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Dual-bionic regenerative microenvironment for peripheral nerve repair 被引量:1
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作者 yanjun guan Zhiqi Ren +19 位作者 Boyao Yang Wenjing Xu Wenjun Wu Xiangling Li Tieyuan Zhang Dongdong Li Shengfeng Chen Jun Bai Xiangyu Song Zhibo Jia Xing Xiong Songlin He Chaochao Li Fanqi Meng Tong Wu Jian Zhang Xiuzhi Liu Haoye Meng Jiang Peng Yu Wang 《Bioactive Materials》 SCIE CSCD 2023年第8期370-386,共17页
Autologous nerve grafting serves is considered the gold standard treatment for peripheral nerve defects;however,limited availability and donor area destruction restrict its widespread clinical application.Although the... Autologous nerve grafting serves is considered the gold standard treatment for peripheral nerve defects;however,limited availability and donor area destruction restrict its widespread clinical application.Although the performance of allogeneic decellularized nerve implants has been explored,challenges such as insufficient human donors have been a major drawback to its clinical use.Tissue-engineered neural regeneration materials have been developed over the years,and researchers have explored strategies to mimic the peripheral neural microenvironment during the design of nerve catheter grafts,namely the extracellular matrix(ECM),which includes mechanical,physical,and biochemical signals that support nerve regeneration.In this study,polycaprolactone/silk fibroin(PCL/SF)-aligned electrospun material was modified with ECM derived from human umbilical cord mesenchymal stem cells(hUMSCs),and a dual-bionic nerve regeneration material was successfully fabricated.The results indicated that the developed biomimetic material had excellent biological properties,providing sufficient anchorage for Schwann cells and subsequent axon regeneration and angiogenesis processes.Moreover,the dual-bionic material exerted a similar effect to that of autologous nerve transplantation in bridging peripheral nerve defects in rats.In conclusion,this study provides a new concept for designing neural regeneration materials,and the prepared dual-bionic repair materials have excellent auxiliary regenerative ability and further preclinical testing is warranted to evaluate its clinical application potential. 展开更多
关键词 ELECTROSPUN Umbilical cord mesenchymal stem cells Extracellular matrix Peripheral nerve regeneration Tissue engineering
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超越传统光伏:弱光环境下可印刷介观钙钛矿太阳能电池光电特性 被引量:2
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作者 李达 管焱俊 +7 位作者 李代宇 褚衍盟 邹阳 万宇坤 梅安意 荣耀光 胡玥 韩宏伟 《科学通报》 EI CAS CSCD 北大核心 2020年第36期4272-4280,共9页
钙钛矿太阳能电池(perovskite solar cell,PSC)近年来发展十分迅速,被认为是下一代光伏技术中最有前景的候选者之一.其中,基于三层介孔膜结构的可印刷介观PSC以其廉价的原材料、简单的制备工艺以及良好的器件稳定性获得了广泛关注.本文... 钙钛矿太阳能电池(perovskite solar cell,PSC)近年来发展十分迅速,被认为是下一代光伏技术中最有前景的候选者之一.其中,基于三层介孔膜结构的可印刷介观PSC以其廉价的原材料、简单的制备工艺以及良好的器件稳定性获得了广泛关注.本文测试了可印刷介观PSC小型模组(10 cm×10 cm)在不同光照强度条件下的光电性能,并与商用的单晶硅(crystalline silicon,c-Si)、多晶硅(polycrystalline silicon,poly-Si)和碲化镉(CdTe)太阳能电池进行了对比.结果表明,随着光照强度的降低,c-Si、poly-Si、CdTe太阳能电池的光电转换效率(power conversion efficiency,PCE)均出现了不同程度的下降,而可印刷介观PSC的PCE几乎呈线性增加.当光照强度低于0.3个标准太阳光(30 mW cm^(–2))时,可印刷介观PSC已经开始展现出一定的光电转换效率优势;当光照强度进一步降低至标准室内弱光条件(1000 lux,约0.3 mW cm^(–2))时,其PCE可达19.83%,高于其他商用太阳能电池.PSC在弱光环境下展现出的优异性能为进一步扩展其在室内等场景的应用奠定了良好基础,这些潜在的新兴应用领域为PSC的商业化和大规模生产提供了多种应用空间. 展开更多
关键词 钙钛矿太阳能电池 弱光 室内环境 光电转换
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