Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats
10.1213/ane.0b013e31818e0bd1
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sg-nus-scholar.10635-1057632023-10-30T07:39:53Z Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats Elkiweri, I.A. Zhang, Y.L. Christians, U. Ng, K.-Y. Van Patot, M.C.T. Henthorn, T.K. PHARMACY 10.1213/ane.0b013e31818e0bd1 Anesthesia and Analgesia 108 1 149-159 AACRA 2014-10-29T01:50:26Z 2014-10-29T01:50:26Z 2009-01 Article Elkiweri, I.A., Zhang, Y.L., Christians, U., Ng, K.-Y., Van Patot, M.C.T., Henthorn, T.K. (2009-01). Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats. Anesthesia and Analgesia 108 (1) : 149-159. ScholarBank@NUS Repository. https://doi.org/10.1213/ane.0b013e31818e0bd1 00032999 http://scholarbank.nus.edu.sg/handle/10635/105763 000261963000023 Scopus |
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10.1213/ane.0b013e31818e0bd1 |
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PHARMACY Elkiweri, I.A. Zhang, Y.L. Christians, U. Ng, K.-Y. Van Patot, M.C.T. Henthorn, T.K. |
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Elkiweri, I.A. Zhang, Y.L. Christians, U. Ng, K.-Y. Van Patot, M.C.T. Henthorn, T.K. |
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Elkiweri, I.A. Zhang, Y.L. Christians, U. Ng, K.-Y. Van Patot, M.C.T. Henthorn, T.K. Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
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Elkiweri, I.A. |
title |
Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
title_short |
Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
title_full |
Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
title_fullStr |
Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
title_full_unstemmed |
Competitive substrates for P-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: Pharmacokinetics and pharmacodynamics in Sprague-Dawley rats |
title_sort |
competitive substrates for p-glycoprotein and organic anion protein transporters differentially reduce blood organ transport of fentanyl and loperamide: pharmacokinetics and pharmacodynamics in sprague-dawley rats |
publishDate |
2014 |
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http://scholarbank.nus.edu.sg/handle/10635/105763 |
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1781788104921710592 |