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J Baulu

Publications and source records attributed to J Baulu.

10 recordsLinked to original sources

Brain region differences and some characteristics of monoamine oxidase type A and B activities in the vervet monkey.

Monoamine oxidase in the vervet monkey showed greater variations in activity in six brain regions when tyramine or phenylethylamine was used as the substrate (3.8- to 4.1-fold differences) than when serotonin was the substrate (1.8-fold differences). With phenylethylamine and tyramine as substrates, the highest MAO specific activities were found in the hypothalamus and the lowest in the cerebellum and cortex. With serotonin as the substrate, the highest specific activities were in the mesencephalon and cortex. The inhibition of tyramine deamination by clorgyline and deprenyl yielded biphasic plots indicative of the presence of MAO-A and MAO-B enzyme forms in the vervet brain. On the basis of these inhibitor curves, the vervet brain could be estimated to contain approximately 85% MAO-B and 15% MAO-A, in contrast to rat brain which contains 45% MAO-B and 5% MAO-A. The inhibition of serotonin deamination by deprenyl in vervet brain yielded a biphasic plot, suggesting that some serotonin deamination in the vervet is accomplished by the MAO-B enzyme form. Estimations of the relative amounts of MAO-A and MAO-B based on inhibitor curves or based on substrate ratios yielded proportionate results which were in close agreement across the different brain regions, supporting the validity of these approaches to estimating MAO-A and MAO-B activities.

Animals

Platelet monoamine oxidase activity correlates with social affiliative and agonistic behaviors in normal rhesus monkeys.

After a 4-mo study period, quantitative measures of stable behavioral traits in individual rhesus monkeys correlated significantly with platelet monoamine oxidase (MAO) activity. In particular, behavioral items reflecting social activity and social contact, both agonistic and affiliative, were inversely correlated with enzyme activity. Time spent alone was positively correlated. Since platelet MAO activity is generally stable and predominantly controlled by genetic factors, it might serve as a "genetic marker" for individual differences in "normal" behaviors possibly related to differences in MAO activity in the brain and other tissues.

Age Factors

Plasma amine oxidase activity in 136 normal rhesus monkeys: relationships between enzyme activity and age, sex and genetic factors.

Normative data on plasma amine oxidase activity were obtained for four primate species, M. mulatta, M. arctoides, C. aethiops and H. sapiens. Significant between-species differences in activity were observed. In a large sample of M. mulatta, no significant relationship between age and plasma amine oxidase activity was observed, but adult males had significantly higher enzyme activities than adult females.

Age Factors

Menstrual cycle and ovarian hormone effects on plasma and platelet monoamine oxidase (MAO) and plasma dopamine-beta-hydroxylase (DBH) activities in the rhesus monkey.

Dopamine-B-hydroxylase (DBH) and monoamine oxidase (MAO) in plasma and platelets were studied in six female rhesus monkeys during three complete menstrual cycles. The same monoamine enzymes of seven bilaterally ovariectomized females were compared with a group of controls. A difference was found in platelet MAO between a mid-menstrual-cycle peak and a perimenstrual trough in these animals, while plasma MAO was unchanged. DBH showed an inverted cyclical variation to that demonstrated by platelet MAO. The ovariectomized females showed significant differences from the controls, confirming the effects of the ovarian sex steroid hormones on platelet MAO and plasma DBH. The variation in these peripheral enzymes may be reflective of changes in brain monoamine systems, which may play some role in the behavioral changes observed during the menstrual cycle in primates.

Animals

The effects of testosterone on plasma and platelet monoamine oxidase (MAO) an plasma dopamine-beta-hydroxylase (DBH) activities in the male rhesus monkey.

Dopamine-beta-hydroxylase (DBH) and monoamine oxidase (MAO) in plasma and platelets were studied in male rhesus monkeys to evaluate the effects of changes in endogenous testosterone on the activity of these enzymes. High plasma testosterone concentrations attained at the end of the mating season were associated with relatively low levels of platelet MAO activity. When testosterone levels fell, platelet MAO increased significantly. Mean differences in platelet MAO activity between a group of castrated and control males were in the direction expected, with the highest MAO activity in the castrated monkeys, but these differences did not attain statistical significance. No significant mating season or castration effects were seen in plasma DBH or MAO enzyme activities. These data support the hypothesis of a link between testosterone and some monoamine systems, and possibly the monoamine-related behaviors linked to testosterone in primates.

Animals