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Pharmacokinetics and metabolic inertness of doxycycline in calves with mature or immature rumen function

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SUMMARY The pharmacokinetic determinants of doxycycline were calculated after a single iv administration of the drug (20 mg/kg of body weight) in 5 Angus calves with mature rumen function and 4 Holstein calves with immature rumen function. Doxycycline disposition was best described by means of an open 2-compartment model. Median elimination half-life was 14.17 hours (Angus) and 9.84 hours (Holstein). Mean (± SEM) total body clearance was 1.07 (± 0.06) and 2.20 (± 0.21) ml/min/kg in Angus and Holstein calves, respectively. Mean extent of doxycycline binding to serum proteins was 92.3% (± 0.8%). The large steady-state volume of distribution (1.31 ± 0.11 L/kg in Angus and 1.81 ± 0.24 L/kg in Holstein calves), despite the small free fraction in serum, suggested a relatively unrestricted access of drug into the intracellular compartment and/or appreciable tissue binding. Results of mass spectrometric analysis of serum and urine from calves administered doxycycline iv revealed absence of biotransformation, because only parent drug could be detected. Thus, doxycycline may be a valuable antibiotic for use in food animals pending further studies on tissue residues, safety, and efficacy.
Title: Pharmacokinetics and metabolic inertness of doxycycline in calves with mature or immature rumen function
Description:
SUMMARY The pharmacokinetic determinants of doxycycline were calculated after a single iv administration of the drug (20 mg/kg of body weight) in 5 Angus calves with mature rumen function and 4 Holstein calves with immature rumen function.
Doxycycline disposition was best described by means of an open 2-compartment model.
Median elimination half-life was 14.
17 hours (Angus) and 9.
84 hours (Holstein).
Mean (± SEM) total body clearance was 1.
07 (± 0.
06) and 2.
20 (± 0.
21) ml/min/kg in Angus and Holstein calves, respectively.
Mean extent of doxycycline binding to serum proteins was 92.
3% (± 0.
8%).
The large steady-state volume of distribution (1.
31 ± 0.
11 L/kg in Angus and 1.
81 ± 0.
24 L/kg in Holstein calves), despite the small free fraction in serum, suggested a relatively unrestricted access of drug into the intracellular compartment and/or appreciable tissue binding.
Results of mass spectrometric analysis of serum and urine from calves administered doxycycline iv revealed absence of biotransformation, because only parent drug could be detected.
Thus, doxycycline may be a valuable antibiotic for use in food animals pending further studies on tissue residues, safety, and efficacy.

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