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| 1 | CD147 antibody specifically and effectively inhibits infection and cytokine storm of SARS-CoV-2 and its variants delta,alpha,beta,and gamma显示文摘SARS-CoV-2 mutations contribute to increased viral transmissibility and immune escape,compromising the effectiveness of existing vaccines and neutralizing antibodies.An in-depth investigation on COVID-19 pathogenesis is urgently needed to develop a strategy against SARS-CoV-2 variants.Here,we identified CD147 as a universal receptor for SARS-CoV-2 and its variants.Meanwhile,Meplazeumab,a humanized anti-CD147 antibody,could block cellular entry of SARS-CoV-2 and its variants-alpha,beta,gamma,and delta,with inhibition rates of 68.7,75.7,52.1,52.1,and 62.3%at 60μg/ml,respectively.Furthermore,humanized CD147 transgenic mice were susceptible to SARS-CoV-2 and its two variants,alpha and beta.When infected,these mice developed exudative alveolar pneumonia,featured by immune responses involving alveoli-infiltrated macrophages,neutrophils,and lymphocytes and activation of IL-17 signaling pathway.Mechanistically,we proposed that severe COVID-19-related cytokine storm is induced by a'spike protein-CD147-CyPA signaling axis':Infection of SARS-CoV-2 through CD147 initiated the JAK-STAT pathway,which further induced expression of cyclophilin A(CyPA);CyPA reciprocally bound to CD147 and triggered MAPK pathway.Consequently,the MAPK pathway regulated the expression of cytokines and chemokines,which promoted the development of cytokine storm.Importantly,Meplazumab could effectively inhibit viral entry and inflammation caused by SARS-CoV-2 and its variants.Therefore,our findings provided a new perspective for severe COVID-19-related pathogenesis.Furthermore,the validated universal receptor for SARS-CoV-2 and its variants can be targeted for COVID-19 treatment. | Jiejie Geng Liang Chen Yufeng Yuan Ke Wang Youchun Wang Chuan Qin Guizhen Wu Ruo Chen Zheng Zhang Ding Wei Peng Du Jun Zhang Peng Lin Kui Zhang Yongqiang Deng Ke Xu Jiangning Liu Xiuxuan Sun Ting Guo Xu Yang Jiao Wu Jianli Jiang Ling Li Kun Zhang Zhe Wang Jing Zhang Qingguo Yan Hua Zhu Zhaohui Zheng Jinlin Miao Xianghui Fu Fengfan Yang Xiaochun Chen Hao Tang Yang Zhang Ying Shi Yumeng Zhu Zhuo Pei Fei Huo Xue Liang Yatao Wang Qingyi Wang Wen Xie Yirong Li Mingyan Shi Huijie Bian Ping Zhu Zhi-Nan Chen | 2021 | Signal Transduction and Targeted Therapy2021,6,10: | 6 |
| 2 | Catalytic performance of iron oxide loaded on electron-rich surfaces of carbon nitride显示文摘Carbon nitride(CN) in CN encapsulated Ni/Al_2O_3(denoted as CN/Ni/Al_2O_3) catalyst was evidenced previously as a material in electron-rich state and possessed H2-dissociative adsorption activity due to the electron doping effect from underlying nickel. In this report, iron oxide loaded on the CN/Ni/Al_2O_3 was synthesized and investigated by Fischer-Tropsch(F-T) synthesis to test the special effect of electron-rich support on the catalytic activity of iron oxide. The Fe/CN/Al_2O_3 and CN/Ni/Al_2O_3 samples were accordingly synthesized for comparison. In Fe/CN/Ni/Al_2O_3, the iron oxide was reduced to magnetite by syngas as evidenced by the in-situ XPS measurements and XRD pattern of used catalyst. Compared with Fe/CN/Al_2O_3, more light hydrocarbons over Fe/CN/Ni/Al_2O_3 were observed. It should be understood by the interaction between iron oxide and support mainly due to the effect of electron-rich state and thus enhanced H_2 adsorption ability. In addition, such a novel support facilitated the CO conversion and retarded the water-gas shift reaction and CO2 formation. The new type of adjustment on electronic state should be useful for novel catalyst design. | Zhen Dong Tao Wang Jie Zhao Teng Fu Li Wang Jinlin Li Weiping Ding | 2016 | Journal of Energy Chemistry2016,25,6: | 2 |
