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Featured researches published by V. Leblanc.


Toxicology in Vitro | 2016

Multi-laboratory validation of SkinEthic HCE test method for testing serious eye damage/eye irritation using liquid chemicals.

Nathalie Alépée; V. Leblanc; Els Adriaens; Marie-Hélène Grandidier; D. Lelièvre; M. Meloni; L. Nardelli; Clive S. Roper; E. Santirocco; Frank Toner; A.R. Van Rompay; J. Vinall; José Cotovio

A prospective multicentric study of the reconstructed human corneal epithelial tissue-based in vitro test method (SkinEthic™ HCE) was conducted to evaluate its usefulness to identify chemicals as either not classified for serious eye damage/eye irritation (No Cat.) or as classified (Cat. 1/Cat. 2) within UN GHS. The aim of this study was to demonstrate the transferability and reproducibility of the SkinEthic™ HCE EITL protocol for liquids and define its predictive capacity. Briefly, 60 chemicals were three times tested (double blinded) in 3 laboratories and 45 additional chemicals were tested three times in one laboratory. Good within laboratory reproducibility was achieved of at least 88.3% (53/60) and 92.4% (97/105) for the extended data set. Furthermore, the overall concordance between the laboratories was 93.3% (56/60). The accuracy of the SkinEthic™ HCE EITL for the extended dataset, based on bootstrap resampling, was 84.4% (95% CI: 81.9% to 87.6%) with a sensitivity of 99.0% (95% CI: 96.4% to 100%) and specificity of 68.5% (95% CI: 64.0% to 74.0%), thereby meeting all acceptance criteria for predictive capacity. This efficient transferable and reproducible assay is a promising tool to be integrated within a battery of assays to perform an eye irritation risk assessment.


Toxicology in Vitro | 2016

Multi-laboratory evaluation of SkinEthic HCE test method for testing serious eye damage/eye irritation using solid chemicals and overall performance of the test method with regard to solid and liquid chemicals testing

Nathalie Alépée; Els Adriaens; Marie-Hélène Grandidier; M. Meloni; L. Nardelli; C.J. Vinall; Frank Toner; Clive S. Roper; A.R. Van Rompay; V. Leblanc; José Cotovio

A prospective multicentre study of the reconstructed human corneal epithelial tissue-based in vitro test method (SkinEthic™ HCE) was conducted to evaluate its usefulness to identify chemicals as either not classified for serious eye damage/eye irritation (No Cat.) or as classified (Cat. 1/Cat. 2) within UN GHS. The aim of this study was to demonstrate the transferability and reproducibility of the SkinEthic™ HCE EITS protocol for solids and define its predictive capacity. Briefly, 60 chemicals were three times tested (double blinded) in 3 laboratories and 35 additional chemicals were tested three times in one laboratory. Good within laboratory reproducibility was achieved of at least 95% (57/60) and 96.8% (92/95) for the extended data set. Furthermore, the overall concordance between the laboratories was 96.7% (58/60). The accuracy of the SkinEthic™ HCE EITS for the extended dataset, based on bootstrap resampling, was 81.0% (95% CI: 78.9% to 83.2%) with a sensitivity of 90.5% (95% CI: 88.1% to 92.9%) and specificity of 73.6% (95% CI: 71.7% to 75.5%). Overall, 200 chemicals were tested (105 liquids (EITL protocol) and 95 solids (EITS protocol)) resulting in a sensitivity of 95.2%, specificity of 72.1% and accuracy of 83.7%, thereby meeting all acceptance criteria for predictive capacity.


