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J F Howes

Publications and source records attributed to J F Howes.

52 records · Page 3Linked to original sources

Hashish. Importance of the phenolic hydroxyl group in tetrahydrocannabinols.

Optically active delta-3- and delta-8-tetrahydrocannabinols (THC's), cannabidiol and racemic delta-9-cis-THC, and their corresponding analogs (1b yields 4b) in which the positions of the phenolic hydroxyl group and the n-C5 side chain have been interchanged are compared in selected pharmacological tests in mice. the results indicate that the phenolic hydroxyl group in the 1 position in THC's is very important for eliciting activity and that cannabidiol and delta-9-cis-THC possess weak CNS depressant properties.

Animals

Development of polylactic/glycolic acid delivery systems for use in treatment of narcotic addiction.

Implantable polylactic/glycolic acid matrix systems have successfully provided the sustained release of naltrexone to mice for periods of up to 200 days. In vitro and in vivo release rates have been determined by measuring chemical concentrations in pH 7 buffer solution and urine, respectively, and in vivo efficacy has been measured by direct challenge with morphine (Dewey-Harris mouse tail-flick test). Dosage forms of small inplantable cylinders, 1/16 inch diameter, (25 mg/rod, one rod/mouse) containing 33 per cent by weight naltrexone pamoate in 90 L(+)/10 polylactic/glycolic acid have sustained the delivery of chemical for 200 days. Delivery of chemical from dosage forms of 1/16 inch diameter spherical beads (3 mg/bead, 3 beads/mouse) containing 33 per cent by weight naltrexone base in 90 L(+)/10 polylactic/glycolic acid was sustained for 60 days. Earlier a similar bead type dosage form of 75 L(+)/25 polylactic/glycolic acid containing 50 per cent by weight naltrexone base and coated with the pure polymer provided controlled release for 25 days. Polymerization conditions which incorporate the use of pharmacologically suitable catalysts and yield products reproducibly have beendelineated. Techniques for sterilization of the final implant have been screened.

Animals

Water-soluble derivatives of 1 -tetrahydrocannabinol.

Delta1-Tetrahydrocannabinol, which is resinous and insoluble in water and therefore difficult to study pharmacologically, can be converted to a watersoluble derivative without loss of its biological activity. This has been achieved by preparing esters bearing a nitrogen moiety with the use of carbodiimide as the condensing agent. The availability of such water-soluble derivatives will allow the evaluation of Delta1-tetrahydrocannabinol in self-administration studies in monkeys for its addiction liability potential in man. This technique of water solubilization is also applicable to other compounds of chemical and biological significance.

Amphetamine