表皮(动物学)
糖尿病
皮肤当量
细胞
人体皮肤
医学
病理
体外
生物医学工程
生物
解剖
角质形成细胞
内分泌学
遗传学
生物化学
作者
Byoung Soo Kim,Minjun Ahn,Won-Woo Cho,Ge Gao,Jinah Jang,Dong‐Woo Cho
出处
期刊:Biomaterials
[Elsevier]
日期:2021-05-01
卷期号:272: 120776-120776
被引量:61
标识
DOI:10.1016/j.biomaterials.2021.120776
摘要
Despite many significant advances in 3D cell printing for skin, a disease model displaying the pathological processes present in the native skin has not been reported yet. Therefore, we were motivated for modeling a 3D diseased skin tissue with pathophysiological hallmarks of type 2 diabetes in vitro based on 3D cell printing technique. By stimulating epidermal-dermal intercellular crosstalk found in the native skin, it was hypothesized that normal keratinocytes would be differentiated as diabetic epidermis when interacting with the diabetic dermal compartment. To prove this, a novel wounded skin model was successfully devised during tissue maturation in vitro. Interestingly, the slow re-epithelization was observed in our diabetic model, which is a representative hallmark of diabetic skin. Using the versatility of 3D cell printing, the structural similarities and diabetic properties of the model were further augmented by addition of perfusable vascularized diabetic hypodermis. Insulin resistance, adipocyte hypertrophy, inflammatory reactions, and vascular dysfunction, as the typical hallmarks in diabetes, were found under hyperglycemia. Finally, the feasibility of this new disease model for drug development was successfully demonstrated through application of test drugs. We trust that this study provides a pioneering step towards 3D cell printing-based in vitro skin disease modeling.
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