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At least 19 recordsLinked to original sources

Long-range changes in oxytetracycline concentration and bacterial resistance toward oxytetracycline in a fish farm sediment after medication.

Following 10 days medication with oxytetracycline, marine sediment was sampled beneath three selected cages (cages 1, 2 and 3) at a fish farm over a period of 18 mnd., in order to detect any change in the sediment oxytetracycline concentration, bacterial number and bacterial resistance towards the drug. The bulk of oxytetracycline disappeared during the first weeks, but it persisted in the sediment at lower concentrations for quite some time after the medication. Half-life (t(1/2)) of oxytetracycline in the sediment was measured as: 125, 144 and 87 days under cages 1, 2 and 3, respectively. At the end of the medication, all three sediments had greater than 100% oxytetracycline-resistant bacteria. This value dropped to 20% after 72 days and stabilised at levels of between 10 and 50%. The change in bacterial numbers, described as total and plate counts, was due to seasonal variations rather than to the medication.

Animals↗

Oxytetracycline concentrations in plasma and lung of healthy and pneumonic calves, using two oxytetracycline preparations.

Drug concentrations in lung tissue and plasma pharmacokinetics of a long-acting preparation of oxytetracycline were compared with those of a standard preparation of oxytetracycline given to healthy and pneumonic calves. Both preparations achieved higher concentrations in the pneumonic lung when compared with those in the normal-appearing lung of the same group. A difference in concentrations in lung tissue was not found between preparations at either 24 or 48 hours. The plasma pharmacokinetic values did differ between preparations. Comparatively, the long-acting oxytetracycline had a smaller rate constant for disposition, a larger volume of distribution divided by bioavailability constant, and a longer half-life. A difference in pharmacokinetic values was not observed between healthy and pneumonic calves.

Animals↗

Factors affecting the accuracy of the live animal swab test for detecting urine oxytetracycline and predicting oxytetracycline residues in calves.

The live animal swab test (LAST) was compared with quantitative oxytetracycline (OTC) assay of urine samples and tissue specimens to determine the accuracy of the LAST in detecting OTC in bovine urine and predicting violative residues in tissues. When urine OTC concentration was greater than 4.3 micrograms/ml, the LAST result was 100% accurate. When urine OTC concentration was less than 4.3 micrograms/ml, the LAST result was 60% accurate; 20% of the LAST results were false-positive, and 20% were false-negative. Urine osmolarity was highest (P less than 0.05) in samples with false-positive results and lowest (P less than 0.05) in samples with false-negative results. A similar trend was observed for urine pH, but was not statistically significant. Urine samples with false-positive results apparently had osmolarity and pH conditions that inhibited growth of Bacillus subtilis when OTC was lacking. False-negative results probably were obtained because urine osmolarity and pH conditions were favorable for the growth of bacteria even in the presence of OTC or because OTC concentration was below the limit of detection by the LAST. The LAST was inconsistent in detecting urine OTC in small concentrations and correspondingly failed to accurately predict OTC residues in tissues.

Animals↗

Effects of oxytetracycline in propylene glycol, oxytetracycline in saline solution, and propylene glycol alone on blood ionized calcium and plasma total calcium in sheep.

Intravenous injection of oxytetracycline HC1 (OTC) in propylene glycol (PG), OTC in saline solution, and PG alone in sheep had no significant (P less than 0.01) effects on total plasma calcium concentrations over a 60-minute period. In contrast, ionized calcium concentrations in whole blood were significantly (P less than 0.01) depressed for approximately 3 minutes after OTC in PG and OTC in saline solution, IV. A slight depression of ionized calcium concentrations was noticed after injection of PG alone. Seemingly, calcium chelation by OTC may be a major factor in the collapse syndrome of ungulates given preparations containing OTC by rapid IV injection.

Animals↗

NTP Toxicology and Carcinogenesis Studies of Oxytetracycline Hydrochloride (CAS No. 2058-46-0) in F344/N Rats and B6C3F1 Mice (Feed Studies).

