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| 1 | Genome-Wide Expression Pattern Analyses of the Arabidopsis Leucine-Rich Repeat Receptor-Like Kinases显示文摘像受体的蛋白质 kinases (RLK ) 是在房间房间和房间环境通讯起关键作用的 transmembrane 蛋白质的一个大组。基于细胞外的领域结构, RLK 被分类进超过 21 个亚科,充满白氨酸的重复 RLK (LRR-RLKs ) 在象 Arabidopsis 和米饭那样的植物在之中属于最大的亚科。在 Arabidopsis,有近似 223LRR-RLKs,但是哪个中的仅仅大约 60 个机能上地迄今为止被描述了。为了系统地在调整调查 LRR-RLKs 的 theroles,种生长,开发,和压力改编,我们产生了 promoter::GUS 为在 Arabidopsis 的所有 223 LRR-RLK 基因的转基因的植物并且在各种各样的发展舞台分析了他们的详细表达式模式。Theresults 提供 forfunctionally 阐明的珍贵资源这个大、必要的发信号的蛋白质亚科。 | Yunzhe Wu Qingqing Xun Yi Guo Jinghua Zhang Kaili Cheng Tao Shi Kai He Suiwen Hou Xiaoping Gou Jia Li | 2016 | Molecular Plant2016,9,2: | 13 |
| 2 | A Facile Method to Improve the High Rate Capability of Co_(3)O_(4)Nanowire Array Electrodes显示文摘The capability of fast charge and fast discharge is highly desirable for the electrode materials used in supercapacitors and lithium ion batteries.In this article,we report a simple strategy to considerably improve the high rate capability of Co_(3)O_(4)nanowire array electrodes by uniformly loading Ag nanoparticles onto the surfaces of the Co_(3)O_(4)nanowires via the silver-mirror reaction.The highly electrically conductive silver nanoparticles function as a network for the facile transport of electrons between the current collectors(Ti substrates)and the Co_(3)O_(4)active materials.High capacity as well as remarkable rate capability has been achieved through this simple approach.Such novel Co_(3)O_(4)-Ag composite nanowire array electrodes have great potential for practical applications in pseudo-type supercapacitors as well as in lithium ion batteries. | Hua Cheng Zhou Guang Lu Jian Qiu Deng C.Y.Chung Kaili Zhang Yang Yang Li | 2010 | Nano Research2010,3,12: | 12 |
| 3 | Challenges and strategies for in situ endothelialization and long-term lumen patency of vascular grafts显示文摘Vascular diseases are the most prevalent cause of ischemic necrosis of tissue and organ,which even result in dysfunction and death.Vascular regeneration or artificial vascular graft,as the conventional treatment modality,has received keen attentions.However,small-diameter(diameter<4 mm)vascular grafts have a high risk of thrombosis and intimal hyperplasia(IH),which makes long-term lumen patency challengeable.Endothelial cells(ECs)form the inner endothelium layer,and are crucial for anti-coagulation and thrombogenesis.Thus,promoting in situ endothelialization in vascular graft remodeling takes top priority,which requires recruitment of endothelia progenitor cells(EPCs),migration,adhesion,proliferation and activation of EPCs and ECs.Chemotaxis aimed at ligands on EPC surface can be utilized for EPC homing,while nanofibrous structure,biocompatible surface and cell-capturing molecules on graft surface can be applied for cell adhesion.Moreover,cell orientation can be regulated by topography of scaffold,and cell bioactivity can be modulated by growth factors and therapeutic genes.Additionally,surface modification can also reduce thrombogenesis,and some drug release can inhibit IH.Considering the influence of macrophages on ECs and smooth muscle cells(SMCs),scaffolds loaded with drugs that can promote M2 polarization are alternative strategies.In conclusion,the advanced strategies for enhanced long-term lumen patency of vascular grafts are summarized in this review.Strategies for recruitment of EPCs,adhesion,proliferation and activation of EPCs and ECs,anti-thrombogenesis,anti-IH,and immunomodulation are discussed.Ideal vascular grafts with appropriate surface modification,loading and fabrication strategies are required in further studies. | Yu Zhuang Chenglong Zhang Mengjia Cheng Jinyang Huang Qingcheng Liu Guangyin Yuan Kaili Lin Hongbo Yu | 2021 | Bioactive Materials2021,6,6: | 5 |
