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A. Colzi A. Musolino †A. Iuliano ‡F. Fornai U. Bonuccelli G. U. Corsini 《Journal of neurochemistry》1996,66(4):1510-1517
Abstract: 3,4-Dihydroxyphenylacetic acid (DOPAC) is commonly considered to be the main dopamine (DA) metabolite produced by monoamine oxidase (MAO); however, the initial product of DA oxidation is 3,4-dihydroxyphenylacetaldehyde (DOPALD). Owing to technical difficulties in detecting DOPALD from a biological matrix, no studies have so far been performed to measure brain levels of this aldehyde in vivo. In this work, using transstriatal microdialysis in freely moving rats, we identified DOPALD by HPLC coupled to a coulometric detector. In chromatograms obtained from microdialysis samples, DOPALD appeared as a peak with a retention time coincident with that of the standards obtained via enzymatic and chemical synthesis. On the other hand, DOPALD was undetectable ex vivo from rat striatal homogenates. This discrepancy is probably due to the preferential extraneuronal localization together with the high reactivity of the aldehyde, which is rapidly removed by the dialysis probe, whereas the ex vivo procedure allows its condensation and enzymatic conversion. Measurement of DOPALD levels as a routine procedure might represent a reliable tool to evaluate DA oxidative metabolism directly, in vivo. Moreover, parallel detection of DOPALD and DOPAC levels in brain dialysate may make it possible to distinguish between the activity of MAO and aldehyde dehydrogenase. DOPALD, like many endogenous aldehydes, has been shown to be toxic to the cell in which it is formed. Therefore, in vivo measurement of DOPALD levels could highlight new aspects in the molecular mechanisms underlying both acute neurological insults and neurodegenerative diseases. 相似文献
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Mary Jeanne Kreek 《Neurochemical research》1996,21(11):1469-1488
The early history of research on the possible existence of specific opioid receptors and on developing a new form of pharmacotherapy
for the treatment of heroin addiction in New York City, from 1960–1973, along with the special relationships between two leading
scientists conducting these research efforts, Dr. Eric Simon and Dr. Vincent P. Dole Jr., are presented in a historical perspective.
The linkage of these early efforts and the subsequent identification and the elucidation of the effects of exogenous opiates
acting at specific opiate receptors in human physiology, including some findings from perspective studies of heroin addicts
at time of entry to and during methadone maintenance treatment, are presented in the context of the important clues which
thereby were provided concerning the possible roles of the endogenous opioids in normal mammalian physiology. From many of
these early clinical research findings and studies in animal models, the hypothesis that the endogenous opioids system may
play an important role in stress responsivity was formulated along with the related hypothesis, first presented in the early
1970s, that an atypical responsivity to stress and stressors might be involved in the acquisition and persistence of, and
relapse to specific addictive diseases, including heroin addiction, cocaine dependency and alcoholism. More recent studies
of the possible involvement of the specific opioid receptors in these three addictive diseases—heroin addiction, cocaine addiction
and alcoholism—from our laboratory are discussed in a historical perspective of the development of these ideas from the early
research findings of not only Dr. Eric Simon, but his numerous colleagues in opioid research in the United States and throughout
the world.
Special issue dedicated to Dr. Eric J. Simon. 相似文献
46.
Abstract. The objectives of this study were to determine whether adult Mediterranean fruit flies, Ceratitis capitata Wiedeman (Diptera: Tephritidae), are capable of synthesizing lipids, and whether adult diet affects this ability.Lipid levels in females fed protein and carbohydrate or carbohydrate alone declined significantly from emergence to the fourth day of life and then rose back to teneral levels on the fifth day, before oviposition took place on the sixth day.In males fed protein and carbohydrate, lipid levels initially declined as males aged and then stabilized.In carbohydrate-fed males lipid levels declined following emergence and recovered somewhat by the sixth day.Lipid levels declined significantly when flies underwent post-emergence starvation, but after substantial feeding on the above-mentioned diets they eventually (within 6–7 days) reached teneral levels in all experimental groups.Multivariate analysis of variance revealed that differences in lipid contents are primarily related to the flies' age, which corresponds to the various sex-specific activities these flies exhibit.Average lipid investment in eggs was found to equal teneral lipid levels in females.Without lipogenic abilities, oviposition would completely deplete female lipid reserves.We conclude that adult medflies are capaple of lipid synthesis, and that this capability is modulated by individual and sex-specific activity patterns. 相似文献
47.
