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D E Chenoweth

Publications and source records attributed to D E Chenoweth.

At least 55 records · Page 3Linked to original sources

C5a receptor modulation on neutrophils and monocytes from chronic hemodialysis and peritoneal dialysis patients.

Chronic renal failure patients have an increased risk for infection which may partially be due to altered chemotactic ability of their white blood cells. This study was designed to evaluate chemotactic factor and Fc receptor expression on neutrophils (PMN) and monocytes from chronic renal failure patients on hemodialysis (HD) or continuous ambulatory peritoneal dialysis (CAPD). Analysis of these receptors was performed using flow cytometry and fluorescent chemotactic factors (C5a, f-Met-Leu-Phe-Lys [fMLPL] and casein) and heat-aggregated human IgG. Peripheral blood PMN and monocytes obtained from 14 HD patients (in the predialysis period) and 14 CAPD patients were analyzed for their ability to bind each of the fluoresceinated ligands. PMN and monocytes from both patient groups had a significant reduction in their ability to bind C5a. The average percentage (+/- s.e.m.) of PMN that bound C5a was 93.9 +/- 1.1 for the controls, 72.9 +/- 3.8 for HD patients, and 79.3 +/- 4.0 for CAPD patients. Similar results were obtained with monocytes with 69.7 +/- 1.9% for controls, 54.6 +/- 4.5% for HD patients, and 31.0 +/- 4.5% for CAPD patients. These differences in C5a binding were also reflected in the average intensity of fluorescence. There was no significant difference in the percentage or fluorescence intensity of PMN or monocytes that bound casein or aggregated IgG when either group of dialysis patients was compared to the control values. Binding of fMLPL by PMN and monocytes from the HD patients and PMN from the CAPD patients were similar to control values but the binding of fMLPL by monocytes from CAPD patients was significantly suppressed (p less than 0.03).(ABSTRACT TRUNCATED AT 250 WORDS)

Complement C3↗

Structure and function of human C5a anaphylatoxin. Selective modification of tyrosine 23 alters biological activity but not antigenicity.

Reaction of either human C5a or its des-Arg74 derivative (des-Arg74-C5a) with tetranitromethane under nondenaturing conditions results in selective nitration of only 1 of the 2 tyrosine residues found in these glycopolypeptides. This reactive tyrosyl residue was identified as that found in position 23 of the sequence. Nitrotyrosyl23-C5a and -des-Arg74-C5a were separated from their respective unmodified precursors by cation-exchange fast protein liquid chromatography. These purified derivatives served as reagents for the subsequent preparation of both aminotyrosyl23-C5a and -des-Arg74-C5a as well as photoreactive analogs of C5a. Radioimmunoassays performed with C5a derivatives serving as competing ligands and a murine antihuman C5a monoclonal antibody employed as first antibody demonstrated that selective modification of tyrosine23 did not produce a detectible alteration in the antigenic properties of C5a. By contrast, either nitro- or aminotyrosyl23-C5a was approximately 3-fold less active than native C5a in both bioassays and competitive ligand-receptor binding assays. Additionally, photoreactive derivatives prepared by coupling either N-succinimidyl-6-(4'-azido-2'-nitrophenylamino)-hexanoate or p-nitrophenyl-2-diazo-3,3,3-trifluoropropionate to aminotyrosyl23-C5a at pH 5.0 failed to interact with the neutrophil C5a receptor. These observations suggest that the tyrosyl23 residue of C5a may participate importantly in the binding interactions of this chemotactic factor and its granulocyte receptor.

Affinity Labels↗

Labeling the granulocyte C5a receptor with a unique photoreactive probe.

