自愈水凝胶
明胶
材料科学
表皮(动物学)
细胞外基质
角质形成细胞
组织工程
生物医学工程
粘附
再生(生物学)
化学
生物物理学
伤口愈合
复合材料
高分子化学
体外
细胞生物学
解剖
外科
生物化学
生物
医学
作者
Xin Zhao,Qi Lang,Lara Yildirimer,Zhi Yuan Lin,Wenguo Cui,Nasim Annabi,Kee Woei Ng,Mehmet R. Dokmeci,Amir M. Ghaemmaghami,Ali Khademhosseini
标识
DOI:10.1002/adhm.201500005
摘要
Natural hydrogels are promising scaffolds to engineer epidermis. Currently, natural hydrogels used to support epidermal regeneration are mainly collagen‐ or gelatin‐based, which mimic the natural dermal extracellular matrix but often suffer from insufficient and uncontrollable mechanical and degradation properties. In this study, a photocrosslinkable gelatin (i.e., gelatin methacrylamide (GelMA)) with tunable mechanical, degradation, and biological properties is used to engineer the epidermis for skin tissue engineering applications. The results reveal that the mechanical and degradation properties of the developed hydrogels can be readily modified by varying the hydrogel concentration, with elastic and compressive moduli tuned from a few kPa to a few hundred kPa, and the degradation times varied from a few days to several months. Additionally, hydrogels of all concentrations displayed excellent cell viability (>90%) with increasing cell adhesion and proliferation corresponding to increases in hydrogel concentrations. Furthermore, the hydrogels are found to support keratinocyte growth, differentiation, and stratification into a reconstructed multilayered epidermis with adequate barrier functions. The robust and tunable properties of GelMA hydrogels suggest that the keratinocyte laden hydrogels can be used as epidermal substitutes, wound dressings, or substrates to construct various in vitro skin models.
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