Combined liquid-solid chromatography and radioimmunoassay for determination of morphine in human fluids.
暂无分享,去创建一个
[1] J. Schou,et al. MORPHINE AND NORMORPHINE IN THE BRAINS OF RATS GIVEN IDENTICALLY ANALGAESIC DOSES OF MORPHINE, CODEINE OR NORMORPHINE. , 2009, Acta pharmacologica et toxicologica.
[2] L. Kitahata,et al. Serum morphine levels in cats during dorsal horn neuron suppression by spinally administered morphine. , 1982, Life sciences.
[3] S. Muldoon,et al. Determination of morphine in cerebrospinal fluid and plasma by high-performance liquid chromatography with electrochemical detection. , 1982, Journal of chromatography.
[4] P. Hartvig,et al. Patient-controlled Analgesic Therapy, Part III: Pharmacokinetics and Analgesic Plasma Concentrations of Ketobemidone , 1982, Clinical pharmacokinetics.
[5] D. Stanski,et al. Morphine pharmacokinetics: GLC assay versus radioimmunoassay. , 1982, Journal of pharmaceutical sciences.
[6] M. Chauvin,et al. PLASMA CONCENTRATION OF MORPHINE AFTER I.M., EXTRADURAL AND INTRATHECAL ADMINISTRATION , 1981 .
[7] P. Compton,et al. Steroid radioimmunoassay--effect of shortened incubation time on specificity. , 1981, Clinical chemistry.
[8] R. Maes,et al. Disposition of morphine in rat brain: relationship to biological activity. , 1981, The Journal of pharmacology and experimental therapeutics.
[9] C. Hug,et al. Pharmacokinetics of Intravenous Morphine in Patients Anesthetized with Enflurane–Nitrous Oxide , 1981, Anesthesiology.
[10] E. R. Garrett,et al. Pharmacokinetics of morphine and its surrogates. III: Morphine and morphine 3-monoglucuronide pharmacokinetics in the dog as a function of dose. , 1979, Journal of pharmaceutical sciences.
[11] H. Krebs,et al. Isolation and identification of morphine 3- and 6-glucuronides, morphine 3,6-diglucuronide, morphine 3-ethereal sulfate, normorphine, and normorphine 6-glucuronide as morphine metabolites in humans. , 1977, Journal of pharmaceutical sciences.
[12] M. Woldring,et al. Radioimmunoassay specificity and the "first-come, first-served effect". , 1976, Clinica chimica acta; international journal of clinical chemistry.
[13] W. S. Koski,et al. Microelectrometric titration measurement of the pKa's and partition and drug distribution coefficients of narcotics and narcotic antagonists and their pH and temperature dependence. , 1975, Journal of medicinal chemistry.
[14] L. Paalzow,et al. Quantitative determination of morphine in biological samples by gas‐liquid chromatography and electron‐capture detection , 1975, The Journal of pharmacy and pharmacology.
[15] F. Leslie,et al. Proceedings: Assessment of the agonist and antagonist activities of narcotic analgesic drugs by means of the mouse vas deferens. , 1974, British journal of pharmacology.
[16] G. Abraham. Solid-Phase Radioimmunoassay of Estradiol-17β , 1969 .
[17] E. Way,et al. The pharmacologic implications of the fate of morphine and its surrogates. , 1960, Pharmacological reviews.
[18] K. Foley,et al. Morphine radioimmunoassay specificity before and after extraction of plasma and cerebrospinal fluid. , 1983, Journal of pharmaceutical sciences.
[19] Burks Tf,et al. Morphine distribution after oral and subcutaneous administration. , 1981 .
[20] D. Catlin. Pharmacokinetics of morphine by radioimmunoassay: the influence of immunochemical factors. , 1977, The Journal of pharmacology and experimental therapeutics.