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L L Walker

Publications and source records attributed to L L Walker.

At least 37 records · Page 2Linked to original sources

Filtration failure induced by p-aminophenol in rats is due to raised intratubular pressure and not changes in glomerular function.

1. The p-aminophenol (pAP) model of tubular necrosis displays elevated tubular pressures equivalent to 'stop-flow', with low glomerular filtration rate (GFR) but maintained blood flow and urine output. Renal function, micropuncture, and morphological studies were performed in anaesthetized rats to examine the causes of filtration failure. 2. At the height of pAP-induced renal failure proximal tubular fluid reabsorption (Jv(a] was markedly reduced while proximal and distal free-flow rates measured by tubular fluid collections during venting of the nephron were not significantly different from saline-injected controls. Renal blood flow was maintained over the 4 h observation period despite extensive and selective proximal tubular necrosis. There was no temporal relationship between increased tubular pressure and cast formation. 3. Maintained blood and tubular fluid flow rates indicate that activation of tubuloglomerular feedback plays little or no part in pAP-induced renal failure, which is apparently due to high fluid flow resistance in the region of the connecting tubule, late distal convolution or collecting ducts. Morphological appearances were consistent with compression of these segments.

Absorption↗

Pretreatment with phorbol esters abrogates mast cell adenosine responsiveness.

Adenosine potentiates preformed mediator release from mouse bone marrow-derived mast cells stimulated with specific Ag or the calcium ionophore A23187. When these mast cells were cultured for 30 to 120 min with the phorbol ester PMA (10(-8) or 10(-7) M), protein kinase C activity was increased and Ag-stimulated beta-hexosaminidase release was modestly inhibited, whereas A23187-stimulated release was synergistically enhanced. However, in both cases, exogenous adenosine failed to augment beta-hexosaminidase release. Overnight PMA exposure produced a decrease in protein kinase C activity and a decrease in both Ag- and A23187-stimulated preformed mediator release, as well as a lack of responsiveness to adenosine. This hyporesponsiveness could be reversed by 24 h after washing the cells free of PMA. The generation of the arachidonic acid metabolite leukotriene C4 was not altered by mast cell PMA exposure. The ability of adenosine to increase intracellular cAMP concentrations was modestly blunted by high doses of PMA, and PMA abrogated the increase in intracellular free calcium levels usually observed in cells stimulated with Ag in the presence of 10(-5) M adenosine. PMA exposure induces a hyporesponsiveness to adenosine in mast cells, either by a direct effect on protein kinase C activity and/or by an effect on adenosine receptor expression or recycling.

Adenosine↗

Alteration of mast cell responsiveness to adenosine by pertussis toxin.

Adenosine potentiates mouse bone marrow-derived mast cell mediator release by a mechanism that appears to involve cell surface adenosine receptors. In an attempt to explore possible interactions between G proteins and adenosine receptors, mast cells were incubated with activated pertussis toxin, an agent that ADP-ribosylates and inactivates some G protein subtypes, prior to challenge with specific antigen or the calcium ionophore A23187. Mast cells preincubated with 10 ng/ml pertussis toxin for at least 2 hr exhibited an inhibition of antigen-induced beta-hexosaminidase and leukotriene C4 release. The ability of adenosine to potentiate beta-hexosaminidase release was attenuated to an even greater degree by pertussis toxin. A23187-stimulated mediator release was not altered by pertussis toxin, although a modest inhibition of the ability of adenosine to enhance A23187-induced beta-hexosaminidase release was observed in pertussis toxin-treated mast cells. Although up to 24-hr exposure to 100 ng/ml pertussis toxin did not alter resting mast cell cyclic AMP levels, the ability of adenosine to elevate cell cyclic AMP concentrations was diminished markedly by doses of the toxin higher than those required to affect mediator release. Neither antigen-stimulated intracellular free calcium level augmentation alone nor the additional potentiation of these levels by adenosine was changed by pertussis toxin treatment. Inositol trisphosphate was generated by mast cells stimulated by IgE-mediated mechanisms, but a preincubation with pertussis toxin did not influence its generation. In summary, adenosine appeared to produce some of its alterations in mast cell biochemical events by a mechanism that was partially inhibited by pertussis toxin. The nature of the G protein linked to the mast cell adenosine receptor is yet to be determined.

Adenosine↗

Inhibition of mast cell adenosine responsiveness by chronic exposure to adenosine receptor agonists.