| 3 | p53 deficiency-induced Smad1 upregulation suppresses tumorigenesis and causes chemoresistance in colorectal cancers显示文摘The DNA damage response helps to maintain genome integrity,suppress tumorigenesis,and mediate the effects of radiotherapy and chemotherapy.Our previous studies have shown that Smad1 is upregulated and activated by Atm in DNA damage response,which can further bind to p53 and promote p53 stabilization.Herewe report another aspect of the interplay between p53 and Smad1.Comparison of rectal tumor against paired paraneoplastic specimens and analysis of>500 colorectal tumors revealed that Smad1 was upregulated in tumor samples,which was attributable to p53 defects.Using MEFs as a model,we found that knockdown of the elevated Smad1 in p532/2 MEFs promoted cell proliferation,E1A/Ras-induced cell transformation,and tumorigenesis.Mechanistic studies suggest that elevated Smad1 and momentary activation inhibit cell proliferation by upregulating p57Kip2 and enhancing Atm–Chk2 activation.Surprisingly,elevated Smad1 appears to have a negative effect on chemotherapy,as colorectal tumors,primary cancer cells,and cell lines with Smad1 knockdown all showed an increase in chemosensitivity,which could be attributable to elevated p57Kip2.These findings underscore the significance of Smad1–p53 interaction in tumor suppression and reveal an unexpected role for Smad1 in chemoresistance of colorectal cancers. | Xinsen Ruan Qiao Zuo Hao Jia Jenny Chau Jinlin Lin Junping Ao Xuechun Xia Huijuan Liu Samy LHabib Chuangang Fu Baojie Li | 2015 | Journal of Molecular Cell Biology2015,7,2: | 2 |
| 4 | Detection of Patulin in Dairy Products by ELISA显示文摘The content of patulin in dairy products was detected by rapid ELISA assay.The pretreatment of samples was simple,with wide range of application.The standard product showed good linear relationship with the range of 0-5.4 μg/kg,and the linear relationship reached 0.999 3,with high sensitivity.It took shorter time,with a total time-consumption of 1 h.Moreover,it had good repeatability for analytical requirements. | Tang Shiyun Shen Zhiqiang Fu Shijun Wu Yuxiang Li Jinlin | 2018 | Animal Husbandry and Feed Science2018,10,2: | 1 |
| 5 | A new approcch to the study of diet and risk of type 2 diabetes显示文摘 | Jinlin Fu Bin you W Terry C | 2007 | J Postgrad Med2007,53,2: | 1 |
| 6 | A new approach to the study of diet and risk of type 2 diabetes 显示文摘 | Jinlin FU Binyou W Terry C | 2007 | J Postgrad Med2007,53,2: | 1 |
| 7 | New cooperative frequency domain differential modulation and demodulation显示文摘An innovative method of cooperative frequency domain differential modulation and demodulation is presented.This method applies the prior knowledge of channel propagation to selecting the variable differential length and carrying out frequency domain modulation.This strategy optimizes the design of system parameters to effectively improve the anti-interference ability of the differential system in time-varied multipath channel circumstance without making the execution more complicating.The simulations and comparisons demonstrate the proposed method is effective,and the results show that it is especially suitable for the fading channel with strong propagation and fast time-variation. | Ke Li Chunping Hou Yonghong Hou Jinlin Fu | 2011 | Journal of Systems Engineering and Electronics2011,22,6: | 1 |
| 8 | In vivo induced RTX toxin ApxIVA is essential for the full virulence of Actinobacillus pleuropneumoniae显示文摘 | Jinlin Liu Xia Chen Chen Tan Yi Guo Yan Chen Shulin Fu Weicheng Bei Huanchun Chen | 2009 | Veterinary Microbiology2009,,3: | 1 |
