vitro incubation of mouse Chediak-Higashi cells with glucose oxidase increased the order parameter, similar to the effect of ascorbate. This increase was abolished when catalase was added to the incubation medium. In vitro incubation with dibutyryl cyclic guanosine monophosphate (1 muM to 0.1 mM) did not normalize order parameters. These results indicate that fluidity of Chediak-Higashi cell membranes was affected by treatments expected to alter the oxidation: reduction potential of the environment but was not affected by treatments expected to alter the ratio of intracellular cyclic nucleotides. The latter treatment would affect microtubule assembly. Therefore, it appears that the membrane fluidity abnormalities as demonstrated by electron spin resonance and the earlier demonstrated microtubule dysfunctions characteristic of Chediak-Higashi cells are coexisting defects and are probably not directly related.

Animals↗

Utilization of liposomes for correction of the metabolic and bactericidal deficiencies in chronic granulomatous disease.

IgG-coated liposomes containing glucose oxidase (GO) in order to provide a means of generating H2O2 were prepared. Leukocytes from patients with chronic granulomatous disease (CGD) which are lacking a means of generating H2O2, ingested the IgG-coated liposomes and metabolic oxidative deficiencies of glucose-1-14C oxidation and iodination were normalized. Both of these activities have been shown to depend upon the availability of H2O2 within polymorphonuclear leukocytes. Improvement in the capacity to kill Staphylococcus aureus by chronic granulomatous disease leukocytes were observed under similar conditions. Thus, it is possible to restore the oxidative metabolic capacities to CGD leukocytes by the introduction of glucose oxidase containing liposomes to these cells.

Adult↗

Effects of a chemotactic factor, N-formylmethionyl peptide, on adherence, superoxide anion generation, phagocytosis, and microtubule assembly of human polymorphonuclear leukocytes.

FMLP promoted microtubule assembly in PMNs at concentrations which were chemotactic for the cells. At higher concentrations than those required for chemotaxis, FMLP enhanced the adherence of PMNs to nylon glass fibers. With colchicine, PMN adherence was inhibited, but upon exposure to FMLP, PMN adherence could be restored. The effect of FMLP on PMN adherence was transitory and was no longer evident by 5 min. At concentrations similar to those employed in the adherence studies. FMLP induced the cells to briefly generate O-2, since ferricytochrome C reduction was no longer evident by 5 min. Pretreatment of the PMNs with cytochalasin B enhanced the release of O-2 by PMNs exposed to FMLP. On the other hand, there was no effect of FMLP on phagocytosis of C3-coated particles. These results suggest that FMLP induces responsive cells to develop a hyperadherent plasma membrane which is largely independent on microtubule control. Since oligopeptides similar of AMLP are formed in bacteria, it is likely that the action of N-formylated peptides is important in regulating the inflammatory response.

Cell Adhesion↗

The use and limitation of labeled staphylococcal protein A for study of antineutrophil antibodies.

Antineutrophil antibodies can be detected following their attachment to neutrophils by employing labeled staphylococcal protein A (SPA). Radiolabeled SPA provides a sensitive means for identifying the presence of IgG restricted to subclasses IgG1, IgG2, and IgG4 that will specifically bind to neutrophils and that are found in the serum of patients with isoimmune and autoimmune neutropenia. However, SPA bound to the Fc region of IgG does not interfere with the attachment of IgG to the Fc domain of the neutrophil. Fluorescein-labeled SPA, in turn is useful in monitoring the functional consequences of antibody attachment to the surface of polymorphonuclear leukocytes (PMN). Both heterologous and isoimmune antisera induced lateral movement of surface antigens into polar-capped pseudopodia. The formation of such pseudopodia may facilitate leukoagglutination and the subsequent removal of sensitized cells from the circulation.

Animals↗

Role of membrane vitamin E and cytoplasmic glutathione in the regulation of phagocytic functions of neutrophils and monocytes.

Neutrophils and monocytes are the prime defenders of the body against suppurative bacterial and fungal infections. To accomplish their role in inflammation, they must respond appropriately to chemotactic signals elaborated from complement and bacteria. This response predictably results in the adherence and subsequent directed movement of the phagocytes toward the infected area where they recognize opsonized microbes. Attachment of the microbes to the membrane of the cell leads to their ingestion and subsequent demise, principally by the reduced oxygen by-product H2O2, which is generated by the neutrophils and monocytes during phagocytosis. Optimal killing requires the translocation of granule myeloperoxidase into the phagocytic vacuole containing the bacteria and a suitable halide ion. Degranulation is controlled, in part, by assembled microtubules whereas ingestion requires assembly of submembrane microfilaments. Deficiency states resulting from vitamin E results in diminished membrane-related chemotaxis and ingestion, whereas depletion of cellular GSH results in defective microtubule assembly preventing the normal increase in adherence, chemotaxis, degranulation, and microbicidal activity of the phagocytic cells. Deficiency states resulting in dysfunction of the microtubule system include neutrophil glutathione synthetase deficiency, rodent glutathione peroxidase deficiency, and the Chediak-Higashi syndrome.

Cell Membrane↗

Oxidative metabolic responses of rabbit pulmonary alveolar macrophages.

