Three-dimensional Skin Equivalent

A three-dimensional skin equivalent is a laboratory-engineered tissue model that reproduces key structural and functional features of human skin for research and testing. Bioengineers typically combine keratinocytes, fibroblasts, and a biomaterial scaffold, then culture the construct under conditions that promote dermal matrix formation and epidermal stratification, often at an air-liquid interface. These models support studies of skin development, wound healing, barrier function, disease mechanisms, and responses to drugs or cosmetics. By providing a controlled alternative to animal or two-dimensional cell models, three-dimensional skin equivalents help researchers evaluate tissue behavior and refine strategies for regenerative medicine and personalized skin engineering.

Three-dimensional Skin Equivalent - Related Videos

Research

JoVE Journal - Bioengineering

Generation of a Three-dimensional Full Thickness Skin Equivalent and Automated Wounding

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Cited by 53 •

2015

The goal of this protocol is to build up a three-dimensional full thickness skin equivalent, which resembles natural skin. With a specifically constructed automated wounding device, precise and reproducible wounds can be generated under maintenance of sterility.

Research

JoVE Journal - Bioengineering
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Generation of Self-assembled Vascularized Human Skin Equivalents

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Cited by 11 •

2021

The goal of this protocol is to describe the generation and volumetric analysis of vascularized human skin equivalents using accessible and simple techniques for long term culture. To the extent possible, the rationale for steps is described to allow researchers the ability to customize based on their research needs.

Three-dimensional Inflammatory Human Tissue Equivalents of Gingiva

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Cited by 14 •

2018

The goal of the protocol is to build an inflammatory human gingiva model in vitro. This tissue model co-cultivates three types of human cells, HaCaT keratinocytes, gingival fibroblasts, and THP-1 macrophages, under three-dimensional conditions. This model can be applied to investigating periodontal diseases, such as gingivitis and periodontitis.

Three-dimensional Imaging of Nociceptive Intraepidermal Nerve Fibers in Human Skin Biopsies

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Cited by 5 •

2013

In order to study the changes of nociceptive intraepidermal nerve fibers (IENFs) in painful neuropathies (PN), we developed protocols that could directly examine three-dimensional morphological changes observed in nociceptive IENFs. Three-dimensional analysis of IENFs has the potential to evaluate the morphological changes of IENF in PN.

The Three-Dimensional Human Skin Reconstruct Model: a Tool to Study Normal Skin and Melanoma Progression

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Cited by 111 •

2011

In this report, we describe the three-dimensional skin reconstruct model which mimics human skin in architecture and composition. Melanocyte physiology, melanoma progression and the fate of dermal stem cells have been investigated using the skin reconstruct model. The model is also useful as a preclinical tool for drug assessment.

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