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| 1 | Precise nanomedicine for intelligent therapy of cancer显示文摘Precise nanomedicine has been extensively explored for efficient cancer imaging and targeted cancer therapy, as evidenced by a few breakthroughs in their preclinical and clinical explorations. Here, we demonstrate the recent advances of intelligent cancer nanomedicine, and discuss the comprehensive understanding of their structure-function relationship for smart and efficient cancer nanomedicine including various imaging and therapeutic applications, as well as nanotoxicity. In particular, a few emerging strategies that have advanced cancer nanomedicine are also highlighted as the emerging focus such as tumor imprisonment, supramolecular chemotherapy, and DNA nanorobot. The challenge and outlook of some scientific and engineering issues are also discussed in future development. We wish to highlight these new progress of precise nanomedicine with the ultimate goal to inspire more successful explorations of intelligent nanoparticles for future clinical translations. | Huabing Chen Zhanjun Gu Hongwei An Chunying Chen Jie Chen Ran Cui Siqin Chen Weihai Chen Xuesi Chen Xiaoyuan Chen Zhuo Chen Baoquan Ding Qian Dong Qin Fan Ting Fu Dayong Hou Qiao Jiang Hengte Ke Xiqun Jiang Gang Liu Suping Li Tianyu Li Zhuang Liu Guangjun Nie Muhammad Ovais Daiwen Pang Nasha Qiu Youqing Shen Huayu Tian Chao Wang Hao Wang Ziqi Wang Huaping Xu Jiang-Fei Xu Xiangliang Yang Shuang Zhu Xianchuang Zheng Xianzheng Zhang Yanbing Zhao Weihong Tan Xi Zhang Yuliang Zhao | 2018 | Science China Chemistry2018,61,12: | 19 |
| 2 | Co-delivery of doxorubicin and quercetin via mPEG-PLGA copolymer assembly for synergistic anti-tumor efficacy and reducing cardio-toxicity显示文摘橡黄素(Que ) 是自然多功能的 bioflavonoid,并且为减少不利副作用并且提高化学疗法的药的反肿瘤功效显示出大潜力。然而,它的临床的申请在生理的系统由于很低的溶解度和结构的不稳定性被限制。此处,我们共同交付由开发 amphiphilic 聚合物包括的 biocompatible nanocarrier 的恐水病的橡黄素和吸水的 doxorubicin (纪录影片) , methoxy poly (乙烯乙二醇) 并且 poly (D, L-lactide-co-glycolide ) 分别地。反肿瘤和这个系统的预防功效被评估在细胞并且动物模型。我们说明的调查结果 Dox-Que nanoparticulate 明确的表达保护了正常脉管的 endothelial 房间免受免费的任何一个或 nanoparticulate 的伤害导致 doxorubicin 的 cytotoxicity 和增加的癌症房间死亡。与免费 doxorubicin 和它的 nanoformulation 相比,用我们的 nanosystem 的橡黄素和 doxorubicin 的合作交货 synergistically 禁止了肿瘤生长,当在浆液维持心脏的功能指示物的正常层次并且在心织物恢复组织病理学说的损坏时。这研究为提高反癌症药功效并且减少 nanoparticulate 表明有希望的策略正常纸巾上的导致化疗的毒性。 | Waseem Akhtar Qureshi Ruifang Zhao Hai Wang Tianjiao Ji Yanping Ding Ayesha Ihsan Ayeesha Mujeeb Guangjun Nie Yuliang Zhao | 2016 | Science Bulletin2016,61,21: | 9 |
| 3 | 2D graphdiyne materials:challenges and opportunities in energy field显示文摘Graphdiyne(GDY),a novel two-dimensional(2D)carbon allotrope featuring one-atom-thick planar layers of sp andhybridized carbon network,is a rapidly rising star on the horizon of materials science.Because of its unparalleled structural,electronic,chemical and physical properties,it has been receiving unprecedented increases from fundamental studies to practical applications,particularly the field of energetic materials.In this review,we aim at providing an up-to-date comprehensive overview on the state-of-the-art research into GDY,from theoretical studies to the key achievements in the development of new GDY-based energetic materials for energy storage and conversion.By reviewing the state-of-the-art achievements,we aim to address the benefits and issues of GDY-based materials,as well as highlighting the existing key challenges and future opportunities in this exciting field. | Yurui Xue Yuliang Li Jin Zhang Zhongfan Liu Yuliang Zhao | 2018 | Science China Chemistry2018,61,7: | 7 |
| 4 | Smart CU1.75S nanocapsules with high and stable photothermal efficiency for NIR photo-triggered drug release显示文摘Thermosensitive 药交货系统(DDS ) 面对主要挑战,例如遥远、可重复的控制在 vivo 温度,尽管这些能增加药的治疗学的功效。处理这个问题,我们涂在红外线附近(NIR ) photothermal Cu 1.75 有 pH/thermos-sensitive 聚合物由的 S nanocrystals 在 situ 聚合。装载内容的 doxorubicine (纪录影片) 直到 40 wt.% ,与纪录影片在正常生理的条件下面正在被漏的不到 8.2 wt.%(pH = 7.4, 37 吗? | Sheng Huang Jing Liu Qian He Hongli Chen Jiabin Cui Suying Xu Yuliang Zhao Chunying Chen Leyu Wang | 2015 | Nano Research2015,8,12: | 7 |
| 5 | Sensing system for mimicking cancer cell–drug interaction显示文摘Biomarker discovery for early detection and therapy of diseases has been blooming for the past two decades.Following the identification of new biomarkers,research and development of sensing platforms has started to become more urgently needed recently,in both laboratory and clinical settings. | Yuliang Zhao | 2015 | Science Bulletin2015,60,13: | 7 |
