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| 1 | From graphite to porous graphene-like nanosheets for high rate lithium-ion batteries显示文摘Graphene nanosheets possess a promising potential as electrodes in Li-ion batteries (LIBs); consequently, the development of low-cost and high-productivity synthetic approaches is crudal. Herein, porous grapheneqike nanosheets (PGSs) have been synthesized from expandable graphite (EG) by initially intercalating phosphoric acid, and then performing annealing to enlarge the interlayer distance of EG, thus fadlitating the successive intercalation of zinc chloride. Subsequently, the following pyrolysis of zinc chloride in the EG interlayer promoted the formation of the porous PGS structure; meanwhile, the gas produced during the formation of the porous structure could exfoliate the EG to graphene-like nanosheets. The synthetic PGS material used as LIB anode exhibited superior Li+ storage performance, showing a remarkable discharge capacity of 830.4 mAh.g-1 at 100 mA.g-1, excellent rate capadty of 211.6 mAh'g-1 at 20,000 mA-g-1, and excellent cycle performance (near 100% capacity retention after 10,000 cycles). The excellent rate performance is attributed to the Li+ ion rapid transport in porous structures and the high electrical conductivity of graphene-like nanosheets. It is expected that PGS may be widely used as anode material for high-rate LIBs via this facile and low-cost route by employing EG as the raw material. | Dongdong Zhao Lei Wang Peng Yu Lu Zhao Chungui Tian Wei Zhou LeiZhang Honggang Fu | 2015 | Nano Research2015,8,9: | 8 |
| 2 | Oncostatin M-induced cardiomyocyte dedifferentiation regulates the progression of diabetic cardiomyopathy through B-Raf/Mek/Erk signaling pathway显示文摘oncostatin M (OSM ) 能在 vivo 并且在 vitro 开始 cardiomyocyte dedifferentiation,这被报导了。导致 OSM 的 cardiomyocyte dedifferentiation 可能是为糖尿病的心肌症(DCM ) 的处理的一个新目标。这研究被设计在 cardiomyocyte dedifferentiation 和 DCM 的前进决定 OSM 的角色。一个老鼠 DCM 模型被建立在 vivo 评估 OSM 的效果。Echocardiography 被使用决定心脏的功能。染色的天狼星红被用来检测纤维变性区域。传播电子显微镜学被用来评估线粒体缺陷。实时聚合酶链反应和西方的污点分析被执行检测相对 mRNA 表情和 cardiomyocyte dedifferentiation 相关的蛋白质表情分别地。OSM 处理导致了类似的损害心脏的功能和心脏的超微结构缺陷到在 DCM 鼠标检测的那些。cardiomyocyte 的 dedifferentiation 标记的表达式(Runx1,和 -SM-actin) 与在控制组的那些相比在对待 OSM 的鼠标是起来调整的。为了推进,表明 OSM 的重要角色, OSM 受体大美人(O ko ) 老鼠被使用。在 O ko 老鼠, c 工具包的 cardiomyocytes dedifferentiation 标记, Runx1,和 atrial natriuretic 肽是下面调整的,与稀释 DCM 损害和废除 OSM/B-Raf/Mek/Erk 发信号小径。在结论,导致 OSM 的 cardiomyocyte dedifferentiation 在 DCM 的前进起一个关键作用。导致 OSM 的 cardiomyocyte dedifferentiation 的机制与通过 OSM 受体 O 表明小径的 B-Raf/Mek/Erk 被联系。 | Xiaotian Zhang Sai Ma Ran Zhang Shuang Li Di Zhu Dong Han Xiuiuan Li Congye Li Wei Yan Dongdong Sun Bin Xu Yabin Wang Feng Cao | 2016 | Acta Biochimica et Biophysica Sinica2016,48,3: | 7 |
| 3 | Mechanical Properties and Stress Strain Relationship Models for Bamboo Scrimber显示文摘In order to investigate the basic mechanical properties and stress strain relationship model for bamboo scrimber manufactured based on a new technique,a large quantities of experiments have been carried out.Based on the analysis of the test results,the following conclusions can be drawn.Two main typical failure modes were classified for bamboo scrimber specimens both under tension parallel to grain and tension perpendicular to grain.Brittle failure happened for all tensile tests.The slope values for the elastic stages have bigger discreteness compared with those for the specimens under tensile parallel to grain.The failure modes for bamboo scrimber specimens under compression parallel to grain could be divided into four.Only one main failure mode happened both for the bending specimens and the shear specimens.With the COV values of 28.64 and 25.72 respectively,the values for the strength and elastic modulus under tensile perpendicular to grain have the largest discreteness for bamboo scrimber.From the point of CHV values,the relationship among the mechanical parameters for bamboo scrimber were proposed based on the test results.Compared with other green building materials,bamboo scrimber manufactured based on a new technique has better mechanical performance and could be used in construction area.Three stress strain relationship models which are four-linear model,quadratic function model,and cubic function model were proposed for bamboo scrimber specimens manufactured based on a new technique.The latter two models gives better prediction for stress strain relationship in elastic plastic stage. | Haitao Li Huizhong Zhang Zhenyu Qiu Jingwen Su Dongdong Wei Rodolfo Lorenzo Conggan Yuan Hongzheng Liu Chungui Zhou | 2020 | Journal of Renewable Materials2020,8,1: | 7 |
