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Reconstructed skin models as emerging tools for drug absorption studies
Sarah Küchler1, Kay Strüver, Wolfgang Friess
1Institute for Pharmacy, Pharmacology and Toxicology, Freie Universität , Königin-Luise-Str. 2-4, 14195, Berlin , Germany +49 30 838 55065 ; +49 30 838 53944 ; sarah.kuechler@fu-berlin.de.
Introduction:
As humans can come into contact with xenobiotics intentionally or accidentally, knowledge about the skin absorption of these substances is crucial and requires reliable models and test procedures. Animal experiments should be avoided whenever possible, instead of making the use of in vitro systems. Furthermore, due to limited availability of normal and especially diseased human skin, alternative test systems such as reconstructed skin models are urgently required.
Areas Covered:
This article discusses the advantages and limitations of excised human skin, animal skin and reconstructed skin models for absorption testing in vitro. Furthermore, the authors also describe the standard procedure for skin absorption testing and give an excursion to the applicability of artificial membranes. Finally, the article highlights the progress in the development of reconstructed disease models and provides an extensive overview about past and ongoing research in this field.
Expert Opinion:
The development and validation of in vitro systems for skin absorption testing is inevitable. More research efforts are required for the development of reconstructed disease models. Reconstructed skin models need to be improved, especially in terms of complexity to mimic the in vivo situation better. It should not, however, be the main goal to imitate the in vivo situation exactly, but to establish reliable systems that ensure predictive and reliable data.
Insights
Developing reliable in vitro skin absorption models is essential to replace animal testing. Further research into reconstructed skin, especially for disease modeling, is crucial for accurate xenobiotic absorption data.
Area of Science:
- Dermatology
- Toxicology
- Biotechnology
Background:
- Understanding xenobiotic skin absorption is vital for human safety.
- In vitro testing systems are preferred over animal experiments.
- Limited availability of human skin necessitates alternative models, like reconstructed skin.
Purpose of the Study:
- To review in vitro models for skin absorption testing.
- To discuss the utility of excised human skin, animal skin, and reconstructed skin models.
- To explore advancements in reconstructed disease models for skin absorption.
Main Methods:
- Comparative analysis of excised human skin, animal skin, and reconstructed skin models.
- Description of standard in vitro skin absorption testing procedures.
- Evaluation of artificial membranes and reconstructed disease models.
Main Results:
- Excised human and animal skin have limitations for absorption testing.
- Reconstructed skin models offer a promising alternative, but require further development.
- Progress has been made in creating reconstructed disease models.
Conclusions:
- Validation of in vitro systems for skin absorption testing is imperative.
- Enhanced complexity in reconstructed skin models is needed for better in vivo mimicry.
- The focus should be on establishing reliable and predictive data, not exact in vivo replication.
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