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The in-vitro activity of new streptogramins, RP 59500, RP 57669 and RP 54476, alone and in combination.

RP 59500 is a 30:70 mixture of RP 57669 and RP 54476. The activity of RP 59500 and its two components against Gram-positive and Gram-negative organisms was compared with that of clarithromycin, roxithromycin, azithromycin and rokitamycin. RP 59500 inhibited 90% of erythromycin-susceptible and resistant Staphylococcus aureus and coagulase-negative staphylococci at less than or equal to 1 mg/L (range 0.06-2 mg/L). Both inducibly and constitutively-resistant strains of S. aureus, as well as strains resistant to rifampicin, gentamicin and ciprofloxacin, were inhibited. Streptococcus pyogenes, including erythromycin-resistant isolates, and group C and G streptococci were inhibited by 0.5 mg/L. Streptococcus pneumoniae and viridans group streptococci were inhibited by 1 mg/L. The MIC90 was 4 mg/L for Haemophilus influenzae and 1 mg/L for Moraxella catarrhalis. RP 59500 did not inhibit Enterobacteriaceae or Pseudomonas aeruginosa. The activity of RP 59500 against streptococci was less than that of the four other macrolides. Clostridium perfringens strains were highly susceptible, as were Bacteroides spp. RP 59500, when combined with ciprofloxacin, cefotaxime or gentamicin, did not have altered activity against susceptible species or alter the activity of the other component of the combination against susceptible species. MBCs in serum were increased two- to four-fold for S. pyogenes, S. pneumoniae and S. aureus, compared with MBCs in broth, but RP 59500 was as active at pH 6 as at pH 7, and there was not an appreciable inoculum effect. RP 59500 has potential use as an agent against inducibly and constitutively erythromycin-resistant isolates of Gram-positive species and selected anaerobic organisms.

Azithromycin

RP 58866 and its active enantiomer RP 62719 (terikalant): blockers of the inward rectifier K+ current acting as pure class III antiarrhythmic agents.

The present article presents an overview of the pharmacologic profile of the benzopyran derivative RP 58866, a racemic mixture, and of RP 62719 (terikalant), its active enantiomer. In normal cardiac tissues studied in vitro, both drugs dose-dependently prolonged the atrial and ventricular action potential but affected neither the upstroke of the action potential nor the diastolic potential. Patch-clamp experiments demonstrated that the prolongation of the action potential induced by the drugs is due to a specific blockade of the inward rectifier K+ current. In vivo, intravenous administration to anesthetized dogs of low doses of RP 62719 consistently induced bradycardia and prolonged the atrial, nodal, and ventricular refractory periods, but did not affect the conduction velocity. Because of these properties, RP 58866 and RP 62719 exert potent antiarrhythmic and antifibrillatory actions both at the atrial and ventricular levels in various experimental models of arrhythmia. Our results demonstrate that RP 58866 and RP 62719 are K(+)-channel blockers acting as pure class III antiarrhythmic drugs.

Action Potentials

Probable genetic linkage between autosomal dominant retinitis pigmentosa (RP) and amylase (AMY2): evidence of an RP locus on chromosome 1.

A linkage analysis is reported for three branches of a single family segregating for autosomal dominant retinitis pigmentosa. A statistically significant lod score of 3.9 is obtained for the RP locus and AMY2 at a recombination frequency of 1%. This linkage indicates that the RP locus is on the no. 1 chromosome since the AMY2 locus has been placed on the short arm of 1. Lod scores are reported for four other loci on chromosome 1; none of these achieve statistical significance. Analyses are reported for 23 additional autosomal markers and close linkage with RP can be excluded for a number of these.

Amylases

Activity of RP 59500, a new parenteral semisynthetic streptogramin, against staphylococci with various mechanisms of resistance to macrolide-lincosamide-streptogramin antibiotics.