| 4 | Compression Behaviors of Parallel Bamboo Strand Lumber Under Static Loading显示文摘In order to investigate the influence of length and compression directions upon behaviour of parallel bamboo strand lumber(PBSL)specimens,240 axial compression tests have been performed.With three similar one different typical failure modes,the mechanical performance for PBSL specimens under compression parallel to grain and perpendicular to grain are different as a whole.From the point of the characteristic values,the compression strength parallel to grain is 2.1 times of the compression strength perpendicular to grain.The elastic modulus for compression parallel to grain is 3.64 times of the compression strength perpendicular to grain.While the compression ratios along two compression directions are equal to each other.The bigger Poisson ratios for one typical side surface is 3.93 times of that for another typical side surface for PBSL specimens under compression perpendicular to grain,and the bigger value is equal to that for PBSL specimens under compression parallel to grain.Length can influence the mechanical properties of the PBSL specimens.The size 50 mm×50 mm×100 mm should be good choice for the standard or code to measure the compression strength.PBSL materials have better ductility under compression parallel to grain than that under compression perpendicular to grain.Stress-strain relationship models were proposed for PBSL specimens under compression parallel to grain and perpendicular to grain,respectively.These proposed models gave a good agreement with the test results. | Haitao Li Zhenyu Qiu Gang Wu Dongdong Wei Rodolfo Lorenzo Conggan Yuan Huizhong Zhang Rong Liu | 2019 | Journal of Renewable Materials2019,7,7: | 7 |
| 5 | Gm Ms1 encodes a kinesin-like protein essential for male fertility in soybean(Glycine max L.)显示文摘The application of heterosis is a promising approach for greatly increasing yield in soybean(Glycine max L.). Nuclear male sterility is essential for hybrid seed production and the utilization of heterosis. Here we report the cloning of the gene underlying the soybean male-sterile mutant ms-1,which has been widely used for recurrent selection in soybean breeding programs. We initially delimited the ms1 locus to a 16.15 kb region on chromosome13, based on SLAF_BSA sequencing followed by genotyping of an F_(2) population segregating for the locus. Compared with the same region in fertile plants, the mutant region lacks a sequence of approximately 38.7 kb containing five protein-coding genes, including an ortholog of the kinesin-like protein gene NACK2, named Gm Ms1. The Gm Ms1 knockout plants generated via CRISPR/Casmediated gene editing displayed a complete malesterile phenotype. Metabolic profiling showed that fertile anthers accumulated starch and sucrose normally, whereas sterile anthers had higher anthocyanin levels and lower flavonoid levels and lower antioxidant enzyme activities. These results provide insights into the molecular mechanisms governing male sterility and demonstrate that Gm Ms1 could be used to create male-sterile lines through targeted mutagenesis. These findings pave the way for designing seed production technology and an intelligent male-sterile line system to utilize heterosis in soybean. | Muhammad Nadeem Andong Chen Huilong Hong Dongdong Li Jiajia Li Duo Zhao Wei Wang Xiaobo Wang Lijuan Qiu | 2021 | Journal of Integrative Plant Biology2021,63,6: | 6 |