Toxicology and carcinogenesis studies were conducted on oxytetracycline hydrochloride (greater than 98.8% pure), a broad-spectrum antibiotic. Groups of F344/N rats and B6C3F1 mice were fed diets containing oxytetracycline hydrochloride for a series of 14-day, 13-week, and 2-year studies. In the 14-day studies, no compound-related gross pathologic effects were seen in rats or mice (groups of five animals per sex per species) given up to 100,000 ppm in their feed. The final mean body weight of male rats receiving in feed was 27% lower than that of the controls. Final mean body weights of mice that received 25,000, 50,000, or 100,000 ppm were lower (male: 11%; 16%; 17%; female: 6%; 5%; 17%) than those of the controls. In the 13-week studies, groups of 10 male and 10 female rats and mice were fed diets containing up to 50,000 ppm in feed, and no chemically related gross or histopathologic effects were observed in mice of either sex or in female rats. In male rats, fatty metamorphosis of minimal severity was diagnosed in the liver of 5/10 animals at 6,300, 12,500, and 50,000 ppm and in 2/10 animals at 3,100 and 25,000 ppm. None was seen in the controls. Oxytetracycline levels in bones of rats and mice (as determined fluorometrically) at the end of the 13-week studies increased with dose, the highest levels (3-10 times background levels) being observed at 50,000 ppm. The 2-year toxicology and carcinogenesis studies were conducted by administering diets containing 0, 25,000, or 50,000 ppm oxytetracycline hydrochloride to groups of 50 male and 50 female rats and diets containing 0, 6,300, or 12,500 ppm oxytetracycline hydrochloride to groups of 50 male and 50 female mice for 103 weeks. The highest dose selected for rats was considered to be the maximum level that would not affect the nutritional value of dosed feed. The dietary concentrations correspond to the following approximate doses: rats-- 0, 1,000, or 2,000 mg/kg body weight per day; mice-- 0, 650, or 1,400 mg/kg per day. Mean body weights were approximately 5%-8% lower than those of controls in high dose male rats during weeks 4-47, in high dose male mice after week 31, and in high dose female mice after week 26. The mean body weights of dosed female rats and low dose male and female mice were comparable to those of controls. The survival of control male rats was lower than that of the high dose group (22/50 vs 38/50). No significant differences in survival were observed between the remaining groups of rats or between any groups of mice. Pheochromocytomas of the adrenal gland occurred with positive trends in male rats (control, 10/50; low dose, 18/50; high dose, 24/50), and the incidence in the high dose group was greater than that in the controls. Two additional control males and one additional low dose male had malignant pheochromocytomas. The incidence of adrenalgland medullary hyperplasia was elevated slightly but not significantly in dosed male rats (7/50; 14/50; 9/50). Adenomas and adenomas and adenocarcinomas (combined) of the pituitary gland in female rats occurred with positive trends, and the incidences in the high dose group were greater than that in the controls (adenomas: 19/50; 17/50; 30/50; adenomas or adenocarcinomas [combined]: 20/50; 24/50; 32/50). The incidence of pituitary gland hyperplasia was slightly decreased in dosed female rats (16/50; 10/50; 11/50). No compound-related increases in nonneoplastic or neoplastic lesions were observed in male or female mice. Oxytetracycline hydrochloride was not mutagenic in Salmonella typhimurium strains TA100, TA1535, TA1537, or TA98 in the presence or absence of Aroclor 1254-induced male Sprague-Dawley rat or male Syrian hamster liver S9 when assayed according to the preincubational protocol. Oxytetracycline hydrochloride was mutagenic in L5178Y/TK+/- mouse lymphoma cells in the presence but not in the absence of Aroclor 1254-induced male rat liver S9. In cultured Chinese hamster ovary cells, oxytetracycline was weakly positive in inducing sister-chromatid exchanges both with and without Aroclor 1254-induced mang sister-chromatid exchanges both with and without Aroclor 1254-induced male Sprague-Dawley rat liver S9 but did not induce chromosomal aberrations. An audit of the experimental data was conducted for these 2-year carcinogenesis studies of oxytetracycline hydrochloride. No data discrepancies were found that influenced the final interpretations. Under the conditions of these 2-year feed studies of oxytetracycline hydrochloride, there was equivocal evidence of carcinogenicity for male F344/N rats, as indicated by increased incidences of pheochromocytomas of the adrenal gland. There was equivocal evidence of carcinogenicity for female F344/N rats fed diets containing oxytetracycline hydrochloride, as indicated by increased incidences of adenomas of the pituitary gland. There was no evidence of carcinogenicity for male or female B6C3F1 mice fed diets containing 6,300 or 12,500 ppm oxytetracycline hydrochloride for 2 years. Synonyms: 2-naphthacenecarboxamide,4(dimethylamino)-1,4,4a,5,5a,6,11,12a-octahydro-3,6-10,2,12a-pentahydroxy-6-methyl-1,11-dioxo-monohydrochloride; Biosolvmycin; Hydrocyclin; Liquamycin; Otetryn; Oxlopar; 5-hydroxytetracycline hydrochloride; Terramycin Hydrochloride; Tetramine; Tetran Hydrochloride

Journal Article↗

Characterisation of the abiotic degradation pathways of oxytetracyclines in soil interstitial water using LC-MS-MS.