RP 59500 is a semisynthetic streptogramin (Sg) composed of two synergic components: RP 57669 and RP 54476. The activities of RP 59500, RP 57669 and RP 54476 were tested against 20 strains of staphylococci susceptible to macrolide, lincosamide and streptogramin antibiotics (MLS) and against strains exhibiting different MLS resistance mechanisms. RP 59500 was active against 14 strains harbouring emrA or ermC genes which were inducibly or constitutively resistant to erythromycin (MICs of 0.5-2 mg/L). Neither RP 59500, RP 57669 nor RP 54476 induced MLSB resistance. Constitutive mutants appeared at frequencies of 10(-7)-10(-8) when two MLSB-inducible strains of staphylococci were exposed to 40 mg/L each of clindamycin and RP 57669. No such mutants appeared on plates containing RP 59500 or RP 54476. The emergence of mutants was prevented if the cultures were exposed to RP 54476 (40 mg/L), indicating that such mutants are unlikely to be selected in vivo by RP 59500. However, for some constitutive mutants, MBCs of RP 59500 were as high as 8 mg/L. Strains producing acetyltransferase and hydrolase, inactivating SgA- and SgB-type antibiotics respectively, were resistant to RP 59500, RP 57669 and RP 54476. Production of Pincosamide nucleotidyltransferase-4, which inactivates lincosamides, had no effect on the MICs of RP 59500, RP 57669 and RP 54476.

Anti-Bacterial Agents

Cellular uptake and intracellular bactericidal activity of RP 59500 in murine macrophages.

RP 59500, a new antibacterial agent, is a combination of two compounds, RP 54476 and RP 57669. The uptake of radiolabelled RP 59500, i.e. a mixture containing [14C]-RP 54476 plus RP 57669 or [14C]-RP 57669 plus RP 54476, by J 774 murine macrophages was evaluated by a velocity gradient centrifugation technique. After 120 min, the ratios of cellular to extracellular concentration for RP 54476 and RP 57669 were 34 and 50, respectively. The highest intracellular accumulation of RP 59500 was observed at pH 7-7.5. RP 59500 was found to accumulate less at 4 degrees C than at 37 degrees C. The uptake of RP 59500 by dead macrophages was markedly higher than that by live macrophages. As the extracellular concentration of RP 59500 was increased, the intracellular concentration of each component rose, but not proportionally. The metabolic inhibitors sodium cyanide and potassium fluoride both decreased modestly the entry of RP 57669, but not that of RP 54476, into macrophages. After removal of the extracellular antibiotic, RP 54476 and RP 57669 were released rapidly by the cells until equilibrium was established (45% of the original intracellular RP 59500 remained in the cells after 120 min). The intracellular activity of RP 59500 was assessed by incubating macrophages containing ingested Staphylococcus aureus 209P with the drug (10 x MIC: 2.5 mg/L) at 37 degrees C and determining the number of viable cell-associated bacteria. Approximately 70% of the intracellular bacteria were killed within 120 min of incubation. Thus, RP 59500 attains a high intracellular concentration and is active against intracellular S. aureus.

Drug Combinations

Pharmacological characterization of RP 62203, a novel 5-hydroxytryptamine 5-HT2 receptor antagonist.

