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  • 1
    ISSN: 1432-0428
    Keywords: Insulin secretion ; Type 2 (non-insulin-dependent) diabetes mellitus ; glucagon secretion ; C-peptide ; arginine ; dexamethasone
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Summary We have compared insulin responses to L-arginine before and during dexamethasone treatment in healthy subjects, previously classified as subjects with either high or low insulin response according to a standardized glucose infusion test. Arginine stimulation was administered as a 150 mg/kg bolus followed by 10 mg·kg−1·min−1 to six subjects with high insulin response and to seven subjects with low insulin response. Before dexamethasone treatment the incremental insulin level during 0–10 min of arginine was higher in subjects with high (36.5±6.8 μU/ml) than in subjects with low response (14.5±2.3 μU/ml), p〈0.01 for difference. Dexamethasone treatment (6 mg/day for 60 h) markedly enhanced the insulin response to arginine in subjects with high response (+99% 0–30 min) but failed to affect the subjects with low response (+4% 0–30 min). The C-peptide response to arginine exhibited similar differences between groups. Decreased responsiveness to arginine in subjects with low insulin response, especially during dexamethasone treatment, suggests a Beta-cell capacity defect although a decreased potentiating-sensing effect of glucose cannot be completely ruled out.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1434-6079
    Keywords: 36.40 ; 33.40.Hp ; 32.30.Bv
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract A new metastable decay reaction of ArnO+ cluster ions produced by the electron impact ionization of argonoxygen clusters has been discovered, leading to the evaporation of more than two monomers in the metastable time regime. It is estimated that an energy of approx. 1 eV has to be released from the intramolecular to intermolecular modes prior to this metastable decay. In contrast to previously observed excimer-induced fragmentation of pure argon cluster ions, it has been concluded that the localized metastable state of an ionic rather than a neutral species is involved in the fragmentation. A reaction mechanism involving an electronic transition from the a2Π ArO+* (O(3P)-Ar+(2P)) excited state to the X4Σ− ArO+ (O+(4S)-Ar(1S)) ground state of the ArO+ complex ion within the cluster and subsequent release of considerable amount of vibrational energy to cluster modes is suggested to account for the observed fragmentation. Based on these measurements, a lifetime of approx. 2 µsis proposed for the excited state a2Π ArO+*.
    Type of Medium: Electronic Resource
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