Mast cell adenosine receptors are up-regulated functionally and numerically by chronic exposure to receptor antagonists, but their response to long-term treatment with receptor agonists has not been studied. To address this issue cultured mouse bone marrow-derived mast cells were exposed to N-ethylcarboxamide adenosine (NECA), an adenosine receptor agonist that augments stimulated mast cell mediator release. Cells grown for 3 days in 1 nM NECA responded normally to A23187 or antigen in releasing beta-hexosaminidase, but the ability of exogenous adenosine to potentiate this mediator release was attenuated markedly. This inhibition of adenosine responsiveness was partially present after 10 min of 1 microM NECA exposure and complete after 4 hr. The inhibitory effects could be reversed by washing NECA-exposed cells and returning them to culture for more than 4 hr. The adenosine present in the fetal calf serum coupled with deoxycoformycin attenuated mast cell adenosine responsiveness. The NECA-treated cells also exhibited a hyporesponsiveness to adenosine's augmentation of cell cyclic AMP content. This hyporesponsiveness was specific for adenosine receptors in that exogenous isoproterenol was able to increase cyclic AMP levels to a similar degree in both control and NECA-treated cells. Thus, chronic NECA exposure induces a homologous desensitization of mast cell adenosine receptors.

Adenosine↗

Ribavirin inhibits mast cell mediator release.

Ribavirin (1-beta-D-ribofuranosyl-1,2-4-triazole-3-carboxamide) is a promising antiviral agent as well as a structural analog of guanosine. Although at different concentrations it has been reported to induce either immunosuppression or immune stimulation, its effects upon immediate hypersensitivity reactions are largely unknown. Because purine metabolism appears to be important in mast cell secretion, the effects of ribavirin on mouse bone marrow-derived mast cell functions were investigated. When ribavirin was added to mast cells at the time of stimulation with A23187 or specific antigen, no effect on the release of beta-hexosaminidase, a preformed mediator, was evident. However, mast cells cultured in 1 to 20 microM ribavirin for 1 to 7 days exhibited dose- and time-dependent inhibitions of stimulated beta-hexosaminidase and leukotriene C4 releases without altering mast cell mediator content. This inhibition occurred even when ribavirin had no effect on cell growth. A concomitant decrease in antigen-challenged mast cell intracellular Ca concentration was also observed after ribavirin treatment. Chronic ribavirin exposure in vitro inhibits mast cell secretory processes stimulated by both immunoglobulin E- and nonimmunoglobulin E-related signals. Its precise mechanism of action and any potential efficacy as an antiallergic agent remain to be elucidated.

Animals↗

Activity of selected beta-lactam antibiotics against Mycobacterium leprae.

Twelve beta-lactam antibiotics were tested for activity against Mycobacterium leprae growing in the foot pads of mice. Two cephalosporins (7-aminocephalosporanic acid and cefuroxime) and one cephamycin (cefoxitin) showed significant activity against M. leprae, and one penicillin (mezlocillin) exerted possible growth-promoting activity. These results suggest that particular molecular structures may be required for activity against M. leprae.

Animals↗

Cromolyn inhibition of mediator release in mast cells derived from mouse bone marrow.

Mast cells derived from mouse bone marrow fail to demonstrate a disodium-cromoglycate-induced inhibition of mediator release when the cromolyn is added simultaneously with a secretagogue. To investigate the long-term effects of cromolyn exposure, cells from BALB/C femoral bone marrow stimulated with IL-3 were cultured in the presence of 1 to 100 microM cromolyn and demonstrated a similar viability and ability to proliferate as cells cultured in medium alone. Those cultured in cromolyn exhibited a significantly decreased A23187- or antigen-induced release of beta-hexosaminidase (4.3 +/- 0.7% versus 9.2 +/- 1.0%, p less than 0.01) compared with control cells. The adenosine-induced potentiation of mediator release was diminished to a comparable degree after cromolyn exposure in culture. This inhibition was dose-dependent between 1 and 100 microM cromolyn, evident by 5 days, reversible in 6 more days, and applied to immunoreactive leukotriene C4 generation as well. Bone marrow mast cells respond to chronic cromolyn exposure with a global inhibition of mediator release, but the basis for this response is unknown.

Adenosine↗

Adenosine receptors on mouse bone marrow-derived mast cells: functional significance and regulation by aminophylline.