| 4 | Integration of data-intensive,machine learning and robotic experimental approaches for accelerated discovery of catalysts in renewable energy-related reactions显示文摘Technological advancements in recent decades have greatly transformed the field of material chemistry.Juxtaposing the accentuating energy demand with the pollution associated,urgent measures are required to ensure energy maximization,while reducing the extended experimental time cycle involved in energy production.In lieu of this,the prominence of catalysts in chemical reactions,particularly energy related reactions cannot be undermined,and thus it is critical to discover and design catalyst,towards the optimization of chemical processes and generation of sustainable energy.Most recently,artificial intelligence(AI)has been incorporated into several fields,particularly in advancing catalytic processes.The integration of intensive data set,machine learning models and robotics,provides a very powerful tool in modifying material synthesis and optimization by generating multifarious dataset amenable with machine learning techniques.The employment of robots automates the process of dataset and machine learning models integration in screening intermetallic surfaces of catalyst,with extreme accuracy and swiftness comparable to a number of human researchers.Although,the utilization of robots in catalyst discovery is still in its infancy,in this review we summarize current sway of artificial intelligence in catalyst discovery,briefly describe the application of databases,machine learning models and robots in this field,with emphasis on the consolidation of these monomeric units into a tripartite flow process.We point out current trends of machine learning and hybrid models of first principle calculations(DFT)for generating dataset,which is integrable into autonomous flow process of catalyst discovery.Also,we discuss catalyst discovery for renewable energy related reactions using this tripartite flow process with predetermined descriptors. | Oyawale Adetunji Moses Wei Chen Mukhtar Lawan Adam Zhuo Wang Kaili Liu Junming Shao Zhengsheng Li Wentao Li Chensu Wang Haitao Zhao Cheng Heng Pang Zongyou Yin Xuefeng Yu | 2021 | Materials Reports(Energy)2021,1,3: | 3 |
| 5 | Machine learning accelerated calculation and design of electrocatalysts for CO_(2) reduction显示文摘In the past decades,machine learning(ML)has impacted the field of electrocatalysis.Modern researchers have begun to take advantage of ML‐based data‐driven techniques to overcome the computational and experimental limitations to accelerate rational catalyst design.Hence,significant efforts have been made to perform ML to accelerate calculation and aid electrocatalyst design for CO_(2) reduction.This review discusses recent applications of ML to discover,design,and optimize novel electrocatalysts.First,insights into ML aided in accelerating calculation are presented.Then,ML aided in the rational design of the electrocatalyst is introduced,including establishing a data set/data source selection and validation of descriptor selection of ML algorithms validation and predictions of the model.Finally,the opportunities and future challenges are summarized for the future design of electrocatalyst for CO_(2) reduction with the assistance of ML. | Zhehao Sun Hang Yin Kaili Liu Shuwen Cheng Gang Kevin Li Sibudjing Kawi Haitao Zhao Guohua Jia Zongyou Yin | 2022 | SmartMat2022,3,1: | 2 |