| 6 | Mesoporous silica SBA-15 functionalized with phosphonate and amino groups for uranium uptake显示文摘Mesoporous silicas have a very attractive ability of sorption and enrichment of metal ions due to their huge surface area and facile functionalization by organic ligands.In this work,phosphonate-amino bifunctionalized mesoporous silica SBA-15(PA-SBA-15) as U(VI) sorbent was fabricated through post-grafting method.The obtained mesoporous silica was characterized by SEM,XRD,NMR and nitrogen sorption/desorption experiments,which revealed the existence of ordered mesoporous structure with uniform pore diameter and large surface area.The adsorptivity of PA-SBA-15 for U(VI) from aqueous solution was investigated using batch sorption technique under different experimental conditions.The preliminary results show that the U(VI) sorption by PA-SBA-15 is very quick with equilibrium time of less than 1 h,and the U(VI) uptake is as large as 373 mg/g at pH 5.5 under 95 ℃.The sorption isotherm has been successfully modeled by the Langmuir isotherm,suggesting a monolayer homogeneous sorption of U(VI) in PA-SBA-15.The sorption is pH-dependent due to the pH-dependent charge of sorbent in the aqueous solution.The thermodynamics research shows that the sorption is a feasible and endothermic process.Based on these results,PA-SBA-15 could be a promising solid phase sorbent for highly-efficient removal of U(VI) ions from waste water and enrichment of U(VI) from a solution at a very low level. | WANG XiaoLiang YUANLiYong WANG YanFei LI ZiJie LIU YaLan FENG YiXiao ZHAO YuLiang CHAI ZhiFang SHI WeiQun | 2012 | Science China Chemistry2012,55,9: | 6 |
| 7 | Ceria Nanoparticles as Enzyme Mimetics显示文摘 | Guohua Wang Junzhe Zhang Xiao He Zhiyong Zhang Yuliang Zhao | 2017 | Chinese Journal of Chemistry2017,35,6: | 5 |
| 8 | Screen efficiency comparisons of decision tree and neural network algorithms in machine learning assisted drug design显示文摘In view of huge search space in drug design, machine learning has become a powerful method to predict the affinity between small molecular drug and targeting protein with the development of artificial intelligence technology. However, various machine learning algorithms including massive different parameters make the prediction framework choice to be quite difficult. In this work, we took a recent drug design competition(from XtalPi company on the DataCastle platform) as the typical case to find the optimized parameters for different machines learning algorithms and the most effective algorithm. After the parameter optimizations, we compared the typical machine learning methods as decision tree(XGBoost, LightGBM) and artificial neural network(MLP, CNN) with root-mean-square error(RMSE) and coefficient of determination(R^2) evaluation. As a result, decision tree is more effective than the neural network as LightGBM>XGBoost>CNN>MLP in the affinity prediction of the specific drug design problem with ~160000 samples. For a much larger screening task in a more complicated drug design study, the sophisticated neural network model may go beyond the decision tree algorithm after generalization enhancing and overfitting reducing. The advanced machine learning methods could extract more information of protein-ligand bindings than traditional ones and improve the screen efficiency of drug design up to 200–1000 times. | Qiumei Pu Yinghao Li Hong Zhang Haodong Yao Bo Zhang Bingji Hou Lin Li Yuliang Zhao Lina Zhao | 2019 | Science China Chemistry2019,62,4: | 5 |
| 9 | In situ observation of C_(60)(C(COOH)_(2))_(2) interacting with living cells using fluorescence microscopy显示文摘The interactions between nanoparticles and living cells were investigated by an imaging technique of fluorescence microscopy. For this pur- pose, the C60 derivative C60(C(COOH)2)2, a thera- peutic agent for degeneration diseases of central nervous system, was synthesized, purified and characterized. Its interaction with the living cell and penetration of the cellular membrane were in situ studied using the real time imaging technique, and its potential cytotoxicity was also examined by flow cy- tometry. The results indicate that C60(C(COOH)2)2 can easily enter cells, and is mainly located in cytoplasm by fluorescein labeling. Furthermore, C60(C(COOH)2)2 can carry the molecule that cannot cross cellular membranes into cells, because fluo- rescein compound itself cannot enter the cell or ad- here to membrane. At concentrations ranging from 1×10?2 to 1×102 mg/L, C60(C(COOH)2)2 does not show any detectable cytotoxicity. | YE Chang CHEN Chunying CHEN Zhen MENG Huan XING Li JIANG Yaxin YUAN Hui XING Gengmei ZHAO Feng ZHAO Yuliang CHAI Zhifang FANG Xiaohong HAN Dong CHEN Long WANG Chen WEI Taotao | 2006 | Chinese Science Bulletin2006,51,9: | 4 |
