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| 1 | Efficacy and safety of benralizumab in patients with eosinophilic asthma: a meta-analysis of randomized placebo-controlled trials显示文摘 | Ting Liu Faping Wang Geng Wang Hui Mao | 2018 | Frontiers of Medicine2018,12,3: | 2 |
| 2 | A polyethylene microsphere-coated separator with rapid thermal shutdown function for lithium-ion batteries显示文摘Thermal runaway is the main factor contributing to the unsafe behaviors of lithium-ion batteries(LIBs)in practical applications.The application of separators for the thermal shutdown has been proven as an effective approach to protecting LIBs from thermal runaway.In this work,we developed a thermal shutdown separator by coating a thin layer of low-density polyethylene microspheres(PM)onto a commercial porous polypropylene(PP)membrane and investigated the thermal response behaviors of the as-prepared PM/PP separator in LIBs.The structural and thermal analysis results revealed that the coated PM layer had a porous structure,which facilitated the occurrence of normal charge-discharge reactions at ambient temperature,although it could melt completely and fuse together within very short time periods:3 s at 110℃and 1 s at 120℃,to block off the pores of the PP substrate,thereby cutting off the ion transportation between the electrodes and interrupting the battery reaction.Consequently,the PM/PP separator exhibits very similar electrochemical performance to that of a conventional separator at ambient temperature.However,it performs a rapid thermal shutdown at an elevated temperature of^110℃,thus controlling the temperature rise and maintaining the cell in a safe status.Due to its synthetic simplicity and low cost,this separator shows promise for possible application in building safe LIBs. | Chongrong Zhang Hui Li Shixuan Wang Yuliang Cao Hanxi Yang Xinping Ai Faping Zhong | 2020 | Journal of Energy Chemistry2020,29,5: | 2 |
| 3 | Antioxidative and immunoprotective effects of Pyracantha fortuneana (Maxim.) Li polysaccharides in mice显示文摘 | Chengfu Yuan Changdong Wang Youquan Bu Tingxiu Xiang Xiuning Huang Zhiwei Wang Faping Yi Guosheng Ren Geli Liu Fangzhou Song | 2010 | Immunology Letters2010,,1: | 1 |
| 4 | Antioxidative and immunoprotective effects of Pyracantha fortuneana (Maxim.) Li polysaccharides in mice显示文摘 | Chengfu Yuan Changdong Wang Youquan Bu Tingxiu Xiang Xiuning Huang Zhiwei Wang Faping Yi Guosheng Ren Geli Liu Fangzhou Song | 2010 | Immunology Letters2010,,1: | 1 |
| 5 | Transcriptional factor RUNX1:A potential therapeutic target for fibrotic pulmonary disease显示文摘Runt-related transcription factor-1(RUNX1),also known as the core-binding factor alpha 2 subunit,is closely related to human leukemia.The functions of RUNX1 in modulating cell proliferation,differentiation,and survival in multiple systems have been gradually discovered with the emergence of transgenic mice.RUNX1 is a powerful transcription factor implicated in diverse signaling pathways and cellular mechanisms that participate in lung development and pulmonary diseases.RUNX1 has recently been identified as a target regulator of fibrotic remodeling diseases,particularly in the kidney.However,the role of RUNX1 in pulmonary fibrosis is unclear.Pulmonary fibrosis is characterized by obscure nosogenesis,limited therapy,and poor prognosis.Moreover,the population of patients with pulmonary fibrosis is gradually increasing.Thus,there is an unmet need for therapeutic targets.In this review,we retrospectively discuss the alteration in RUNX1 mRNA expression in the RNA sequencing data of human fibrotic lungs and the protein levels in mouse pulmonary fibrosis.Subsequently,we focused on the interaction between RUNX1 and several signaling pathways involved in pulmonary fibrosis.Finally,this review highlights the therapeutic potential of RUNX1 as a target for slowing the progression of fibrotic lung disease. | JIA LIU FAPING WANG BO YUAN FENGMING LUO | 2023 | BIOCELL2023,47,4: | 0 |
| 6 | Boosting rate and cycling performance of K-doped Na_(3)V_(2)(PO_(4))_(2)F_(3) cathode for high-energy-density sodium-ion batteries显示文摘As a promising cathode material,Na_(3)V_(2)(PO_(4))_(2)F_(3)(NVPF)has attracted wide attention for sodium-ion batteries(SIBs)because of its high operating voltage and high structural stability.However,the low intrinsic electronic conductivity and insufficient Na ion mobility of NVPF limit its development.Herein,K-doping NVPF is prepared through a facile ball-milling combined calcination method.The effects of K-doping on the crystal structure,kinetic properties and electrochemical performance are investigated.The results demonstrate that the Na_(2.90)K_(0.10)V_(2)(PO_(4))_(3)F_(3)(K0.10-NVPF)exhibits a high capacity(120.8 mAh g^(-1) at 0.1 C),high rate capability(66 mAh g^(-1) at 30 C)and excellent cycling performance(a capacity retention of 97.5%at 1 C over 500 cycles).Also,the occupation site of K ions in the lattice,electronic band structure and Na-ion transport kinetic property in K-doped NVPF are investigated by density functional theory(DFT)calculations,which reveals that the K-doped NVPF exhibits improved electronic and ionic conductivities,and located K^(+) ions in the lattice to contribute to high reversible capacity,rate capability and cycling stability.Therefore,the K-doped NVPF serves as a promising cathode material for high-energy and high-power SIBs. | Jiexin Zhang YangYang Lai Peng Li Yanxia Wang Faping Zhong Xiangming Feng Weihua Chen Jianjun Liu Xinping Ai Hanxi Yang Yuliang Cao | 2022 | Green Energy & Environment2022,7,6: | 0 |