| 6 | Copper single-atom catalysts with photothermal performance and enhanced nanozyme activity for bacteria-infected wound therapy显示文摘Nanozymes have become a new generation of antibiotics with exciting broad-spectrum antibacterial properties and negligible biological toxicity.However,their inherent low catalytic activity limits their antibacterial properties.Herein,Cu single-atom sites/N doped porous carbon(Cu SASs/NPC)is successfully constructed for photothermal-catalytic antibacterial treatment by a pyrolysis-etching-adsorption-pyrolysis(PEAP)strategy.Cu SASs/NPC have stronger peroxidase-like catalytic activity,glutathione(GSH)-depleting function,and photothermal property compared with non-Cu-doped NPC,indicating that Cu doping significantly improves the catalytic performance of nanozymes.Cu SASs/NPC can effectively induce peroxidase-like activity in the presence of H2O2,thereby generating a large amount of hydroxyl radicals(•OH),which have a certain killing effect on bacteria and make bacteria more susceptible to temperature.The introduction of near-infrared(NIR)light can generate hyperthermia to fight bacteria,and enhance the peroxidase-like catalytic activity,thereby generating additional•OH to destroy bacteria.Interestingly,Cu SASs/NPC can act as GSH peroxidase(GSH-Px)-like nanozymes,which can deplete GSH in bacteria,thereby significantly improving the sterilization effect.PTT-catalytic synergistic antibacterial strategy produces almost 100%antibacterial efficiency against Escherichia coli(E.coli)and methicillin-resistant Staphylococcus aureus(MRSA).In vivo experiments show a better PTT-catalytic synergistic therapeutic performance on MRSA-infected mouse wounds.Overall,our work highlights the wide antibacterial and anti-infective bio-applications of Cu single-atom-containing catalysts. | Xianwen Wang Qianqian Shi Zhengbao Zha Dongdong Zhu Lirong Zheng Luoxiang Shi Xianwen Wei Lian Lian Konglin Wu Liang Cheng | 2021 | Bioactive Materials2021,6,12: | 6 |
| 7 | Strongly Coupled 2D Transition Metal Chalcogenide-MXene-Carbonaceous Nanoribbon Heterostructures with Ultrafast Ion Transport for Boosting Sodium/Potassium Ions Storage显示文摘Combining with the advantages of two-dimensional(2D)nanomaterials,MXenes have shown great potential in next generation rechargeable batteries.Similar with other 2D materials,MXenes generally suffer severe self-agglomeration,low capacity,and unsatisfied durability,particularly for larger sodium/potassium ions,compromising their practical values.In this work,a novel ternary heterostructure self-assembled from transition metal selenides(MSe,M=Cu,Ni,and Co),MXene nanosheets and N-rich carbonaceous nanoribbons(CNRibs)with ultrafast ion transport properties is designed for sluggish sodium-ion(SIB)and potassium-ion(PIB)batteries.Benefiting from the diverse chemical characteristics,the positively charged MSe anchored onto the electronegative hydroxy(-OH)functionalized MXene surfaces through electrostatic adsorption,while the fungal-derived CNRibs bonded with the other side of MXene through amino bridging and hydrogen bonds.This unique MXene-based heterostructure prevents the restacking of 2D materials,increases the intrinsic conductivity,and most importantly,provides ultrafast interfacial ion transport pathways and extra surficial and interfacial storage sites,and thus,boosts the high-rate storage performances in SIB and PIB applications.Both the quantitatively kinetic analysis and the density functional theory(DFT)calculations revealed that the interfacial ion transport is several orders higher than that of the pristine MXenes,which delivered much enhanced Na+(536.3 mAh g^(−1)@0.1 A g^(−1))and K^(+)(305.6 mAh g^(−1)@1.0 A g^(−1))storage capabilities and excel-lent long-term cycling stability.Therefore,this work provides new insights into 2D materials engineering and low-cost,but kinetically sluggish post-Li batteries. | Junming Cao Junzhi Li Dongdong Li Zeyu Yuan Yuming Zhang Valerii Shulga Ziqi Sun Wei Han | 2021 | Nano-Micro Letters2021,13,7: | 5 |
| 8 | In-situ Chemical Age of the Sandstone-hosted Uranium Deposit in Ningdong Area on the Western Margin of the Ordos Basin, North China显示文摘Objective The Ordos Basin located in the western part of the North China Craton bears various energy resources such as oil,gas,coal and uranium.It is one of the richest uranium-bearing basins in China.Since the discovery of the large-scale Dongsheng,Hangjinqi and Daying uranium deposits in the north of the Ordos Basin,a | WANG Feifei LIU Chiyang NIU Haiqing ZHOU Ningchao LI Xiuhua LUO Wei ZHANG Dongdong ZHAO Yan | 2018 | Acta Geologica Sinica(English Edition)2018,92,1: | 4 |
