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| 1 | Microwave ablation is as effective as radiofrequency ablation for very-early-stage hepatocellular carcinoma显示文摘Background: Percutaneous radiofrequency ablation(RFA) is a first?line treatment for very?early?stage hepatocellular carcinoma(HCC), whereas the efficacy of percutaneous microwave ablation(MWA) for very?early?stage HCC remains unclear. The purpose of this study was to clarify this issue by comparing the safety and efficacy of percutaneous MWA with percutaneous RFA in treating very?early?stage HCC.Methods: Clinical data of 460 patients who were diagnosed with very?early?stage HCC and treated with percutane?ous MWA or RFA between January 2007 and July 2012 at the Eastern Hepatobiliary Surgery Hospital, The Second Mili?tary Medical University, in Shanghai, China were retrospectively analyzed. Of these 460 patients, 159 received RFA, 301 received MWA. Overall survival(OS), recurrence?free survival(RFS), local tumor progression(LTP), complete ablation, and complication occurrence rates were compared between the two groups, and the prognostic factors associated with survival were analyzed.Results: No significant differences were observed between the two groups in terms of the 1?, 3?, or 5?year OS rates(99.3%, 90.4%, and 78.3% for MWA vs. 98.7%, 86.8%, and 73.3% for RFA, respectively; P = 0.331). Furthermore, no signif?icant differences were observed between the two groups in terms of the corresponding RFS rates(94.4%, 71.8%, and 46.9% for MWA vs. 89.9%, 67.3%, and 54.9% for RFA, respectively; P ete ablation rates(98.3% vs. 98.1%, P = 0.309), the LTP rates(9.6% vs. 10.1%, P = 0.883), the compl multivariate analysis, LTP, an= 0.860), or the occurrence rates of major complications(0.7% vs. 0.6%, P = 0.691). Bytiviral therapy, and treatment of recurrence were independent risk fac?tors for OS(P < 0.001), and the alpha?fetoprotein level was an independent prognostic factor for RFS(P = 0.002).Conclusions: MWA is as safe and effective as RFA in treating very?early?stage HCC, supporting MWA as a first?line treatment option for this disease. | Yun Xu Qiang Shen Neng Wang Pan-Pan Wu Bin Huang Ming Kuang Guo-Jun Qian | 2017 | Chinese Journal of Cancer2017,36,5: | 15 |
| 2 | NVP-BEZ235, a novel dual PI3K/mTOR inhibitor, enhances the radiosensitivity of human glioma stem cells in vitro显示文摘 | Wen-juan WANG Lin-mei LONG Neng YANG Qing-qing ZHANG Wen-jun JI Jiang-hu ZHAO Zheng-hong QIN ZhongWANG Gang CHEN Zhong-qin LIANG | 2013 | Acta Pharmacologica Sinica2013,34,5: | 14 |
| 3 | The Intervention Effect of Rosiglitozone in Ovarian Fibrosis of PCOS Rats显示文摘Objective To explore the Intervention effect of Rosiglitozone in ovarian fibrosis of PCOS rats.Methods 60 female SD rats were randomly divided into 3 groups:control group,model group and treatment group.The model and treatment groups were established by subcutaneous injection of DHEA,while the treatment group was given RGZ.The serum hormone values,pathohistology of ovarian structure of rats,ovarian ultrastructure and the expressions of TGF-β 1 and CTGF were detected.Results The PCOS model was established successfully.The expression intensity of TGF-β 1 and CTGF in Oocytes of the PCOS groups was 9.545±2.954 and 9.665±2.400,respectively and was significantly higher than that of the control group 6.636±2.264 and 7.036±2.133;after treatment with rosiglitazone,the expression was significantly decreased 6.980±2.421 and 6.642±2.721 as compared with that of the model group (P<0.05,P<0.001).The values in serum of the PCOS groups were 3.749±2.054 and 0.265±0.129,and 1.914±1.801 and 0.096±0.088 in the control group which had statistically significant difference (P<0.05,P<0.001).After treatment with rosiglitazone,the values were 2.3100±1.825 and 0.112±0.187 and were significantly different with those of the model group (P<0.05,P<0.001).Conclusion TGF-β 1 and CTGF play an important role in the development of ovary fibrosis in PCOS.However,RGZ may postpone the development of fibrosis by decreasing the levels of TGF-β 1 and CTGF. | MIAO Zhu Lin GUO Liang WANG Yong Xia CUI Rong YANG Ning HUANG Mi Qiong QIN Wei Bing CHEN Jin LI Hong Mei WANG Zi Neng WEI Xiang Cai | 2012 | Biomedical and Environmental Sciences2012,25,1: | 14 |