| 10 | Bottom-up construction of highly ordered mesoporous graphene frameworks显示文摘Graphene,a two-dimensional(2D)sheet of carbon atoms,has attracted increasingly greater attention since its first isolation in 2004[1].Apart from the excellent electrical conductivity,graphene also possesses an exceptionally high specific surface area(*2,630 m2/g),which makes it particularly suitable for applications in electrochemical energy storage devices such as lithium-ion batteries(LIBs)and supercapacitors[2,3].However,graphene sheets | Yuliang Zhao | 2015 | Science Bulletin2015,60,22: | 4 |
| 11 | Mixed polyanion cathode materials:Toward stable and high-energy sodium-ion batteries显示文摘Sodium-ion batteries(SIBs)are considered as one of the most fascinating alternatives to lithium-ion batteries for grid-scale energy storage applications because of the low cost and wide abundance of sodium resources.Among various cathode materials,mixed polyanion compounds come into the spotlight as promising electrode materials due to their superior electrochemical properties,such as high working voltage,long cycling stability,and facile reaction kinetics.In this review,we summarize the recent development in the exploration of different mixed polyanion cathode materials for SIBs.We provide a comprehensive understanding of the structure-composition-performance relationship of mixed polyanion cathode materials together with the discussion of their sodium storage mechanisms.It is anticipated that further innovative works on the material design of advanced cathode materials for batteries can be inspired. | Along Zhao Yongjin Fang Xinping Ai Hanxi Yang Yuliang Cao | 2021 | Journal of Energy Chemistry2021,30,9: | 4 |
| 12 | Estimation of Potential Risk of Reservoir-Induced Earthquake for the Proposed Hydroelectric Project on the Yangtze Gorges显示文摘The proposed hydroelectric project on the Yangtze Gorges will be one of the largest power stations in the world.The problem of induced seismicity to the project has attracted much attention throughout China and the world.A research program has been carried out by the State Seismological Bureau of China.Based on the size of the reservoir and the lithology,geological structure,permeability,stress state,and previous seismicity in the region,the potential risk of reservoir-induced seismicity has been estimated.The results suggest that,after impoundment in the reservoir area,the possibility of induced seismicity cannot be completely ruled out.The areas with potential risk may be in some gorges composed of karstified carbonate and plutonic granite around the dam site.However,the magnitude is expected to be limited owing to the small dimension of the induced seismogenic faults. | Hu Yuliang,Zhao Meng,Hu Ping,Ma Wentao,Yang Qingyuan,and Chen Xiancheng Institute of Geology,State Seismological Bureau,Beijing 100029,China | 1995 | Earthquake Research in China1995,9,4: | 4 |
| 13 | Solvent extraction of U(VI) by trioctylphosphine oxide using a room-temperature ionic liquid显示文摘The unique physical and chemical properties of room-temperature ionic liquids(RTILs) have recently received increasing attention as solvent alternatives for possible application in the field of nuclear industry, particularly in liquid-liquid separations of radioactive nuclides. We investigated solvent extraction of U(VI) from aqueous solutions into a commonly used ionic liquid 1-butyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide([C4mim][NTf2]) using trioctylphosphine oxide(TOPO) as an extractant. The effects of contact time, TOPO concentration, acidity, and nitrate ions on the U(VI) extraction are discussed in detail. The extraction mechanism was proposed based on slope analysis and UV-Vis measurement. The results clearly show that TOPO/[C4mim][NTf2] provides a highly efficient extraction of U(VI) from aqueous solution under near-neutral conditions. When the TOPO concentration was 10 mmol/L, the extraction of 1 mmol/L U(VI) was almost complete(> 97%). Both the extraction efficiency and distribution coefficient were much larger than in conventional organic solvents such as dichloromethane. Slope analysis confirmed that three TOPO molecules in [C4mim][NTf2] bound with one U(VI) ion and one nitrate ion was also involved in the complexation and formed the final extracted species of [UO2(NO3)(TOPO)3]+. Such a complex suggests that extraction occurs by a cation-exchange mode, which was subsequently evidenced by the fact that the concentration of C4mim+ in the aqueous phase increased linearly with the extraction percent of U(VI) recorded by UV-Vis measurement. | YUAN LiYong SUN Man LIAO XiangHong ZHAO YuLiang CHAI ZhiFang SHI WeiQun | 2014 | Science China Chemistry2014,57,11: | 4 |
