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Oral or intravenous erythromycin has no effect on human distal colonic motility.

Erythromycin is a prokinetic agent for the lower oesophageal sphincter, the stomach, the gallbladder and the small bowel, acting directly on motilin receptors. Its effect on pressure activity of the human colon has not been investigated. Eight healthy volunteers were studied on 2 occasions and given intravenous or oral erythromycin, or placebo in a single-blind, randomized crossover study. Sigmoid pressure activity was measured using a 4-lumen water perfused system placed sigmoidoscopically at 50, 45, 30 and 15 cm from the anal verge. The pressures were analysed for activity index (mmHg.min) for the 35 cm colonic study segment using dedicated software. No significant difference was found in the activity index following oral erythromycin (500 mg) or placebo, or following intravenous erythromycin 1.8 mg/kg or placebo. A further 8 subjects were studied in a single-blind crossover study to determine the effect of oral erythromycin (500 mg) b.d. on colonic transit, measured with radio-opaque markers and a single abdominal X-ray. Mean or segmental colonic transit times were not statistically significantly different (Student's paired t-test) in the subjects on placebo or erythromycin. This lack of effect of erythromycin on the distal large intestine may indicate the absence of receptors for motilin in that part of the gut.

Administration, Oral↗

Dose-dependent stimulation of gallbladder contraction by intravenous erythromycin in man.

We have previously shown that a single oral dose of 500 mg erythromycin causes gallbladder contraction. The effect of intravenous erythromycin on antroduodenal motility is dose-dependent; < 3 mg/kg body weight stimulates propagated contractions in a fashion similar to motilin while doses > 7 mg/kg cause giant non-propagated antral contractions not seen with motilin. Using ultrasound, we have examined the effect of differing doses of intravenous erythromycin on gallbladder motility in man. Erythromycin (1 mg/kg) caused fasting gallbladder contraction to 52% of basal gallbladder volume (P < 0.001), and increased gallbladder emptying following a liquid meal (maximal percentage emptied 75 +/- 6.8% vs. 58 +/- 9.0% following saline, P < 0.05). Erythromycin (7 mg/kg) however, had no effect on gallbladder fasting or post-prandial motor activity. We conclude that the effect of erythromycin on gallbladder motility is dose-dependent, with higher doses having no effect. It is possible that at higher doses erythromycin stimulates other receptors in addition to the motilin receptor, and that the combined effect is different to the stimulation of the motilin receptor alone.

Adult↗

The influence of food on the bioavailability of new formulations of erythromycin stearate and base.

1. The effect of food on the bioavailability of two new formulations of erythromycin, 1) erythromycin stearate, 500 mg (Erythrocin, 250 mg capsule-shaped tablets) and 2) erythromycin base, 500 mg (Eryc, 250 mg capsules containing enteric-coated pellets) was studied in 16 healthy subjects. 2. The study was a balanced, randomized Latin square design and was conducted on 4 days. The four treatments were erythromycin stearate immediately before (EB) and after EA) breakfast and erythromycin base immediately before (eB) and after (eA) breakfast. 3. The mean +/- s.d. maximal plasma erythromycin concentrations were 2.09 +/- 1.06, 0.37 +/- 0.40, 1.8+ +/- 1.15 and 1.91 +/- 1.57 micrograms/ml and the mean +/- s.d. times at which these occurred were 1.3 +/- 0.7, 2.3 +/- 0.9, 4.4 +/- 1.9 and 4.3 +/- 1.1 h for EB, EA, eB and eA respectively. 4. The mean +/- s.d. areas under the curves (0 to 8 h) were 4.99 +/- 2.41, 1.04 +/- 1.57, 4.93 +/- 2.98 and 4.98 +/- 3.14 for EB, EA, eB and eA respectively. 5. The bioavailability of erythromycin stearate was significantly reduced by the prior administration of food, whereas the absorption of the base was not inhibited by food.

Adult↗

Gastrointestinal side effects after intravenous erythromycin lactobionate.