| 4 | Celastrol induces lipophagy via the LXRα/ABCA1 pathway in clear cell renal cell carcinoma显示文摘Celastrol is a triterpene derived from the traditional Chinese medicine Tripterygium wilfordii Hook f,which displays potential anticancer activity.In the present study,we investigated the anticancer effects of celastrol against clear cell renal cell carcinoma(ccRCC)and the underlying mechanisms.Using Cancer Genome Atlas(TCGA)database and genotype-tissue expression(GTEx)database we conducted a bioinformatics analysis,which showed that the mRNA levels of liver-X receptorsα(LXRα)and ATP-binding cassette transporter A1(ABCA1)in ccRCC tissues were significantly lower than those in adjacent normal tissues.This result was confirmed by immunoblotting analysis of 4 ccRCC clinical specimens,which showed that the protein expression of LXRαand ABCA1 was downregulated.Similar results were obtained in a panel of ccRCC cell lines(786-O,A498,SN12C,and OS-RC-2).In 786-O and SN12C cells,treatment with celastrol(0.25–2.0μM)concentration-dependently inhibited the cell proliferation,migration,and invasion as well as the epithelial-mesenchymal transition(EMT)process.Furthermore,we demonstrated that celastrol inhibited the invasion of 786-O cells through reducing lipid accumulation;celastrol concentration-dependently promoted autophagy to reduce lipid storage.Moreover,we revealed that celastrol dramatically activated LXRαsignaling,and degraded lipid droplets by inducing lipophagy in 786-O cells.Finally,celastrol promoted cholesterol efflux from 786-O cells via ABCA1.In high-fat diet-promoted ccRCC cell line 786-O xenograft model,administration of celastrol(0.25,0.5,1.0 mg·kg^(−1)·d^(−1),for 4 weeks,i.p.)dose-dependently inhibited the tumor growth with upregulated LXRαand ABCA1 protein in tumor tissue.In conclusion,this study reveals that celastrol triggers lipophagy in ccRCC by activating LXRα,promotes ABCA1-mediated cholesterol efflux,suppresses EMT progress,and ultimately inhibits cell proliferation,migration,and invasion as well as tumor growth.Thus,our study provides evidence that celastrol can be used as a lipid metabolism-based anticancer therapeutic approach. | Chan-juan Zhang Neng Zhu Jia Long Hong-tao Wu Yu-xiang Wang Bi-yuan Liu Duan-fang Liao Li Qin | 2021 | Acta Pharmacologica Sinica2021,42,9: | 8 |
| 5 | Three-dimensional image of hepatocellular carcinoma under confocal laser scanning microscope显示文摘AIM To investigate the application of confocallaser scanning microscopy(CLSM)in tumorpathology and three-dimensional( 3-D )reconstruction by CLSM in pathologic specimensof hepatocellular carcinoma(HCC).METHODS The 30μm thick sections were cutfrom the paraffin-embedded tissues of HCC,hyperplasia and normal liver,stained with DNAfluorescent probe YOYO-1 iodide and examinedby CLSM to collect optical sections of nuclei and3-D images reconstructed.RESULTS HCC displayed chaotic arrangementof carcinoma cell nuclei,marked pleomorphism,indented and irregular nuclear surface,andirregular and coarse chromatin texture.CONCLUSION The serial optical tomograms ofCLSM can be used to create 3-D reconstruction ofcancer cell nuclei.Such 3-D impressions mightbe helpful or even essential in making anaccurate diagnosis. | Wang Hai Zhang Shi Neng Zhu Shi Lun Lu Ya Lin Huang Peng Zhao | 2000 | World Journal of Gastroenterology2000,6,3: | 7 |
| 6 | Cooperation of invariant NKT cells and CD4+CD25+ T regulatory cells in prevention of autoimmune diabetes in non-obese diabetic mice treated with α- galactosylceramide显示文摘 | Weipeng Li Fang Ji Yong Zhang Ying Wang Neng Yang Hailiang Ge Fuqing Wang | 2008 | Acta Biochimica et Biophysica Sinica2008,40,5: | 5 |
