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Advances in research on biomaterials and stem cell/exosome-based strategies in the treatment of traumatic brain injury
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作者 Wenya Chi Yingying He +8 位作者 Shuisheng Chen lingyi guo Yan Yuan Rongjie Li Ruiyao Liu Dairan Zhou Jianzhong Du Tao Xu Yuan Yu 《Acta Pharmaceutica Sinica B》 2025年第7期3511-3544,共34页
Traumatic brain injury(TBI)is intricately linked to the most severe clinical manifestations of brain damage.It encompasses dynamic pathological mechanisms,including hemodynamic disorders,excitotoxic injury,oxidative s... Traumatic brain injury(TBI)is intricately linked to the most severe clinical manifestations of brain damage.It encompasses dynamic pathological mechanisms,including hemodynamic disorders,excitotoxic injury,oxidative stress,mitochondrial dysfunction,inflammation,and neuronal death.This review provides a comprehensive analysis and summary of biomaterial-based tissue engineering scaffolds and nano-drug delivery systems.As an example of functionalized biomaterials,nano-drug delivery systems alter the pharmacokinetic properties of drugs.They provide multiple targeting strategies relying on factors such as morphology and scale,magnetic fields,pH,photosensitivity,and enzymes to facilitate the transport of therapeutics across the blood–brain barrier and to promote selective accumulation at the injury site.Furthermore,therapeutic agents can be incorporated into bioscaffolds to interact with the biochemical and biophysical environment of the brain.Bioscaffolds can mimic the extracellular matrix environment,regulate cellular interactions,and increase the effectiveness of local treatments following surgical interventions.Additionally,stem cell-based and exosome-dominated extracellular vesicle carriers exhibit high bioreactivity and low immunogenicity and can be used to design therapeutic agents with high bioactivity.This review also examines the utilization of endogenous bioactive materials in the treatment of TBI. 展开更多
关键词 Traumatic brain injury Biomaterial Extracellular matrix Nano-drugdelivery system Stem cell EXOSOME Bioscaffold REGENERATION
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质子交换膜燃料电池中微纳输运过程的数值研究进展 被引量:4
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作者 刘丽娜 张瑞元 +6 位作者 郭凌燚 袁义 白帆 何璞 母玉同 陈黎 陶文铨 《科学通报》 EI CAS CSCD 北大核心 2022年第19期2258-2276,共19页
质子交换膜燃料电池是氢能利用的典型装置.在燃料电池的多尺度空间内发生着复杂的相变多相流、传热传质、电子质子传导、电化学反应等物理化学过程.上述过程对电池的性能、寿命及成本影响显著.近年来,随着先进实验手段、数值方法和计算... 质子交换膜燃料电池是氢能利用的典型装置.在燃料电池的多尺度空间内发生着复杂的相变多相流、传热传质、电子质子传导、电化学反应等物理化学过程.上述过程对电池的性能、寿命及成本影响显著.近年来,随着先进实验手段、数值方法和计算资源的不断发展,研究者基于微纳米尺度研究燃料电池中发生的复杂多场耦合输运过程,不断发现新的微纳输运过程特征及耦合机制.本文回顾了近年来针对燃料电池关键组件(包括催化层、气体扩散层和气体通道)中发生的多场耦合输运过程的微纳尺度数值仿真工作.针对催化层,主要介绍了孔尺度数值仿真在预测有效传输系数、揭示传质阻力机理、查明微纳结构对反应输运过程影响方面的进展.针对扩散层,重点介绍了孔尺度仿真在研究扩散层气液两相流动及查明结构和润湿特性对液态水运动和分布影响的工作,还讨论了气体扩散层薄层多孔介质输运特性及典型代表单元是否成立.针对气体通道,着重介绍了通道中液态水运动及其对传质反应的影响.此外,还讨论了各组件跨尺度界面行为特性.最后,对采用微纳尺度数值方法研究燃料电池内多场耦合输运过程进行了总结和展望. 展开更多
关键词 质子交换膜燃料电池 催化层 气体扩散层 气体通道 微纳输运过程
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