Human C5a anaphylatoxin is a complement-derived chemotactic factor that binds to specific receptors that are found in the granulocyte plasma membrane. These receptors, or a specific subunit of these receptors, can be covalently labeled with a unique photoreactive analog of human C5a. This photoaffinity probe, p-azidobenzoyl-2-mercapto-N-ethylamide-C5a (ABMEA-SC5a), was synthesized by coupling p-azidobenzoyl-2-mercapto-N-ethylamide-2'-thiopyridine disulfide to human C5a after it had been partially reduced with dithiothreitol. Both direct and competitive binding studies demonstrated that a radioiodinated ABMEA-SC5a derivative retained the capacity to specifically bind to either neutrophil or U937 cell C5a receptors. Half-maximal binding of the photoreactive analog was observed at a concentration of 1 to 2 nM, a value that is comparable to that observed when 125I-C5a is employed as the ligand. The covalent adducts that were formed after irradiation of 125I-ABMEA-SC5a that had been prebound to either neutrophil or U937 cell plasma membranes were found to have an apparent molecular mass of 52,000 daltons when analyzed by sodium dodecyl sulfate-polyacrylamide gel electrophoresis techniques. These findings demonstrate that the C5a receptors found on human neutrophils and other granulocytes are not only functionally similar, but biochemically similar as well.

Affinity Labels↗

Escherichia coli and human neutrophils. Effect of bacterial supernatant with hemolysin activity upon chemotaxin receptors.

A greater proportion of Escherichia coli strains isolated from clinical extraintestinal infections produce alpha-hemolysin than do strains isolated from normal fecal flora. Proposed mechanisms to explain this observation have stressed the fact that hemolysis liberates hemoglobin, which may provide a nutritional boost for E coli growth. Alternatively, a cytolytic effect of hemolysin upon host neutrophils has been postulated. Our previous studies have suggested a third possibility: Human neutrophils incubated in the supernatant of an alpha-hemolysin-producing E coli strain produced a selective inhibition of chemotaxis toward C5a. Bacteria-free supernatants from 14 clinical strains of E coli were therefore evaluated for an ability to lyse sheep erythrocytes, alter human polymorphonuclear neutrophil (PMN) chemotaxin receptors, and affect release of PMN enzymes. Supernatants possessing hemolytic activity decreased the C5a receptor activity of human PMNs and increased the number of peptide receptors. A stimulation of secondary granule release, as evidenced by the release of PMN lysozyme, may account for the increased expression of peptide receptors. Perturbation of host defenses through a loss of neutrophil migratory function and secondary granule contents may allow for enhanced survival of E coli, which produce alpha-hemolysin.

Bacterial Proteins↗

Modulation of neutrophil-reduced pyridine nucleotide content following stimulation with phorbol myristate acetate and chemotactic factors.

Modulation of NAD(P)H in human neutrophils (PMN) following stimulation with phorbol myristate acetate (PMA) or chemotactic factors was determined by flow cytometry. Stimulation of PMN with 1 microgram/ml of PMA results in a time-dependent decrease in fluorescence, attributable to the oxidation of NAD(P)H. The decrease in fluorescence did not occur with PMN from a patient with chronic granulomatous disease (CGD) and was observed in only half of PMN from the mother of the patient. Loss of fluorescence in normal PMN was maximal following 7-15 min of stimulation with PMA. Simultaneous measurement of PMA-stimulated NAD(P)H oxidation and H2O2 production showed that NAD(P)H oxidation occurred as an all-or-none response while H2O2 production showed a graded response. These data suggest that with PMA stimulation, a threshold exists beyond which constitutive NAD(P)+ reduction is suppressed and complete oxidation of NAD(P)H occurs, while H2O2 production is proportional to the concentration of PMA. PMA-stimulated oxidation of NAD(P)H was reversible, and fluorescence returned to the initial level or higher after 40-60 min. Oxidation of NAD(P)H also occurred when cytochalasin B-treated PMN were stimulated with 25 nM C5a or 100 nM formyl-methionyl-leucyl-phenylalanine (f-MLP), but occurred more rapidly, peaking at 1 to 3 min. Fluorescence also returned by 5-6 min. This response to C5a and f-MLP was graded and proportional to the concentration of chemotactic factor used. Comparative studies showed that the cytochalasin-B treatment was essential for measurement of NAD(P)H oxidation, in response to C5a and F-MLP.

Complement C5↗

Mechanism of action of the group A streptococcal C5a inactivator.