Adenosine receptors on mouse bone marrow-derived mast cells were identified by functional criteria and radioligand binding. The stimulated release of beta-hexosaminidase from these cells was significantly augmented by the simultaneous addition of secretagogue and adenosine, NECA, or L-PIA. Similar enhancement of pre-formed mediator release occurred after a 10-min preincubation with adenosine. Resting mast cell cAMP levels increased within 15 sec after the addition of adenosine, and remained elevated for at least 60 sec. Although the antigen-or A23187-induced release of beta-hexosaminidase was markedly potentiated by exogenous adenosine, the stimulated release of [14C]-labeled arachidonic acid metabolites was minimally affected by adenosine, suggesting a differential effect of adenosine on granule-associated release as compared to generated mediator release. Bone marrow mast cells exhibited 5470 +/- 740 [3H]adenosine binding sites/cell, with a binding affinity of 24.4 +/- 3.8 nM. Cells cultured in the presence of 100 microM aminophylline for 6 days were hyperresponsive to exogenous adenosine, releasing a maximum of 162% of the amount of beta-hexosaminidase released from control cells in the presence of adenosine. The number of [3H]adenosine binding sites on the xanthine-treated cells increased to 156% of control values, suggesting an up-regulation of adenosine receptors induced by chronic exposure to an adenosine receptor antagonist. Mouse bone marrow mast cells possess functionally significant adenosine receptors that are regulated by aminophylline and that, when stimulated, produce many alterations in the mast cell secretory process.

Adenosine↗

Early functional and morphological changes in renal tubular necrosis due to p-aminophenol.

Functional and morphological changes developed rapidly in rats after the intravenous administration of the organic nephrotoxin p-aminophenol. Proximal intratubular pressure remained close to its mean control value of 14.9 +/- 0.9 mm Hg up to 40 min after injection of the nephrotoxin then rose rapidly over the following 50 min to a maximum of 38.7 +/- 7.4 mm Hg. Distal tubular pressure also rose in the same manner. Renal blood flow remained constant, but GFR fell to 11% of control values while fractional excretion of sodium and water rose 12 and five times, respectively. Morphological changes developed in parallel with the functional changes. They were widespread, varied in intensity from cell to cell, were more severe in the distal third of the proximal convoluted tubule and consisted of cytoplasmic swelling, reduced organelle concentration, reduction or loss of basal infoldings, widening of lateral intercellular spaces, extrusion of bubbles of cell sap into the tubular lumen; brush borders were preserved. No casts were present up to 90 min. Similar results were seen when p-aminophenol was added to the perfusate of the isolated perfused kidney. It is proposed that metabolic and morphological damage leads rapidly to both impairment of proximal tubular sodium reabsorption and increased flow resistance in the cortical collecting system. Both effects contribute to a rise in tubular pressures which oppose glomerular filtration.

Acute Kidney Injury↗

Comparison of the immunogenicity of vaccines prepared from viable Mycobacterium bovis BCG, heat-killed Mycobacterium leprae, and a mixture of the two for normal and M. leprae-tolerant mice.

Intradermal vaccines consisting of viable Mycobacterium bovis BCG, heat-killed Mycobacterium leprae, or mixtures of the two were titrated in mice in doses of 10(5.2), 10(5.8), 10(6.4), 10(7.0), and 10(7.6) acid-fast bacilli. The immune response was measured by sensitization (48 to 72 h foot pad enlargement on challenge with 10(7.0) heat-killed M. leprae) and by protection against infection with a viable M. leprae challenge. There was increasing response with increasing dose of vaccine, and overall the responses to the three vaccines were similar. At the lowest dose, however, the combination of BCG and M. leprae gave superior protection. The local reaction to the vaccines in the lower dose range was less severe with the M. leprae vaccine. In another experiment, the three vaccines were compared in normal mice and in mice that had been rendered tolerant by intravenous injection of M. leprae. The tolerant mice developed no measurable sensitization on vaccination with M. leprae, but they developed partial but distinct sensitization on vaccination with BCG, alone or in combination with M. leprae. The tolerant mice developed little or no protection with any of the vaccines, however.

Animals↗

Sensitization or tolerance to Mycobacterium leprae antigen by route of injection.

