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N Kesaree

Publications and source records attributed to N Kesaree.

5 recordsLinked to original sources

Pharmacokinetic and pharmacodynamic modeling of L-dopa plasma concentrations and clinical effects in Parkinson's disease after Sinemet.

Eleven parkinsonian patients participated in a pharmacokinetic/pharmacodynamic study in an attempt to model levodopa (L-DOPA) plasma concentrations to clinical effect. Carbidopa 25 mg/L-DOPA 100 mg (Sinemet 25/100) was given orally, and blood samples were obtained before and serially for 4 hours after the dose. Effect measurements were obtained with each blood sample and included tapping score, timed walking, and global assessment of motor function. Mean L-DOPA plasma concentrations were fitted to a one-compartment pharmacokinetic model. A time-wise plot of modeled plasma L-DOPA concentrations versus mean effect measurements revealed a counter-clockwise hysteresis. Effect compartment concentrations were determined by a least squares approach, which determined elimination rate constants by minimizing hysteresis. Half-times for the equilibration between plasma and the effect compartment were 0.39 h for tapping, 0.36 h for walking, and 0.34 h for the global score. Pharmacodynamic data were fit best with an Emax model with baseline effect for tapping (Emax = 53.2 taps/60 s, EC50 = 0.58 microgram/ml) and global score (Emax set at 5.0 by limits of scale, EC50 = 2.53 micrograms/ml). A linear model best described the relationship between predicted effect site concentration and timed walking. L-DOPA plasma concentrations after oral Sinemet did not correlate well with clinical response because clinical response lags behind plasma concentrations. Half-times for equilibration between plasma and the effect site were similar for all of the effects measured.

Adult

Controlled-release carbidopa/levodopa (Sinemet 50/200 CR4): clinical and pharmacokinetic studies.

Several controlled-release carbidopa/levodopa preparations have been formulated to achieve a more stable and extended antiparkinsonian action. The most effective is Sinemet CR (Sinemet CR4), with an erodible polymer matrix that retards release of levodopa. In 19 parkinsonians with prominent dose-by-dose fluctuations, double-blind crossover trials comparing 8-week regimens of standard carbidopa/levodopa (25/100) to Sinemet CR (50/200) showed comparable clinical outcomes, with mean daily dosing for optimal control reduced from 10.2 to 5.4 (although mean daily levodopa dosage increased from 1,340 to 1,781 mg/day). Most patients improved on the Sinemet CR regimen in hours "on" and in ratings of clinical state and disability. With pharmacokinetic studies correlated to clinical ratings, plasma levodopa was less variable during Sinemet CR treatment, and clinical responses showed greater uniformity. Compared to standard Sinemet 25/100, time to peak levodopa concentration (2.3 versus 1.1 hrs), onset of maximal clinical improvement (2.2 versus 1.1 hrs), and other indices were significantly delayed with Sinemet CR. Levodopa bioavailability and clearance were similar between formulations. Although onset of clinical response is slower, the Sinemet CR formulation lessens peak-dose and "wearing-off" responses occurring with conventional carbidopa/levodopa and offers substantial improvement for some parkinsonians.

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