During phagocytosis of opsonized lipopolysaccharide-coated paraffin oil droplets, rabbit alveolar macrophages reduced nitroblue tetrazolium, which effect was in part inhibitable with the use of superoxide dismutase. Exposure of cytochalasin-B-treated rabbit alveolar macrophages to opsonized zymosan led to the generation of superoxide, as quantitated by ferricytochrome C reduction. It was found that nitroblue tetrazolium in the presence of ferricytochrome C could in turn serve as scavenger of superoxide during stimulation of cytochalasin-B-treated rabbit alveolar macrophages. Following challenge with either opsonized zymosan or the membrane perturbant digitonin, rabbit alveolar macrophages released hydrogen peroxide into the extracellular medium. Employment of the surface membrane stimulant phorbol myristrate acetate led to activation of the hexose monophosphate shunt, which activity could be further enhanced in the presence of superoxide dismutase or attenuated in the presence of catalase. These studies demonstrate that rabbit alveolar macrophages release superoxide and hydrogen peroxide during surface membrane perturbation. In turn, hydrogen peroxide generation can stimulate the hexose monophosphate shunt.

Animals↗

In vitro functional capabilities of canine polymorphonuclear neutrophils collected simultaneously by continuous-flow centrifugation and continuous-flow filtration leukopheresis.

Polymorphonuclear neutrophils were simultaneously collected from dogs by continuous-flow centrifugation and continuous-flow filtration leukapheresis. In vitro studies were performed on cells obtained by the two methods as well as on control cells. Studies consisted of assessment of phagocytic capacity, degranulation, chemotaxis, hexose monophosphate (HMP) shunt activity, and bacterial killing. The cells obtained from the filter were metabolically more active than those harvested by centrifugation, as evidenced by increase in resting HMP shunt activity and dimunition in total available lysozyme-secreting activity compared to centrifuged cells. Despite their impaired phagocytic capacities, the filtered cells were able to kill Staphylococcus aureus as efficiently as the centrifuged cells. Both cell populations responded to chemotactic gradients equally.

Animals↗

Improvement of polymorphonuclear leucocyte oxidative and bactericidal functions in chronic granulomatous disease with 4-amino-4'-hydroxylaminodiphenyl sulphone.

In an effort to restore oxidant-dependent capabilities to chronic granulomatous disease (CGD) polymorphonuclear leucocytes (PMN), we studied a dapsone derivative, 4-amino-4'-hydroxylaminodiphenyl sulphone (DDS-NOH), known to generate H2O2. After incubation of CGD PMN with 0.2 and 1.0 mM DDS-NOH for 30 min, the rate of glucose-1-14C oxidation via hexose monophosphate (HMP) shunt increased 2--4-fold and that of iodination of ingested zymosan particles 1.5--2.7-fold. Both effects could be further enhanced by superoxide dismutase (SOD) but inhibited by catalase. In three patients, 0.2 mM DDS-NOH improved in vitro killing of Staph. aureus. DDS-NOH 0.02 mM induced capping of Concanavalin A (Con A) receptor complexes suggesting interference by the drug with microtubule-associated function. Thus, optimal concentrations of DDS-NOH may be employed as an oxidant to improve metabolic and bactericidal functions of PMN from patients with CGD.

Aminobiphenyl Compounds↗

Effects of surface-active agents on neutrophil receptors.

An easily performed assay to identify the C3b and Fc receptors on human neutrophils was developed. Salmonella typhimurium were treated with fluorescein and then incubated in nonimmune fresh human serum, which led to C3b fixation via activation of the alternative pathway. Similarly, type II pneumococci were treated with fluorescein and opsonized with type-specific rabbit antiserum. Neutrophils bearing C3b and Fc receptors formed rosettes with the respective bacteria, which were easily readable because of their bright fluorescence. Incubation of neutrophils at 37 degrees C with C3-coated bacteria generated 54 +/ 4% C3b rosettes, whereas neutrophils incubated with immunoglobulin G-coated bacteria yielded 75 +/ 7% rosettes. Incubation at 4 degrees C inhibited the formation of C3b rosettes but not Fc rosettes. Heat inactivation of the fresh human serum at 56 degrees C for 30 min completely inhibited the formation of the C3b rosettes, and addition of heat-aggregated immunoglobulin G to the polymorphonuclear leukocyte blocked the ability of the polymorphonuclear leukocyte to bind immunoglobulin G-coated bacteria. Addition of 1.0 mM N-ethylmaleimide, 0.1 mg of trypsin per ml, 10 mM H2O2, O2- generated by xanthine-xanthine oxidase, and 8 times 10(-4) M hydrocortisone inhibited the C3b receptor, but did not inhibit the Fc receptor. In neutrophils, the selective effect of the various inhibitors suggests that the Fc and C3b receptors are distinct entities.

Binding Sites↗

Role of microtubules in granulocyte adherence.

The adherence of human polymorphonuclear leukocytes (PMN) to nylon fibers is inhibited in a dose-dependent fashion by exposure in vitro of these cells to either colchicine or VM-26, both of which agents prevent microtubule assembly. Mean adherence of human PMN was 48% +/- 2%, following treatment with 10(-5) M colchicine or 10(-4) M VM-26 it was reduced to 31% +/- 2% and 7%, respectively. Peritoneal PMN obtained from mice and mink with Chediak-Higashi syndrome (CHS) thought to have a microtubule-membrane disorder affecting the PMN had a mean adherence of 29% +/- 3% and 40% +/- 8% compared to control values of 46% +/- 5% and 73% +/- 8%, respectively, from the mice and mink. Both ascorbic acid and bethanechol, shown previously to enhance microtubule assembly in humans with CHS, normalized granulocyte adherence in PMN obtained from mice with CHS. Cyclic nucleotide levels were not altered by treatment of human PMN with colchicine, nor did they differ between normal and CHS animals. Thus it appears that the state of microtubule assembly may directly affect the properties of the PMN plasma membrane without requiring alterations of cyclic nucleotides as an intermediary.

Animals↗