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P Repeto

Publications and source records attributed to P Repeto.

2 recordsLinked to original sources

A comparison of the in vitro Comet assay with the in vitro chromosome aberration assay using whole human blood or Chinese hamster lung cells: validation study using a range of novel pharmaceuticals.

The in vitro Comet assay, a sensitive, quick and relatively cheap test, could become a valid alternative to the commonly used in vitro chromosomal aberration test, in the preliminary evaluation of new chemical entities early in the development of new pharmaceuticals. A validation of the Comet assay procedure using whole human blood or CHL cells was carried out in comparison with a cytogenetic test utilizing the same target cells with the following compounds which demonstrated positive results in standard chromosomal aberration tests: two well-documented clastogens, methyl methanesulphonate and cyclophosphamide, and eight novel drugs in early development. A 3 h exposure time, in both the absence and presence of metabolic activation, was used for the in vitro Comet assay. Agreement between the results of the Comet assay and the chromosomal aberration tests was found to be satisfactory on a qualitative basis, although positive results in the Comet assay were always at higher doses than in the cytogenetic test. This indicates a reduction in sensitivity using the former genotoxicity end-point. In order to try to explain this observation, a range of exposure times (0.25, 0.5, 1, 2 and 3 h) were investigated in two further experiments to determine the optimal time for detecting Comet induction in this assay procedure. Maximum levels of DNA damage (in terms of Comet induction) were recorded at earlier sampling times (0.25-1 h) in whole human blood using the same positive doses observed in HPLT. Further studies need to be performed to confirm these findings. It is possible that strand breaks are too short lived to allow detection after a 3 h treatment period (due to preferential repair), indicating the need for shorter exposure times in some cases to optimize their detection.

Animals↗

Some considerations about stability study design.

The aim of a stability study is to check whether or not a drug maintains its initial properties (over a given range) in a period of time. There are many parameters considered in a stability study, but in this paper only the active content will be considered. Evaluation of this parameter is performed by measuring the content of the active ingredient in the drug at different times and on expiration to see if it is within specification (1). The problem also involves estimating whether the drug will perform satisfactorily and maintain its initial properties in the future. In this paper, we provide a criterion for the evaluation of experimental design used in a stability study for predicting the content of an active ingredient in a drug, starting from the confidence limit calculated following International Conference on Harmonisation of Technical Requirements for the Registration of Pharmaceuticals for Human Use (ICH) recommendations. The point of view adopted is akin to hypothesis testing. The main question is this: "If the drug fulfills the requirements at a given time in the future, what is the probability that the data collected for that drug will show its suitability?" For this purpose, two concepts are used-producer gain and consumer loss-which are defined as follows: producer gain is the advantage (for the producer) of recognizing a drug as "good" (provided it is good and within specification); consumer loss is the loss (for the consumer) when the drug is no longer good, but the data collected indicate that it is good. The aim of the experimental design in this study is to increase the probability of producer gain and maximize it on the basis of a given consumer loss.

Drug Stability↗