| 14 | Nano-bio interactions: the implication of size-dependent biological effects of nanomaterials显示文摘Due to their many advantageous properties,nanomaterials(NMs)have been utilized in diverse consumer goods,industrial products,and for therapeutic purposes.This situation leads to a constant risk of exposure and uptake by the human body,which are highly dependent on nanomaterial size.Consequently,an improved understanding of the interactions between different sizes of nanomaterials and biological systems is needed to design safer and more clinically relevant nano systems.We discuss the sizedependent effects of nanomaterials in living organisms.Upon entry into biological systems,nanomaterials can translocate biological barriers,distribute to various tissues and elicit different toxic effects on organs,based on their size and location.The association of nanomaterial size with physiological structures within organs determines the site of accumulation of nanoparticles.In general,nanomaterials smaller than 20 nm tend to accumulate in the kidney while nanomaterials between 20 and 100 nm preferentially deposit in the liver.After accumulating in organs,nanomaterials can induce inflammation,damage structural integrity and ultimately result in organ dysfunction,which helps better understand the size-dependent dynamic processes and toxicity of nanomaterials in organisms.The enhanced permeability and retention effect of nanomaterials and the utility of this phenomenon in tumor therapy are also highlighted. | Xiaoyu Wang Xuejing Cui Yuliang Zhao Chunying Chen | 2020 | Science China(Life Sciences)2020,63,8: | 4 |
| 15 | System Reliability Analysis of an Offshore Jacket Platform显示文摘This study investigates strategies for solving the system reliability of large three-dimensional jacket structures.These structural systems normally fail as a result of a series of different components failures.The failure characteristics are investigated under various environmental conditions and direction combinations.Theβ-unzipping technique is adopted to determine critical failure components,and the entire system is simplified as a series-parallel system to approximately evaluate the structural system reliability.However,this approach needs excessive computational effort for searching failure components and failure paths.Based on a trained artificial neural network(ANN),which can be used to approximate the implicit limit-state function of a complicated structure,a new alternative procedure is proposed to improve the efficiency of the system reliability analysis method.The failure probability is calculated through Monte Carlo simulation(MCS)with Latin hypercube sampling(LHS).The features and applicability of the above procedure are discussed and compared using an example jacket platform located in Chengdao Oilfield,Bohai Sea,China.This study provides a reference for the evaluation of the system reliability of jacket structures. | ZHAO Yuliang DONG Sheng JIANG Fengyuan GUEDES SOARES Carlos | 2020 | Journal of Ocean University of China2020,19,1: | 3 |
| 16 | Toxicity of manufactured nanomaterials显示文摘Manufactured nanomaterials with unique properties have been extensively applied in various indus-trial,agricultural or medical fields.However,some of the properties have been identified to be closely related to nanomaterial toxicity.The'nano-paradox'has aroused concerns over the use and develop-ment of nanotechnology,which makes it difficult for regulatory agencies to regulate nanomaterials.The key to fulfilling proper nanomaterial regulation lies in the adequate understanding of the impact of nanomaterial properties on nano-bio interactions.To this end,we start the present work with a brief intro-duction to nano-bio interactions at different levels.Based on that,how key toxicity-associated properties of manufactured nanomaterials(i.e.,size,shape,chemical composition,surface properties,biocorona formation,agglomeration and/or aggregation state,and biodegradability)impact their toxicokinetics,cel-lular uptake,trafficking and responses,and toxicity mechanisms is deeply explored.Moreover,advanced analytical methods for studying nano-bio interactions are introduced.Furthermore,the current reg-ulatory and legislative frameworks for nanomaterial-containing products in different regions and/or countries are presented.Finally,we propose several challenges facing the nanotoxicology field and their possible solutions to shed light on the safety evaluation of nanomaterials. | Yaping Liu Shuang Zhu Zhanjun Gu Chunying Chen Yuliang Zhao | 2022 | Particuology2022,20,10: | 3 |