1. RP 62203 (2-[3-(4-(4-fluorophenyl)-piperazinyl)propyl]naphto[1,8- ca]isothiazole-1,1-dioxide) is a novel naphtosultam derivative which shows very high affinity for 5-HT2 receptors in the rat cerebral cortex (Ki = 50.0 pM). 2. RP 62203 is relatively selective for this sub-type of 5-hydroxytryptamine (5-HT) receptor, having lower affinity for the 5-HT1A receptor and very low affinity for the 5-HT, receptor. RP 62203 displayed low to moderate affinity for alpha 1-adrenoceptors, dopamine D2 receptors and histamine H1 receptors. 3. In vivo binding experiments demonstrated that oral administration of low doses of RP 62203 led to a long-lasting (greater than 6 h) occupation of cortical 5-HT2 receptors (ID50 = 0.39 mgkg-1). 4. In cortical slices from the neonatal rat, RP 62203 potently inhibited inositol phosphate formation evoked by 5-HT, with an IC50 of 7.76 nM. 5. The activity of neurones in the raphé and their responses to microiontophoretically applied 5-HT were studied with extracellular recording electrodes in the anaesthetized rat. RP 62203 potently and dose-dependently blocked excitations evoked by 5-HT when administered at doses of 0.5-4.0 mg kg-1, i.p. In contrast, neither 5-HT-evoked depressions nor glutamate-evoked excitations of raphé neuronal firing were blocked by RP 62203 at doses as high as 8.0 mg kg-1, i.p. 6. Head twitches induced by 1-(2,5-dimethoxy-4-iodophenyl)-2-aminopropane (DOI) could be abolished by low doses of RP 62203 in mice (ED50 = 0.44 mg kg-1, p.o.) and in rats (ED50 = 1.54 p.o.). Similar results were obtained with mescaline and 5-hydroxytryptophan (5-HTP). 7. The potency of RP 62203 was compared with that of three other 5-HT2 receptor antagonists, ritanserin, ICI 169,369 and ICI 170,809. In all models, RP 62203 showed similar activity to ritanserin, whilst either ICI 169,369 or ICI 170,809 was several fold less active. 8. It is concluded that RP 62203 is a potent and selective antagonist at 5-HT2 receptors in the rodent central nervous system.

Action Potentials

In-vitro and in-vivo synergic activity and fractional inhibitory concentration (FIC) of the components of a semisynthetic streptogramin, RP 59500.

RP 59500 is a new semisynthetic injectable streptogramin antibiotic composed of two compounds which interact synergically, RP 57669 and RP 54476, derived from pristinamycin IA and pristinamycin IIB, respectively. The bacteristatic and bactericidal activities of RP 57669 and RP 54476 alone or combined in various proportions were tested by the chequerboard dilution technique. The fractional inhibitory concentration (FIC) index was determined for 14 Staphylococcus aureus isolates (including methicillin- and macrolide-resistant strains) and one culture collection strain. The FIC index was found to be much lower than 0.5, indicating the presence of synergy for all strains tested, whatever their resistance pattern. The ED50 of RP 57669 and RP 54476 in various combinations were also determined in three experimental murine models of septicaemia, caused by either S. aureus or Streptococcus pneumoniae, and a thigh abscess model caused by S. aureus. The combinations which performed best in the model of septicaemia were those in which the RP 57669: RP 54476 ratio ranged from 16:84 to 92:8, while those active against the thigh abscess model had ratios ranging from 8:92 to 84:16. That the drugs were active over a wide range of ratios suggests that synergy will be maintained even if one drug is cleared more rapidly than the other. The combination of 30:70, referred to as RP 59500, was selected for further studies, both in vitro and in various experimental models of infections.

Abscess

RP 58802B, a long-acting beta 2-adrenoceptor agonist: assessment of antiasthma activity in the guinea-pig in vivo.

We have examined the protective actions of RP 58802B, a novel beta 2-adrenoceptor agonist, administered by the inhaled and oral routes in the anaesthetized and conscious guinea-pig against bronchospasm induced by histamine or antigen (ovalbumin). We have also examined the effects of RP 58802B on airway reactivity and inflammatory cell infiltration in platelet-activating factor (PAF) (aerosol)-induced bronchial hyperreactivity and on PAF (tracheal instillation)-induced microvascular leakage in the guinea-pig. Nebulized RP 58802B produced a rapid onset and long lasting inhibition of histamine-induced bronchospasm in the anaesthetized guinea-pig (EC50 = 3.2 +/- 0.9 micrograms/ml; duration greater than 90 min). Given orally, RP 58802B (5 mg/kg, 60 min before challenge) produced a greater than three-fold shift to the right of the dose-response curve and depressed the maximum response to histamine by 39 +/- 11%. Increasing the concentration to 25 mg/kg had no futher effect. Similar protection was still seen 4 h after oral dosing. In conscious guinea-pigs, RP 58802B (5 or 25 mg/kg, p.o. 60 min before challenge) significantly attenuated antigen-induced dyspnoea with the time to severe dyspnoea increasing from 170 +/- 32 to 325 +/- 32 s at the higher dose of drug. RP 58802B (10 or 25 mg/kg, p.o. 60 min before exposure to PAF) prevented the development of bronchial hyperreactivity. Although PAF-induced bronchial hyperreactivity was not accompanied by an increase in the number of pulmonary eosinophils, RP 58802B (25 mg/kg p.o.) reduced the numbers of eosinophils recovered by lavage. RP 58802B (10 mg/kg p.o.) significantly inhibited PAF-induced microvascular leakage into guinea-pig lung. These data suggest that RP 58802B, in addition to being a potent and long acting bronchodilator, may have a prophylactic role in preventing bronchial hyperreactivity and in reducing plasma exudation into the lungs.

