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| 1 | Improvements on radiation-hardened performance of static induction transistor显示文摘The radiation-hardened performances of static induction transistor (SIT) have been studied in depth in this paper. The effects of radiation of electron beam on the I-V characteristics, carrier distribution and potential distribution in the channel of SIT have been represented. A large number of electron-hole pairs are generated in the depletion region of reversely biased gate-channel PN junction. The radiation-generated electrons drift towards the drain region at high positive potential, while generated holes flow into gate region biased to the lowest potential. With the accumulation of holes in gate region, the gate potential is boosted, resulting in a decrease in the height of potential barrier in channel, and an increase in drain current. I-V characteristics of SIT in the presence of radiation have been theoretically derived, and compared with experimental results. With the increase in thickness of epitaxial layer, the radiation-hardened capability of SIT is continuously improved until the optimum thickness of 26 μm is reached. The optimum matching relationship among geometric, material and technological parameters has been represented to acquire excellent radiation-hardened performances of SIT. | WANG YongShun LUO XianLiang LI HaiRong WANG ZiTing WU Rong ZHANG CaiZhen LI SiYuan | 2010 | Science China(Information Sciences)2010,53,5: | 6 |
| 2 | Superior in vitro anticancer effect of biomimetic paclitaxel and triptolide co-delivery system in gastric cancer显示文摘As a well-known anticancer drug,paclitaxel(PTX),a first-line chemotherapeutic agent,remains unsatisfactory for gastric cancer therapy.It is reported that triptolide(TPL)could enhance the anti-gastric cancer effect of PTX.Considering the poor solubility of both drugs,we developed a red blood cell membrane-biomimetic nanosystem,an emerging tool in drug delivery,to co-load paclitaxel and triptolide(red blood cell membrane coated PTX and TPL co-loaded poly(lactic-co-glycolic acid)[PLGA]nanoparticles,RP(P/T)).The successful preparation was confirmed in terms of particle size,morphology,and surface markers assays.This biomimetic system could prolong circulation and escape immune surveillance.And these properties were verified by stability,in vitro drug release,and cellular uptake assays.Moreover,the MTT and colony formation assays demonstrated the superior anti-proliferation effect of the RP(P/T)to free drugs.The enhanced antitumor effects of RP(P/T)on migration and invasion were also evaluated by wound-healing and transwell assays.Overall,the bionic co-delivery nanoplatform with improved efficacy in vitro is a promising therapy for gastric cancer. | Siwan Wang Hui Jiang Jia Wang Haisi Wu Ting Wu Mengnan Ni Qianqian Zhao You Ji Ziting Zhang Chunming Tang Huae Xu | 2021 | The Journal of Biomedical Research2021,35,4: | 5 |
| 3 | Improvements on voltage-resistant performance of bipolar static induction transistor (BSIT) with buried gate structure显示文摘The breakdown mechanism of power bipolar static induction transistor (BSIT) with buried gate structure is analyzed in depth.A power BSIT sample with high voltage-resistant capability has been designed and fabricated in this paper.The technological methods for improving high voltage performances are represented.The active region of BSIT is surrounded with a deep trench to avoid any probable influences of various defects on device performances.Two field-limiting ring-shape junctions and one channel termination ring-shape junction are arranged around the gate region to reduce the electric field intensity.The gate-source breakdown voltage BV GS of power BSIT has been increased to 110 V from previous value of 50-60 V,and its blocking voltage is increased to 1700 V.The optimal geometrical dimensions for achieving the maximum breakdown voltage BV GS and blocking voltage V block are also represented in the paper. | WANG YongShun FENG JingJing LIU ChunJuan WANG ZiTing WANG ZaiXing ZHANG CaiZhen | 2012 | Science China(Information Sciences)2012,55,4: | 2 |
| 4 | Radical abdominal trachelectomy for cervical malignancies: Surgical, oncological and fertility outcomes in 62 patients显示文摘 | Jin Li Ziting Li Huaying Wang Rongyu Zang Yuqi Zhou Xingzhu Ju Guihao Ke Xiaohua Wu | 2011 | Gynecologic Oncology2011,,3: | 1 |