| 7 | Inhibition of cathepsin L sensitizes human glioma cells to ionizing radiation in vitro through NF-KB signaling pathway显示文摘 | Neng YANG Pan WANG Wen-juan WANG Yun-zhen SONG Zhong-qin LIANG | 2015 | Acta Pharmacologica Sinica2015,36,3: | 5 |
| 8 | A flexible metallic TiC nanofiber/vertical graphene 1D/2D heterostructured as active electrocatalyst for advanced Li–S batteries显示文摘The realistic application of lithium-sulfur(Li-S)batteries has been severely hindered by the sluggish conversion kinetics of polysulfides(LiPS)and inhomogeneous deposition of Li_(2)S at high sulfur loading and low electrolyte/sulfur ratio(E/S).Herein,a flexible Li-S battery architecture based on electrocatalyzed cathodes made of interfacial engineered TiC nanofibers and in situ grown vertical graphene are developed.Integrated 1D/2D heterostructured electrocatalysts are realized to enable highly improved Li^(+)and electron transportation together with significantly enhanced affinity to LiPS,which effectively accelerate the conversion kinetics between sulfur species,and thus induce homogeneous deposition of Li_(2)S in the catalyzed cathodes.Consequently,highly active electro-electrocatalystsbased cells exhibit remarkable rate capability at 2C with a high specific capacity of 971 mAh g^(-1).Even at ultra-high sulfur loading and low E/S ratio,the battery still delivers a high areal capacity of 9.1 mAh cm^(-2),with a flexible pouch cell being demonstrated to power a LED array at different bending angles with a high capacity over 100 cycles.This work puts forward a novel pathway for the rational design of effective nanofiber electrocatalysts for cathodes of high-performance Li-S batteries. | Yongshang Zhang Peng Zhang Shijie Zhang Zheng Wang Neng Li SRavi PSilva Guosheng Shao | 2021 | InfoMat2021,3,7: | 5 |
| 9 | Laser Additive Manufacturing on Metal Matrix Composites: A Review显示文摘Important progresses in the study of laser additive manufacturing on metal matrix composites(MMCs)have been made.Recent efforts and advances in additive manufacturing on 5 types of MMCs are presented and reviewed.The main focus is on the material design,the combination of reinforcement and the metal matrix,the synthesis principle during the manufacturing process,and the resulted microstructures as well as properties.Thereafter,the trend of development in future is forecasted,including:Formation mechanism and reinforcement principle of strengthening phase;Material and process design to actively achieve expected performance;Innovative structure design based on the special properties of laser AM MMCs;Simulation,monitoring and optimization in the process of laser AM MMCs. | Neng Li Wei Liu Yan Wang Zijun Zhao Taiqi Yan Guohui Zhang Huaping Xiong | 2021 | Chinese Journal of Mechanical Engineering2021,34,3: | 4 |
| 10 | Research Progress of Refractory High Entropy Alloys:A Review显示文摘Owing to superior comprehensive performance than conventional superalloys at high temperature,refractory high entropy alloy(RHEA)is becoming a promising candidate for the next generation high-temperature material.Herein,contemporary aspects of corresponding development of RHEAs are reviewed to discuss various factors affecting the organization structure and service performance.It mainly covers alloying system and strengthening mechanism,the preparation method,plastic deformation and the related mechanism,as well as microstructure control by heat treatment.Firstly,the alloy systems and strengthening mechanism are introduced.This is followed by different preparation methods and the comparison of strengths and shortcomings based on different RHEAs.Then,hot deformation behavior and plastic deformation under different loadings are analyzed.Based on this,the influence of heat treatment on microstructures prior to and after the deformation is further summarized.Finally,some important research areas to be carried out in future are pointed out.This review will give a deep understanding of the effects of different factors on the service performance and provide scientific guide in designing RHEAs with improved performance. | Xiaochang Xie Neng Li Wei Liu Shuai Huang Xiaoyong He Qiuying Yu Huaping Xiong Enhui Wang Xinmei Hou | 2022 | Chinese Journal of Mechanical Engineering2022,35,6: | 4 |
