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M B Gatch

Publications and source records attributed to M B Gatch.

26 records · Page 2Linked to original sources

Discriminative stimulus effects of a cocaine/heroin "speedball" combination in rhesus monkeys.

Cocaine and heroin often are abused together in a combination known as a "speedball," but relatively little is known about ways in which cocaine and heroin may interact to modify each other's abuse-related effects. The present study evaluated the discriminative stimulus effects of a speedball combination of cocaine and heroin. Three rhesus monkeys were trained to discriminate vehicle from a 10:1 ratio of cocaine (0.4 mg/kg) in combination with heroin (0.04 mg/kg). Both cocaine alone and heroin alone substituted completely for the cocaine/heroin combination, although cocaine and heroin were more potent when administered together than when administered alone. Combined pretreatment with the dopamine antagonist flupenthixol and the opioid antagonist quadazocine dose-dependently antagonized the discriminative stimulus effects of the cocaine/heroin combination, but pretreatment with either antagonist alone was less effective. These findings suggest that either cocaine or heroin alone was sufficient to substitute for the cocaine/heroin training combination. To characterize the discriminative stimulus properties of this speedball more fully, a series of cocaine-like and heroin-like agonists were studied in substitution tests. The indirect dopamine agonists CFT, amphetamine and bupropion and the mu opioid agonists alfentanil, fentanyl and morphine produced high levels of speedball-appropriate responding. However, the indirect dopamine agonist GBR12909, the D1 dopamine agonist SKF82958, the D2 dopamine agonist quinpirole and the partial mu opioid agonist nalbuphine did not substitute for the cocaine/heroin combination. Because these compounds produce discriminative stimulus effects similar to either cocaine or mu opioid agonists alone, these findings suggest that the discriminative stimulus effects of the cocaine/heroin combination do not overlap completely with the effects of cocaine and heroin alone. Finally, a series of compounds that produce partial or no substitution for cocaine or mu agonists alone also did not substitute for the cocaine/heroin combination, which indicates that the discriminative stimulus effects of the combination were pharmacologically selective. Taken together, these findings suggest that a combination of cocaine and heroin produces a pharmacologically selective discriminative stimulus complex that includes aspects of both component drugs.

Animals↗

Behavioral effects of the delta-selective opioid agonist SNC80 and related compounds in rhesus monkeys.

The behavioral effects of the nonpeptidic delta opioid agonist SNC80 and a series of related piperazinyl benzamides derived from the parent compound BW373U86 were evaluated in rhesus monkeys. SNC80 (0.1-10 mg/kg) decreased response rates maintained by food-reinforcement in a dose- and time-dependent manner, with maximal effects occurring within 10 min of intramuscular injection. The potency of SNC80 and five other piperazinyl benzamides in this assay of schedule-controlled responding correlated with their affinity at cloned human delta opioid receptors but not with their affinity for cloned human mu receptors. Moreover, the effects of SNC80 were selectively antagonized by the delta-selective antagonist naltrindole (1.0 mg/kg), but not by the mu selective antagonist quadazocine (0.1 mg/kg) or the kappa-selective antagonist norbinaltorphimine (3.2 mg/kg). These findings indicate that SNC80 functions as a systemically active, delta-selective agonist with a rapid onset of action in rhesus monkeys. The antinociceptive effects of SNC80 were examined in a warm-water tail-withdrawal assay of thermal nociception. SNC80 (0.1-10 mg/kg) produced weak but replicable antinociceptive effects that were antagonized by naltrindole (1.0 mg/kg). SNC80 antinociception was also dose-dependently antagonized by BW373U86 (0.56-1.0 mg/kg), which was inactive in this procedure. These findings suggest that SNC80 may have higher efficacy than BW373U86 at delta opioid receptors. Moreover, SNC80 at doses up to 32 mg/kg did not produce convulsions, which suggests that SNC80 may also be safer than BW373U86. The effects of SNC80 were also examined in monkeys trained to discriminate cocaine (0.4 mg/kg i.m.) or self-administer cocaine (0.032 mg/kg/injection,i.v.). In drug discrimination studies, SNC80 (0.1-10 mg/kg) produced a dose-dependent and naltrindole-reversible increase in cocaine-appropriate responding, and complete substitution for cocaine was observed in five of seven monkeys tested. However, SNC80 (1.0-100 micrograms/kg/injection) did not maintain responding in monkeys trained to self-administer cocaine. Thus, despite its ability to produce cocaine-like discriminative stimulus effects, SNC80 may have relatively low abuse potential.

Analgesics, Opioid↗

Naloxonazine antagonism of levorphanol-induced antinociception and respiratory depression in rhesus monkeys.

