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| 1 | Loss-of-function of KMT5B leads to neurodevelopmental disorder and impairs neuronal development and neurogenesis显示文摘Autism spectrum disorder(ASD)is a group of neurodevelopmental disorders that cause severe social,communication,and behavioral problems.Recent studies show that the variants of a histone methyltransferase gene KMT5B cause neurodevelopmental disorders(NDDs),including ASD,and the knockout of Kmt5b in mice is embryonic lethal.However,the detailed genotype-phenotype correlations and functional effects of KMT5B in neurodevelopment are unclear.By targeted sequencing of a large Chinese ASD cohort,analyzing published genome-wide sequencing data,and mining literature,we curated 39 KMT5B variants identified from NDD individuals.A genotype-phenotype correlation analysis for 10 individuals with KMT5B pathogenic variants reveals common symptoms,including ASD,intellectual disability,languages problem,and macrocephaly.In vitro knockdown of the expression of Kmt5b in cultured mouse primary cortical neurons leads to a decrease in neuronal dendritic complexity and an increase in dendritic spine density,which can be rescued by expression of human KMT5B but not that of pathogenic de novo missense mutants.In vivo knockdown of the Kmt5b expression in the mouse embryonic cerebral cortex by in utero electroporation results in decreased proliferation and accelerated migration of neural progenitor cells.Our findings reveal essential roles of histone methyltransferase KMT5B in neuronal development,prenatal neurogenesis,and neuronal migration. | Guodong Chen Lin Han Senwei Tan Xiangbin Jia Huidan Wu Yingting Quan Qiumeng Zhang Bin Yu Zhengmao Hu Kun Xia Hui Guo | 2022 | Journal of Genetics and Genomics2022,49,9: | 1 |
| 2 | Light-Induced Heat Driving Active Ion Transport Based on 2D MXene Nanofluids for Enhancing Osmotic Energy Conversion显示文摘Osmotic energy from the ocean,also called blue energy,serves as a clean,renewable,and vast energy source for the energy demands of the world.Reverse electrodialysis-based blue energy harvesting via ion-selective membranes,by the regulation and manipulation of directional ion transport,has been greatly developed recently.In particular,light has been employed to enhance directional ion transport for energy conversion through an increase in photo-induced surface charge.Here,the authors demonstrate a novel nanofluidic regulation strategy based on the phenomenon of light-induced heat-driven active ion transport through the lamellar MXene membrane.Due to the great light-induced heat effect,a temperature gradient appears as soon as illumination is applied to an off-center position,inducing an actively temperature gradient-driven ionic species transport.By employing this phenomenon,the authors conducted light-induced heat-enhanced osmotic energy conversion and doubled the osmotic energy conversion power density.This study has extended the scope of light-enhanced osmotic energy conversion and could further bring other photothermal materials into this field.Furthermore,the proposed system provides a new avenue of light-controlled ionic transport for ion gathering,desalination,and energy conversion applications. | Pei Liu Teng Zhou Yunfei Teng Lin Fu Yuhao Hu Xiangbin Lin Xiang-Yu Kong Lei Jiang Liping Wen | 2021 | CCS Chemistry2021,3,4: | 1 |
| 3 | The grain potential of cultivated lands in Mainland China in 2004显示文摘 | Jinke Zhang Fengrong Zhang Di Zhang Dexian He Lin Zhang Chuguo Wu Xiangbin Kong | 2008 | Land Use Policy2008,,1: | 1 |
