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  • 1
    ISSN: 1573-904X
    Keywords: rat ; serum ; human immunodeficiency virus protease inhibitor ; activity assay ; scintillation proximity assay
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract We showed previously that a commercially available synthetic tetradecapeptide, Asp-Arg-Val-Tyr-Ile-His-Pro-Phe-His-Leu-Leu-Val-Tyr-Ser, produces authentic angiotensin I (Ang I) upon incubation with the HIV-1 protease (S. K. Sharma et al., Anal. Biochem. 198:363, 1991). Therefore, we developed an Ang-I based activity assay for HIV protease inhibitors based on the technology developed earlier (M. J. Ruwart et al., Pharm. Res. 7:407, 1990; S. K. Sharma et al., Anal. Biochem. 186:24, 1990) for tracking renin inhibitors in rat sera. Ditekiren was either extracted from sera with ethyl acetate or assayed after the interfering substances in sera were precipitated with acetonitrile. Purified recombinant HIV-1 protease was added to extracted rat serum and the enzymatic reaction was initiated in the presence of the tetradecapeptide substrate. The inhibition of Ang I production was measured by a commercially available RIA kit. The cleanup methodology also enabled a commercially available Proteinase Scintillation Proximity Assay (SPA, Amersham) to quantify ditekiren in rat serum through the addition of recombinant HIV-1 protease and cleavage of substrate from SPA beads. Results were confirmed by HPLC or by the renin assay for ditekiren, which inhibits both aspartyl proteases. These technologies should prove useful for assessing serum levels of HIV protease inhibitors in rat.
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  • 2
    ISSN: 1573-904X
    Keywords: human renin inhibitory peptide ; rat ; activity assay ; angiotensin I ; serum
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology
    Notes: Abstract A sensitive activity assay for high volume evaluation of human renin inhibitory peptides (RIPs) in rat sera (range 2–80 ng/ml) was developed based on the low affinity of RIPs to rat renin and their high affinity to human renin. The utility of this activity assay was tested by measuring concentrations of a human RIP, U-71,038 (BOC-Pro-Phe-N-MeHis-Leu Ψ [CHOHCH2]Val-Ile-Amp), in rat sera, determined by the activity assay, by a sensitive radioimmunoassay (RIA), and by tracking tritiated drug. Rats were given radiolabeled drug as an intravenous bolus, and blood samples were collected at various times after dosing. The serum level of U-71,038 equivalents was determined by the three techniques. Whole blood was also counted for total radioactivity to evaluate the potential for U-71,038 incorporation into red blood cells. Results from the three serum assays indicate good agreement between the calculated U-71,038 equivalents for the 30 min and 1 hr collection times. The 2 and 4 hr collection times show excellent agreement for the activity assay and RIA; [3H]-U-71,038 determinations gave substantially higher values. Serum levels for U-71,038 determined 30 min after dosing averaged less than 300 ng equivalents/ml suggesting that less than 1% of the administered dose was in the systemic circulation at that time. Thus, U-71,038 was rapidly cleared. At the 4 hr collection time, the level of U-71,038 equivalents, as determined by activity assay and RIA, was ten times the in vitro IC50 for the renin inhibitory activity of U-71,038. Analysis of whole blood levels of 3[H]-U-71,038 indicated little or no incorporation of drug related material into red blood cells. In addition to predicting pharmacological response, the activity assay can be used to quantify human RIPs in rat serum when biotransformation is absent.
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