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Analogues of the dioxolanes dexoxadrol and etoxadrol as potential phencyclidine-like agents. Synthesis and structure-activity relationships.

A series of dioxolane analogues based on dexoxadrol ((4S,6S)-2,2-diphenyl-4-(2-piperidyl)-1,3-dioxolane) and etoxadrol ((2S,4S,6S)-2-ethyl-2-phenyl-4-(2-piperidyl)-1,3-dioxolane) were prepared and tested for their ability to displace [3H]TCP (1-[1-(2-thienyl)cyclohexyl]piperidine) from PCP (1-(1-phenylcyclohexyl)piperidine) binding sites in rat brain tissue homogenates. Qualitative structure-activity relationships within this series were explored through modifications of the three major structural units of dexoxadrol, the piperidine, 1,3-dioxolane, and aromatic rings of the molecule. N-Alkyl derivatives of dexoxadrol were found to be inactive, as were those analogues where the dioxolane ring was modified. Phenyl-substituted etoxadrol analogues were compared to similarly substituted PCP analogues and distinct differences were found in their structure-activity relationships suggesting that the aromatic rings in these two drug classes interact differently with the PCP binding sites. The replacement of the phenyl ring in etoxadrol by either a 2- or 3-thienyl ring led to compounds with affinity comparable to etoxadrol, and the replacement of the ethyl moiety on etoxadrol's dioxolane ring with propyl (7) or isopropyl (8) led to compounds which were more potent than etoxadrol or PCP. The most potent compound was (2S,4S,6S)-2-ethyl- 2-(1-chlorophenyl)-4-(2-piperidyl)-1,3-dioxolane (11), where a chlorine moiety was placed in the ortho position in the aromatic ring of etoxadrol. Its potency was comparable with TCP in vitro.

Analgesics

The effect of maternal exposure to dioxolane on prenatal and postnatal development in rats.

Female rats were given by gavage every other day from days 8-20 of gestation an aqueous solution of dioxolane at daily doses equal to 0.025, 0.1 and 0.2 LD50 (first series--prenatal development) or from days 2-20 of gestation at daily doses equal to 0.025, 0.075 and 0.15 LD50 (second series--postnatal development). At doses toxic or subtoxic to maternal rats (0.1 and 0.2 LD50) dioxolane did not cause increased embryo or fetus intrauterine death rates or congenital defects, it did cause, however, dose-related delays in fetal development. Dioxolane does not cause impairment of physical development or behavioral disturbances. Exposure to higher doses of the compound (0.2 LD50) leads to increased perinatal death rates in the offspring, without causing, however, disturbances in the maternal instinct. The exposure of pregnant rats to dioxolane decreased haemoglobin levels in 5-week-old offspring. At a dose 1.15 g/kg (0.2 LD50) the chemical significantly increased exploratory motor activity of female offspring at the age of 8 weeks, but did not affect significantly locomotor activity of males and the active avoidance acquisition of adult offspring.

Animals

An investigation of the effects of a pyridyl and a piperidyl 1, 3-dioxolane derivative on neuromuscular transmission.

2-(4'-pyridyl)-1,3-dioxolane methiodide (KCL-301-14) and 2-(1'-methyl-4' piperidyl)-1,3-dioxolane hydroiodide (KCL-301-39) facilitated the force of contraction in low doses and blocked it in higher doses in the in vivo cat soleus muscle preparation. Both drugs in the cat also reversed d-tubocurarine and succinylcholine blockade, produced post-drug repetitive activity, blocked post-tetanic potentiation (PTP), had no direct muscle affect and reversed the PTP suppression caused by d-tubocurarine and succinylcholine. In the rat phrenic nerve-diaphragm and the chick biventer cervicis preparations in vitro, facilitation, then blockade of the contraction were seen as concentrations increased. However, KCL-301-14 reversed d-tubocurarine and increased succinylcholine blockades in the rat and chick. KCl-301-39 increased both d-tubocurarine and succinylcholine blockades in the rat and chick. The different effects seen in the cat vs. the rat and chick with these drugs are probably due to species variation.

Animals

R34000, a dioxolane imidazole in the therapy for experimental coccidioidomycosis. Comparison with miconazole and econazole.

Comparisons were made on the therapeutic influence of three imidazole drugs in experimental lethal coccidioidomycosis of mice. When administered by the intramuscular route, miconazole and a closely related structural analogue, econazole, were effective in preventing death, restricting fungal replication in the lungs, and minimizing the extent of extrapulmonary dissemination. Neither drug was as effective when administered by the oral route as by the intramuscular route. This contrasted sharply with results obtained using R34000, a dioxolane imidazole. It was very highly effective when administered by the oral route and less so by intramuscular injection. All orally treated mice survived a challenge lethal to more than 80 percent of control animals. Plasma or serum concentrations of orally administered R34000 in mice and in man exceeded the minimum inhibitory concentration for a virulent strain of Coccidioides immitis.

Administration, Oral

Effect of 4-chloromethyl-2-methyl-2-pentyl- 1,3-dioxolane (AY-22,352) on the fertilizing ability of hamster epididymal spermatozoa.

Fertile male hamsters were injected subcutaneously with AY-22,352 to determine the minimal antifertility dose, the site of action and the onset and duration of infertility. Fertility tests showed that 37 mg AY-22,352/kg/day induced sterility within 4 days. None of the males became infertile within the first 2 days but marked loss of sperm fertilizing ability had occurred by 24 hr from the second injection; all males were sterile after the fourth dose. Comparable daily treatment procuded the same antifertility effect subsequent to bilateral ligation of the corpus epididymidis and fertilization did not occur after artificial insemination with spermatozoa from the cauda epididymidis of such animals. The prompt recovery of fertilizing ability of spermatozoa in males which receoved four daily doses of AY-22,352 (37 mg/kg) and had ligated ductuli efferentes shows that transport of epididymal spermatozoa and their acquisition of fertilizing ability are not influenced by the drug.

Animals