| 11 | Rational design of hierarchically porous Fe-N-doped carbon as efficient electrocatalyst for oxygen reduction reaction and Zn-air batteries显示文摘The rational design and construction of hierarchically porous nanostructure for oxygen reduction reaction (ORR) electrocatalysts is crucial to facilitate the exposure of accessible active sites and promote the mass/electron transfer under the gas-solid-liquid triple-phase condition. Herein, an ingenious method through the pyrolysis of creative polyvinylimidazole coordination with Zn/Fe salt precursors is developed to fabricate hierarchically porous Fe-N-doped carbon framework as efficient ORR electrocatalyst. The volatilization of Zn species combined with the nanoscale Kirkendall effect of Fe dopants during the pyrolysis build the hierarchical micro-, meso-, and macroporous nanostructure with a high specific surface area (1,586 m^(2)·g^(−1)), which provide sufficient exposed active sites and multiscale mass/charge transport channels. The optimized electrocatalyst exhibits superior ORR activity and robust stability in both alkaline and acidic electrolytes. The Zn-air battery fabricated by such attractive electrocatalyst as air cathode displays a higher peak power density than that of Pt/C-based Zn-air battery, suggesting the great potential of this electrocatalyst for Zn-air batteries. | Zihan Meng Neng Chen Shichang Cai Jiawei Wu Rui Wang Tian Tian Haolin Tang | 2021 | Nano Research2021,14,12: | 4 |
| 12 | Spatial correlation of elastic heterogeneity tunes the deformation behavior of metallic glasses显示文摘Metallic glasses(MGs)possess remarkably high strength but often display only minimal tensile ductility due to the formation of catastrophic shear bands.Purposely enhancing the inherent heterogeneity to promote distributed flow offers new possibilities in improving the ductility of monolithic MGs.Here,we report the effect of the spatial heterogeneity of elasticity,resulting from the inherently inhomogeneous amorphous structures,on the deformation behavior of MGs,specifically focusing on the ductility using multiscale modeling methods.A highly heterogeneous,Gaussian-type shear modulus distribution at the nanoscale is revealed by atomistic simulations in Cu_(64)Zr_(36) MGs,in which the soft population of the distribution exhibits a marked propensity to undergo the inelastic shear transformation.By employing a mesoscale shear transformation zone dynamics model,we find that the organization of such nanometer-scale shear transformation events into shear-band patterns is dependent on the spatial heterogeneity of the local shear moduli.A critical spatial correlation length of elastic heterogeneity is identified for the simulated MGs to achieve the best tensile ductility,which is associated with a transition of shear-band formation mechanisms,from stress-dictated nucleation and growth to structure-dictated strain percolation,as well as a saturation of elastically soft sites participating in the plastic flow.This discovery is important for the fundamental understanding of the role of spatial heterogeneity in influencing the deformation behavior of MGs.We believe that this can facilitate the design and development of new ductile monolithic MGs by a process of tuning the inherent heterogeneity to achieve enhanced ductility in these high-strength metallic alloys. | Neng Wang Jun Ding Feng Yan Mark Asta Robert O.Ritchie Lin Li | 2018 | npj Computational Materials2018,,1: | 4 |
