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Biomedical subjects

F L Pearce

Publications and source records attributed to F L Pearce.

At least 145 records · Page 8Linked to original sources

Role of a renal arginylesteropeptidase in the production of a renotrophic factor in unilaterally nephrectomized rats.

1. Renal cortical slices incubated for 4 hr in culture medium in the presence of either dibutyrylguanosine-3': 5'-cyclic monophosphate (dibutyryl cyclic GMP, 10(-6)m) or freeze-dried normal rat plasma (35 mug mg(-1) wet wt. tissue) did not show any change in dry weight or protein content. However, addition of freeze-dried normal plasma together with dibutyryl cyclic GMP led to an increase in both parameters.2. Unilateral nephrectomy produced a marked increase in the level of arginylesteropeptidase in the renal cortex of the remaining kidney. A similar increase was observed in renal cortical slices incubated with dibutyryl cyclic GMP in vitro.3. The renal cortical esteropeptidase was inhibited by phenylmethylsulphonyl fluoride (PMSF, 2 mm). The inhibitor did not, however, prevent the normal increase of dry weight and protein content of renal cortical slices incubated with plasma from unilaterally nephrectomized rats. Similarly, control normal plasma incubated with cortical slices from a kidney removed 10 min after unilateral nephrectomy became endowed with renotrophic activity (Dicker & Morris, 1980b) but this activation was abolished by PMSF.4. Control plasma treated with a purified arginylesteropeptidase and incubated for 4 hr with renal cortical slices produced a hypertrophy of the slices similar to that evoked by plasma from a unilaterally nephrectomized rat.5. Since following unilateral nephrectomy there is a rapid increase in the level of cyclic GMP in the renal cortical tissue of the remaining kidney (Dicker & Greenbaum, 1977) it is suggested that this increase leads to the induction of a specific arginylesteropeptidase. The possibility that the enzyme then cleaves a renotrophic precursor normally present in the plasma, so converting it to an active form, is discussed.

Aminopeptidases↗

Characteristics of and calcium requirements for histamine release from rat peritoneal mast cells treated with concanavalin A.

Concanavalin A (Con A) produced a selective release of histamine from rat peritoneal mast cells in the presence and absence of added calcium. Secretion under both conditions was enhanced by adenosine, but only the former release was potentiated by phosphatidyl serine (PS). The latter release was abolished by depletion of intracellular reservoirs of calcium and probably reflected mobilization of these stores. A brief exposure to chelating agents enhanced the response to Con A whereas supramaximal concentration of calcium depressed the response. This result suggests that superficial calcium-stores in the membrane may regulate movement of the cation into the cytosol. The activated state induced by Con A and PS was particularly stable and did not decay with time over a 30 min period. The kinetics of the release process were independent of added calcium, indicating that calcium-translocation is not the rate-limiting step in the exocytotic mechanism.

Adenosine↗

Effect of anti-allergic compounds on histamine release from rat peritoneal mast cells treated with concanavalin A.

The anti-allergic drugs theophylline, doxantrazole, quercetin, dibutyryl cyclic AMP, and disodium cromoglycate prevented histamine release induced by concanavalin A in both the presence and absence of extracellular calcium. The compounds were generally most effective in the absence of added calcium and least effective in the simultaneous presence of calcium and phosphatidyl serine. The activity of the test drugs in calcium-free media clearly cannot be explained in terms of their postulated ability to block movement of the ion from the external environment into the cell. Alternative modes of action are thus considered.

Animals↗

Differential reactivity of isolated mast cells from the rat and guinea pig.

The effects of various chemical histamine liberators on isolated rat peritoneal, rat mesenteric and guinea-pig mesenteric mast cells were examined. All three cell types responded, but to different degrees, to calcium ionophores and surface active agents. The rat mesenteric cells also reponded, but less effectively than the peritoneal cells, to compound 48/80, peptide 401 from bee venom and ATP. Rat mesenteric cells were essentially refractory to the action of dextran and guinea-pig cells were almost totally unresponsive to the named secretagogues. These results show that there are marked functional differences between the mast cells examined and suggest that isolated tissue cells may usefuly complement rat peritoneal cells in the study of anaphylactic and anaphylactoid reactions.

Adenosine Triphosphate↗

Inhibition of histamine release induced by compound 48/80 and peptide 401 in the presence and absence of calcium. Implications for the mode of action of anti-allergic compounds.

Histamine may be released from rat peritoneal mast cells by compound 48/80 and peptide 401 in the presence and absence of extracellular calcium. The process is non-cytolytic and requires an intact cell metabolism. The release produced under both conditions is inhibited by disodium cromoglycate, theophylline, dibutyryl cyclic AMP and (at high concentrations) quercetin. The efficacy of the drugs in the absence of extracellular calcium cannot be explained in terms of their postulated effect on the calcium-gating mechanism operative in anaphylactic secretion. Alternative modes of action of the compounds are thus considered.