| 9 | Effect of Different Dietary Protein and Lipid Levels on the Growth,Body Composition,and Intestinal Digestive Enzyme Activities of Juvenile Yellow Drum Nibea albiflora(Richardson)显示文摘An 8-week feeding trial was conducted to determine the optimal dietary protein-to-lipid ratio for juvenile Nibea albiflora with an initial weight of(11.76 ± 0.20) g.Nine experimental diets containing different concentrations of protein(40%,47%,or 54%) and lipids(5%,9%,or 13%) in a 3 × 3 factorial experimental design were tested in triplicate groups of fish,while the protein-to-energy(P/E) ratios of the diets varied in the range of 19.74–28.32 mg k J^(-1).Results showed that fish fed diets containing 9% or 13% lipids with 54% protein exhibited significantly higher weight gains and specific growth rates than those fed other diets.The feed conversion rate of fish fed the diet with 40% protein and 5% lipids was significantly poorer than that of fish fed other diets.The protein efficiency rate of fish fed diets with 5% lipids was significantly lower than that of fish fed 9% or 13% lipid diets.Carcass lipid and energy contents were positively correlated with dietary lipid level regardless of protein level.Fish fed a 54% protein diet showed the highest trypsin activity.The intestinal lipase activity of fish fed the diet containing 13% lipids was significantly higher than that of fish fed 5% or 9% lipid diets.These results demonstrate the high protein dietary requirements of N.albiflora.A diet containing 54% protein and 9%–13% lipids with a P/E ratio of 26.2–27.81 mg protein k J^(-1) can be considered optimal for juvenile N.albiflora. | WANG Ligai HU Shenyu LOU Bao CHEN Dongxing ZHAN Wei CHEN Ruiyi LIU Feng XU Dongdong | 2018 | Journal of Ocean University of China2018,17,5: | 4 |
| 10 | Effects of samarium content on microstructure and mechanical properties of Mg–0.5Zn–0.5Zr alloy显示文摘Effects of samarium (Sm) content (0, 2.0, 3.5, 5.0, 6.5 wt%) on microstructure and mechanical proper-ties of Mg-0.5Zn-0.5 Zr alloy under as-cast and as-extruded states were thoroughly investigated. Results indicate that grains of the as-cast alloys are gradually refined as Sm content increases. The dominant intermetallic ph^se changes from Mg3Sm to Mg4iSm5 till Sm content exceeds 5.0 wt%. The dynami-cally precipitated intermetallic phase during hot-extrusion in dll Sm-containing alloys is Mg3Sm. The intermetallic particles induced by Sm addition could act as heterogeneous nucleation sites for dynamic recrystallization during hot extrusion. They promoted dynamic recrystallization via the particle stim-ulated nucleation mechanism, and resulted in weakening the basal texture in the as-extruded alloys. Sm addition can significantly enhance the strength of the as-extruded Mg-0.5Zn-0.5Zr alloy at room temperature, with the optimal dosage of 3.5 wt%. The optimal yield strength (YS) and ultimate tensile strength (UTS) are 368 MPa and 383 MPa, which were enhanced by approximately 23.1% and 20.8% com-pared with the Sm-free alloy, respectively. Based on microstructural analysis, the dominant strengthening mechanisms are revealed to be grain boundary strengthening and dispersion strengthening. | Kai Guan Fanzhi Meng Pengfei Qin Qiang Yang Dongdong Zhang Baishun Li Wei Sun Shuhui Lv Yuanding Huang Norbert Hort Jian Meng | 2019 | Journal of Materials Science & Technology2019,35,7: | 4 |
| 11 | Hd1,Ghd7,and DTH8 synergistically determine the rice heading date and yield-related agronomic traits显示文摘Heading date determines the seasonal and regional adaptation of rice(Oryza sativa L.)varieties and is mainly controlled by photoperiod sensitivity(PS).The core heading date genes Hd1,Ghd7,DTH8,and PRR37 act synergistically in regulating the PS.In this study,we systematically analyze the heading date,PS,and agronomic traits of eight homozygous lines with various combinations of Hd1,Ghd7,and DTH8 alleles in the prr37 background under long-day(LD)and short-day(SD)conditions,respectively.We find that Hd1 alone promotes heading,regardless of the day length.However,under LDs,Hd1 suppresses flowering,in coordination with functional Ghd7 or with Ghd7 and DTH8.These loci cooperate to negatively