The mu-opioid receptor antagonist effects of naloxonazine on levorphanol-induced thermal antinociception and respiratory depression were examined in rhesus monkeys. Levorphanol (0.032-3.2 mg/kg) produced dose-dependent increases in tail-withdrawal latencies from 50 degrees C water in a warm-water tail-withdrawal assay and dose-dependent decreases in ventilation in both air and 5% CO2 mixed in air. Naloxonazine (0.1-3.0 mg/kg) antagonized both the antinociceptive and ventilatory effects of levorphanol to a similar degree, and the antagonist effects of naloxonazine were greater after 1 h than after 24 h. Under all conditions, the antagonist effects of naloxonazine were fully surmountable. Schild analysis of the antagonist effects of naloxonazine after 1 h pretreatment in the antinociception assay yielded a pA2 value of 7.6 and a slope of -0.50; by comparison, quadazocine yielded a pA2 value of 7.5 and a slope of -1.05. These results suggest that naloxonazine acts as a potent and fully reversible mu-opioid receptor antagonist with a moderately long duration of action in rhesus monkeys. In addition, these results suggest that the antinociceptive and ventilatory effects of mu-opioid receptor agonists in rhesus monkeys are mediated by pharmacologically similar populations of mu opioid receptors.

Analgesia↗

Effects of the structurally novel opioid 14 alpha, 14' beta-[dithiobis [(2-oxo-2,1-ethanediyl)imino]]bis(7,8-dihydromorphinone) on schedule-controlled behavior and thermal nociception in rhesus monkeys.

The in vivo pharmacology of the structurally novel opioid 14 alpha, 14' beta-[dithiobis[(2-oxo-2,1-ethanediyl)imino]]bis(7,8-dihydromorphinon e) (TAMO) was examined in rhesus monkeys with assays of schedule-controlled behavior and thermal nociception. TAMO (0.032-1.8 mg/kg) produced dose-dependent decreases in response rates maintained under a fixed-ratio 30 schedule of food delivery (n = 3) and increases in tail-withdrawal latencies in a warm-water tail-withdrawal procedure (n = 3). Both the rate-decreasing and antinociceptive effects of TAMO (1.0 mg/kg) were maximal after 40 to 80 min and lasted at least 160 min. Pretreatment with the mu-selective opioid antagonist quadazocine (0.001-0.1 mg/kg) antagonized the effects of TAMO and shifted the TAMO dose-effect curves to the right. Schild analysis yielded in vivo apparent pA2 values (mean +/- S.E.M.) of 8.8 +/- 0.072 and 8.7 +/- 0.40 for quadazocine antagonism of the rate-decreasing and antinociceptive effects, respectively, of TAMO, which suggests that the effects of TAMO were mediated by mu-opioid receptors. In addition, quadazocine (0.1-1.0 mg/kg) reversed the behavioral effects of TAMO (1.0 mg/kg) when quadazocine was administered immediately after TAMO had attained its maximal effect. Twenty-four-hour pretreatment with 1.0 mg/kg TAMO did not significantly after the rate-decreasing or antinociceptive effects of fentanyl or the rate-decreasing effects of morphine. The dose-effect curve for morphine antinociception was shifted 4-fold to the right 24 hr after pretreatment with 1.0 mg/kg TAMO. However, 24-hr pretreatment with an equiactive dose of morphine (10.0 mg/kg) also produced a small (2-fold) but significant rightward shift in the dose-effect curve for morphine antinociception. Twenty-four-hour pretreatment with 1.8 mg/kg TAMO had no effect on the antinociceptive effects of U69,593 (0.0032-0.1 mg/kg). These results suggest that TAMO acts as a reversible mu agonist with a relatively slow onset and a duration of action and relative efficacy similar to those of morphine in rhesus monkeys. Twenty-four hours after TAMO administration, the highest doses of TAMO that could be safely administered produced little or no mu antagonist effects and no kappa antagonist effects.

Analgesics↗

BW373U86, a delta-opioid receptor agonist, reverses bradykinin-induced thermal allodynia in rhesus monkeys.

The synthetic delta-opioid receptor agonist BW373U86 (0.18-0.56 mg/kg s.c.) was studied in rhesus monkeys with a warm-water, tail-withdrawal assay, designed to detect bradykinin (0.1 microgram) and prostaglandin E2 (5-15.8 micrograms)-induced thermal allodynia. BW373U86 dose-dependently reversed bradykinin allodynia, but was ineffective against prostaglandin E2 allodynia. The BW373U86 dose-effect curve was shifted to the right by the delta-opioid receptor-selective antagonist naltrindole (1.0 mg/kg) but not by the mu-opioid receptor-selective antagonist quadazocine (0.1 mg/kg). The present findings add to the conditions in which delta-opioid receptor-mediated behavioral effects have been detected in primates, and suggest that delta-opioid agonists may be of therapeutic interest in the treatment of some types of hyperalgesic conditions.

