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Biomedical subjects

R E Solomon

Publications and source records attributed to R E Solomon.

27 records · Page 2Linked to original sources

Tolerance to antinociceptive effects of morphine without tolerance to its effects on schedule-controlled behavior.

The development of tolerance to behavioral effects of morphine was investigated in rats that responded on a two-lever, multiple-trial, multiple differential-reinforcement-of-low-rate fixed-ratio (mult DRL FR) schedule of food presentation. Stable performances were maintained when sessions were conducted just twice per week. The effects of cumulative doses of morphine (1.0-8.0 mg/kg) or chlordiazepoxide (CDP; 4.0-32.0 mg/kg) were evaluated once per week; saline injections were given in the intervening sessions. The effects of saline and morphine on nociception were also evaluated in hot-plate tests conducted on the same subjects 15 min after selected operant sessions. Initially, morphine produced dose-related decreases in response rates and reinforcement rates in the DRL and FR components as well as significant increases in hot-plate response latencies. Following weekly administration of morphine (1.0-8.0 mg/kg) for 10 weeks, there was little or no tolerance to its effects on operant behavior. In contrast, complete tolerance developed to the antinociceptive effects of morphine. These results suggest that tolerance to various behavioral effects of morphine may be dissociated, and that the loss of reinforcement may be insufficient by itself to produce tolerance to effects of morphine on operant behavior. Additionally, whereas CDP initially produced only dose-related decreases in DRL and FR response rates, following weekly morphine the smaller doses of CDP (4.0-16.0 mg/kg) produced increases in response rates.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Infection with the human immunodeficiency virus: clinical manifestations and their relationship to immune deficiency. A report from the Multicenter AIDS Cohort Study.

In 1984 a large prospective study of gay and bisexual men was begun to elucidate the natural history of the human immunodeficiency virus (HIV) infection. At two successive semiannual examinations, clinical or hematologic abnormalities were found up to 13 times more often among HIV-seropositive men (n = 1611) than HIV-seronegative men (n = 2646). More than 30% of the seropositive participants had persistent generalized lymphadenopathy, independent of T-helper lymphocyte (CD4) counts and most other signs and symptoms. Other clinical manifestations such as thrush, anemia, thrombocytopenia, neutropenia, fever, and fatigue occurred with only slightly reduced CD4 counts (400 to 700/mm3) and appeared to increase exponentially with progressively lower counts. A simple systematically derived clinical index using these manifestations identified more than 70% of the seropositive men with significant T-helper cell depletion. This kind of clinical index may be useful for assessing groups of HIV-infected persons, especially those whose T-lymphocyte numbers and function cannot be readily measured.

Acquired Immunodeficiency Syndrome↗

Enantiomeric and diastereomeric dioxadrols: behavioral, biochemical and chemical determination of the configuration necessary for phencyclidine-like properties.

Dioxadrol exists in four isomeric forms. alpha-(+)-Dioxadrol (dexoxadrol) showed phencyclidine (PCP)-like activity in rhesus monkeys trained to discriminate s.c. administration of ketamine, but neither alpha-(-)-dioxadrol (levoxadrol) nor beta-(+/-)-dioxadrol showed such activity. In addition, response-contingent i.v. dexoxadrol maintained higher rates of responding than either levoxadrol or beta-dioxadrol in monkeys experienced with ketamine self-administration. The order of potency in displacing bound 1-[1-(2-thienyl)cyclohexyl]piperidine from binding sites in rat brain homogenates was dexoxadrol much greater than levoxadrol = beta-(+/-)-dioxadrol. Viewed in the context of previous studies with stereochemical probes of the PCP receptor, these results extend and confirm the supposition that dexoxadrol and levoxadrol are the stereochemical probes of choice in the study of effects mediated through PCP receptors. The absolute configuration of dexoxadrol was determined to be 4S, 6S by X-ray crystallography, thus defining the optimum chirality necessary for receptor binding and PCP-like activity in the dioxadrol series. Based on these and other considerations, receptor-active conformations of dexoxadrol and PCP are proposed.

Analgesics↗

Antibody to hepatitis B core antigen as a paradoxical marker for non-A, non-B hepatitis agents in donated blood.

The relationship between the presence of antibody to hepatitis B core antigen (anti-HBc) in donor blood and the development of hepatitis in recipients of that blood was studied in 6293 blood donors and 481 recipients who were followed for 6 to 9 months after transfusion. Of 193 recipients of at least 1 unit of blood positive for anti-HBc, 23 (11.9%) developed non-A, non-B hepatitis compared with 12 (4.2%) of 288 recipients of only anti-HBc-negative blood (p less than 0.001). Donor anti-HBc status was not significantly associated with the development of hepatitis B in the recipient and was negatively associated with the development of cytomegalovirus hepatitis. The relationship of donor anti-HBc status and the development of non-A, non-B hepatitis in the recipient was independent of transfusion volume and elevated donor transaminase level. Although 88% of anti-HBc-positive blood units were not associated with recipient non-A, non-B hepatitis, calculation of maximal corrected efficacy predicted that exclusion of anti-HBc-positive donors might have prevented 43% of the cases of non-A, non-B hepatitis with a donor loss of 4%. Because of the serious chronic consequences of non-A, non-B hepatitis, surrogate tests for non-A, non-B virus carriers must be seriously considered.