Ten healthy normal volunteers received an intravenous infusion of erythromycin lactobionate over 60 min to a total dose of 800 mg (n = 9), and 524 mg (n = 1). Blood samples were collected at 10 min intervals for 100 min and gastric contents aspirated, via a nasogastric tube, from pre-dose to 105 min after start of infusion. Incidence and severity of three gastrointestinal symptoms (nausea, stomach discomfort and feelings of hunger), two CNS symptoms (dizziness and faintness) and a 'control' symptom (back pain) were measured using 100 mm visual analogue scales. Rate of infusion and plasma erythromycin concentration correlated with nausea (P less than 0.001) and stomach discomfort (P less than 0.001); plasma erythromycin concentration was also correlated with dizziness (P less than 0.05). Concentrations of active erythromycin in the aspirate were pH dependent. In one subject the concentration of erythromycin in the aspirate exceeded that in the plasma by 100 fold. Bile staining of samples containing the highest levels of microbiologically active erythromycin makes the origin of the erythromycin in these samples uncertain.

Adult↗

A controlled trial of the use of erythromycin for men with asthenospermia.

A double-blind crossover controlled trial of Erythromycin was conducted in 78 men with asthenospermia (mean pretreatment sperm concentration greater than or equal to 20 X 10(6)/ml and motility less than 60%). Sperm motility increased above the pretreatment mean after the first one month course of treatment for both Erythromycin (7.9 +/- 2.6% P less than 0.01; mean +/- SEM) and the placebo group (7.5 +/- 2.2% P less than 0.01) and also after the second one month course of treatment, given one month after the first, for both Erythromycin (11.8 +/- 2.7% P less than 0.001) and placebo (11.4 +/- 2.8% P less than 0.001). There was no significant difference between the changes in sperm motility with Erythromycin and placebo. Twelve pregnancies occurred during the four month trial time--eight with Erythromycin and four with placebo (chi 2 = 2.51 P = NS). It is concluded that in infertile men, sperm motility tends to increase spontaneously with time. Erythromycin treatment has no significant effect on semen quality and a larger trial will be required to determine if Erythromycin increases fertility.

Clinical Trials as Topic↗

Pharmacokinetics and bioavailability of erythromycin in pigeons (Columba livia).

Tissue and plasma concentrations were determined after intravenous and oral administration of erythromycin to pigeons to establish the pharmacokinetics and bioavailability of the drug. A short mean half-life of elimination of 0.9 h was found. The relative bioavailability after direct crop administration of erythromycin thiocyanate or erythromycin ethylsuccinate at a dosage rate of 100 mg/kg was less than 10%. At a drug concentration in drinking water of 1 g/l, erythromycin plasma levels were barely detectable, whilst lung and trachea concentrations reached a maximum of 1.6 micrograms/ml. Even after crop administration of 100-mg/kg erythromycin thiocyanate, low plasma levels were obtained, whilst lung and trachea concentrations were substantially higher. Prescribed drinking-water regimens seemed unable to yield therapeutic tissue concentrations. Only individual crop administration seemed an appropriate medication method. The use of erythromycin ethylsuccinate did not present any advantage in comparison with erythromycin thiocyanate.

Administration, Oral↗

Gastric but not duodenal motor effects of oral erythromycin are dose related.

There has been increasing interest in the potential use of erythromycin as a prokinetic agent, despite limited data on the effect of oral administration on gastrointestinal motility. We have now evaluated, in 15 conscious pigs fitted with strain gauges, the response of (i) basal gastric motility and (ii) gastric motility during inhibition with intraduodenal triglycerides infusion to increasing doses of oral erythromycin. In the basal state, erythromycin led to dose-dependent increases in both the amplitude (10-30 mg kg-1) and the frequency (10-55 mg kg-1) of gastric contractions. The corpus was more responsive than the antrum, with an increase in amplitude at lower doses. The amplitude of the duodenal contractions was also improved but not in a dose-dependent manner. Gastroduodenal coordination was unchanged regardless of the dose of erythromycin. Following inhibition of gastric motility, a dose of erythromycin below 45 mg kg-1 increased both the amplitude of gastric contractions and the gastroduodenal coordination, although individual doses produced smaller increases in amplitude than in the basal state. These results suggest that erythromycin has a different mechanism of action in the stomach compared with the duodenum. The reduced effectiveness of large doses of erythromycin has important therapeutic implications.