| 4 | Engineering Multi‑field‑coupled Synergistic Ion Transport System Based on the Heterogeneous Nanofluidic Membrane for High‑Efficient Lithium Extraction显示文摘The global carbon neutrality strategy brings a wave of rechargeable lithium‐ion batteries technique development and induces an ever-growing consumption and demand for lithium(Li).Among all the Li exploitation,extracting Li from spent LIBs would be a strategic and perspective approach,especially with the low energy consumption and eco-friendly membrane separation method.However,current membrane separation systems mainly focus on monotonous membrane design and structure optimization,and rarely further consider the coordination of inherent structure and applied external field,resulting in limited ion transport.Here,we propose a heterogeneous nanofluidic membrane as a platform for coupling multi-external fields(i.e.,lightinduced heat,electrical,and concentration gradient fields)to construct the multi-field-coupled synergistic ion transport system(MSITS)for Li-ion extraction from spent LIBs.The Li flux of the MSITS reaches 367.4 mmol m^(−2)h^(−1),even higher than the sum flux of those applied individual fields,reflecting synergistic enhancement for ion transport of the multi-field-coupled effect.Benefiting from the adaptation of membrane structure and multi-external fields,the proposed system exhibits ultrahigh selectivity with a Li^(+)/Co^(2+)factor of 216,412,outperforming previous reports.MSITS based on nanofluidic membrane proves to be a promising ion transport strategy,as it could accelerate ion transmembrane transport and alleviate the ion concentration polarization effect.This work demonstrated a collaborative system equipped with an optimized membrane for high-efficient Li extraction,providing an expanded strategy to investigate the other membrane-based applications of their common similarities in core concepts. | Lin Fu Yuhao Hu Xiangbin Lin Qingchen Wang Linsen Yang Weiwen Xin Shengyang Zhou Yongchao Qian Xiang‑Yu Kong Lei Jiang Liping Wen | 2023 | Nano-Micro Letters2023,15,8: | 1 |
| 5 | 断路器脱扣器线圈机械特性数据监测记录仪设计(英文)显示文摘A design of data monitoring recorder is introduced to ensure the stable work of circuit breakers.The recorder is mainly adopted to collect data of different mechanical properties of circuit breakers for real-time online working in power-industrial labs,and to set up a database including both correct information and fault information for assessing and diagnosing power systems.The recorder uses the master-slave detection core design which adopts both digital signal processor(DSP) and peripheral interface controller(PIC).Not-AND(NAND) flash memory is adopted as a mass storage unit,and the designed clock is used to identify the data being accessed.Access to data and communications between the upper computer and the lower computer are achieved through a universal serial bus(USB) communication.Results of an experiment further illustrate the accuracy and reliability of the data obtained by the proposed recorder. | XU Jianyuan YANG Zhuangzhuang LIN Xiangbin LI Bin LIU Yang | 2013 | 高电压技术2013,39,4: | 0 |
| 6 | Giant nonlinear Hall effect in twisted bilayer WSe_(2)显示文摘The recently discovered nonlinear Hall effect(NHE)in a few non-interacting systems provides a novel mechanism for generating second-harmonic electrical Hall signals under time-reversal-symmetric conditions.Here,we introduce a new approach to engineering an NHE by using twisted moiréstructures.We found that the twisted WSe_(2)bilayer exhibited an NHE when the Fermi level was tuned to the moiréflat bands.When the first moiréband was half-filled,the nonlinear Hall signal exhibited a sharp peak with a generation efficiency that was at least two orders of magnitude greater than those obtained in previous experiments.We discuss the possible origins of the diverging generation efficiency in twisted WSe_(2)based on resistivity measurements,such as moiré-interface-induced correlation effects and mass-diverging-type continuous Mot transition.This study demonstrates not only how interaction effects can combine with Berry curvature dipoles to produce novel quantum phenomena,but also the potential of NHE measurements as a new tool for studying quantum criticality. | Meizhen Huang Zefei Wu Jinxin Hu Xiangbin Cai En Li Liheng An Xuemeng Feng Ziqing Ye Nian Lin Kam Tuen Law Ning Wang | 2023 | National Science Review2023,10,4: | 0 |
