In vitro 3D Full‐Thickness Skin‐Equivalent Tissue Model Using Silk and Collagen Biomaterials
Evangelia Bellas, Miri Seiberg, Jonathan A. Garlick, David L. Kaplan
Abstract
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Evangelia Bellas, Miri Seiberg, Jonathan A. Garlick, David L. Kaplan
Abstract
Open-access reader
Current approaches to skin equivalents often only include the epidermis and dermis. Here, a full-thickness skin equivalent is described including epidermis, dermis, and hypodermis, that could serve as an in vitro model for studying skin biology or as a platform for consumer product testing. The construct is easy to handle and is maintained for >14 d while expressing physiological morphologies of the epidermis and dermis, seen by keratin 10, collagens I and IV expression. The skin equivalent produces glycerol and leptin, markers of adipose metabolism. This work serves as a foundation for understanding a few necessary factors needed to develop a stable, functional model of full-thickness skin.
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Current approaches to skin equivalents often only include the epidermis and dermis. Here, a full-thickness skin equivalent is described including epidermis, dermis, and hypodermis, that could serve as an in vitro model for studying skin biology or as a platform for consumer product testing. The construct is easy to handle and is maintained for >14 d while expressing physiological morphologies of the epidermis and dermis, seen by keratin 10, collagens I and IV expression. The skin equivalent produces glycerol and leptin, markers of adipose metabolism. This work serves as a foundation for understanding a few necessary factors needed to develop a stable, functional model of full-thickness skin.
Key concepts: Dermis, Skin equivalent, Epidermis (zoology), SILK, In vitro, Keratin, Adipose tissue, Chemistry