Animals↗

Erythromycin inhibits prostaglandin F2alpha-induced contractions of myometrium isolated from non-pregnant rats.

OBJECTIVE: The aim of this study was to investigate the effects of erythromycin on prostaglandin F2alpha (PGF2alpha)-induced contractions of isolated myometrial strips from non-pregnant rats. DESIGN: In vitro pharmacological study. SETTING: Firat University Faculty of Medicine. SAMPLE: Myometrium samples were taken from 55 adult Wistar rats. METHODS: Myometrial strips were isolated from mature, non-pregnant Wistar rats. Isometric contractions of these strips were induced with 1 microM PGF2alpha. Effects of 0.01, 0.1, 0.2, 0.5 and 1 mM erythromycin on the frequency and amplitude of these PGF2alpha-induced contractions were recorded. MAIN OUTCOME MEASURES: The inhibition of prostaglandin F2alpha-induced contractions in vitro. RESULTS: Application of 0.01 mM erythromycin had no effect on either amplitude or frequency of contractions. However, 0.1, 0.2, 0.5 and 1 mM erythromycin decreased the frequency and amplitude of PGF2alpha-induced contractions. The inhibitory effect of erythromycin on amplitude was 27%, 38%, 54% and 83% (P < 0.05), and that on frequency was 10%, 16%, 32% and 61% (P < 0.05) at 0.1, 0.2, 0.5 and 1 mM concentrations, respectively. CONCLUSION: The results of this study demonstrate that erythromycin inhibits PGF2alpha-induced contractions in rat myometrium. Because PGF2alpha-induced contractions have been suggested to be involved in the pathogenesis of primary dysmenorrhoea, effects of erythromycin in this clinical entity may present a new approach for the treatment.

Animals↗

Effect of a single oral dose of two erythromycin ethylsuccinate formulations on gastric emptying in healthy volunteers: a scintigraphic study.

Macrolides are potential gastrokinetic agents. The purpose of this study was to assess the effect of a single oral dose of two erythromycin formulations on gastric emptying of the solid and liquid phases in twelve healthy volunteers and to seek a correlation between pharmacokinetic parameters and changes in gastric emptying. The gastric emptying times of liquids and solids were measured simultaneously by means of a scintigraphic technique after a single oral administration of amorphous erythromycin ethylsuccinate (500 mg), crystalline erythromycin ethylsuccinate (1000 mg) or a placebo, in a double-blind crossover study in three separate weeks. Blood samples were obtained for erythromycin assay. The two oral formulations induced a similar acceleration of gastric emptying. When compared to the placebo, both erythromycin preparations significantly shortened the gastric transit time of solids and liquids (respectively 30% and 20% on average, p < 0.01). The incidence of gastrointestinal side-effects was similar with the two erythromycin forms and the placebo. No correlation was found between the peak serum erythromycin concentrations and the solid or liquid gastric half-lives. With the amorphous formulation, the area under the plasma time-concentration curves was small and solid and liquid gastric emptying were strongly accelerated, pointing to a direct effect on the gastrointestinal smooth muscle.

Administration, Oral↗

Interaction between erythromycin and the benzodiazepines diazepam and flunitrazepam.

The effect of erythromycin on the pharmacokinetics and pharmacodynamics of diazepam and flunitrazepam was investigated in two randomized, double-blind, cross-over studies. Healthy volunteers ingested erythromycin for one week 500 mg t.i.d. On the 4th day they ingested a single 5 mg dose of diazepam (6 subject, Study 1) or 1 mg dose of flunitrazepam (5 subjects, Study 2), respectively. Plasma drug concentrations and psychomotor effects were measured during 42 hr after the ingestion of diazepam or flunitrazepam. In Study 1 erythromycin increased the area under the diazepam plasma concentration-time curve [AUC (0-42 hr)] by 15% (P < 0.05) and the concentration of diazepam in plasma at 42 hr by 63% (P < 0.05). The median peak concentration (Cmax) and the half-life (t1/2) of diazepam were increased but they did not change significantly (P = 0.17 and 0.12, respectively). Plasma N-desmethyldiazepam concentrations were slightly reduced during erythromycin treatment up to 8 hr (P < 0.05). In Study 2 the AUC (0-42 hr) of flunitrazepam was increased by 25% (P < 0.05) during the erythromycin treatment. The t1/2 of flunitrazepam increased significantly (P < 0.05), but the Cmax remained unchanged. The psychomotor effects of diazepam or flunitrazepam were not changed significantly by erythromycin. These pharmacokinetic interactions can be explained by the reduced metabolic elimination of diazepam and flunitrazepam. The interactions of erythromycin with diazepam and flunitrazepam seem to be slight and of limited clinical significance only.