| 13 | Help from space:grant-free massive access for satellite-based IoT in the 6G era显示文摘The Sixth-Generation(6G)standard for wireless communications is expected to realize ubiquitous coverage for massive Internet of Things(IoT)networks by 2030.Satellite-based communications are recognized as a highly promising technical enabler to satisfy IoT service requirements in the 6G era.This study analyzes multiple access technologies,which are essential for the effective deployment of satellite-based IoT.First,we thoroughly investigate the existing research related to massive access,including information-theory considerations as well as Non-Orthogonal Multiple Access(NOMA)and Random Access(RA)technologies.Then,we explore the influence of the satellite transmission environment on multiple access technologies.Based on this study,a Non-orthogonal Massive Grant-Free Access(NoMaGFA)scheme,which reaps the joint benefits of RA and NOMA,is proposed for asynchronous transmissions in satellite-based IoT to achieve improved system throughput and enhance the system robustness under varying traffics.Finally,we identify some important and interesting future developments for satellite-based IoT,including waveform design,transceiver design,resource allocation,and artificial intelligence-enhanced design. | Neng Ye Jihong Yu Aihua Wang Rongrong Zhang | 2022 | Digital Communications and Networks2022,8,2: | 3 |
| 14 | Efficacy of microwave versus radiofrequency ablation for treatment of small hepatocellular carcinoma: experimental and clinical studies显示文摘 | Guo-Jun Qian Neng Wang Qiang Shen Yue Sheng Jie-Qiong Zhao Ming Kuang Guang-Jian Liu Meng-Chao Wu | 2012 | European Radiology2012,,9: | 3 |
| 15 | Clinicopathologic risk factors and prognostic evaluation in hepatocellular carcinoma recurrence after surgery显示文摘ClinicopathologicriskfactorsandprognosticevaluationinhepatocelularcarcinomarecurenceaftersurgeryDAIYiMin,CHENHan,WANGNengJ... | DAI Yi Min, CHEN Han, WANG Neng Jin, NI Can Rong, CONG Wen Ming and ZHANG Song Ping Department of Pathology, Second Military Medical University, Shanghai 200433, China | 1997 | World Journal of Gastroenterology1997,3,3: | 3 |
| 16 | Conductive photo-thermal responsive bifunctional hydrogel system with self-actuating and self-monitoring abilities显示文摘Despite enormous efforts in actuators,most researches are only limited to various actuation behaviors and demonstrations of soft materials.It has not yet been reported to capture and monitor its movement status in an invisible environment.Therefore,it is of great significance to develop a self-sensing and self-actuating dual-function hydrogel actuator system to realize real-time monitoring.Here,we report a bifunctional hydrogel system with self-actuating and self-monitoring abilities,which combines the functions of photothermal actuation and electrical resistance sensing into a single material.The bilayer tough conductive hydrogel synthesized by unconventional complementary concentration recombination and cryogenic freezing technique presents a dense conductive network and high-porosity structure,achieving high toughness at 190.3 kPa of tensile strength,high stretchability(164.3%strain),and the toughness dramatically(1,471.4 kJ·m^(−3)).The working mechanism of the monitoring and self-sensing system is accomplished through the integrated monitoring device of surface temperature–bending angle–electron current,to solve the problem of not apperceiving actuator motion state when encountering obstacles in an invisible environment.We demonstrated for the first time a photothermal actuator’s motion of a football player and goalkeeper to finish the penalty and a soft actuator hand,which can achieve the action of sticking to grab and release under photo-thermal actuation.When connected to the control closed circuit,the actuator realized closed-loop monitoring and sensing feedback.The development of bifunctional hydrogel systems may bring new opportunities and ideas in the fields of material science,circuit technology,sensors,and mechanical engineering. | Neng Chen Yang Zhou Yinping Liu Yuanyuan Mi Sisi Zhao Wang Yang Sai Che Hongchen liu FengJiang Chen Chong Xu Guang Ma Xue Peng Yongfeng Li | 2022 | Nano Research2022,15,8: | 3 |