regulate the Ehd1-Hd3 a/RFT1 pathway and delay heading.Under SDs,Hd1 competes with various heading suppressors to promote heading.Therefore,the dual function of Hd1 is vital for PS.The lines carrying Hd1 alone show reduced plant height with fewer primary and secondary branches in panicles.Lines carrying Ghd7 and DTH8(with hd1)show delayed heading and improve agronomic traits.Overall,our results reveal the regulation of rice PS flowering by the core heading date genes and their effects on agronomic traits,providing valuable information for the selection of rice varieties for adaptation to different light and temperature conditions. | Kangli Sun Minghui Huang Wubei Zong Dongdong Xiao Chen Lei Yanqiu Luo Yingang Song Shengting Li Yu Hao Wanni Luo Bingqun Xu Xiaotong Guo Guangliang Wei Letian Chen Yao-Guang Liu Jingxin Guo | 2022 | Journal of Genetics and Genomics2022,49,5: | 4 |
| 12 | Conversion of D-glucose to L-lactate via pyruvate by an optimized cell-free enzymatic biosystem containing minimized reactions显示文摘Cell-free synthetic enzymatic biosystem is emerging to expand the traditional biotechnological mode by utilizing a number of purified/partially purified enzymes and coenzymes in a single reaction vessel for the production of desired products from low-cost substrates.Here,a cell-free synthetic biosystem containing minimized number of reactions was designed for the conversion of D-glucose to L-lactate via pyruvate.This NADH-balanced biosystem was comprised of only 5 thermophilic enzymes without ATP supplementation.After optimization of enzyme loading amounts,buffer concentration and cofactor concentration,D-glucose was converted to L-lactate with a product yield of∼90%.Our study has provided an emerging platform with potentials in producing pyruvatederived chemicals,and may promote the development of cell-free synthetic enzymatic biosystems for biomanufacturing. | Leipeng Xie Xinlei Wei Xigui Zhou Dongdong Meng Ruimin Zhou Yi-Heng P.Job Zhang Shuxia Xu Chun You | 2018 | Synthetic and Systems Biotechnology2018,3,3: | 3 |
| 13 | Protective effects of catalpol and rhein in murine experimental autoimmune encephalomyelitis via regulation of T helper (Th)1, Th2,Th17, and regulatory T cell responses显示文摘OBJECTIVE:To examine the effects of catalpol and rhein on pro-and anti-inflammatory responses in C57 BL/6 mice with experimental autoimmune encephalomyelitis(EAE),a model of multiple sclerosis.METHODS:Female C57 BL/6 mice were randomly divided into four groups(n=30):(a)normal salinecontrol,(b)EAE control,(c)EAE+prednisone acetate(PA,6 mg/kg),and(d)EAE+catalpol(40 mg/kg)and rhein(5 mg/kg).EAE was induced by injection of myelin oligodendrocyte glycoprotein 35-55 plus pertussis toxin.Treatments were orally administered daily for 40 d.Disease progression and neurological function were assessed using a semi-quantitative scale of tail and limb paralysis.Brains and spinal cords were collected on Days 6,20,and 40 and assessed for histopathological changes by hematoxylin and eosin staining.Production of interleukin(IL)-2,IL-4,IL-10,and IL-17 A protein was measured by enzyme-linked immunosorbent assay.Expression of the T helper(Th)1-,Th2-,Th17-,and regulatory T cell(Treg)-specific transcription factors T-bet,GATA3,ROR-γt,and Foxp3,respectively,were analyzed by quantitative reverse-transcription polymerase chain reaction and western blot analysis.RESULTS:Combination treatment with catalpol and rhein significantly alleviated the clinical disability and neurological dysfunction of mice with EAE.Catalpol and rhein treatment also reduced the infiltration of pro-inflammatory T cells into pathological lesions;significantly increased the expression of the anti-inflammatory factors GATA3,Foxp3,IL-4,and IL-10;and significantly decreased the expression of the pro-inflammatory factors T-bet,ROR-γt,IL-2,and IL-17 A.CONCLUSION:Catalpol and rhein reduced the neurological disabilities of mice with EAE,at least in part by rebalancing the pro-and anti-inflammatory environment in the brains and spinal cords. | Wei Mingyan Yang Tao Li Qian Zhou Dongdong Du Zongpan Fan Yongping | 2019 | Journal of Traditional Chinese Medicine2019,39,6: | 3 |