Adult↗

Clostridium difficile associated with acute colitis in mares when their foals are treated with erythromycin and rifampicin for Rhodococcus equi pneumonia.

In Sweden, mares sometimes develop acute, often fatal, colitis when their foals are treated orally with erythromycin and rifampicin for Rhodococcus (R.) equi infection. Clostridium (C.) difficile, or its cytotoxin, was demonstrated in faecal samples from 5 of 11 (45%) mares with diarrhoea. By contrast C. difficile was not found in the faecal flora of 12 healthy mares with foals treated for R. equi infection or in 56 healthy mares with healthy untreated foals. No other enteric pathogen was isolated from any diarrhoeic mare. Of 7 investigated treated foals, 4 had a high (1651.0, 1468.3, 273.0 and 88.8 microg/g) faecal concentration of erythromycin. The dams of those 4 foals developed acute colitis, whereas the dams of 3 foals with a lower (26.3, 4.6 and 3.7 microg/g) faecal erythromycin concentration remained healthy, indicating that there might have been an accidental intake of erythromycin by mares. The foals treated with antibiotics were regarded as asymptomatic carriers and potential reservoirs, as C. difficile was found in 7 of 16 foals investigated, while 56 untreated foals proved negative. The isolated C. difficile strains proved resistant to both erythromycin (MIC>256 mg/l) and rifampicin (MIC>32 mg/l), a fact that may have favoured the growth of C. difficile in the foal intestine. All mares found positive for C. difficile were, or had recently been, hospitalised together with their foals, indicating that C. difficile may be a nosocomial infection, in horses. The results emphasise that routine testing for C. difficile and its cytotoxin is recommended when acute colitis occurs in mares when their foals are treated with erythromycin and rifampicin. Preventive measures in order to avoid accidental ingestion of erythromycin by mares from the treatment of their foals are suggested.

Actinomycetales Infections↗

[Effect of prolonged administration of erythromycin on the drug sensitivity and the biological properties of Streptococcus pneumoniae].

From April 1990 to February 1992 two hundred and ten strains of Streptococcus pneumoniae were isolated in the laboratory of Nara Medical University Hospital. Frequency of erythromycin resistant Streptococcus pneumoniae, prescription mode of macrolide antibiotics and biological properties were investigated. 1. Erythromycin resistant Streptococcus pneumoniae was predominantly isolated from the wards of the respiratory unit of Inter- nal Medicine and Pediatrics. 2. Patients with erythromycin resistant Streptococcis pneumoniae were treated with macrolide antibiotics frequently in the respiratory unit of Internal Medicine and Pediatrics. 3. MIC90 of EM, CLDM, MINO and ABPC for Streptococcus pneumoniae was 8.0, 8.0, 8.0 and 1.0 micrograms/ml, respectively, indicating moderate resistance to penicillin derivatives and high resistance to macrolides, particularly EM; some strains showed high levels of MIC over 400 micrograms/ml. 4. Investigations on biological properties using VITEK GPI cards revealed that some erythromycin resistant strains showed less responsiveness to DEX, LAC, PUL and MEL. 5. The survival rate of mice infected with erythromycin resistant strains was longer than that with erythromycin sensitive strains. These findings suggested that the prolonged administration of erythromycin causes a virulence reduction of the organism.

Adult↗

Efficacy of cethromycin, a new ketolide, against Streptococcus pneumoniae susceptible or resistant to erythromycin in a murine pneumonia model.