Alanine Transaminase↗

Narcotic discrimination in pigeons: antagonism by naltrexone.

In pigeons trained to discriminate between morphine (10 mg/kg) and saline, both morphine and ethylketazocine produced dose-related morphine-appropriate responding. The maximum effect produced by meperidine, however, was only 60% of that produced by morphine or ethylketazocine. Naltrexone (0.1-1.0 mg/kg) produced dose-related shifts to the right in the dose-response curves for the discriminative stimulus and rate-decreasing effects of morphine and ethylketazocine without affecting the response produced by meperidine. Thus, in contrast to the effects observed in other species, morphine and ethylketazocine produce similar discriminative effects in the pigeon. In addition, the morphine-like discriminative effects and the rate-decreasing effects of meperidine in the pigeon are not mediated by the naltrexone-sensitive mechanisms which mediate these effects of morphine or ethylketazocine.

Animals↗

Discriminative stimulus effects of dextrorphan in pigeons.

Pigeons were trained to discriminate between dextrorphan (10 mg/kg) and saline in a task in which 20 consecutive key pecks on either the left or right key, depending on whether dextrorphan or saline had been administered, produced food. During sessions in which stimulus generalization to other drugs was evaluated, 20 consecutive responses on either the dextrorphan- or saline-appropriate key produced food. Dextromethorphan and dexoxadrol produced dose-related stimulus control of behavior similar to that produced by dextrorphan. In contrast, the l-isomers of these compounds, levomethorphan, levoxadrol and levorphanol, at doses up to and including those that markedly decreased the rate of responding, produced responding primarily on the saline-appropriate key. In addition, both the d- and l-isomers of methadone, codeine, morphine, butorphanol and profadol resulted in predominantly saline-appropriate responding. l-Cyclorphan, dl-, l- and d-SKF-10,047 and l- and d-cyclazocine produced dose-related dextrorphan-appropriate responding, whereas, l-oxilorphan (the 14-hydroxymorphinan analog of cyclorphan), dl-, l- and d-pentazocine, l- and d-ethylketazocine and l-naltrexone resulted in either responding exclusively on the saline-appropriate key or responding that was intermediate between that appropriate for saline and dextrorphan. Although levorphanol alone produce little or no dextrorphan-appropriate responding, the coadministration of naltrexone (1.0 mg/kg) and high doses of levorphanol, but not levoxadrol, resulted in responding similar to that produced by dextrorphan.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Discriminative stimulus effects of monohydroxylated phencyclidine metabolites in Rhesus monkeys.

Rhesus monkeys were trained to discriminate saline from an injection of ketamine. In tests of stimulus generalization, phencyclidine (PCP) produced dose-related ketamine-appropriate responding in each monkey. Two monohydroxylated PCP metabolites also produced ketamine-like discriminative effects, although only at considerably higher doses than did PCP. A third monohydroxylated PCP metabolite produced only sham-appropriate responding. The results suggest that these PCP metabolites contribute little to the behavioral actions of PCP in the monkey.

Animals↗

Discriminative stimulus effects of N-substituted analogs of phencyclidine in rhesus monkeys.

In daily sessions of a two-lever, discrete-trial, food-reinforced procedure, rhesus monkeys were trained to discriminate between subcutaneous injections of ketamine (1.0 or 1.8 mg/kg) and control injections. In tests of stimulus generalization, cumulative doses of drugs were administered in single sessions and either control- or ketamine-appropriate responding produced food. Ketamine (1.8 and 3.2 mg/kg) and phencyclidine (0.32 mg/kg) produced an average of more than 90% ketamine-appropriate responding. In contrast, d-amphetamine, atropine, chlorpromazine, codeine, diazepam and quipazine, tested at doses up to and including those that markedly reduced response rates, produced exclusively control-appropriate responding. Dose-related ketamine-appropriate responding was produced by each of ten 1-phenylcyclohexylamines, the potencies of which varied with the length, electronegativity, and number of N-alkyl chains present. The most potent analog of phencyclidine, N-ethyl-1-phenylcyclohexylamine, was approximately equipotent with phencyclidine. These data are consistent with previous reports that the discriminative stimulus effects produced by phencyclidine are representative of a unique class of drugs, and that alkyl substitutions in the region of the piperidine ring alter the potency, but not the characteristic pharmacological activity, of the resulting analogs. The potencies of some of these analogs compared to phencyclidine in rhesus monkeys, however, differed from their relative potencies in rodents. Thus, there appear to be species differences in the role of the nitrogen pharmacophore of these compounds in producing phencyclidine-like behavioral effects.

Animals↗