| 14 | Experimental Study on the Solubility of Fluorene in Different Solvents显示文摘The solubilities of fluorene in Exxsol D30, Exxsol D40, and crude dimethyl ethylbenzene(DME) from 299.25 to 356.85 K were investigated using the gas chromatography(GC) observation technique. Solubility curves were obtained based on the results and correlated with the modified Apelblat and λh equations to provide a valid model to predict the dissolution thermodynamic properties of fluorene at different temperatures, which is important in separating fluorene by crystallization. | Zhongli Tang Dongdong Wang Qilun Wang Wei Liu | 2019 | Transactions of Tianjin University2019,25,1: | 3 |
| 15 | Structure of African swine fever virus p15 reveals its dual role for membrane-association and DNA binding显示文摘Dear Editor, African swine fever (ASF) is a highly contagious disease of domestic pigs caused by African swine fever virus (ASFV),with mortality rates approaching 90%-100%.The first ASF case was described in 1921 in Kenya.Over the past decades, ASF has spread from Sub-Saharan Africa to Europe and Asia, and pose a huge threat to global food safety.Since the first ASF case reported in August 2018, more than 10 million pigs had been culled in China at an enormous economic loss.The risk of ASFV mutating to infect humans is extremely low.However, ASF not only threatens food security but also severely strikes the world economy in many fields, such as the global supply of the blood thinner heparin,most of which is produced from pigs.Hence, ASF is a strictly monitored infectious animal disease by OIE (World Organization for Animal Health), unfortunately, there is no approved drug or vaccine against this lethal viral disease. | Dan Fu Dongming Zhao Wei Zhang Guangshun Zhang Mingyu Li Zheng Zhang Yuhui Wang Dongdong Sun Peng Jiao Cheng Chen Yu Guo Zihe Rao | 2020 | Protein & Cell2020,11,8: | 3 |
| 16 | ACBD3 is required for FAPP2 transferring glucosylceramide through maintaining the Golgi integrity显示文摘Glycosphingolipid (GSL) metabolism is involved in various physiological processes, including all major cell signaling pathways, and its dysregulation is linked to some diseases. The four-phosphate adaptor protein FAPP2-mediated glucosylceramide (GlcCer) transport for complex GSL synthesis has been studied extensively. However, the molecular machinery of FAPP2 as a GlcCer-transferring protein remains poorly defined. Here, we identify a Golgi-resident protein, acyl-coenzyme A binding domain containing 3 (ACBD3), as an interacting partner of FAPP2. We find that ACBD3 knockdown leads to dramatic Golgi fragmentation, which subsequently causes FAPP2 dispersal throughout the cytoplasm and a decreased localization at trans-Golgi network. The further quantitative Upidomic analysis indicates that ACBD3 knockdown triggers abnormal sphingolipid metabolism. Interestingly, the expression of siRNA-resistant full-length ACBD3 can rescue these defects caused by ACBD3 knockdown. These data reveal critical roles for ACBD3 in maintaining the integrity of Golgi morphology and cellular sphingolipid homeostasis and establish the importance of the integrated Golgi complex for the transfer of GlcCer and complex GSL synthesis. | Jing Liao Yuxiang Guan Wei Chen Can Shi Dongdong Yao Fengsong Wang Sin Man Lam Guanghou Shui Xinwang Cao | 2019 | Journal of Molecular Cell Biology2019,11,2: | 3 |
| 17 | Proteomics provides individualized options of precision medicine for patients with gastric cancer显示文摘While precision medicine driven by genome sequencing has revolutionized cancer care,such as lung cancer,its impact on gastric cancer(GC)has been minimal.GC patients are routinely treated with chemotherapy,but only a fraction of them receive the clinical benefit.There is an urgent need to develop biomarkers or algorithms to select chemo-sensitive patients or apply targeted therapy.Here,we carried out retrospective analyses of 1,020 formalin-fixed,paraffin-embedded GC surgical resection samples from 5 hospitals and developed a mass spectrometry-based workflow for proteomic subtyping of GC.We identified two proteomic subtypes:the chemo-sensitive group(CSG)and the chemo-insensitive group(CIG)in the discovery set.The 5-year overall survival of CSG was significantly improved in patients who had received