Cethromycin is a ketolide with in vitro activity against macrolide-sensitive and -resistant strains of Streptococcus pneumoniae. We compared its in vivo efficacy to erythromycin in a mouse model of acute pneumonia induced by two virulent clinical strains: a serotype 3 susceptible strain (P-4241) (MICs: erythromycin, 0.03 microg/ml; cethromycin, 0.015 microg/ml) and a serotype 1 strain resistant to erythromycin (P-6254; phenotypically MLSB constitutive) (MICs: erythromycin, 1,024 microg/ml; cethromycin, 0.03 microg/ml). Immunocompetent mice were infected with 10(5) CFU of each strain. Six treatments given either subcutaneously (s.c.) or per os (p.o.) at 12-h intervals were initiated at 6 or 12 h after infection. Against P-4241, cethromycin given s.c. at 25 or 12.5 mg/kg protected 100% of the animals, with lungs and blood completely cleared of bacteria. Given p.o., cethromycin maintained its efficacy with 100 and 86% survival at 25 and 12.5 mg/kg, respectively. Erythromycin, given s.c. at 50 or 37.5 mg/kg, provided 50 and 38% survival rates, respectively. Against P-6254, cethromycin was effective at 25 mg/kg (100% survival) regardless of the administration route, whereas only 25 and 8% of animals survived after a 75-mg/kg erythromycin treatment given s.c. and p.o., respectively. The serum protein binding levels of cethromycin were 94.8 and 88.5% after doses of 12.5 and 25 mg/kg, respectively. The higher in vivo activity of cethromycin compared to erythromycin could be explained by favorable pharmacokinetic/pharmacodynamic indexes against P-6254 but not against P-4241.

Animals↗

Erythromycin-resistant Campylobacter infections in Thailand.

Erythromycin therapy was compared with no treatment in a prospective trial of acute diarrheal disease among 100 infants in an orphanage in Bangkok. Within 24 h of the onset of diarrhea, 50 children received erythromycin ethylsuccinate (40 mg/kg per day) in four divided doses for 5 days. Campylobacter jejuni isolated from 31, Campylobacter coli isolated from 21, and Shigella spp. isolated from 21 of 100 children were the most commonly recognized pathogens; use of a sensitive, nonselective method substantially increased Campylobacter isolation. Treatment with erythromycin had no effect on the duration of diarrhea caused by Campylobacter spp., Shigella spp., or other agents; 37% of the treatment group and 35% of the control group had diarrhea for 1 week. Of 23 Campylobacter strains isolated from the treatment group before treatment, 15 (65%) were resistant (MIC, greater than or equal to 8 micrograms/ml) to erythromycin. Among orphanage-acquired strains, 53% of 43 C. jejuni strains and 91% of 23 C. coli strains were resistant to erythromycin compared with 11% of 114 C. jejuni strains and 46% of 35 C. coli strains that were community acquired. Erythromycin resistance is common among Campylobacter strains in Bangkok, especially in an institutional setting, which may account for the lack of efficacy of erythromycin for treatment of acute diarrheal illnesses.

Campylobacter↗

Effects of localized Pasteurella haemolytica infection on erythromycin-binding properties of bovine alpha-1-acid glycoprotein, albumin, serum, and tissue chamber fluids.

The in vitro erythromycin-binding properties of bovine alpha-1-acid glycoprotein (AAG) and albumin were studied by using equilibrium dialysis. In addition, the proportions of free erythromycin in bovine serum and tissue chamber fluid before and 4 days after inoculation of subcutaneous tissue chambers with Pasteurella haemolytica were measured. At a concentration of 5 micrograms/ml, erythromycin was moderately bound to AAG (39% +/- 4% free) and was only slightly bound to albumin (86% +/- 2% free). Scatchard analysis of the data describing binding to pure bovine AAG indicated that erythromycin was bound to a single high-affinity (6.45 x 10(4) M-1) site on the protein. At lower total concentrations of erythromycin, the free concentrations of the antibiotic were lower in serum samples collected after infection (49% +/- 3% at 5 micrograms of erythromycin per ml) than in those collected before inoculation (55% +/- 3% at 5 micrograms of erythromycin per ml). Inoculation had no effect on binding to macromolecules in chamber fluids. Inoculated tissue chambers served as a convenient model for studying the effect of infection on drug-macromolecule interactions in interstitial fluid.