| 5 | Aqueous Two-Phase Interfacial Assembly of COF Membranes for Water Desalination显示文摘Aqueous two-phase system features with ultralow interfacial tension and thick interfacial region,affording unique confined space for membrane assembly.Here,for the first time,an aqueous two-phase interfacial assembly method is proposed to fabricate covalent organic framework(COF)membranes.The aqueous solution containing polyethylene glycol and dextran undergoes segregated phase separation into two water-rich phases.By respectively distributing aldehyde and amine monomers into two aqueous phases,a series of COF membranes are fabricated at water-water interface.The resultant membranes exhibit high NaCl rejection of 93.0-93.6% and water permeance reaching 1.7-3.7 L m^(−2) h^(−1) bar^(−1),superior to most water desalination membranes.Interestingly,the interfacial tension is found to have pronounced effect on membrane structures.The appropriate interfacial tension range(0.1-1.0 mN m^(−1))leads to the tight and intact COF membranes.Furthermore,the method is extended to the fabrication of other COF and metal-organic polymer membranes.This work is the first exploitation of fabricating membranes in all-aqueous system,confering a green and generic method for advanced membrane manufacturing. | Hongjian Wang Jiashuai Zhao Yang Li Yu Cao Ziting Zhu Meidi Wang Runnan Zhang Fusheng Pan Zhongyi Jiang | 2022 | Nano-Micro Letters2022,14,12: | 1 |
| 6 | Improvements on high voltage performance of power static induction transistors显示文摘 | Wang Yongshun Li Hairong Wang Ziting | 2009 | Chinese Journal of Semiconductors2009,30,10: | 1 |
| 7 | Real-world outcomes of niraparib treatment in patients with ovarian cancer:amulticenter non-interventional study in China显示文摘Dear Editor,Ovarian cancer remains the deadliest among all gynecological cancers.Although most patients at advanced stage respond to initial treatment,the majority experience recurrence[1].It was estimated that 55,342 new cases and 37,519 deaths from ovarian cancer occurred in China annually[2].Contemporarily,the treatment landscape has changed rapidly since the role of poly(adenosine diphosphate-ribose)polymerase inhibitors(PARPi)in ovarian cancer treatmentwas explored.Based on data from the PRIMA/ENGOT-OV26/GOG-3012[3]and ENGOTOV16/NOVA trials[4],niraparib has been approved globally as maintenance therapy for newly diagnosed and platinum-sensitive recurrent ovarian cancer.The indication of niraparib for salvage treatment was based on the results of the QUADRA(NCT02354586)trial[5].Although niraparib has been tested in prospective randomized clinical trials(RCTs),no multicenter study on its real-world application in China had been conducted.Considering the differences in population,accessibility and affordability of drugs,the results of the real-world settings may differ from those of RCTs.Therefore,we conducted this multicenter,non-interventional study at 8 hospitals. | Jin Li Jianhua Yang Huafeng Shou Lin Zhang Xiaohong Huang Xuedong Tang Fei Zheng Fang Liu Hao Wen Huijuan Yang Huaying Wang Ziting Li Xiaojun Chen Xingzhu Ju Xi Cheng Jie Tang Meiqin Zhang Xiaohua Wu | 2023 | Cancer Communications2023,43,6: | 0 |
| 8 | Microstructure Manipulation of Covalent Organic Frameworks(COFs)-based Membrane for Efficient Separations显示文摘Covalent organic framework(COF) membranes have exhibited great potential to become the next-generation membranes for efficient separations due to the diverse structures, ordered framework pores, tunable functionality and excellent stability. This review presents the microstructure manipulation strategies for separation performance enhancement of COF membranes in recent years. Based on the three mechanisms of molecular sieving, surface diffusion, and facilitated transport, the structural modulation methods to enhance the selectivity of COF membranes are analyzed in detail. Next, strategies of realizing ultrashort mass transfer pathways and ultralow mass transfer resistance for the permeability enhancement are elaborated. Furthermore, the framework stability in COFs, interlayer stability between COF nanosheets and interfacial stability between COF layer and substrate are discussed. Finally, we discuss the existing challenges and perspectives on the future development of COF membranes, targeting at identifying the most promising strategies and directions for the engineering of COF membranes. | MA Hanze WANG Shaoyu REN Yanxiong LIANG Xu WANG Yuhan ZHU Ziting HE Guangwei JIANG Zhongyi | 2022 | Chemical Research in Chinese Universities2022,38,2: | 0 |