Animals↗

Effects of morphine and ketorolac on thermal allodynia induced by prostaglandin E2 and bradykinin in rhesus monkeys.

When administered s.c. in the tail, both prostaglandin E2 (PGE2; 1.58-158.0 micrograms) and bradykinin (BK; 0.01-1.0 microgram) produced a dose-dependent allodynia in a warm-water tail-withdrawal assay in rhesus monkeys. PGE2 (A50 = 5.3 +/- 0.15 microgram) was 143-fold less potent than BK (A50 = 0.037 +/- 0.012 microgram) in producing allodynia at 42 degrees C. However, PGE2 (15.8 micrograms) was longer acting than an equieffective dose of BK (0.1 microgram), and the highest dose of PGE2 (158.0 micrograms) was the only treatment to produce allodynia when 38 degrees C water was used as the thermal stimulus, suggesting that PGE2 was a more efficacious allodynic agent than BK. Morphine (0.1-3.2 mg/kg) administered s.c. in the back completely blocked the allodynic effects of both BK (0.1 microgram) and PGE2 (15.8 micrograms), although morphine was more than twice as potent against BK (A50 = 0.26 +/- 0.085 mg/kg) than against PGE2 (A50 = 0.65 +/- 0.14 mg/kg). The effects of morphine were antagonized by the opioid antagonist quadazocine (0.1 mg/kg), indicating that morphine's effects were mediated by opioid receptors. The nonsteroidal anti-inflammatory drug ketorolac (0.32-10.0 mg/kg) administered s.c. in the back completely blocked the allodynic effects of BK (A50 = 0.60 +/- 0.095 mg/kg) but did not alter allodynia induced by PGE2. The antiallodynic effects of ketorolac against BK were not antagonized by quadazocine (1.0 mg/kg), indicating that these effects were not mediated by mu or kappa opioid receptors. Furthermore, relative to morphine, ketorolac displayed a slower onset and a longer duration of action. These findings suggest that the allodynic effects of BK in this procedure were mediated entirely by cyclooxygenase products of arachidonic acid metabolism, such as PGE2.

Analgesics, Non-Narcotic↗

Antinociceptive effects of cocaine/opioid combinations in rhesus monkeys.

This study characterized the antinociceptive effects of cocaine alone and in combination with mu, delta, and kappa opioids in rhesus monkeys. The shaved tails of four rhesus monkeys were exposed to warm water (42, 46, 50, 54, and 58 degrees C), and tail withdrawal latencies (20 sec maximum) from each temperature were determined. The temperature that produced a tail withdrawal latency of 10 sec (T10) was interpolated, and drug-induced changes in the T10 value (delta T10) were calculated. Dose-dependent increases in delta T10 were produced by cocaine (0.032-1.8 mg/kg), the high efficacy mu agonist fentanyl (0.001-0.1 mg/kg), the intermediate efficacy mu agonist morphine (0.1-18 mg/kg), the low efficacy mu agonist nalbuphine (1-32 mg/kg), and the kappa agonist U69,593 (0.0032-0.1 mg/kg). The delta agonist BW373U86 (0.56 mg/kg) produced no effect. Relative maximum effects, determined from the maximum delta T10 values produced by each drug, were fentanyl > or = (5,7,8 beta)-N-methyl-N[2-(1-pyrrolidinyl)1-oxaspiro[4,5]dec-8- yl]benzeneacetamide > morphine > nalbuphine > or = cocaine > BW373U86. When individual doses of cocaine (0.1-1.8 mg/kg) and morphine (0.32-10.0 mg/kg) were combined, cocaine produced a dose-dependent increase in the effects of each dose of morphine, and the antinociceptive effects of most cocaine/morphine combinations were significantly greater than the antinociceptive effects of either cocaine or morphine alone. Cocaine (1.8 mg/kg) was also combined with nalbuphine (1.0, 10 mg/kg), fentanyl (0.001, 0.032 mg/kg), BW373U86 (0.56 mg/kg) and U69,593 (0.0032-0.056 mg/kg). Cocaine/nalbuphine combinations produced effects markedly greater than either drug alone.

Analgesics, Opioid↗

Transfer of contextual stimulus function via equivalence class development.

In a conditional discrimination, 6 college students arranged six Cyrillic letters into groups of three based upon which of two additional Cyrillic letters (contextual stimuli) was present. All subjects demonstrated symmetry and transitivity within each class of equivalent stimuli. In a second conditional discrimination, two more Cyrillic letters were related to each contextual stimulus. Testing of symmetrical and transitive relations between the original contextual stimulus and the two new ones confirmed the development of two three-member classes of contextual stimuli. Subsequent tests demonstrated that the new contextual stimuli controlled the previously trained sample-comparison relations for all subjects.

Journal Article↗