Toxicology in Vitro | 2017

CON4EI: SkinEthic™ Human Corneal Epithelium Eye Irritation Test (SkinEthic™ HCE EIT) for hazard identification and labelling of eye irritating chemicals

A.R. Van Rompay; Nathalie Alépée; L. Nardelli; Karen Hollanders; V. Leblanc; A. Drzewiecka; K. Gruszka; Robert Guest; Helena Kandarova; J.A. Willoughby; Sandra Verstraelen; Els Adriaens

Assessment of ocular irritancy is an international regulatory requirement and a necessary step in the safety evaluation of industrial and consumer products. Although a number of in vitro ocular irritation assays exist, none are capable of fully categorizing chemicals as a stand-alone assay. Therefore, the CEFIC-LRI-AIMT6-VITO CON4EI (CONsortium for in vitro Eye Irritation testing strategy) project was developed with the goal of assessing the reliability of eight in vitro/alternative test methods as well as establishing an optimal tiered-testing strategy. One of the in vitro assays selected was the validated SkinEthic™ Human Corneal Epithelium Eye Irritation Test method (SkinEthic™ HCE EIT). The SkinEthic™ HCE EIT has already demonstrated its capacity to correctly identify chemicals (both substances and mixtures) not requiring classification and labelling for eye irritation or serious eye damage (No Category). The goal of this study was to evaluate the performance of the SkinEthic™ HCE EIT test method in terms of the important in vivo drivers of classification. For the performance with respect to the drivers all in vivo Cat 1 and No Cat chemicals were 100% correctly identified. For Cat 2 chemicals the liquids and the solids had a sensitivity of 100% and 85.7%, respectively. For the SkinEthic™ HCE EIT test method, 100% concordance in predictions (No Cat versus No prediction can be made) between the two participating laboratories was obtained. The accuracy of the SkinEthic™ HCE EIT was 97.5% with 100% sensitivity and 96.9% specificity. The SkinEthic™ HCE EIT confirms its excellent results of the validation studies.


Toxicology in Vitro | 2019

SkinEthic™ HCE Eye Irritation Test: Similar performance demonstrated after long distance shipment and extended storage conditions

V. Leblanc; Mariko Yokota; Marie-Hélène Grandidier; Daisuke Yoshida; Els Adriaens; José Cotovio; Daiki Kyoutani; Nathalie Alépée


Toxicology Letters | 2017

Serious eye damage/eye irritation assessment: Reliable and relevant implementation of SkinEthic™ HCE reconstructed human corneal method in Asia Pacific region

V. Leblanc; Mariko Yokota; Marie Hélène Grandidier; Yuki Sato; Daisuke Yoshida; Daiki Kyoutani; José Cotovio; Nathalie Alépée


Toxicology Letters | 2017

Applicability domain characterization of the SkinEthic™ HCE corneal method and performance signature by ingredient classes for eye serious damage/irritation

Nathalie Alépée; V. Leblanc; Marie Hélène Grandidier; L. Nardelli; José Cotovio


Toxicology Letters | 2017

CON4EI: SkinEthic Human Corneal Epithelial Eye irritation Test (SkinEthic HCE EIT) for hazard identification and labelling of eye irritating chemicals

Nathalie Alépée; L. Nardelli; Sandra Verstraelen; Karen Hollanders; V. Leblanc; P. Fochtman; Robert Guest; Helena Kandarova; J.A. Willoughby; Els Adriaens; An R. Van Rompay


Toxicology Letters | 2016

SkinEthic™ HCE eye irritation test method on solid and liquid chemicals: Reliability, relevance and contribution to serious eye damage/eye irritation global assessment

V. Leblanc; Els Adriaens; Marie-Hélène Grandidier; Karen Hollanders; A. Jacobs; M. Meloni; L. Nardelli; Clive S. Roper; A.R. Van Rompay; Joanne Vinall; José Cotovio; Nathalie Alépée


Toxicology Letters | 2016

Eye irritation assessment for strong colorants: SkinEthic™ HCE reconstructed human corneal test method, the reliable solution

Marie-Hélène Grandidier; L. Nardelli; M. Talleur; José Cotovio; V. Leblanc; Nathalie Alépée


Toxicology Letters | 2016

Predictive capacity of SkinEthic™ HCE reconstructed human corneal test method analysis based on UN GHS classification drivers

Nathalie Alépée; V. Leblanc; Els Adriaens; Marie-Hélène Grandidier; L. Nardelli; José Cotovio

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A.R. Van Rompay

Flemish Institute for Technological Research

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Karen Hollanders

Flemish Institute for Technological Research

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Clive S. Roper

Charles River Laboratories

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Frank Toner

Charles River Laboratories

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Sandra Verstraelen

Flemish Institute for Technological Research

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