Virulent group A streptococci have been found to express a cell-surface factor that has the capability of inactivating complement-derived chemotactic factors. To determine the mechanism of action of this factor, we examined the interaction of purified inactivator with pure C5a chemotaxin. Ligand-receptor binding studies demonstrated that streptococcal chemotactic factor inactivator (SCFI)-treated C5a expressed a greatly reduced ability to bind to receptors of polymorphonuclear leukocytes as compared with native C5a. The inactivation of C5a occurred by a nonstoichiometric and temperature-dependent process. NaDodSO4/PAGE analysis indicated that SCFI mediated a small decrease in the molecular weight of C5adesArg, and sequencing of the carboxyl terminus of inactivated C5a demonstrated that a six-residue peptide was lost. The release of discrete peptide fragments from denatured bovine serum albumin upon prolonged incubation with SCFI was indicative of endoprotease activity. Although denatured bovine serum albumin was inefficiently cleaved, native bovine serum albumin and other native proteins were highly resistant to SCFI proteolysis; this indicated that activity was specific in nature.

Chemotactic Factors↗

Chemotactic responses of human peripheral blood monocytes to the complement-derived peptides C5a and C5a des Arg.

We examined responses of human peripheral blood polymorphonuclear leukocytes (PMN) and monocytes to the highly purified human complement-derived peptides C5a and C5a des Arg. As reported previously, C5a proved to be approximately 10- to 20-fold more potent than C5a des Arg as a chemoattractant for human PMN. C5a also was more potent than C5a des Arg in causing PMN to acquire a polarized morphology. In contrast, we found that human monocytes do not distinguish between C5a and C5a des Arg when these peptides are used as chemoattractants. In two different assay systems, both peptides acted at identical concentrations to stimulate suboptimal and optimal migration of monocytes. Human monocytes also did not distinguish between C5a and C5a des Arg when these peptides were used as inducers of polarization. Studies performed with functionally active, [125I]-labeled C5a and C5a des Arg, however, demonstrated that binding of C5a des Arg to monocytes differed from binding of C5a. Although [125I]-C5a des Arg appeared to bind to the same receptor as [125I]-C5a, binding of labeled C5a des Arg occurred with an affinity that was approximately 100-fold less than that observed with labeled C5a. These results indicate that leukocyte chemotactic and polarization responses to C5a and C5a des Arg vary, depending on the target cell type.

Adult↗

Regulation of neutrophil migratory function in burn injury by complement activation products.

Polymorphonuclear neutrophils were isolated from patients with burn injury and random mobility, chemotaxis in response to C5adesArg (as agarose-activated control serum) and to N-formyl-methionyl-leucyl-phenylalanine (F-Met-Leu-Phe) were assessed. For a group of eight patients identified as not experiencing systemic infection, all three neutrophil migratory functions were observed to fall below control levels, beginning 4 to 6 days following burn injury, and to return to control levels after 21 to 30 days of hospitalization. Over this time the chemotactic differential (distance chemotactic migration-distance random migration) for F-Met-Leu-Phe remained positive, while the chemotactic differential for activated serum became nil after postburn day 4. This temporal, specific loss of a chemotactic response to activated serum was associated with rises in immunoreactive plasma C3a and C5a. This pattern of loss of chemotactic function was associated with a selective loss of C5a but not F-Met-Leu-Phe binding activity. These results demonstrate that burn injury can alter neutrophil migratory functions generally, and specifically depress chemotactic responsiveness to activated serum. The mechanism of the latter phenomenon appears to be related to desensitization of circulating neutrophils to C5a due to complement activation.

Adolescent↗

Complement activation during hemodialysis: clinical observations, proposed mechanisms, and theoretical implications.

Human C3a radioimmunoassay techniques were employed to define both the temporal profile and the amount of complement activation taking place in the extracorporeal circuit during maintenance hemodialysis. Prospective studies demonstrated that C3a formation, like hemodialysis-associated leukopenia, was a transient phenomenon that occurred predominantly during the first 30 min of dialysis. Quantitative comparisons revealed that new Cuprophan hemodialyzers displayed somewhat greater complement-activating potential than cellulose acetate dialyzers. By contrast to new Cuprophan membranes, both reused Cuprophan and polyacrylonitrile dialyzers exhibited only a modest ability to activate human complement. These findings are compatible with the known mechanisms of complement activation and suggest that certain chemical and biochemical methods might be exploited to enhance the biocompatibility of cellulose dialysis membranes.

Acrylic Resins↗

Analysis of the binding of fluorescent C5a and C3a to human peripheral blood leukocytes.