| 17 | Applications of radiotracer techniques for the pharmacology and toxicology studies of nanomaterials显示文摘With the rapid development of nanosciences and nanotechnology, a wide variety of manufactured nanomaterials are now used in commodities, pharmaceutics, cosmetics, biomedical products, and industries. While nanomaterials possess more novel and unique physicochemical properties than bulk materials, they also have an unpredictable impact on human health. In the pharmacology and toxicology studies of nanomaterials, it is essential to know the basic behavior in vivo, i.e. absorption, distribution, metabolism, and excretion (ADME) of these newly designed materials. Radiotracer techniques are especially well suited to such studies and have got the chance to demonstrate their enchantment. In this paper, radiolabeling methods for carbon nanomaterials, metallic and metal oxide nanoparticles, etc. are summarized and the applications of the radiolabeled nanomaterials in pharmacology and toxicology studies are outlined. | ZHANG ZhiYong ZHAO YuLiang CHAI ZhiFang | 2009 | Chinese Science Bulletin2009,54,2: | 3 |
| 18 | Nanotechnology in the programmed cell therapy:nowhere to escape of cancer显示文摘For lymphomas,the transport of chemotherapeutic drugs usually meets physical barriers to the lymph nodes where disseminated tumor cells frequently reside.But new findings show that autologous T cells as live vectors combined with nanotechnology-based drug delivery can provide a novel opportunity for the improved chemotherapy toward lymphomas. | Jinxia Li Yuliang Zhao | 2016 | Science Bulletin2016,61,1: | 2 |
| 19 | Autonomous live working robot navigation with real-time detection and motion planning system on distribution line显示文摘In this study,an autonomous robot navigation system is designed for live working on distribution line.The developed system features a real-time detection and motion planning system,incorporating a manipulator capable of grasping power components.In order to accurately identify targets,the authors propose an object detection method based on the Larger Scale‘You Only Look Once’Version 4(LS-YOLOv4)algorithm for detecting the insulators and drop fuses.The LS-YOLOv4 extracts features of power components by Convolutional Neural Network(CNN),and then performs feature fusion.Then the authors develop a motion planning method based on the Node Control Optimal Rapidly Exploring Random Trees(NC-RRT*),which can drive the robot to realise the autonomous robot motion planning and obstacle avoidance.On the grasping function,the authors present a reliable Lightweight-based Convolutional Neural Network(L-CNN)grasping point detection method.Finally,the authors evaluate fully autonomous robotic system in both simulated and real-world experiments.The experimental results demonstrate that the proposed system can effectively identify the target and complete the grasping task in an efficient way.Notably,the proposed motion planning method can take into account both planning efficiency and accuracy to manipulation tasks. | Haoning Zhao Chaoqun Wang Rui Guo Xuewen Rong Jiamin Guo Qixun Yang Lecheng Yang Yuliang Zhao Yibin Li | 2022 | High Voltage2022,7,6: | 2 |
| 20 | A novel surrogate modeling strategy of the mechanical properties of 3D braided composites显示文摘In this paper,a surrogate-based modeling methodology is developed and presented to predict the elastic properties of three dimensional(3 D)four-directional braided composites.Using this approach,the prediction process becomes feasible with only a limited number of training points.The surrogate models constructed using Finite Element(FE)method and Diffuse Approximation,reduce the computational time and cost for preparing experimental samples.In the FE model,multiscale method is applied to couple the computations of elastic properties at microscale and mesoscale.Subsequently,a parametric study is performed to analyze the effects of the three design parameters on the elastic properties.Satisfactory results are obtained via the surrogatebased modeling predictions,which are compared with the experimental measurements.Moreover,the predictions obtained from surrogate models concur well with the FE predictions.This study orients a new direction for predicting the mechanical properties based on surrogate models which can effectively reduce the sample preparation cost and computational efforts. | Zeyi LIU Yuliang HOU Qiaoli ZHAO Cheng LI | 2020 | Chinese Journal of Aeronautics2020,33,10: | 2 |