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  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Journal of molecular medicine 57 (1979), S. 95-96 
    ISSN: 1432-1440
    Keywords: Co-trimoxazole ; Endogenous creatinine clearance ; Inulin clearance ; Co-Trimoxazol ; Endogene Kreatininclearance ; Inulinclearance
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Description / Table of Contents: Zusammenfassung Klinische Beobachtungen haben gezeigt, daß Co-Trimoxazol (Trimethoprim — Sulfamethoxazol) zu einem Anstieg des Serum-Kreatinins führen kann. Daher wurden bei 27 nierengesunden Probanden vor und während oraler und parenteraler Co-Trimoxazolgabe Clearanceuntersuchungen (endogene Kreatinin-und Inulinclearance) durchgeführt. Während die Inulinclearance keine signifikanten Änderungen aufwies, war die endogene Kreatininclearance nach oraler Zufuhr von Co-Trimoxazol um 18% und während parenteraler Gabe des Medikamentes um 13% herabgesetzt (p≦0,05). Diese Befunde sprechen für eine funktionelle Hemmung der tubulären Kreatininsekretion durch Co-Trimoxazol.
    Notes: Summary Clinical observations have shown, that administration of Co-trimoxazole (Trimethoprim-Sulfamethoxazole) may result in an elevation of the serum-creatinine level. In 27 subjects the endogenous creatinine- and inulinclearance were measured before and during oral or parenteral application of Co-trimoxazole. The inulinclearance showed no significant differences (p〉0,05). But the endogenous creatinine clearance showed a reduction of 18% during the oral and of 13% during the parenteral treatment (p≦0,05) These observations indicate a functional inhibition of the tubular creatinine secretion by Co-trimoxazole.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-0662
    Keywords: Atmospheric multiphase system ; atmospheric acidity ; cloud chemistry ; cloud acidity ; phase-partitioning ; Kleiner Feldberg
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Geosciences
    Notes: Abstract The chemistry of cloud multiphase systems was studied within the Kleiner Feldberg Cloud Experiment 1990. The clouds encountered during this experimental campaign could be divided into two categories according to the origin of air masses in which the clouds formed. From the chemical point of view, clouds passing the sampling site during the first period of the campaign (26 October-4 November) were characterized by lower pollutant loading and higher pH, as compared to clouds during the final period of the experimental campaign (10–13 November). The study of multiphase partitioning of the main chemical constituents of the cloud systems and of atmospheric acidity within the multiphase systems themselves (gas + interstitial aerosol + liquid droplets) are presented in this paper. A general lack of gaseous NH3 was found in these cloud systems, which caused a lack of buffer capacity toward acid addition. Evidence supports the hypothesis that the higher acidity of the cloud systems during this final period of the campaign was due to input of HNO3. Our measurements, however, could not determine whether the observed input was due to scavenging of gaseous HNO3 from the air feeding into the cloud, or to heterogeneous HNO3 formation via NO2 oxidation by O3 to NO3 and N2O5. Sulfate in cloud droplets mainly originated from aerosol SO 4 2− scavenging, since S(IV) to S(VI) liquid phase conversion was inhibited due to both lack of H2O2 and low pH of cloud droplets, which made O3 and metal catalyzed S(IV) oxidation inefficient.
    Type of Medium: Electronic Resource
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