Fluorescein-labeled human C5a and C3a were prepared and utilized to analyze the binding of C5a and C3a to human neutrophils and mononuclear cells. The fluorescein derivatives of C5a (Fl-C5a) and C3a (Fl-C3a) contained approximately one fluorescein molecule per molecule of protein. Fl-C5a retained biologic activity as determined by neutrophil O2- production, enzyme release, receptor binding, and reaction with rabbit anti-C5a antibody. Fl-C3a was biologically active as measured by contraction of guinea pig ileal strips, and maintained 87% of its antigenic character when reacted with rabbit anti-human C3a. The binding of Fl-C5a and Fl-C3a to human neutrophils and mononuclear cells was assessed with the use of flow cytometry. Fl-C5a bound to greater than 90% of neutrophils, with an average ED50 ranging from 2.8 to 6.8 nM, depending on the method of analysis. Fl-C5a binding to neutrophils was specific and was not inhibited by the presence of formyl-methionyl-leucyl-phenylalanine (f-MLP), C3a, or casein. Fl-C5a binding was totally blocked by an excess of C5a. C5a des arg partially inhibited the binding of Fl-C5a to neutrophils, but was 1000-fold less effective than C5a. Similar experiments with mononuclear cells showed that Fl-C5a was bound by monocytes but not by lymphocytes. Fl-C5a binding to monocytes was blocked totally by C5a but not by C3a or f-MLP. Comparative binding studies with neutrophils, monocytes, and lymphocytes showed that Fl-C5a was bound by an average of 93% +/- 4 of neutrophils, 68% +/- 9 of monocytes, and 6% +/- 3 of lymphocytes. Fl-C3a did not show significant binding to neutrophils, monocytes, or lymphocytes. These studies demonstrate that fluorescein derivatives of C5a and C3a can be prepared with retention of biologic activity, and provide a means to evaluate the binding of C5a to individual cells.

Adult↗

The absence of detectable complement activation in aspirin-sensitive asthmatic patients during aspirin challenge.

Activation of complement was sought by two independent assay methods, total hemolytic complement (CH50) and C4 activation by rocket immunoelectrophoresis for C4d and C4 in plasma samples obtained from 16 aspirin-sensitive asthmatic patients and four control subjects during provocative oral aspirin challenges. No consistent evidence of significant complement activation was detected in either the asthmatic or control groups when serial measurements were performed. The measurements of CH50 and C4 activation did not change in either arterial or venous samples. These findings indicate that oral aspirin given in dosages that provoke bronchospasm did not activate C4 or significantly decrease serum complement activity.

Adult↗

Choosing a membrane.

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Biocompatible Materials↗

Symptoms and activation of granulocytes and complement with two dialysis membranes.

Complement (C) activation, neutropenia, and mild pulmonary dysfunction attend hemodialysis (HD) with cellophane [for example, cuprophan (Cu)] membranes. While usually asymptomatic, these phenomena may cause distress in patients with cardiopulmonary disease, and "start-up" symptoms of HD might be mediated by C-stimulated granulocytes (PMNs). Cellulose acetate (CA) hemodialysis membranes have been devised and claimed more blood compatible than Cu. In a blinded series of HD patients, pruritus, fatigue, and sense of well-being were each scored statistically more favorably by the patients during HD with CA than during HD with Cu (P less than 0.05). Postulating that less C activation might underlie the benefit, we showed that neutropenia was less severe with CA (nadir 77.6% of initial count, +/- 4 SEM) than with Cu (38.3% +/- 2.9; P less than 0.01). In vitro, incubation of CA membranes with plasma led to less C3 conversion (20% vs. 40%), less PMN aggregating activity (5.9 ZAP units vs. 36.3) and less decrement in CH50 (6.5% vs. 22%) than like incubations of Cu. C activation was also less potent in vivo: During HD plasma C3a rose from a mean 401 ng/ml to a peak 6,325 in patients on Cu dialyzers, but from 426 to only 3,637 in patients on CA devices (P less than 0.05). Time-course studies suggested CA was initially as potent an activator as Cu but rapidly lost ability to activate C, possibly because of saturation of C3b binding sites. As an index of PMN activation, we also assayed plasma lactoferrin and found levels significantly higher during Cu than CA dialysis.(ABSTRACT TRUNCATED AT 250 WORDS)

Anaphylatoxins↗