| 17 | Enhanced learning and memory in GAT1 heterozygous mice显示文摘-Aminobutyric 酸(伽马氨基丁酸) 是在中央神经系统的主要禁止的 neurotransmitter。伽马氨基丁酸传播的结束通过膜蛋白质的一个家庭的行动,叫的伽马氨基丁酸 transporters (GAT14 ) 。伽马氨基丁酸系统涉及存储器的调整,这很好被建立。我们的以前的学习显示出老鼠展出了损害马头鱼尾的怪兽依赖者学习和记忆的那同型结合的 GAT1/ 。在鼠标上评估内长的减少的伽马氨基丁酸举起的影响认知行为,学习和异质接合的 GAT1+/ 鼠标的存储器的能力被被动回避范例和莫利斯舞水迷宫检测。洞板范例也被用来在如此的老鼠在焦虑相关的行为或探索行为测量变化。作为 synaptic 粘性的一种形式,长期的 potentiation 在老鼠被记录海马趾的 CA1 区域。我们发现了显示的老鼠增加了的那 GAT1+/ 学习并且记忆,减少的像焦虑的行为,和与野类型、同型结合的 GAT1/ 老鼠相比的最高的 synaptic 粘性。我们的结果建议在 GAT1 活动的中等减小引起在鼠标学习和记忆的改进。 | Jun Shi Youqing Cai Guoxiang Liu Neng Gong Zhenze Liu Tianle Xu Zhugang Wang Jian Fei | 2012 | Acta Biochimica et Biophysica Sinica2012,44,4: | 3 |
| 18 | Cathepsin L suppression increases the radiosensitivity of human glioma U251 cells via G2/M cell cycle arrest and DNA damage显示文摘 | Qing-qing ZHANG Wen-juan WANG Jun LI Neng YANG Gang CHEN Zhong WANG Zhong-qin LIANG | 2015 | Acta Pharmacologica Sinica2015,36,9: | 3 |
| 19 | Accumulated Clinical Experiences from Successful Treatment of 1377 Severe and Critically Ill COVID-19 Cases显示文摘Summary:In late December 2019,COVID-19 was firstly recognized in Wuhan,China and spread rapidly to all of the provinces of China.The West Campus of Wuhan Union Hospital,the designated hospital to admit and treat the severe and critically ill COVID-19 cases,has treated a large number of such patients with great success and obtained lots of valuable experiences based on the Chinese guideline(V7.0).To standardize and share the treatment procedures of severe and critically ill cases,Wuhan Union Hospital has established a working group and formulated an operational recommendation,including the monitoring,early warning indicators,and several treatment principles for severe and critically ill cases.The treatment experiences may provide some constructive suggestions for treating the severe and critically ill COVID-19 cases all over the world. | Yong GAO Hai-bo QIU Shu ZHOU Zhen-ning WANG Jian-chu ZHANG Zheng-liang ZHANG Zhao-xin QIAN Hong-bo WANG Shi-huan YU Yi-feng LUO Ya dan WANG Zhuang LIU Wei-ci WANG Ming JIA Li-ming ZHANG Yu ZHANG Yang JIN Yong ZHANG Yong LIU Zi-hua ZHOU Ying SU Hui-qing LI Wei-min XIAO Kai HUANG Ping HE Gang LI Zhao-hui FU Shi LIU Neng xing LIN Fan-jun CHENG | 2020 | Current Medical Science2020,40,4: | 2 |
| 20 | Li intercalation in an MoSe_(2) electrocatalyst:In situ observation and modulation of its precisely controllable phase engineering for a high-performance flexible Li-S battery显示文摘Sophisticated efficient electrocatalysts are essential to rectifying the shuttle effect and realizing the high performance of flexible lithium-sulfur batteries(LSBs).Phase transformation of MoSe_(2) from the 2H phase to the 1T phase has been proven to be a significant method to improve the catalytic activity.However,precisely controllable phase engineering of MoSe_(2) has rarely been reported.Herein,by in situ Li ions intercalation in MoSe_(2),a precisely controllable phase evolution from 2H-MoSe_(2) to 1T-MoSe_(2) was realized.More importantly,the definite functional relationship between cut-off voltage and phase structure was first identified for phase engineering through in situ observation and modulation methods.The sulfur host(CNFs/1T-MoSe_(2))presents high charge density,strong polysulfides adsorption,and catalytic kinetics.Moreover,Li-S cells based on it display capacity retention of 875.3mAh g^(-1) after 500 cycles at 1 C and an areal capacity of 8.71mAh cm^(-2) even at a high sulfur loading of 8.47mg cm^(-2).Furthermore,the flexible pouch cell exhibiting decent performance will endow a promising potential in the wearable energy storage field.This study proposes an effective strategy to precisely control the phase structure of MoSe_(2),which may provide the reference to fabricate the highly efficient electrocatalysts for LSBs and other energy systems. | Yunke Wang Yige Zhao Kangli Liu Shaobin Wang Neng Li Guosheng Shao Feng Wang Peng Zhang | 2023 | Carbon Energy2023,5,2: | 2 |