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1.
Toxicol In Vitro ; 71: 105069, 2021 Mar.
Article in English | MEDLINE | ID: mdl-33309870

ABSTRACT

Three-dimensional skin models, also named 3D skin models, human skin equivalents (HSEs), or Human Epidermal Equivalents (HEEs), have been increasingly used for chemical assessments in terms of efficacy and safety. Considering this, we developed an HEE model using immortalized HaCaT cells, aiming to overcome the limitation of primary tissue source. Our 3D model (HaCaT-HEE) exhibited important markers of cell differentiation (CK10, CK14, involucrin, and filaggrin), although the stratum corneum was shown to be modest. Besides, the model showed a good prediction potential considering membrane permeability, sensitivity, specificity, and accuracy in distinguishing irritant and corrosive effects after exposure to selected chemicals recommended by the OECD protocols. We also validated the formazan determination for the MTT method using High-Performance Liquid Chromatography (HPLC). For that, we considered carry over, linearity, reproducibility/robustness, accuracy, precision, selectivity, and matrix effect, according to the Food and Drug Administration (FDA) guideline. Based on our results, we can conclude that our model has an acceptable predictive value for the safety evaluation of compounds after skin exposure, with the great advantage of being constructed using immortalized cells.


Subject(s)
Caustics/toxicity , Irritants/toxicity , Keratinocytes/drug effects , Skin Irritancy Tests/methods , Animal Testing Alternatives , Cell Line , Cell Membrane Permeability/drug effects , Epidermis , Filaggrin Proteins , Humans
2.
Chem Biol Interact ; 330: 109227, 2020 Oct 01.
Article in English | MEDLINE | ID: mdl-32818478

ABSTRACT

The use of 3D models in various scientific applications is becoming more popular to replace traditional monolayers models. In this work, we used a three-dimensional in-house model of epidermis using HaCaT immortalized cells to evaluate the dermal toxicity induced by Basic Blue 99 and Basic Red 51, both present in commercial hair dye formulations. Our data show that cells cultured in the 3D model respond differently to those cultured in monolayer. Basic Red 51 dye induces apoptosis an DNA breaks in both models, however, these effects is more pronounced in cells cultured in monolayer. The toxic mode of action of Basic Blue 99 seems to be the induction of cell death, without genotoxic effects, but while the necrotic pathway is observed in HaCaT monolayer cell culture, was apoptosis seen in the Equivalent Human Epidermis (EHE) model. We could also confirm that cells in EHE model, an environment that could better mimic human effects, react differently to chemical stressors than the cells cultivated in 2D.


Subject(s)
Cell Culture Techniques/methods , Epidermis/drug effects , Hair Dyes/toxicity , Apoptosis/drug effects , Azo Compounds/toxicity , Cell Culture Techniques/standards , Cell Line , DNA Damage/drug effects , Hair Dyes/analysis , Humans , Naphthoquinones/toxicity , Necrosis/chemically induced , Quaternary Ammonium Compounds/toxicity
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