| 9 | Spatial light modulation for femtosecond laser manufacturing:Current developments and challenges显示文摘Since the invention of lasers,spatial-light-modulated laser processing has become a powerful tool for various applications.It enables multidimensional and dynamic modulation of the laser beam,which significantly improves the processing efficiency,accuracy,and flexibility,and presents wider prospects over traditional mechanical technologies for machining three-dimensional,hard,brittle,or transparent materials.In this review,we introduce:(1)The role of spatial light modulation technology in the development of femtosecond laser manufacturing;(2)the structured light generated by spatial light modulation and its generation methods;and(3)representative applications of spatial-light-modulated femtosecond laser manufacturing,including aberration correction,parallel processing,focal field engineering,and polarization control.Finally,we summarize the present challenges in the field and possible future research. | ZANG Xue LIU ZiTing XU YiShi WANG Yi WANG Qing LI ZhenZe WANG Lei | 2024 | Science China(Technological Sciences)2024,67,1: | 0 |
| 10 | Gypenosides ameliorate morphine-induced immunosuppression with an increased proportion of thymic T lymphocyte subsets and are involved in the regulation of the cAMP-CREM/CREB-IL-2 pathway显示文摘Opioid abuse can suppress the lymphatic system function,and produce severe immunosuppression that poses a significant risk of opportunistic infections such as methicillinresistant Staphylococcus aureus(MRSA)pneumonia.^(1,2)Gypenosides(Gps)are the most important immunomodulator components in the Chinese herbal medicine Gynostemma pentaphyllum. | Hui Wang Zhonghao Li Qisheng Wang Weixin Lin Ziting Zhou Xinru Mu Yongwei Jiang Shengfeng Lu Shaodong Chen Zhigang Lu | 2024 | Genes & Diseases2024,11,3: | 0 |
| 11 | Mechanism of Wendan decoction in preventing obesity by regulating multiple signal pathway networks based on gene promoter methylation显示文摘Objective:To investigate the potential mechanism of Wendan decoction in obesity by screening target genes with promoter region methylation changes and constructing a multiple signaling pathways network based on promoter methylation.Methods:The methylation degree of Itgad,Col8a1,Adra2b,Jund,Rab2a,Wnt8b,Fzd9,B4galt7,Pik3cd,Creb1,Stard8,and Mmp1 in the abdominal adipose tissue of obese rats was determined using the Agena MassARRAY system.Western blot was performed to assess protein expression levels.Target genes were identified based on the methylation degree in the promoter region and protein expression.Enrichment analysis of signaling pathways was conducted to identify relevant target genes and obtain a multiple signaling pathway network associated with obesity.Core and terminal effector molecules in the pathway networks were selected as research targets for reverse transcription-polymerase chain reaction(RT-PCR)analysis.Results:Four genes(Adra2b,Creb1,Itgad,and Pik3cd)showed a degree of promoter methylation consistent with their respective protein expression levels.Among them,Adra2b,Creb1,and Pik3cd expression increased,while that of Itgad decreased.Enrichment analysis revealed that Creb1 and Pik3cd were involved in 6 signaling pathways related to obesity:tumor necrosis factor(TNF)signaling pathway,growth hormone synthesis/secretion and action,adenosine 5'-monophosphate-activated protein kinase(AMPK)signaling pathway,relaxin signaling pathway,cyclic nucleotide(cAMP)signaling pathway,and phosphatidylinositol 3-kinase/protein kinase B(PI3K/Akt)signaling pathway.Subsequently,a multiple signaling pathways network was constructed based on promoter methylation.Key molecules including protein kinase B(AKT),mechanistic target of rapamycin complex 1(mTORC1),and unc-51 like autophagy activating kinase 1(ULK1),as well as terminal effector molecules interleukin-1β(IL-1β),interleukin-6(IL-6),and chemokine(C-X-C motif)ligand 2(CXCL2)were selected as research targets.Wendan decoction decreased the expressions of AKT,mTORC1,IL-1β,IL-6,and CXCL2 while up-regulating ULK1 expression.Conclusion:The mechanism of Wendan decoction in preventing obesity involves the regulation of multiple signaling pathways through the control of Creb1 and Pik3cd gene promoter methylation.However,the associated multi-path gene regulation mechanism in preventing obesity is complex.Thus,further exploration is needed to elucidate the role of methylation changes in this mechanism. | Haiyan Yang Meiling Ren Ziting Wu Jinchao Li Ping Wang | 2024 | Journal of Traditional Chinese Medical Sciences2024,11,1: | 0 |