Administration, Inhalation

Cyclic AMP antagonist Rp-cAMPS inhibits amylase exocytosis from saponin-permeabilized parotid acini.

Rp-cAMPS, the Rp-diastereomer of adenosine 3',5'-phosphorothioate, is often referred to as a cAMP antagonist, since it binds to the regulatory subunit of cAMP-dependent protein kinase without dissociation of free catalytic subunits. To evaluate the role of cAMP-dependent protein kinase in amylase exocytosis, we examined the effect of Rp-cAMPS on amylase release from rat parotid acini. Rp-cAMPS did not stimulate amylase release from saponin-permeabilized parotid acini, whereas its Sp-isomer strongly evoked amylase release. Rp-cAMPS dose-dependently inhibited amylase release stimulated by Sp-cAMPS. In the presence of Rp-cAMPS, the dose-response curve of Sp-cAMPS was shifted to the right. The inhibitory effect of Rp-cAMPS on isoproterenol-induced amylase release was not detected in intact acini, but was clearly observed in the permeabilized ones. Rp-cAMPS markedly inhibited protein phosphorylation evoked by Sp-cAMPS, indicating that Rp-cAMPS prevents the dissociation of cAMP-dependent protein kinase. These results, taken together with synergistic increase in amylase release by the combination of site-selective cAMP analogues [T. Takuma (1990) J. Biochem. 108, 99-102], suggest that cAMP-dependent protein kinase is involved in the exocytosis of amylase from parotid acini.

Amylases

Identifying the molecular switches that determine whether (Rp)-cAMPS functions as an antagonist or an agonist in the activation of cAMP-dependent protein kinase I.

Previous investigations revealed that under physiological conditions in the presence of MgATP the phosphorothioate analogue of cAMP, (Rp)-cAMPS, is a competitive inhibitor and antagonist for cAMP for cAMP-dependent protein kinases I and II [DeWit et al., (1984) Eur. J. Biochem. 142, 255-260]. For the type I holoenzyme, the antagonist properties of (Rp)-cAMPS are shown here to be absolutely dependent on MgATP. In the absence of MgATP, (Rp)-cAMPS serves as a weak agonist with a Ka of 7.9 microM. The high-affinity binding of MgATP imposes a barrier on cAMP-induced activation of the homoenzyme--a barrier that both cAMP and (Sp)-cAMPS, but not (Rp)-cAMPS, can overcome. In the absence of MgATP, this barrier no longer exists, and (Rp)-cAMPS functions as an agonist. The holoenzyme also was formed with mutant regulatory subunits. Replacing the essential arginine, predicted to bind the exocyclic oxygens of cAMP, in site A with lysine abolishes high-affinity binding of cAMP to site A. The holoenzyme formed with this mutant R-subunit is activated by (Rp)-cAMPS in both the presence and absence of MgATP. These results suggest that the stereospecific requirements for holoenzyme activation involve this guanidinium side chain. Mutations that eliminate the high-affinity binding of MgATP, such as the introduction of an autophosphorylation site in the autoinhibitory domain, also generate a holoenzyme that can be activated by (Rp)-cAMPS. In the case of the type II holoenzyme, (Rp)-cAMPS is an antagonist in both the presence and absence of MgATP, emphasizing distinct roles for MgATP in these two forms of cAMP-dependent protein kinase.

Adenosine Triphosphate

Studies of RP 59500 in vitro and in a rabbit model of aortic valve endocarditis caused by methicillin-resistant Staphylococcus aureus.

