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  • 11
    Electronic Resource
    Electronic Resource
    Springer
    Radiation and environmental biophysics 4 (1967), S. 129-136 
    ISSN: 1432-2099
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Physics
    Notes: Zusammenfassung Trockene und feuchte Ribonuclease bis zu einem Wassergehalt von 70% wurde mit Röntgenstrahlen bestrahlt und die Abhängigkeit sowohl der Radikalzahlen als auch der Inaktivierungsraten von der Feuchtigkeit und der Aufbewahrungsdauer gemessen. Ähnlich, wie dies früher für Pepsin und Alkoholdehydrogenase festgestellt wurde, nehmen die Radikalzahlen, die man unmittelbar nach der Bestrahlung mißt, rasch mit steigendem Wassergehalt ab. Die Inaktivierungsraten nehmen mit dem Wassergehalt, welchen das Enzym bei der Bestrahlung besitzt, zu. Setzt man trocken bestrahlte Ribonuclease einer Wasserdampfatmosphäre aus oder löst sie in flüssigem Wasser, so ergeben sich beträchtlicheAftereffekte. Alle durch das Wasser bedingten Aktivitätsverluste beruhen darauf, daß durch Autoxydation die Strahlenempfindlichkeit der Ribonuclease erhöht wird. Ebenso wie die Inaktivierungsrate des Pepsins und der Alkoholdehydrogenase ist auch die Inaktivierungsrate der Ribonuclease unabhängig vom Wassergehalt während der Bestrahlung sowie der Aufbewahrungsdauer im trockenen Zustand, wenn sie anschließend an die Bestrahlung und Aufbewahrung in trockenem Zustand 2 bis 3 Tage in Lösung oder in H2O-Dampf gebracht und erst dann die Aktivität gemessen wird.
    Type of Medium: Electronic Resource
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  • 12
    ISSN: 1432-1106
    Keywords: Key words Spinal inhibition ; Interneurons ; Micturition ; Bladder-sphincter dyssynergia ; Cat
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract  Micturition in the decerebrate cat is characterized by a coordinated bladder contraction and a simultaneous decrease in external urethral sphincter (EUS) efferent activity. Without the suppression of EUS activity, voiding is significantly impaired, resulting in a state sometimes referred to as bladder-sphincter dyssynergia. The aim of the present study was to determine whether glycinergic inhibition contributes to the suppression of EUS activity during micturition evoked by bladder distension or electrical stimulation of the pontine micturition center (PMC) in decerebrate cats. Using subconvulsive intravenous doses of strychnine (0.1–0.24 mg/kg), we examined changes in bladder and EUS electroneurographic (ENG) activity during micturition. Following subconvulsive doses of strychnine, tonic EUS ENG activity increased during bladder filling in five of six animals. In the presence of strychnine, it was possible to evoke reflex bladder contractions of similar duration and peak pressure to those observed before strychnine administration. However, there was an absence of suppression of EUS ENG activity during the bladder contractions in all the animals. To determine whether the changes in sphincter activity could be due to strychnine acting at glycine receptors on EUS motoneurons, sacral spinal tissue was processed for a structural protein (gephyrin) associated with the glycine receptor. Motoneurons in Onuf′s nucleus in S1 were identified using choline acetyltransferase immunohistochemistry and subsequently processed with a gephyrin monoclonal antibody. Abundant gephyrin labeling was evident throughout Onuf′s nucleus. Since Onuf′s nucleus is made up of EUS and other motoneuron populations, a sample of antidromically identified urethral and anal sphincter motoneurons were intracellularly labeled with tetramethylrhodamine dextran (TMR-D) and then processed with the gephyrin antibody. Using dual-beam confocal microscopy, gephyrin immunoreactivity was observed on the soma and proximal processes of individual EUS motoneurons in both male and female animals. It was concluded that a strychnine-sensitive mechanism contributes to the suppression of sphincter activity normally observed during voiding. Although glycinergic inhibition may affect several components of the circuitry responsible for micturition, it appears that the suppression of EUS motoneurons during micturition may be partly due to a direct glycinergic inhibition of the EUS motoneurons.
    Type of Medium: Electronic Resource
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  • 13
    Electronic Resource
    Electronic Resource
    Weinheim [u.a.] : Wiley-Blackwell
    Materials and Corrosion/Werkstoffe und Korrosion 33 (1982), S. 188-188 
    ISSN: 0947-5117
    Keywords: Chemistry ; Polymer and Materials Science
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Mechanical Engineering, Materials Science, Production Engineering, Mining and Metallurgy, Traffic Engineering, Precision Mechanics
    Type of Medium: Electronic Resource
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