In the short day plant Chenopodium rubrum and the long day plant Nicotiana tabacum cv. Havana 425, adenylate kinase (EC 2.7.4.3) occurs as a family of isoforms, with at least two members localized in the chloroplast representing the main isoforms. In this work, isoforms were separated by anion exchange chromatography and relative isoform activities were compared between vegetative plants and plants induced to flowering. In both species examined, a light regime leading to floral induction resulted in a significant decrease in the activity of one chloroplast isoform. This decrease modified considerably the relative distribution of isoform activities, especially that between the two chloroplast activities. 相似文献
48.
H. Schmidt A. Wichmann I. Lamprecht I. Zerbst-Boroffka 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1996,166(3):205-214
Anaerobic metabolism in the limnic annelid Hirudo medicinalis L. was investigated by direct and indirect calorimetry. During long-term severe hypoxia, the rate of heat dissipation was reduced up to 13% of the aerobic rate. At the same time, the rate of ATP turnover was reduced to about 30% of the aerobic rate, indicating that metabolic depression is an important mechanism to ensure survival of the leech during environmental anaerobiosis. Heat dissipation during hypoxia was monitored under two experimental conditions, favouring either concomitant hypocapnia (continuous N2 bubbling) or hypercapnia (self-induced hypoxia). The reduction in heat dissipation during hypocapnic hypoxia was less pronounced than during hypercapnic hypoxia, indicating that the different experimental conditions may influence anaerobic metabolism and the extent of metabolic depression. Biochemical analysis of known anaerobic substrates and endproducts provided the basis for indirect calorimetry during self-induced hypoxia. From changes in metabolites, the expected heat dissipation was calculated for initial (0–8 h) and long-term severe hypoxia (8–72 h). During the initial period, the calculated heat dissipation fully accounted for direct calorimetric determination. During long-term hypoxia, only 71% of the measured heat production could be explained from biochemical analysis of metabolites. Therefore, an additional unknown endproduct cannot be excluded, especially when anaerobic ammonia production and analysis of the carbohydrate balance are considered.Abbreviations
APW
artificial pond water
-
HPLC
high-performance liquid chromatography
-
fw
fresh weight
-
HP
heat production
-
HD
heat dissipation
-
MR
metabolic rate 相似文献
49.
Uri S. Ladror Gary T. Wang William L. Klein Thomas F. Holzman Grant A. Krafft 《Journal of Protein Chemistry》1994,13(4):357-366
Fluorogenic peptide substrates designed to encompass the reported-secretory and amyloidogenic cleavage sites of the amyloid- precursor protein (PP) were used to analyze proteinase activities in brain extracts from control patients and those with Alzheimer's disease (AD). Activity against the secretory substrate atpH 7.5 in control and AD brains produced a major endopeptidase cleavage at the Lys687-Leu688 bond (PP770 numbering), consistent with thePP secretase cleavage. Activity in control brains against the amyloidogenic substrate atpH 7.5 produced one cleavage at the Ala673-Glu674 bond, two residues C-terminal to the amyloidogenic Met-Asp site. However, in three of four AD brains, the major cleavage was at the Asp-Ala bond, one residue from the amyloidogenic site. Both endopeptidase and carboxypeptidase activities in AD brains were lower than in control brains. Proteinase activities against the secretory substrate had a major optimum atpH 3.0–4.0 and another atpH 6.0–7.5. Proteinase activities against the amyloidogenic substrate had a major optimum at or belowpH 3.0 and another atpH 6.0. Using both substrates, activities at lowpH were higher in AD brains than in controls, while atpH above 6.5, activities in control brains were higher than in AD. These results indicate that the levels of proteolytic enzymes in AD brains are altered relative to controls.Abbreviations A
Amyloid-
- ACN
acetonitrile
- AD
Alzheimer's disease
- PP
amyloid- precursor protein
- DABCYL
4-(4-dimethylaminophenylazo)-benzoic acid
- EDANS
5-{(2-aminoethyl)amino}napthalene-1-sulfonic acid
- MES
morpholinoethane sulfonic acid
- MOPS
morpholino-propane sulfonic acid
- RP-HPLC
reverse-phase high-performance liquid chromatography
- SDS-PAGE
sodium do-decyl sulfate-polyacrylamide gel electrophoresis
- TFA
tri-fluoroacetic acid
- Tris
tris(hydroxyethyl)aminomethane 相似文献
50.