| 6 | BmCyclin B and BmCyclin B3 are required for cell cycle progression in the silkworm, Bombyx mori显示文摘Cyclin B is an important regulator of the cell cycle G2 to M phase transition. The silkworm genomic database shows that there are two Cyclin B genes in the silkworm (Bombyx mori), BmCyclin B and BmCyclin B3. Using silkworm EST data, the cyclin B3 (EU074796) gene was cloned. Its complete cDNA was 1665 bp with an ORF of 1536 bp derived from seven exons and six introns. The BmCyclin B3 gene encodes 511 amino acids, and the predicted molecular weight is 57.8 kD with an isoelectric point of 9.18. The protein contains one protein damage box and two cyclin boxes. RNA interference-mediated reduction of BmCyclin B and BmCyclin B3 expression induced cell cycle arrest in G2 or M phase in BmN-SWU1 cells, thus inhibiting cell proliferation. These results suggest that BmCyclin B and BmCyclin B3 are necessary for completing the cell cycle in silkworm cells. | PAN MinHui HONG KaiLi CHEN XiangYun PAN Chun CHEN XueMei KUANG XiuXiu LU Cheng | 2013 | Science China(Life Sciences)2013,56,4: | 1 |
| 7 | A virus-derived siRNA activates plant immunity by interfering with ROS scavenging显示文摘Virus-derived small interference RNAs(vsiRNAs)not only suppress virus infection in plants via induction of RNA silencing but also enhance virus infection by regulating host defensive gene expression.However,the underlying mechanisms that control vsiRNA-mediated host immunity or susceptibility remain largely unknown.In this study,we generated several transgenic wheat lines using four artificial microRNA expression vectors carrying vsiRNAs from Wheat yellow mosaic virus(WYMV)RNA1.Laboratory and field tests showed that two transgenic wheat lines expressing amiRNAI were highly resistant to WYMV infection.Further analyses showed that vsiRNAI could modulate the expression of a wheat thioredoxin-like gene(TaAAEDI),which encodes a negative regulator of reactive oxygen species(ROS)production in the chloroplast.The function of TaAAEDI in ROS scavenging could be suppressed by vsiRNAI in a dose-dependent manner.Furthermore,transgenic expression of amiRNAI in wheat resulted in broad-spectrum disease resistance to Chinese wheat mosaic virus,Barley stripe mosaic virus,and Puccinia striiformis f.sp.tritici infection,suggesting that vsiRNAI is involved in wheat immunity via ROS signaling.Collectively,these findings reveal a previously unidentified mechanism underlying the arms race between viruses and plants. | Peng Liu Xiaoxiang Zhang Fan Zhang Miaoze Xu Zhuangxin Ye Ke Wang Shuang Liu Xiaolei Han Ye Cheng Kaili Zhong Tianye Zhang Linzhi Li Youzhi Ma Ming Chen Jianping Chen Jian Yang | 2021 | Molecular Plant2021,14,7: | 1 |
| 8 | Hydrothermal microemulsion synthesis of stoichiometric single crystal hy droxyapatite nanorods with mono-dispersion and narrow-size distribution 显示文摘 | Lin Kaili Chang Jiang Cheng Rongming | 2007 | Materials Letters2007,61,: | 1 |
| 9 | Hydrothermalmicroemulsion synthesis of stoichiometric single crystalhydroxyapatite nanorods with mono-dispersion and narrow-sizedistribution显示文摘 | Kaili Lin Jiang Chang Rongming Cheng Meiling Ruan | 2007 | Materials Letters2007,61,: | 1 |
| 10 | 基于碳-水-氮耦合过程改进模型的温带草地生态系统生产力模拟研究显示文摘预测气候变化背景下生态系统总初级生产力的响应是全球变化生态学研究领域的一项核心任务。然而,对模型研究领域来说,准确模拟干旱生态系统总初级生产力的年际变异仍然是一个巨大的挑战。土壤含水量和总初级生产力对土壤水敏感性的精确模拟,是预测干旱生态系统中总初级生产力年际变异的两个关键方面。为此,本研究以一个广泛应用的生态系统模型(Biome-BGC模型)为例,旨在改进温带草地生态系统的模型模拟效果。一方面,通过对蒸散模块、土壤水沿剖面的垂直分布和田间持水量计算的改进和调整,模型实现了对土壤水模拟的更新。另一方面,我们改进了影响水-氮关系的函数,从而调节了总初级生产力对土壤水的敏感性。研究结果表明,原有模型高估了土壤含水量,低估了总初级生产力敏感性的年际变异,从而导致模拟总初级生产力的年际变异低于观测值。例如,原模型严重低估了总初级生产力在干旱年份的减少。相比之下,改进后的模型准确地模拟了观测土壤水的季节和年际变化,特别是表层土壤水。通过优化影响氮矿化的参数,改进后的模型改善了总初级生产力对土壤水敏感性的模拟,使其更接近观测值。因此,改进后模型对总初级生产力年际变异的模拟得到了很大程度的提高。我们的结果表明,在对干旱生态系统总初级生产力年际变异进行模拟时,应优先考虑表层土壤水及其对氮有效性的影响。 | Kaili Cheng Zhongmin Hu Shenggong Li Qun Guo Yanbin Hao Wenping Yuan | 2021 | Journal of Plant Ecology2021,14,1: | 0 |
| 11 | cBAF and MYC:decision makers for T cell memory differentiation显示文摘In a recent paper published in Nature,Guo et al.1 demonstrated that asymmetrically segregated MYC and canonical BRG1/BRM-associated factor(cBAF)at first division of activated CD8^(+)T cells cooperate to dictate T cell fate by remodeling of epigenetics and chromatin state.Further pharmacological or genetic inhibition of cBAF in chimeric antigen receptor T(CAR-T)cells considerably promotes their anti-tumor capacity in vivo,presumably by biased memory differentiation post transfer(Fig.1). | Kaili Ma Hongcheng Cheng Lianjun Zhang | 2023 | Signal Transduction and Targeted Therapy2023,8,1: | 0 |
