去细胞化
细胞外基质
材料科学
支架
生物医学工程
食管炎
脚手架
食管
治疗效果
食管支架
放射治疗
医学
外科
病理
细胞生物学
生物
疾病
回流
作者
Dong-Heon Ha,Suhun Chae,Jae Yeon Lee,Jae Yun Kim,Jungbin Yoon,Tugce Sen,Sung-Woo Lee,Hak Jae Kim,Jaeho Cho,Dong‐Woo Cho
出处
期刊:Biomaterials
[Elsevier]
日期:2020-10-19
卷期号:266: 120477-120477
被引量:63
标识
DOI:10.1016/j.biomaterials.2020.120477
摘要
Radiation esophagitis, the most common acute adverse effect of radiation therapy, leads to unwanted consequences including discomfort, pain, an even death. However, no direct cure exists for patients suffering from this condition, with the harmful effect of ingestion and acid reflux on the damaged esophageal mucosa remaining an unresolved problem. Through the delivery of the hydrogel with stent platform, we aimed to evaluate the regenerative capacity of a tissue-specific decellularized extracellular matrix (dECM) hydrogel on damaged tissues. For this, an esophagus-derived dECM (EdECM) was developed and shown to have superior biofunctionality and rheological properties, as well as physical stability, potentially providing a better microenvironment for tissue development. An EdECM hydrogel-loaded stent was sequentially fabricated using a rotating rod combined 3D printing system that showed structural stability and protected a loaded hydrogel during delivery. Finally, following stent implantation, the therapeutic effect of EdECM was examined in a radiation esophagitis rat model. Our findings demonstrate that EdECM hydrogel delivery via a stent platform can rapidly resolve an inflammatory response, thus promoting a pro-regenerative microenvironment. The results suggest a promising therapeutic strategy for the treatment of radiation esophagitis.
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