The fate of oxytetracyclines (OTCs) in soil interstitial water was investigated and the structure of a number of degradation products elucidated in a time-related experiment. A previously developed separation method for LC-MS-MS able to base separate and quantify OTC and three of its epimers and degradation products was applied. Compounds detected were 4-epi-oxytetracycline (EOTC) (t(R)=3.0 min), OTC (t(R)=4.4 min), alpha-apo-oxytetracycline (alpha-apo-OTC) (t(R)=11.4 min) and beta-apo-oxytetracycline (beta-apo-OTC) (t(R)=18.4 min). Furthermore, we tentatively identified 4-epi-N-desmethyl-oxytetracycline (E-N-DM-OTC) (t(R)=3.0 min), N-desmethyl-oxytetracycline (N-DM-OTC) (t(R)=3.5), N-didesmethyl-oxytetracycline (N-DDM-OTC), 4-epi-N-didesmethyl-oxytetracycline (E-N-DDM-OTC) (t(R)=3.7 and 4.7 min) and 2-acetyl-2-decarboxamido-oxytetracycline (t(R)=8.7) in all samples. Most compounds were only present in trace concentrations (less than 2%) relative to the parent OTC. EOTC was on the other hand formed up to a ratio of 0.6 relative to parent OTC concentration. Only EOTC, E-N-DM-OTC, N-DM-OTC, N-DDM-OTC and E-N-DDM-OTC were formed during the time-related experiment. All other compounds were probably only present as impurities in the spiked OTC formulation as they declined in concentration from the start of the experiment. Half-lives (T(1/2), days) of the OTCs in soil interstitial water were in the order of 2 days (EOTC) to 270 days (beta-apo-OTC).

Chromatography, High Pressure Liquid↗

Comparison of conventional and long-acting oxytetracyclines in prevention of induced Actinobacillus (Haemophilus) pleuropneumoniae infection of growing swine.

These experiments tested the hypothesis that long-acting oxytetracycline (oxytetracycline-LA) was more effective than regular oxytetracycline in preventing porcine pleuropneumonia when administered either 24 or 48 h prior to experimental challenge with virulent strains of Actinobacillus pleuropneumoniae. Two experiments (1 and 2) were conducted using growing pigs (average weight 12-15 kg). Antibiotic treatments were administered once intramuscularly at 20 mg/kg body weight; controls received an equivalent volume of saline. Clinical signs were recorded over seven days, and mortality rates and pathological lesions were analyzed using analysis of variance. Serum oxytetracycline levels were compared 48 and 72 h postinjection. All pigs developed clinical disease following experimental infection. Actinobacillus pleuropneumoniae was recovered from 42% of experiment 1 pigs and all of experiment 2 pigs. The data showed that both oxytetracycline and oxytetracycline-LA given at the same dose protected pigs against experimental infection when given 24 h prior to challenge, and there was no difference between the efficacy of the two drugs in this experiment. When administered 48 h prior to challenge, only oxytetracycline-LA reduced the clinical signs and pathological changes following A. pleuropneumoniae challenge. Between 48 and 72 h postinjection, oxytetracycline-LA blood levels were significantly greater compared to oxytetracycline-treated pigs.

Actinobacillus Infections↗

[Stability and distribution of oxytetracycline HCI during manufacture and storage of pig feed under field conditions].

The distribution of oxytetracycline hydrochloride in two batches of 4,000 kg of pig-rearing pellets (400 ppm) was studied. The stability of oxytetracycline in this feed was also determined. The concentration of oxytetracycline in the feed was determined by high pressure liquid chromatography. The premix contained more oxytetracycline (27 per cent) than the proportion stated. The results show that the first 1,000 kg of feed contained less (350 mg/kg) oxytetracycline than the other 7,000 kg (435 mg/kg). After producing 8,000 kg of feed with oxytetracycline, 4,000 kg of feed not containing oxytetracycline was produced. Still, this feed was found to contain 13 mg/kg of oxytetracycline. When the feed was stored for 150 days at a temperature of from 1 to 2 degrees C and again for 270 days at 20 to 25 degrees C, it contained 86.5 per cent of the oxytetracycline present after production of the feed.

Animal Feed↗