| 12 | Autophagy mediates osteoporotic bone regeneration induced by micro-/nano-structured modification on hydroxyapatite bioceramics显示文摘Osteoporosis(OP)is an age-related disease of bone metabolism,characterized by bone mass loss and bone mi-croarchitecture deterioration,the poor osteogenesis microenvironment of OP caused hardly repairing of the bone defects.As a dynamic process to fuel cellular renovation,autophagy has been proved to play a vital role in regulating cell differentiation and maintaining bone homeostasis.Traditional bone repairing biomaterials are hardly repairing the bone defects under OP pathological microenvironment.Therefore,it is essential to develop-ment novel biomaterials to improve osteoporotic osteogenesis.Compared to biochemical cues,biophysical cues exhibited more advantages in biocompatible and side effects.Herein,inspired by the importance of enhanced au-tophagic response in osteoporotic environment,we intend to utilize the micro-/nano-structured hydroxyapatite(mnHA)bioceramics as the mimic structure of natural bone tissue to regulate autophagic activity in ovariectomy bone mesenchymal stem cells(OVX-BMSCs),finally promote to bone regeneration in OP condition.The results indicated that mnHA bioceramics promoted cell adhesion and osteogenesis of OVX-BMSCs,and enhanced au-tophagy level in OVX-BMSCs.In the calvarial defects of OVX-rats,the mnHA scaffold acquired excellent bone repair effect.According to the current findings,regulating the level of autophagy could be a promising strategy for improve osteoporotic osteogenesis in the future. | Jinjie Cui Xinran Zhang Liming Cheng Kaili Lin | 2023 | Engineered Regeneration2023,4,3: | 0 |
| 13 | Nickel-metal-organic framework nanobelt based composite membranes for efficient Sr^(2+) removal from aqueous solution显示文摘The sorption removal of radionuclides Sr^(2+) using a freestanding functional membrane is an interesting and significant research area in the remediation of radioactive wastes.Herein,a novel self-assembled membrane consisting of metaleorganic framework(MOF)nanobelts and graphene oxides(GOs)are synthesized through a simple and facile filtration method.The membrane possesses a unique interwove morphology as evidenced from SEM images.Batch experiments suggest that the GO/Ni-MOF composite membrane could remove Sr^(2+) ions from aqueous solutions and the Sr^(2+) adsorption capacity and efficiency of the GO/Ni-MOF composite membrane is relevant to the MOF content in the composite.Thus,the dominant interaction mechanism was interface or surface complexation,electrostatic interaction as well as ion substitution.The maximum effective sorption of Sr^(2+) over GO/Ni-MOF membrane is 32.99% with 2 mg composite membrane containing a high content of Ni-MOF at 299 K in 100 mg/L Sr^(2+) aqueous solution.The FT-IR and XPS results suggest that the synergistic effect between GO and Ni-MOF is determinant in the sorption Sr^(2+) process.The GO/Ni-MOF composite membrane is demonstrated to have the advantages of efficient removal of Sr^(2+),low cost and simple synthesis route,which is promising in the elimination of radionuclide contamination. | Junye Cheng Kaili Liu Xin Li Lei Huang Jie Liang Guangping Zheng Guangcun Shan | 2020 | Environmental Science and Ecotechnology2020,,3: | 0 |