The activity of RP 59500 against methicillin-resistant Staphylococcus aureus was studied in vitro and in a rabbit model of aortic valve endocarditis. Three strains, 67-O, 529, and Du, ranging from relatively resistant to susceptible to RP 59500 in vitro (mean agar dilution MICs of 0.65, 0.21, and 0.12 mg/L respectively) were used to establish endocarditis, which was treated either with RP 59500, 20 mg/kg im four times a day for four days or with vancomycin, 25 mg/kg iv twice a day for four days. RP 59500 was ineffective for the most resistant strain, 67-O. RP 59500 was effective for the intermediately susceptible strain 529, but vancomycin was more effective. RP 59500 was slightly more effective than vancomycin against the most susceptible strain, Du, but the difference was not statistically significant. These results suggest that strains inhibited by RP 59500 at a concentration of greater than or equal to 0.5 mg/L should probably be considered resistant in this model of infection. RP 59500 was effective in vivo against the two susceptible strains, but overall, vancomycin was the more active drug.

Animals

Purification and functional characterization of bovine RP-A in an in vitro SV40 DNA replication system.

The single-stranded DNA binding protein RP-A is required in SV40 DNA in vitro replication. The RP-A purified from calf thymus contains 4 polypeptides with molecular weights 70kDa, 53kDa, 32kDa, and 14kDa. The p70 subunit and its proteolysed form p53 are recognized by the monoclonal antibody 70C (Kenny et al. (1990)) and bind to ssDNA. The p70 and p32 subunits of bovine RP-A are phosphorylated by CDC2-cyclin B kinase. Bovine RP-A supports the origin dependent unwinding of SV40 DNA by T antigen. Furthermore, bovine RP-A can efficiently substitute for human RP-A in SV40 DNA replication in vitro. A modified blotting technique revealed that RP-A interacts specifically and directly with the p48 subunit of DNA polymerase alpha-primase complex.

Ammonium Sulfate

The novel 5-HT2 receptor antagonist, RP 62203, selectively blocks serotoninergic but not dopaminergic-induced inhibition in the rat prefrontal cortex.

The influence of the novel 5-hydroxytryptamine2 (5-HT2) receptor antagonist, RP 62203, on serotoninergic neurotransmission was investigated using an in vivo electrophysiological technique. For this purpose, the ability of RP 62203 (1-3 mg/kg i.p.) to block the inhibitory responses of prefrontal cortical neurons induced by electrical stimulation of the median raphe nucleus was examined in anesthetized rats. In addition, the effects of RP 62203 on the dopaminergic inhibitory responses induced in the prefrontal cortex by stimulation of the ventral tegmental area and on the enhancement of these responses by lysergic acid diethylamide (LSD, a 5-HT2 receptor agonist, 30 or 60 micrograms/kg i.p.), were analyzed. RP 62203 blocked the inhibition induced by median raphe nucleus stimulation in a dose-dependent and reversible fashion. In contrast, RP 62203 failed to affect the inhibitory responses induced in prefrontal cortical cells by stimulation of the ventral tegmental area. However, the enhancement by LSD of the inhibition induced by stimulation of the ventral tegmental area in the prefrontal cortex was blocked by RP 62203. These results demonstrate that RP 62203 selectively blocks serotoninergic, but not dopaminergic, neurotransmission in the prefrontal cortex.

Animals

Comparison in different tissue preparations of the in vitro pharmacological profile of RP 67580, a new non-peptide substance P antagonist.

