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Pharmacokinetics drug administration routes compared

The pharmacokinetics of ivermectin differ with the animal species, formulation, and the route of administration (50). When goats were given a subcutaneous administration of 0.2 mg ivermectin /kg bw, the mean concentrations of ivermectin in plasma and milk increased initially to reach at 2.8 day the maximum levels of 6.12 and 7.26 ppb, respectively (51). The drug could be detected in milk for 25 days postdosing, the total drug amount recovered over this period being estimated at 0.6% of the administered dose. This percentage is low compared with the 4% level determined in sheep (52) and 5.6% in cows (53). [Pg.144]

Pharmacokinetics Slow intravenous infusion is employed for treatment of systemic infections or for prophylaxis. Because vancomycin is not absorbed after oral administration, this route is only employed for the treatment of antibiotic-induced colitis due to Q difficile. Inflammation allows penetration into the meninges. Metabolism is minimal 90-100 % is excreted by glomerular filtration. [Note Dosage must be adjusted in renal failure since the drug will accumulate. Normal half-life is 6-10 hours compared to over 200 hours in end-stage renal disease.]... [Pg.319]

Biodistribution of liposomes is a very important parameter from the clinical point of view. Liposomes can alter both the tissue distribution and the rate of clearance of the drug by making the drug take on the pharmacokinetic characteristics of the carrier (10, 11). The pharmacokinetic variables of the liposomes depend on the physiochemical characteristics of the liposomes, such as size, surface charge, membrane lipid packing, steric stabilization, dose, and route of administration. As with other microparticulate delivery systems, conventional liposomes are vulnerable to elimination from systemic circulation by the cells of the reticuloendothelial system (RES) (12). The primary sites of accumulation of conventional liposomes are the tumor, liver, and spleen compared with non-liposomal formulations (13). Many studies have shown that within the first 15-30 min after intravenous administration of liposomes between 50 and 80% of the dose is adsorbed by the cells of the RES, primarily by the Kupffer cells of the liver (14-16). [Pg.3]

At the end of the study, the pharmacokinetic characteristics of the drug would be evaluated, and the systemic exposure for each dosage regimen compared with the intravenous route of administration. [Pg.93]

Time course of PHY concentration in plasma and brain was compared after 650 ptg/kg dose i.m. and oral and 100 pig/kg after i.v. administration as shown in Figure 5.5. BuChE activity in plasma and AChE activity in brain was also compared after these doses. The figure shows the pharmacokinetic and pharmacodynamic effects of PHY. PHY does not reach an effective concentration in the brain after oral administration because of its first-pass effect. However, it is an effective pretreatment drug after i.v. and i.m. routes of administration. [Pg.182]


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See also in sourсe #XX -- [ Pg.30 ]




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