| 9 | Photochemical synthesis of submicron- and nano-scale Cu 2 O particles显示文摘 | Jinlin Long Jingguo Dong Xuxu Wang Zhengxin Ding Zizhong Zhang Ling Wu Zhaohui Li Xianzhi Fu | 2009 | Journal of Colloid And Interface Science2009,,2: | 1 |
| 10 | Phase Behaviors of Multi-tailed B_(2)AB_(2)-Type Regio-isomeric Giant Surfactants at the Columnar-Spherical Boundary显示文摘We report herein the precision synthesis and phase behaviors of multi-tailed B_(2)AB_(2)-type regio-isomeric giant surfactants consisting of a hydrophilic polyhedral oligomeric silsesquioxane(POSS)head tethered with four hydrophobic polystyrene(PS)tails.The synthesis was accomplished through two sequential'click'reactions to give a series of regio-isomeric giant surfactants S2DS2(where S is short for PS tails and D for hydroxyl-functionalized POSS)in para-,meta-,and ortho-configurations.Their phase structures and phase be-haviors at the columnar-spherical boundary were investigated with a single PS tail molecular weight of 1.4 kDa.Specifically,the para-and meta-isomers show hexagonally packed cylinders phases with slightly different order-disorder transition temperatures(~120℃ and~130℃)and the ortho-isomer exhibits an order-order transition from a kinetically favored,metastable dodecagonal quasi-crystal phase to a thermodynamically stable sigma phase at~120℃,as well as a further transition into the disordered state at~140℃.The phase diagram was constructed and their differences were rationalized based on the calculated interfacial area per molecule.This work demonstrates that tiny structural disparity could not only lead to unconventional phase formation in single-component macro-molecules,but also render dynamic and rich phase behaviors in these macromolecular assemblies. | Yu Shao Di Han Xiaojin Yan Bo Hou Yiwen Li Jinlin He Qiang Fu Wen-Bin Zhang | 2021 | Chinese Journal of Chemistry2021,39,12: | 0 |
| 11 | Recent Advancements in Photoelectrochemical Water Splitting for Hydrogen Production显示文摘Sunlight is the most abundant and inexhaustible energy source on earth.However,its low energy density,dispersibility and intermittent nature make its direct utilization with industrial relevance challenging,suggesting that converting sunlight into chemical energy and storing it is a valuable measure to achieve global sustainable development.Carbon–neutral,clean and secondary pollution-free solar-driven water splitting to produce hydrogen is one of the most attractive avenues among all the current options and is expected to realize the transformation from dependence on fossil fuels to zero-pollution hydrogen.Artificial photosynthetic systems(APSs)based on photoelectrochemical(PEC)devices appear to be an ideal avenue to efficiently achieve solar-to-hydrogen conversion.In this review,we comprehensively highlight the recent developments in photocathodes,including architectures,semiconductor photoabsorbers and performance optimization strategies.In particular,frontier research cases of organic semiconductors,dye sensitization and surface grafted molecular catalysts applied to APSs based on frontier(molecular)orbital theory and semiconductor energy band theory are discussed.Moreover,research advances in typical photoelectrodes with the metal–insulator–semiconductor(MIS)architecture based on quantum tunnelling are also introduced.Finally,we discuss the benchmarks and protocols for designing integrated tandem photoelectrodes and PEC systems that conform to the solar spectrum to achieve high-efficiency and cost-effective solar-to-hydrogen conversion at an industrial scale in the near future. | Yibo Zhao Zhenjie Niu Jiwu Zhao Lan Xue Xianzhi Fu Jinlin Long | 2023 | Electrochemical Energy Reviews2023,6,1: | 0 |