Animals↗

Study of comparative antipneumococcal activities of penicillin G, RP 59500, erythromycin, sparfloxacin, ciprofloxacin, and vancomycin by using time-kill methodology.

Time-kill studies were used to examine the in vitro activities of penicillin G, RP 59500, erythromycin, ciprofloxacin, sparfloxacin, and vancomycin against 10 pneumococci expressing various degrees of susceptibility to penicillin and erythromycin. RP 59500 MICs for all strains were 0.5 to 2.0 micrograms/ml, while erythromycin MICs were 0.008 to 0.06 microgram/ml for erythromycin-susceptible strains and 32.0 to 64.0 micrograms/ml for erythromycin-resistant strains. Strains were more susceptible to sparfloxacin (0.125 to 0.5 microgram/ml) than to ciprofloxacin (0.5 to 4.0 micrograms/ml), and all were inhibited by vancomycin at MICs of 0.25 to 0.5 microgram/ml. Time-kill studies showed that antibiotic concentrations greater than the MIC were bactericidal for each strain, with the following exceptions. Erythromycin was bactericidal for one penicillin-resistant strain at 6 h, with regrowth after 12 and 24 h. Three penicillin-susceptible strains were bacteriostatically inhibited by erythromycin at concentrations greater than or equal to the MIC by 6 h. One penicillin-susceptible strain (penicillin MIC, 0.06 microgram/ml) was bacteriostatically inhibited by penicillin G at 24 h at the MIC or at one-half the MIC; a bactericidal effect was found only with penicillin G at concentrations of > or = 0.25 microgram/ml. At 10 min after inoculation a 1- to 3-log10-unit reduction (90 to 99.9%) in the original inoculum was seen for 6 of 10 strains with RP 59500 at concentrations greater than or equal to the MIC. This effect was not found with any of the other compounds tested. A bactericidal effect was found at > or = 6 h with RP 59500 at concentrations of one-half to one-quarter the MIC in 7 of 10 strains, and a bacteriostatic effect was found in 3 or 10 strains, with regrowth at 24 h. One penicillin-resistant strain was examined by the time-kill methodology at 0, 1, 2, and 3 h. RP 59500 at a concentration equal to the MIC was bactericidal within 1 h, and at a concentration of one-half the MIC it was bactericidal within 3 h. This phenomenon was not seen with the other antimicrobial agents tested. Regrowth of strains at ciprofloxacin concentrations equal to the MIC or at a one-half to one-quarter the MIC was found. For sparfloxacin, three of the four penicillin-susceptible strains and two of four penicillin-resistant strains were bacteriostatically inhibited by 6 h. Bactericidal effects were found at 6, 12, and 24 h with both intermediate-resistant, one penicillin-susceptible, and two penicillin-resistant strains. Complete killing was observed with vancomycin at concentrations greater than MIC. Of the new compounds tested, RP 59500 and sparfloxacin show promise for the treatment of infections caused by penicillin-susceptible and -resistant pneumococci. The clinical significance of rapid killing by RP 59500 remains to be determined.

Anti-Infective Agents↗

Phenotypes and genotypes of erythromycin-resistant Streptococcus pyogenes strains in Italy and heterogeneity of inducibly resistant strains.

