Albumin-Induced Changes of Fluorescence Spectra of 1-Pyrenebutyric Acid

Changes in the fluorescence spectra and quantum yield of 1-pyrenebutyric acid (1) induced by human, bovine, rabbit, and dog serum albumins and healthy adult serum, liver-disease patient serum, and renal-disease patient serum were compared at pH 7.4. Human serum albumin, healthy adult serum, and live...

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Veröffentlicht in:Journal of pharmaceutical sciences 1986-02, Vol.75 (2), p.193-194
Hauptverfasser: Matsushita, Yasuo, Tsukiori, Mariko, Suzuki, Tatsuo, Moriguchi, Ikuo
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container_end_page 194
container_issue 2
container_start_page 193
container_title Journal of pharmaceutical sciences
container_volume 75
creator Matsushita, Yasuo
Tsukiori, Mariko
Suzuki, Tatsuo
Moriguchi, Ikuo
description Changes in the fluorescence spectra and quantum yield of 1-pyrenebutyric acid (1) induced by human, bovine, rabbit, and dog serum albumins and healthy adult serum, liver-disease patient serum, and renal-disease patient serum were compared at pH 7.4. Human serum albumin, healthy adult serum, and liver-disease patient serum caused marked quenching of the fluorescence of 1-pyrenebutyric acid. On the contrary, bovine, rabbit, and dog serum albumins increased the fluorescence intensity. Renal-disease patient serum also enhanced the intensity but caused quenching of the fluorescence after treatment with charcoal. Thus, 1-pyrenebutyric acid clearly shows interspecies differences in the environment or the structure of the binding site on serum albumin between humans and other animals. Furthermore, it is suggested that some substance which influences the character of the binding site for 1-pyrenebutyric acid exists in the serum of renal-disease patients.
doi_str_mv 10.1002/jps.2600750220
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Pharm. Sci</addtitle><description>Changes in the fluorescence spectra and quantum yield of 1-pyrenebutyric acid (1) induced by human, bovine, rabbit, and dog serum albumins and healthy adult serum, liver-disease patient serum, and renal-disease patient serum were compared at pH 7.4. Human serum albumin, healthy adult serum, and liver-disease patient serum caused marked quenching of the fluorescence of 1-pyrenebutyric acid. On the contrary, bovine, rabbit, and dog serum albumins increased the fluorescence intensity. Renal-disease patient serum also enhanced the intensity but caused quenching of the fluorescence after treatment with charcoal. Thus, 1-pyrenebutyric acid clearly shows interspecies differences in the environment or the structure of the binding site on serum albumin between humans and other animals. 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Pharm. Sci</addtitle><date>1986-02</date><risdate>1986</risdate><volume>75</volume><issue>2</issue><spage>193</spage><epage>194</epage><pages>193-194</pages><issn>0022-3549</issn><eissn>1520-6017</eissn><coden>JPMSAE</coden><abstract>Changes in the fluorescence spectra and quantum yield of 1-pyrenebutyric acid (1) induced by human, bovine, rabbit, and dog serum albumins and healthy adult serum, liver-disease patient serum, and renal-disease patient serum were compared at pH 7.4. Human serum albumin, healthy adult serum, and liver-disease patient serum caused marked quenching of the fluorescence of 1-pyrenebutyric acid. On the contrary, bovine, rabbit, and dog serum albumins increased the fluorescence intensity. Renal-disease patient serum also enhanced the intensity but caused quenching of the fluorescence after treatment with charcoal. 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source MEDLINE; Wiley Online Library Journals Frontfile Complete; Alma/SFX Local Collection
subjects Animals
Biological and medical sciences
Buffers
Cattle
Dogs
Fluorescent Dyes
General pharmacology
Humans
Kidney Diseases - blood
Liver Diseases - blood
Medical sciences
Pharmacology. Drug treatments
Physicochemical properties. Structure-activity relationships
Pyrenes - analysis
Rabbits
Serum Albumin
Serum Albumin, Bovine
Species Specificity
Spectrometry, Fluorescence
title Albumin-Induced Changes of Fluorescence Spectra of 1-Pyrenebutyric Acid
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