adjuvant chemotherapy after surgery compared with those who received surgery only(64.2%vs.49.6%;Cox P-value=0.002),whereas no such improvement was observed in CIG(50.0%vs.58.6%;Cox P-value=0.495).We validated these results in an independent validation set.Further,differential proteome analysis uncovered 9 FDA-approved drugs that may be applicable for targeted therapy of GC.A prospective study is warranted to test these findings for future GC patient care. | Wenwen Huang Dongdong Zhan Yazhuo Li Nairen Zheng Xin Wei Bin Bai Kecheng Zhang Mingwei Liu Xuefei Zhao Xiaotian Ni Xia Xia Jinwen Shi Cheng Zhang Zhihao Lu Jiafu Ji Juan Wang Shiqi Wang Gang Ji Jipeng Li Yongzhan Nie Wenquan Liang Xiaosong Wu Jianxin Cui Yongsheng Meng Feilin Cao Tieliu Shi Weimin Zhu Yi Wang Lin Chen Qingchuan Zhao Hongwei Wang Lin Shen Jun Qin | 2021 | Science China(Life Sciences)2021,64,8: | 3 |
| 18 | Recent advances in molecular fluorescent probes for organic phosphate biomolecules recognition显示文摘Organic phosphate biomolecules(OPBs) are indispensable components of eukaryotes and prokaryotes,such as acting as the fundamental components of cell membranes and important substrates for nucleic acids. They play pivotal roles in various biological processes, such as energy conservation, metabolism,and signal modulation. Due to the difficulty of detection caused by variety OPBs, investigation of their respective physiological effects in organisms has been restrained by the lack of efficient tools. Many small fluorescent probes have been employed for selective detection and monitoring of OPBs in vitro or in vivo due to the advantages of tailored properties, biodegradability and in situ high temporal and spatial resolution imaging. In this review, we summarize the recent advances in fluorescent probes for OPBs,such as nucleotides, NAD(P)H, FAD/FMN and PS. Importantly, we describe their identification mechanisms in detail and discuss the general strategies for these OPBs probe designs, which provide new insights and ideas for the future probe designs. | Wei Li Xiangyang Gong Xiaopeng Fan Shulu Yin Dongdong Su Xiaobing Zhang Lin Yuan | 2019 | Chinese Chemical Letters2019,30,10: | 2 |
| 19 | Fixing, preventing, and recovering from concurrency bugs显示文摘Concurrency bugs are becoming widespread with the emerging ubiquity of multicore processors and multithreaded software. They manifest during production runs and lead to severe losses. Many effective concurrency-bug detection tools have been built. However, the dependability of multi-threaded software does not improve until these bugs are handled statically or dynamically. This article discusses our recent progresses on fixing, preventing, and recovering from concurrency bugs. | DENG DongDong JIN GuoLiang de KRUIJF Marc LI Ang LIBLIT Ben LU Shan QI ShanXiang REN JingLei SANKARALINGAM Karthikeyan SONG LinHai WU YongWei ZHANG MingXing ZHANG Wei ZHENG WeiMin | 2015 | Science China(Information Sciences)2015,58,5: | 2 |
| 20 | Time Sequence Change-Point Model of Electrostatic State Parameters of Aircraft Engine显示文摘Electrostatic monitoring technology of particle charging information can facilitate online monitoring of aero-engine,which effectively enhances engine fault diagnosis and health managements.Unlike traditional engine state monitoring technologies,aircraft engine monitoring by gas path electrostatic monitoring not only covers the predicted information source itself,but also detects the information that can provide an early warnings for initial fault states through gas path charging levels.This paper establishes a non-stationary time sequence change-point model for anomaly recognition of electrostatic signals based on change-point theory combined with difference method of non-stationary time series.Finally,electrostatic induction data were utilized by the engine life test for a particular aircraft to validate the proposed algorithm.The results indicate that the activity level and the event rate were0.5—0.8(nc)and 50%,respectively,which were far greater than 4—12(pc)and 0—4% under normal working conditions of the engine. | Fu Yu Wei Dongdong Zuo Hongfu Feng Zhengxing | 2018 | Transactions of Nanjing University of Aeronautics and Astronautics2018,35,1: | 2 |