| 14 | Transcriptomic analysis identifies a pan-cancer association of IL27 expression with cancer prognosis and immune microenvironment显示文摘Nowadays great progress has been made in targeted therapy and comprehensive therapy for a few cancers. But the prognosis of the vast majority of cancer patients is still weakness. It has been proven that inflammation can affect the development and treatment of cancer. Some previous studies have suggested that inflammation-related interleukins (ILs) play a significant role in the development of some cancers.1,2 ILs act as a considerable role in immunity,3 and inflammation affects the development of cancer. Therefore, the expression profile of IL gene may also be one of the vital markers of early pathological changes, occurrence and progression of cancer.4,5 Currently, studies on the expression of IL27 in cancer are still extremely limited. Our work comprehensively and systematically studied the IL27 gene expression in the generic cancer when compared with the existing IL27 gene related research experiment. We screened out cancer species linked with poor prognosis, and explored the correlation between IL27 gene expression and immune cell infiltration and immune microenvironment in these cancers further, providing an increasing number of the direct basis for subsequent studies. Our findings showed that IL27 can be used to assess prognosis and immune infiltration in patients with colon adenocarcinoma (COAD), glioblastoma multiforme (GBM), head and neck squamous cell carcinoma (HNSC), skin cutaneous melanoma (SKCM) and testicular germ cell tumors (TGCT) as a biomarker. | Kaili Liao Jingyi Wang Zimeng Li Yuqiu Li Yunqi Cheng Yingcheng He Hongping Wan Xiaozhong Wang | 2023 | Genes & Diseases2023,10,2: | 0 |
| 15 | Curcumin modulates oxidative stress to inhibit pyroptosis and improve the inflammatory microenvironment to treat endometriosis显示文摘Endometriosis(EM)is a common disease that affects approximately 10%-15%of women of childbearing age.The pathogenesis of EM is unclear,but studies have shown a strong association between EM and inflammation,as well as oxidative stress.^(1) Pyroptosis is also called inflammatory cell death.When pyroptosis occurs,it activates a strong inflammatory response.Pyroptosis is associated with oxidative stress,and Ros act as intermediate triggers to activate pyroptosi. | Jie Ding Shanshan Mei Kaili Wang Wen Cheng Shuai Sun Zhexin Ni Xiaoqiu Wang Chaoqin Yu | 2024 | Genes & Diseases2024,11,3: | 0 |
| 16 | High-performance broadband flexible photodetector based on Gd_(3)Fe_(5)O_(12)-assisted double van der Waals heterojunctions显示文摘Flexible photodetectors are fundamental components for developing wearable systems,which can be widely used for medical detection,environmental monitoring and flexible imaging.However,compared with 3D materials,lowdimensional materials have degraded performance,a key challenge for current flexible photodetectors.Here,a highperformance broadband photodetector has been proposed and fabricated.By combining the high mobility of graphene(Gr)with the strong light–matter interactions of single-walled carbon nanotubes(SWCNTs)and molybdenum disulfide(MoS2),the flexible photodetector exhibits a greatly improved photoresponse covering the visible to near-infrared range.Additionally,a thin layer of gadolinium iron garnet(Gd_(3)Fe_(5)O_(12),GdlG)film is introduced to improve the interface of the double van der Waals heterojunctions to reduce the dark current.The SWCNT/GdIG/Gr/GdIG/MoS2 flexible photodetector exhibits a high photoresponsivity of 47.375 A/W and a high detectivity of 1.952×1012 Jones at 450 nm,a high photoresponsivity of 109.311 A/W and a high detectivity of 4.504×10^(12) Jones at 1080 nm,and good mechanical stability at room temperature.This work demonstrates the good capacity of GdIGassisted double van der Waals heterojunctions on flexible substrates and provides a new solution for constructing high-performance flexible photodetectors. | Ze Zhang Peirui Ji Shaobo Li Fei Wang Shengmei He Yiwei Cheng Shuhao Zhao Kaili Li Xiaomin Wang Yu Wang Shuming Yang | 2023 | Microsystems & Nanoengineering2023,9,4: | 0 |