| 12 | Neutrophil extracellular traps induced by interleukin 8 via CXCR1/2 promote the progression of gastric carcinoma through transcription factor IIB-related factor 1 and cyclin显示文摘Neutrophils constitute a significant portion of the immune cells present within the tumor microenvironment.Evidence generated by our group has confirmed neutrophils to be an adverse independent prognostic factor affecting the disease-free survival of gastric carcinoma(GC)patients.1 Neutrophil extracellular traps(NETs),protein-covered DNA webs that interact with tumor cells in the tumor microenvironment,were detected in GC tissues and found to clinically associated with disease progression in our previous study.2 NETosis could be mediated by a series of agonists,such as interleukin 8(IL-8).3 However,the mechanism of IL-8 in the progression of GC occurs via NETs remains unclear.In this study,we identified that IL-8-mediated NETosis can promote the proliferation,migration,and invasion of GC cells in vitro,which can be abrogated by NET degradation through deoxyribonucleaseI(DNase I)or IL-8 suppression through neutralizing antibodies.Disruption of NETs by DNase I or blockade of the IL-8-CXC chemokine receptor 2(CXCR2)axis could result in growth retardation in mouse models.We also confirmed that NETs may influence the biological behavior of GC cells by up-regulating the expression of transcription factor IB-related factor 1(BRF1)and cyclin p21/p27. | Qianling Wang Yiyin Zhang Wenxi Ding Cheng Feng Yuyan Wang Xiaoli Wei Ziting Qu Hui Wang Xiaoying Liu Hua Wang Kangsheng Gu | 2024 | Genes & Diseases2024,11,2: | 0 |
| 13 | Catalytic conversion of biomass-derived compounds to various amino acids: status and perspectives显示文摘Amino acids are important nitrogen-containing chemicals that have a variety of applications.Currently,fermentation is the widely employed method to produce amino acids;however,the products are mostly limited to natural amino acids in the L-configuration.Catalytic synthesis is an alternative approach for the synthesis of amino acids with different types and configurations,where the use of renewable biomass-based feedstocks is highly attractive.To date,several lignocellulose and triacylglycerol-derived intermediates,typicallyα-keto acids andα-hydroxyl acids,have been transformed into amino acids via the amination reaction in the presence of additional nitrogen sources(i.e.,NH3·H2O).Making full use of inherent nitrogen in biomass(i.e.,chitin and protein)to produce amino acids avoids the use of extra nitrogen sources and meets the requirements of green chemistry,which is attracting increasing attention.In this review,we summarize different chemical-catalytic systems for the transformation of biomass to amino acids.An outlook on the challenges and opportunities for more effective production of amino acids from biomass by catalytic methods is provided. | Benjing Xu Jinhang Dai Ziting Du Fukun Li Huan Liu Xingxing Gu Xingmin Wang Ning Li Jun Zhao | 2023 | Frontiers of Chemical Science and Engineering2023,17,7: | 0 |
| 14 | Underwater Sea Cucumber Target Detection Based on Edge-Enhanced Scaling YOLOv4显示文摘Sea cucumber detection is widely recognized as the key to automatic culture.The underwater light environment is complex and easily obscured by mud,sand,reefs,and other underwater organisms.To date,research on sea cucumber detection has mostly concentrated on the distinction between prospective objects and the background.However,the key to proper distinction is the effective extraction of sea cucumber feature information.In this study,the edge-enhanced scaling You Only Look Once-v4(YOLOv4)(ESYv4)was proposed for sea cucumber detection.By emphasizing the target features in a way that reduced the impact of different hues and brightness values underwater on the misjudgment of sea cucumbers,a bidirectional cascade network(BDCN)was used to extract the overall edge greyscale image in the image and add up the original RGB image as the detected input.Meanwhile,the YOLOv4 model for backbone detection is scaled,and the number of parameters is reduced to 48%of the original number of parameters.Validation results of 783images indicated that the detection precision of positive sea cucumber samples reached 0.941.This improvement reflects that the algorithm is more effective to improve the edge feature information of the target.It thus contributes to the automatic multi-objective detection of underwater sea cucumbers. | Ziting Zhang Hang Zhang Yue Wang Tonghai Liu Yuxiang He Yunchen Tian | 2023 | Journal of Beijing Institute of Technology2023,32,3: | 0 |