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  • Dynorphin A(1-13)  (1)
  • PACS. 36.40.-c Atomic and molecular clusters - 36.40.Wa Charged clusters  (1)
  • 1
    ISSN: 1432-2072
    Keywords: Opioid peptides ; Discriminative stimulus effects ; Opioid receptor subtypes ; Morphine ; Dynorphin A(1-13) ; d-Ala2-d-Leu5-enkephalin
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract The role of the different opioid receptors was studied in rats trained to discriminate SC injections of 3.0 mg/kg morphine from saline by tests for generalization to graded doses of morphine and receptor-selective peptides administered into the lateral cerebral ventricle. Dose-dependent morphine-like stimulus effects were produced over a wide range of doses (0.001–30 μg), depending upon ligand and animal, by morphine, by themu-selective peptides DAGO[d-Ala2-NMePhe4-Gly(ol)-enkephalin] and FK33824[d-Ala2,NMePhe4-Met(O)5-(ol)-enkephalin], and by thedelta-selective peptide, DADL[d-Ala2,d-Leu5enkephalin]. The order of relative potency of these substances was: FK33824〉DAGO〉morphine〉DADL. In contrast, DPLPE[d-Pen2,l-Pen5)enkephalin], which has much greaterdelta receptor selectivity than does DADL, and dynorphin A(1-13) (0.1–10 μg), akappa-receptor agonist, engendered choice responding appropriate for saline. When 1.0 μg DADL, a dose lacking morphine-like discriminative effects, was administered concurrently with SC morphine, the stimulus effects of morphine were potentiated. Concurrent administration of 10 μg dynorphin A(1-13) and morphine attenuated the stimulus effects of morphine inconsistently. These results support previous findings thatmu-opioid receptors are of primary importance in mediating the morphine-like discriminative effects of opioid peptides. They also suggest that morphine-like discriminative effects can be modulated by other types of opioid receptors.
    Type of Medium: Electronic Resource
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  • 2
    Electronic Resource
    Electronic Resource
    Springer
    The European physical journal 4 (1998), S. 335-342 
    ISSN: 1434-6079
    Keywords: PACS. 36.40.-c Atomic and molecular clusters - 36.40.Wa Charged clusters
    Source: Springer Online Journal Archives 1860-2000
    Topics: Physics
    Notes: Abstract: Photoionization of rare gas clusters in the innervalence shell region has been investigated using threshold photoelectron and photoion spectrometers and synchrotron radiation. Two classes of states are found to play an important role: (A) valence states, correlated to dissociation limits involving an ion with a hole in its innervalence ns shell, (B) Rydberg states correlated to dissociation limits involving an ion with a hole in its outervalence np shell plus an excited neutral atom. In dimers, class A states are “bright”, that is, accessible by photoionization, and serve as an entrance step to form the class B “dark” states; this character fades as the size of the cluster increases. In the dimer, the “Mulliken” valence state is found to present a shallow potential well housing a few vibrational levels; it is predissociated by the class B Rydberg states. During the predissociation a remarkable energy transfer process is observed from the excited ion that loses its innershell electron to its neutral partner.
    Type of Medium: Electronic Resource
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