Aqueous suspensions of heat-killed Mycobacterium leprae in a dose of 10(7) organisms were highly immunogenic when injected intradermally (i.d.). The same dose of bacteria did not sensitize when given intraperitoneally (i.p.) or intravenously (i.v.), and did so only minimally at best when given subcutaneously. The i.d. route was the most immunogenic for sheep erythrocytes also. M. leprae injected i.p. or i.v. stimulated immune tolerance to M. leprae challenge i.d. In older mice (greater than or equal to 8 weeks), the i.v. injections gave more complete tolerance. Mice that had been rendered tolerant by i.v. injections maintained their tolerance for at least 168 days. Prior UV irradiation of intact mice prevented sensitization by the i.d. route. In normal mice, living M. bovis BCG given i.d. produced good sensitization to M. leprae. Mice that had been made tolerant by i.v. injection of M. leprae could be partially sensitized to M. leprae by i.d. immunization with BCG; mixtures of living BCG and heat-killed M. leprae were no more effective than BCG alone. These findings appear to have relevance to the pathogenesis of lepromatous leprosy and its immunoprophylaxis.

Animals↗

Searches among mycobacterial cultures for antileprosy vaccines.

All mycobacteria species share some antigens, so there may be cultivable mycobacterial cultures that can provide vaccine protection against leprosy. Vaccine protection against Mycobacterium leprae infections in mice has been demonstrated for M. leprae itself, as living or heat-killed suspensions, and for Mycobacterium bovis (BCG), as living suspensions. Results are reported here with 17 other cultures. The mycobacterial suspensions were injected intradermally, and the mice were challenged in the footpad with infectious suspensions of M. leprae. In two experiments the mice were also challenged by footpad injections of 10(7) heat-killed M. leprae so the footpad enlargment could be measured. That some mycobacterial suspensions were immunogenic for some of their own antigens was suggested by reactions at the vaccine site and enlargement of the regional lymph nodes. Some mycobacterial suspensions also stimulated footpad enlargement on challenge by homologous suspensions or by challenge with M. leprae suspensions. Consistent protection against infectious challenge with M. leprae was observed only with BCG and M. leprae, however.

Animals↗

Foot pad enlargement as a measure of induced immunity to Mycobacterium leprae.

Foot pad enlargement (FPE) has been used as a measure of induced immunity to M. leprae, FPE peaked at 2-3 days, but it sometimes persisted for 4 weeks or more. Both as the inducing and eliciting antigen, heat-killed M. leprae were effective, and the optimum dose was about 1 x 10(7) bacilli. Higher doses were associated with flattening of the dose-response curve. Disrupted bacilli were not effective in immunizing mice, but they elicited FPE responses in mice immunized with intact bacilli. Cord factor was not found to have adjuvant activity for M. leprae. In immunization, the intradermal route was confirmed to be more effective than the foot pad route; the subcutaneous route was effective in providing protection against infection. FPE tests were used to investigate the steps of standard purification procedures for M. leprae in armadillo livers. A trypsin-chymotrypsin digestion step was found to be harmful to immunogenicity in one of two experiments.

Animals↗

Immunity to Mycobacterium leprae infections induced in mice by BCG vaccination at different times before or after challenge.

Viable suspensions of BCG, an attenuated strain of Mycobacterium bovis, have been previously shown to immunize mice against infections with M. leprae. Usually, the mice have been vaccinated about 1 month before challenge. Experiments have now been carried out with single intradermal injections of BCG given before or after the M. leprae challenge. Approximately equal immunizing effect was seen in one experiment when the BCG was given at -168, -119, -70, and -28 days relative to challenge. Approximately equal protection was observed in another experiment when the vaccine was given at -28, +28, and +56 days. In the latter experiment, however, vaccine given at +91 days appeared to be somewhat less effective. Enlargement of the lymph nodes regional to the intradermal vaccine site persisted for at least the duration of the experiment, approximately 400 days. Thus, antigenic stimulation appears to have continued throughout the period of observation.

Animals↗

Heat stability of Mycobacterium leprae immunogenicity.

The protection provided to mice by vaccines administered intradermally was measured after footpad challenge with Mycobacterium leprae. The protection offered by M. leprae suspensions was not decreased when the vaccines were killed by 60 degrees C heat or at the higher temperatures tested, which included 215 degrees C (autoclave). Even highly purified suspensions retained their immunogenicity. In contrast, the vaccine protection provided by intradermal M. bovis (strain BCG) was markedly reduced when heated to 60 degrees C. The enlargement of the lymph nodes regional to the intradermal vaccines was measured and found generally to parallel the vaccine protection provided by M. leprae and by BCG.

Animals↗