A total of 387 clinical strains of erythromycin-resistant (MIC, >/=1 microg/ml) Streptococcus pyogenes, all isolated in Italian laboratories from 1995 to 1998, were examined. By the erythromycin-clindamycin double-disk test, 203 (52.5%) strains were assigned to the recently described M phenotype, 120 (31.0%) were assigned to the inducible macrolide, lincosamide, and streptogramin B resistance (iMLS) phenotype, and 64 (16.5%) were assigned to the constitutive MLS resistance (cMLS) phenotype. The inducible character of the resistance of the iMLS strains was confirmed by comparing the clindamycin MICs determined under normal testing conditions and those determined after induction by pregrowth in 0.05 microg of erythromycin per ml. The MICs of erythromycin, clarithromycin, azithromycin, josamycin, spiramycin, and the ketolide HMR3004 were then determined and compared. Homogeneous susceptibility patterns were observed for the isolates of the cMLS phenotype (for all but one of the strains, HMR3004 MICs were 0.5 to 8 microg/ml and the MICs of the other drugs were >128 microg/ml) and those of the M phenotype (resistance only to the 14- and 15-membered macrolides was recorded, with MICs of 2 to 32 microg/ml). Conversely, heterogeneous susceptibility patterns were observed in the isolates of the iMLS phenotype, which were subdivided into three distinct subtypes designated iMLS-A, iMLS-B, and iMLS-C. The iMLS-A strains (n = 84) were highly resistant to the 14-, 15-, and 16-membered macrolides and demonstrated reduced susceptibility to low-level resistance to HMR3004. The iMLS-B strains (n = 12) were highly resistant to the 14- and 15-membered macrolides, susceptible to the 16-membered macrolides (but highly resistant to josamycin after induction), and susceptible to HMR3004 (but intermediate or resistant after induction). The iMLS-C strains (n = 24) had lower levels of resistance to the 14- and 15-membered macrolides (with erythromycin MICs increasing two to four times after induction), were susceptible to the 16-membered macrolides (but resistant to josamycin after induction), and remained susceptible to HMR3004, also after induction. The erythromycin resistance genes in 100 isolates of the different groups were investigated by PCR. All cMLS and iMLS-A isolates tested had the ermAM (ermB) gene, whereas all iMLS-B and iMLS-C isolates had the ermTR gene (neither methylase gene was found in isolates of other groups). The M isolates had only the macrolide efflux (mefA) gene, which was also found in variable proportions of cMLS, iMLS-A, iMLS-B, and iMLS-C isolates. The three iMLS subtypes were easily differentiated by a triple-disk test set up by adding a josamycin disk to the erythromycin and clindamycin disks of the conventional double-disk test. Tetracycline resistance was not detected in any isolate of the iMLS-A subtype, whereas it was observed in over 90% of both iMLS-B and iMLS-C isolates.

Anti-Bacterial Agents↗

High prevalence of inducible erythromycin resistance among Streptococcus bovis isolates in Taiwan.

Susceptibilities to 13 antimicrobial agents were determined by measurement of MICs for 60 isolates of Streptococcus bovis from blood cultures. Thirty-eight isolates (63.3%) had high-level resistance to erythromycin (MICs, >or=128 microg/ml). Among the 38 erythromycin-resistant strains, 21 isolates (55%) had inducible resistance to macrolides-lincosamides-streptogramin B (iMLS isolates) and 17 (45%) had constitutive resistance to macrolides-lincosamides-streptogramin B (cMLS isolates). Tetracycline resistance was also found among all of the erythromycin-resistant strains. None of the strains displayed resistance to penicillin, chloramphenicol, or vancomycin. Detection of erythromycin resistance genes by PCR and sequencing indicated that all 17 cMLS isolates were positive for the ermB gene and that 7 of 21 iMLS isolates carried the ermB gene and the remaining 14 iMLS isolates carried the ermT gene. Sequence analysis of amplified partial ermB fragments (594 bp) from S. bovis isolates revealed a 99.8% nucleotide identity and a 100% amino acid homology compared with the sequences from gene banks. The sequences of amplified fragments with primers targeted for ermC were shown to be very similar to that of ermGT (ermT) from Lactobacillus reuteri (98.5% nucleotide identity). This is the first report to describe the detection of the ermT class of erythromycin resistance determinants in S. bovis. The high rate of inducible erythromycin resistance among S. bovis isolates in Taiwan was not reported before. The iMLS S. bovis isolates were shown to be heterogeneous by randomly amplified polymorphic DNA analysis. These results indicate that the prevalence of inducible erythromycin resistance in S. bovis in Taiwan is very high and that most of the resistant strains carry the ermT or the ermB gene.

Anti-Bacterial Agents↗