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Protein-spatiotemporal partition releasing gradient porous scaffolds and anti-inflammatory and antioxidant regulation remodel tissue engineered anisotropic meniscus
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作者 Bingbing Xu Jing Ye +7 位作者 bao-shi fan Xinjie Wang Ji-Ying Zhang shitang Song Yifan Song Wen-Bo Jiang Xing Wang Jia-Kuo Yu 《Bioactive Materials》 SCIE CSCD 2023年第2期194-207,共14页
Meniscus is a wedge-shaped fibrocartilaginous tissue,playing important roles in maintaining joint stability and function.Meniscus injuries are difficult to heal and frequently progress into structural breakdown,which ... Meniscus is a wedge-shaped fibrocartilaginous tissue,playing important roles in maintaining joint stability and function.Meniscus injuries are difficult to heal and frequently progress into structural breakdown,which then leads to osteoarthritis.Regeneration of heterogeneous tissue engineering meniscus(TEM)continues to be a scientific and translational challenge.The morphology,tissue architecture,mechanical strength,and functional applications of the cultivated TEMs have not been able to meet clinical needs,which may due to the negligent attention on the importance of microenvironment in vitro and in vivo.Herein,we combined the 3D(three-dimensional)-printed gradient porous scaffolds,spatiotemporal partition release of growth factors,and anti-inflammatory and anti-oxidant microenvironment regulation of Ac2-26 peptide to prepare a versatile meniscus composite scaffold with heterogeneous bionic structures,excellent biomechanical properties and anti-inflammatory and anti-oxidant effects.By observing the results of cell activity and differentiation,and biomechanics under anti-inflammatory and anti-oxidant microenvironments in vitro,we explored the effects of anti-inflammatory and anti-oxidant microenvironments on construction of regional and functional heterogeneous TEM via the growth process regulation,with a view to cultivating a high-quality of TEM from bench to bedside. 展开更多
关键词 Tissue engineering meniscus Gradient porous scaffolds Spatiotemporal partition release Ac2-26 peptide Anti-inflammatory and anti-oxidant regulation
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空气源热泵生物质锅炉联合供热系统应用性能模拟
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作者 尚少文 包诗钰 +1 位作者 李艺泽 程思凡 《建筑技术》 2024年第20期2466-2470,共5页
为研究我国北方农村地区利用可再生能源生物质能与空气源热泵相结合的供热系统的实际应用性能,以沈阳市农村某小区建筑为案例,采用TRNSYS动态系统搭建空气源热泵与生物质锅炉联合供热系统仿真模型进行模拟研究。该系统通过时间模块调控... 为研究我国北方农村地区利用可再生能源生物质能与空气源热泵相结合的供热系统的实际应用性能,以沈阳市农村某小区建筑为案例,采用TRNSYS动态系统搭建空气源热泵与生物质锅炉联合供热系统仿真模型进行模拟研究。该系统通过时间模块调控采取两种控制策略,与单一的空气源热泵供热系统进行对比,并对这3种模式的系统运行特性进行分析比较。联合供热系统模式1整个采暖季平均耗电量较单一空气源热泵供热系统降低56%;平均制热性能系数提高0.19;可再生能源利用率和一次能源利用率分别增幅25.21%和63%,当供水温度45℃、生物质锅炉供热占比60%时总投资费用相对较低,空气源热泵与生物质锅炉联合供热系统运行更高效节能。 展开更多
关键词 联合供热 生物质锅炉 空气源热泵 TRNSYS仿真 可再生能源
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