We describe the effects of RP 67580, a new non-peptide substance P (SP) antagonist, on tachykinin-induced contractions of guinea-pig ileum, trachea and urinary bladder, rabbit pulmonary artery and rat portal vein. All NK1 agonists tested (SP, Septide, SPOMe and [Pro9]SP) contracted guinea-pig ileum, trachea and urinary bladder (pD2 = 7.5 to 9.1), but they had no effect on rabbit pulmonary artery or rat portal vein (pD2 < 6). RP 67580 inhibited these effects: guinea-pig ileum, pA2 = 7.1 to 7.6; guinea-pig trachea and urinary bladder, pKB = 6.3 to 6.8. The difference in RP 67580 activity in these tissues might be due to the existence of subtypes of NK1 receptors. RP 67580 (1 microns) did not affect the contractions induced by the two NK2 agonists, NKA and [Lys5, MeLeu9, Nle10]NKA(4-10) (pA2 < 6), except in guinea-pig ileum (pA2 = 7.3-7.5) where these two NK2 agonists interact apparently with NK1 receptors. In the tissue preparations used, RP 67580 (1 micron) was without effect on contractions induced by the NK3 agonists: NKB and senktide. These results indicate the high selectivity for NK1 receptors of RP 67580. In all cases, similar results were obtained with another non-peptide SP antagonist, (+/-) CP-96,345. The present work provides further evidence that RP 67580 and (+/-) CP-96,345 exert in vitro a potent, selective and competitive antagonistic action on NK1 receptors and suggests the existence of at least two distinct NK1 receptor subtypes in some guinea-pig peripheral organs.

Animals

Radiosensitization by 2-nitroimidazole nucleoside analog RP-170: radiosensitizing effects under both intravenous and oral administration.

The radiosensitizing activity, pharmacokinetics and toxicity of RP-170, 2-nitroimidazole nucleoside analog, were investigated and compared with those of etanidazole (SR-2508). An intravenous administration (i.v.) of 100 mg/kg of RP-170 or the same dose of etanidazole showed an equal sensitizer enhancement ratio (SER) of about 1.4 to solid EMT6 tumor under in vivo-in vitro assay and a virtually equal SER of 1.4-1.5 to solid SCC VII tumor under tumor growth delay assay. As predicted from the low partition coefficient, lower drug levels in neural tissue and more rapid serum elimination of RP-170 and etanidazole produced lower acute toxicity than lipophilic sensitizers (e.g., misonidazole). The major advantage of RP-170 over etanidazole is that it has a second route of administration. In contrast to etanidazole, in which the administration route is limited to intravenous injection, with RP-170 oral administration also exhibited effective distribution to tumors, sensitizing radiation activity to solid EMT6 and SCC VII tumors. Moreover, LD50 in mice of RP-170 (4.3 g/kg on i.v.) was increased to 5.2 g/kg by oral administration. This availability of two routes of administration indicates RP-170 as a promising hypoxic cell radiosensitizer for clinical use.

Administration, Oral

Activation of G proteins by (Rp) and (Sp) diastereomers of guanosine 5'-[beta-thio]triphosphate in hamster fibroblasts. Differential stereospecificity of Gi, Gs and Gp.

The effects of guanosine 5'-[beta-thio]triphosphate (GTP beta[S]) on G proteins have been examined in Chinese hamster lung fibroblasts (CCL39 line) permeabilized with alpha-toxin from Staphylococcus aureus. Although much less effective than guanosine 5'-[gamma-thio]triphosphate (GTP gamma[S]), both (Rp) and (Sp) diastereomers of GTP beta[S] were found to activate three G protein-mediated pathways: inhibition of forskolin-stimulated adenylate cyclase (mediated by Gi), potentiation of receptor-mediated activation of adenylate cyclase (mediated by Gs), and activation of phosphoinositide breakdown (mediated by Gp). Activation of Gi and Gs occurred above 3 microM-GTP beta[S], but activation of Gp only occurred above 100 microM-GTP beta[S]. Moreover, the order of effectiveness of the two diastereomers was not the same for the three G protein-mediated processes. Whereas both Gi and Gs were more effectively activated (about 5-fold) by (Sp)-GTP beta[S] than by (Rp)-GTP beta[S], Gp showed a marked preference for the (Rp) isomer. Indeed, (Rp)-GTP beta[S] induced the formation of inositol phosphates with a shorter latency and was a better competitor of GDP for binding to Gp than the (Sp) isomer. These results point to different guanine nucleotide-binding properties for Gi and Gs on the one hand and Gp on the other. At least two distinct Gp proteins, differing by their sensitivity to pertussis toxin, are present in CCL39 cells. Since pretreatment of cells with pertussis toxin completely suppressed the effects of (Rp)-GTP beta[S] on Gi, while only slightly attenuating its effects on Gp, we believe that it is the pertussis toxin-insensitive Gp which prefers the (Rp) isomer. Therefore (Rp)-GTP beta[S] may be a valuable tool for the selective activation and the biochemical characterization of this pertussis toxin-insensitive Gp.

