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Biomedical subjects

M Skorupska

Publications and source records attributed to M Skorupska.

9 recordsLinked to original sources

Hepatic protoporphyria is associated with a decrease in ligand binding for the mitochondrial benzodiazepine receptors in the liver.

Protoporphyrin IX (PP) and N-methylprotoporphyrin IX (N-MePP) added in vitro to liver membranes reduced dose-dependently the affinity of [3H]PK 11195 for the mitochondrial benzodiazepine receptors (MBRs), the latter being about 20 times more potent (Ki 4.5 and 0.25 microM). Preincubation of these two porphyrins with liver homogenates for 120 min at 4 degrees resulted in significant inhibition of [3H]PK 11195 binding even after repeated washings of the membranes due to the residual presence in the membranes of about 35 and 5% of PP and N-MePP, respectively. Thus, the hypothesis that an in vivo increase in the hepatic porphyrin content modifies the binding of the isoquinoline PK 11195 to the MBRs was investigated in an experimental model of protoporphyria. PP and N-MePP were allowed to accumulate in vivo through treatment with 3,5-diethoxycarbonyl-1, 4-dihydrocollidine (DDC) (100 mg/kg i.p., once), and rats were killed 5 h after treatment when hepatic porphyrin accumulation was marked (10-fold increase), PP predominating. In the liver, treatment reduced the affinity (Kd) of [3H]PK 11195 for MBRs (from 3.56 to 15.37 nM, P < 0.01) and the maximum number of binding sites (Bmax) (55% decrease, P < 0.05); the affinity (Ki) of RO 5-4864 for [3H]PK 11195 binding sites was also reduced (from 23.9 to 72.99 nM, P < 0.05). No significant differences were found in the brain cortex. Liver and brain diazepam binding inhibitor levels and plasma corticosterone levels were unchanged. The reduction in [3H]PK 11195 binding to MBRs in the liver of DDC-treated rats thus appears to be attributable to a specific effect of the DDC-induced formation of the two protoporphyrins; this conclusion suggests that in hepatic protoporphyria processes modulated by MBRs may be altered.

5-Aminolevulinate Synthetase

Synthesis and benzodiazepine receptors affinity of 2,3-dihydro-9-phenyl-1H-pyrrolo[3,4-b]quinolin-1-one and 3-carbethoxy-4-phenylquinoline derivatives.

A series of 2,3-dihydro-9-phenyl-1H-pyrrolo[3,4-b]quinolin-1-one derivatives and related compounds were tested for their ability to bind benzodiazepine receptors (BZRs). Most of the synthesized compounds showed micromolar affinity for BZR peripheral type, but not for the central one, with the exception of compound 4m which displayed an IC50 = 0.407 microM, only 2 fold higher than IC50 for chlordiazepoxide.

Animals

Exploratory behavior and the dual activity of some psychoactive drugs. Part 5. Alcohol.

Alcohol is reported to impair acquisition and learning processes and it is considered a depressant of the brain activities impairing rapidity and consistency of some behaviors. The experiments reported here are concerned with the exploratory performances of the already described subpopulations of Albino mice under the effect of alcohols of different types.

Alcoholic Beverages

Effect of some anesthetics on memory and exploration.

A light ether anesthesia in laboratory mice resulted in the complete drop of their memory retrieval to zero for more than three days after the administration. On the contrary, mice that underwent the exploration test after the light ether anesthesia performed as expected, confirming that impairment of memory does not necessarily reflect on exploratory performance. The effect of some anesthetic drugs was then studied on memory retrieval and exploratory behavior. Within this general framework, the anesthetics here studied all worsen memory retrieval, however without inducing clear and long-lasting amnesic effect comparable to that exerted by ether anesthesia. Contrarily, the classically amnesic drug scopolamine, orally administered, enhances memory retrieval and improves exploration.

Anesthetics

Difference in learning and retention by Albino-Swiss mice. Part 5. Effect of some antidepressants.

According to the methods described earlier (1), the effect of some antidepressants on memory retention in "good" and "poor" learning mice was studied. The present study indicates that several antidepressants have different activity on memory retrieval of the two subtypes of animals, which is directly responsible for the results here reported. In general terms, the data obtained show that, in addition to the classical antidepressant activity, some derivatives may exert a behavioral disinhibition.

Animals

Some central effects of opioid antagonists. Part I.

This study concerned the influence of opioid antagonists: naloxone, naltrexone and diprenorphine on amphetamine hyperactivity in mice and rats, apomorphine hyperactivity in rats, amphetamine and apomorphine stereotypy in rats, and stereotyped gnawing induced by methylphenidate in mice. Naloxone, naltrexone and, in higher doses, diprenorphine attenuated the amphetamine hyperactivity in rats. In mice in the same test all antagonists at some doses produced attenuation. However they did not affect the apomorphine hyperactivity in rats. Both naloxone and naltrexone attenuated amphetamine and apomorphine stereotypy, while the effect of diprenorphine was different: it slightly attenuated the amphetamine stereotypy, but slightly potentiated the stereotypy induced by apomorphine. The influence of various antagonists on methylphenidate-induced stereotyped gnawing varied: naloxone had no effect, while naltrexone and diprenorphine showed a tendency to potentiate the response. The results suggest that naloxone and naltrexone show some actions resembling hose of antipsychotics, but of a mechanism different to that characteristic of typical neuroleptics.

Amphetamine