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D Calhoun

Publications and source records attributed to D Calhoun.

5 recordsLinked to original sources

Parkinson's disease, CYP2D6 polymorphism, and age.

OBJECTIVE: PD may be caused by genetic susceptibility to neurotoxins. CYP2D6 is a candidate gene for PD because it regulates drug and toxin metabolism, but association studies have been inconsistent. The aim of this study was to test if the CYP2D6*4 allele (poor metabolizer phenotype) is associated with earlier age at onset. METHODS: Five hundred seventy-six patients with PD and 247 subjects without PD were studied using standard diagnostic, genotyping, and statistical techniques. RESULTS: Surprisingly, mean onset age was significantly later in *4-positive patients. Frequency of *4 was significantly higher in late-onset PD than early-onset PD. When early- and late-onset PD were analyzed separately, *4 had no effect on onset age; hence, the association with delayed onset was likely an artifact of an elevated *4 frequency in late-onset PD. Contrary to a common assumption that CYP2D6 frequencies do not change with age, *4 frequency rose significantly with advancing age, both in patients with PD (from 0.16 at mean age of 56.5 years to 0.21 at mean age of 72) and subjects without PD (from 0.09 at mean age of 45.5 years to 0.21 at mean age of 72). *4 Frequencies in patients with early- and late-onset PD, although different from each other, were in agreement with similarly aged subjects without PD, suggesting the elevated *4 frequency in late-onset PD was likely an age effect, unrelated to PD. CONCLUSION: The CYP2D6*4 allele is not associated with earlier PD onset. *4 May be associated with survival. Inconsistent results from allelic association studies may have been due to an unrecognized age effect.

Age of Onset↗

Physical exercise in essential hypertension.

Although several studies have shown that physical training lowers blood pressure values both in normotensives and in hypertensives, the mechanisms accounted for this effect are not clearly elucidated. It has been reported that the decrease in blood pressure and heart rate that accompanies physical training is associated not only with an increase in vagal tone but also with a reduction in plasma norepinephrine levels. Whether this reduction really means a decrease in sympathetic neural discharge is unknown, however. To clarify this issue, we have performed in 7 normotensives direct recording of postganglionic muscle sympathetic nerve activity from the peroneal nerve by microneurography before and after 10 weeks of an endurance training which increased oxygen consumption by 10%. It was shown that the blood pressure lowering effect of the training program was accompanied by a marked reduction in resting sympathetic nerve activity. These data provide the first direct evidence that in man, the blood pressure reduction induced by physical training is mediated by the neural sympathetic mechanisms.

Blood Pressure↗