Adenylate Cyclase Toxin

In-vitro activity of RP 59500, a new semisynthetic streptogramin antibiotic, against gram-positive bacteria.

A study of the in-vitro activity of RP 59500, a semisynthetic derivative of pristinamycin, against a range of Gram-positive bacteria including erythromycin-resistant strains was undertaken. MICs were determined by plate dilution in IsoSensitest agar and MBCs by velvet pad replication. RP 59500 was found to have in-vitro activity almost identical to that of its parent compound, pristinamycin. Sixty methicillin-resistant Staphylococcus aureus (MRSA) and 60 methicillin-sensitive S. aureus (MSSA) were found to be sensitive to RP 59500, with MICs of 0.13-1 mg/L. All the MSSA and most MRSA showed an MBC less than 2 mg/L. Erythromycin-resistant S. aureus (62) were as sensitive to RP 59500 as were erythromycin-sensitive strains (58). RP 59500 was more active against MRSA than fusidate, vancomycin, amikacin, ciprofloxacin, imipenem or erythromycin. Forty strains of coagulase-negative staphylococci (11 were erythromycin-resistant) showed MICs of 0.25-1 mg/L, and RP 59500 was more active than methicillin, erythromycin, imipenem, cefotaxime or vancomycin. Sixty strains of streptococci (20 pneumococci and 40 of groups A, B, C, or G) and 20 enterococci were inhibited by 0.13-1 mg/L and 0.25-4 mg/L, respectively. Gram-positive bacilli (five each of diphtheroids, lactobacilli, Listeria monocytogenes and Bacillus spp., and 19 Clostridium spp.) were also sensitive, with MICs of between 0.06 and 4 mg/L. All 279 strains tested were judged to be sensitive to RP 59500, which was bactericidal and showed a small inoculum effect. The activity against MRSA, and against erythromycin-resistant strains of all species was particularly interesting.

Erythromycin

The new K+ channel opener Aprikalim (RP 52891) reduces experimental infarct size in dogs in the absence of hemodynamic changes.

The objective of the present study was to determine the effect of a novel K+ channel opener, Aprikalim (RP 52891; [trans-(-)-N-methyl-2-(3-pyridyl)-2-tetrahydrothio-pyran carbothiamide-1-oxide]), on myocardial infarct size in barbital-anesthetized dogs subjected to 90 min of left circumflex coronary artery occlusion followed by 5 hr of reperfusion. To determine if RP 52891 is mediating its effects by opening adenosine triphosphate regulated potassium channels (KATP), glibenclamide, a KATP channel antagonist was used. Dogs were pretreated with vehicle, a nonhypotensive dose of RP 52891 (10 micrograms/kg + 0.1 microgram/kg/min i.v.), glibenclamide (1 mg/kg; i.v. bolus) or RP 52891 (10 micrograms/kg and 0.1 microgram/kg/min i.v.) after pretreatment with glibenclamide (1 mg/kg i.v. bolus). At the end of reperfusion, myocardial infarct size was determined by triphenyltetrazolium staining. There were no significant differences in systemic hemodynamics, myocardial oxygen demand, collateral blood flow or ischemic bed size among groups with the exception of an increase in coronary blood flow to the ischemic area at 3 and 5 hr of reperfusion in both RP-treated groups. However, myocardial infarct size, expressed as a percentage of the area at risk, was significantly (P less than .05) reduced (38%) by RP 52891 and significantly increased (38%) by glibenclamide (vehicle, 39 +/- 4%; RP 52891, 24 +/- 2%; and glibenclamide, 54 +/- 5%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals