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A partition-type tubular scaffold loaded with PDGF-releasing microspheres for spinal cord repair facilitates the directional migration and growth of cells 被引量:1
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作者 Xue Chen Mei-Ling Xu +7 位作者 Cheng-Niu Wang Lu-Zhong Zhang Ya-Hong Zhao Chang-Lai Zhu Ying Chen Jian Wu Yu-Min Yang Xiao-Dong Wang 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第7期1231-1240,共10页
The best tissue-engineered spinal cord grafts not only match the structural characteristics of the spinal cord but also allow the seed cells to grow and function in situ.Platelet-derived growth factor(PDGF) has been... The best tissue-engineered spinal cord grafts not only match the structural characteristics of the spinal cord but also allow the seed cells to grow and function in situ.Platelet-derived growth factor(PDGF) has been shown to promote the migration of bone marrow stromal cells;however,cytokines need to be released at a steady rate to maintain a stable concentration in vivo.Therefore,new methods are needed to maintain an optimal concentration of cytokines over an extended period of time to effectively promote seed cell localization,proliferation and differentiation.In the present study,a partition-type tubular scaffold matching the anatomical features of the thoracic 8–10 spinal cord of the rat was fabricated using chitosan and then subsequently loaded with chitosan-encapsulated PDGF-BB microspheres(PDGF-MSs).The PDGF-MS-containing scaffold was then examined in vitro for sustained-release capacity,biocompatibility,and its effect on neural progenitor cells differentiated in vitro from multilineage-differentiating stress-enduring cells(MUSE-NPCs).We found that pre-freezing for 2 hours at-20°C significantly increased the yield of partition-type tubular scaffolds,and 30 μL of 25% glutaraldehyde ensured optimal crosslinking of PDGF-MSs.The resulting PDGF-MSs cumulatively released 52% of the PDGF-BB at 4 weeks in vitro without burst release.The PDGF-MS-containing tubular scaffold showed suitable biocompatibility towards MUSE-NPCs and could promote the directional migration and growth of these cells.These findings indicate that the combination of a partition-type tubular scaffold,PDGF-MSs and MUSENPCs may be a promising model for the fabrication of tissue-engineered spinal cord grafts. 展开更多
关键词 nerve regeneration partition-type tubular scaffold microspheres platelet-derived growth factor muse cells neural precursor cells chitosan encapsulation efficiency bone marrow spinal cord injury tissue engineering neural regeneration
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屏风式辐射供暖末端热舒适性及节能性分析 被引量:1
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作者 李念平 颜金波 +3 位作者 何颖东 周淋萱 谭畅 李甲 《安全与环境学报》 CAS CSCD 北大核心 2018年第5期1982-1988,共7页
为了研究工位屏风式辐射供暖末端的舒适性及节能性,通过问卷调查的方式收集了20位受试者在不同室内环境空气温度(14℃、16℃和18℃)、不同板面温度(50℃和60℃)下的主观反应(热感觉、热舒适、热可接受度和热期望),并进行了对比分... 为了研究工位屏风式辐射供暖末端的舒适性及节能性,通过问卷调查的方式收集了20位受试者在不同室内环境空气温度(14℃、16℃和18℃)、不同板面温度(50℃和60℃)下的主观反应(热感觉、热舒适、热可接受度和热期望),并进行了对比分析。结果表明,室内环境空气温度为16℃且屏风式辐射末端板面温度为60℃时,受试者平均热感觉达到热中性,且仍满足ASHRAE规范中80%可接受范围的要求。另外,受试者在使用辐射供暖末端后,热可接受度也得到了明显提升,同时降低了对温暖环境的期望。同时利用Energy Plus对长沙某办公建筑房间的全年供暖能耗进行了模拟,结果表明,与室内空调温度设为20℃的情况相比,室内环境空气温度为16℃且板面温度60℃的试验条件,既能保证人体热舒适,还能降低25%以上的供暖能耗。 展开更多
关键词 环境工程学 屏风式辐射末端 节能 热感觉 热舒适 供暖
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