Animals↗

Some studies on the release of histamine from mast cells stimulated with polylysine.

1 Polylysine is an extremely potent releaser of histamine from rat peritoneal mast cells. Isolated mesenteric mast cells of the rat also respond to the secretagogue but guinea-pig mesenteric cells are unreactive. 2 The release does not require the presence of extracellular calcium ions but shows some dependence on internal stores of the cation. 3 The effect of polylysine is blocked by extremes of temperature and by metabolic inhibitors. 4 The release is very rapid and is virtually complete within 10 s of adding the inducer. 5 The release is unaffected by the anti-allergic drug, doxantrazole, but is inhibited by theophylline and disodium cromoglycate. The latter compounds are effective in both the presence and absence of added calcium. This result is discussed in terms of the postulated effect of the drugs on calcium transport.

Animals↗

Calcium pools involved in histamine release from rat mast cells.

Basic secretagogues, antigen, concanavalin A, the ionophore A23187 and, to a lesser extent, anti-rat IgE produce a significant release of histamine from rat peritoneal mast cells in the absence of extracellular calcium. This release is due to the mobilization of intracellular reservoirs of calcium. The release is abolished by prolonged exposure to chelating agents, but is potentiated by brief exposure to these substances. It is suggested that the latter treatment removes calcium from a superficial, regulatory site and thus facilitates the mobilization of more internal pools of the ion. By analogy with smooth muscle, these regulatory sites may also modulate calcium influx into the cell. On the basis of these and other results, the possible calcium pools important in histamine secretion are discussed.

Animals↗

The effect of alkaline earth cations on the release of histamine from rat peritoneal mast cells treated with compound 48/80 and peptide 401.

1 Extracellular calcium ions have a dual effect on the release of histamine from rat peritoneal mast cells treated with compound 48/80 and peptide 401. The release is either potentiated or inhibited according to the relative concentrations of ion and inducer.2 Strontium similarly potentiates the release produced by optimal concentrations of inducer but higher concentrations are required than in the case of calcium. Strontium is markedly less inhibitory than calcium.3 Mast cells may be depleted of intracellular calcium by incubation for short periods with the chelating agent, ethylenediamine tetraacetic acid (EDTA). They thereby become unresponsive to compound 48/80 and peptide 401 unless calcium is reintroduced into the incubation medium. Strontium and barium, but not magnesium, will substitute for calcium in this system. Barium additionally produces a marked release of histamine even in the absence of inducer. Pretreatment with the ionophore A23187 similarly inhibits the subsequent response to peptide 401 in divalent cation-free medium. This inhibition is reversed on the reintroduction of calcium.4 Compound 48/80 and peptide 401 release histamine from mast cells incubated in isotonic sucrose in the complete absence of added metal ions. However, the corrected release under these conditions is potentiated by both mono and divalent cations.5 On the basis of these results, the possible mechanism of action of the basic releasing agents and their usefulness as models for studying histamine secretion is discussed.

Animals↗

Effect of cyclic AMP on histamine release induced by compound 48/80.

Bu2 cAMP(N6, O2'-dibutyryl adenosine-3',5'-cyclic monophosphate) inhibited the response of rat peritoneal mast cells to compound 48/80 in the presence of calcium ions. In the absence of calcium, the nucleotide partially prevented the desensitization induced by chelating agents. The response of cells, allowed to accumulate Bu2 cAMP in the presence of calcium (to avoid depletion of intracellular stores of the ion) and then challenged in the absence of extracellular calcium, was also inhibited. These results are discussed in terms of the postulated effects of Bu2 cAMP on the calcium-gatubg mechanism operative in histamine secretion.

Animals↗

On the mechanism of immunosympathectomy.

The effects in vivo and in vitro of the antiserum to mouse nerve growth factor (NGF) are independent of the presence of complement. These results are consistent with the view that the antiserum acts by neutralizing endogenous NGF.

Animals↗

Studies on the release of histamine from isolated guinea pig mast cells stimulated by ionophore A23187 or by the anaphylactic reaction.

The divalent cation ionophore A23187 was found to produce a dose-dependent release of histamine from isolated mesenteric mast cells of the guinea pig. The process showed a specific requirement for calcium ions and was blocked by inhibitors of glycolysis. The effect of cAMP, theophylline, sympathomimetic amines and DSCG on the histamine release induced by the ionophore or by the antigen-antibody reaction was compared. In both cases, the release was inhibited by Bu2cAMP and by theophylline but higher concentrations were required with the ionophore. Adrenaline, isoprenaline and DSCG were effective only in the anaphylactic system. These results are compared with those previously reported for human leucocytes and rat peritoneal mast cells in which the release produced by the ionophore was found not to be inhibited by cAMP and its analogues. On the basis of these findings, the possible role of cAMP in the modulation of histamine release is discussed.

Anaphylaxis↗