| 7 | Rare inherited missense variants of POGZ associate with autism risk and disrupt neuronal development显示文摘Excess de novo likely gene-disruptive and missense variants within dozens of genes have been identified in autism spectrum disorder(ASD)and other neurodevelopmental disorders.However,many rare inherited missense variants of these high-risk genes have not been thoroughly evaluated.In this study,we analyzed the rare missense variant burden of POGZ in a large cohort of ASD patients from the Autism Clinical and Genetic Resources in China(ACGC)and further dissected the functional effect of diseaseassociated missense variants on neuronal development.Our results showed a significant burden of rare missense variants in ASD patients compared to the control population(P=4.6×10-5,OR=3.96),and missense variants in ASD patients showed more severe predicted functional outcomes than those in controls.Furthermore,by leveraging published large-scale sequencing data of neurodevelopmental disorders(NDDs)and sporadic case reports,we identified 8 de novo missense variants of POGZ in NDD patients.Functional analysis revealed that two inherited,but not de novo,missense variants influenced the cellular localization of POGZ and failed to rescue the defects in neurite and dendritic spine development caused by Pogz knockdown in cultured mouse primary cortical neurons.Significantly,L1CAM,an autism candidate risk gene,is differentially expressed in POGZ deficient cell lines.Reduced expression of L1cam was able to partially rescue the neurite length defects caused by Pogz knockdown.Our study showed the important roles of rare inherited missense variants of POGZ in ASD risk and neuronal development and identified the potential downstream targets of POGZ,which are important for further molecular mechanism studies. | Wenjing Zhao Jieqiong Tan Tengfei Zhu Jianjun Ou Ying Li Lu Shen Huidan Wu Lin Han Yanling Liu Xiangbin Jia Ting Bai Honghui Li Xiaoyan Ke Jingping Zhao Xiaobing Zou Zhengmao Hu Hui Guo Kun Xia | 2019 | Journal of Genetics and Genomics2019,46,5: | 0 |
| 8 | Model of NBTI combined with mobility degradation显示文摘The mobility degradation induced by negative bias temperature instability(NBTI) is usually ignored in traditional NBTI modeling and simulation, resulting in overestimation of the circuit lifetime, especially after longterm operation. In this paper, the mobility degradation is modeled in combination with the universal NBTI model.The coulomb scattering induced by interface states is revealed to be the dominant component responsible for mobility degradation. The proposed mobility degradation model fits the measured data well and provides an accurate solution for evaluating coupling of NBTI with HCI(hot carrier injection) and SHE(self-heating effect), which indicates that mobility degradation should be considered in long-term circuit aging simulation. | Xuezhong Wu Chenyue Ma Shucheng Gao Xiangbin Li Fu Sun Lining Zhang Xinnan Lin | 2018 | Journal of Semiconductors2018,39,12: | 0 |
| 9 | A New Format of Single Chain Tri-specific Antibody with Diminished Molecular Size Efficiently Induces Ovarian Tumor Cell Killing显示文摘 | Jing Liu Qi Zhao Baofeng Zhao Julong Cheng Xiangbin Wang Liping Song Zhang Zhong Qing Lin Hualiang Huang | 2006 | 中国生物学文摘2006,20,1: | 0 |
| 10 | Generating a reporter mouse line marking medium spiny neurons in the developing striatum driven by Arpp21 cis-regulatory elements显示文摘The striatum, as the primary input nucleus in the basal ganglion,plays an important role in neural circuits crucial for the control of critical motivation, motor planning and procedural learning(Kreitzer and Malenka, 2008). Most cells in the striatum are GABAergic, including a large population (90%-95%) of medium spiny neurons (MSNs) and a small population of interneurons. | Pan Chen Xiangbin Ruan Yongqiang Chen Shilong Chu Kunlun Mo Chao Wu Wei Liu Bin Yin Junjie Zhou Liang Li Lin Hou Jiangang Yuan Boqin Qiang Jiekai Chen Pengcheng Shu Xiaozhong Peng | 2018 | Journal of Genetics and Genomics2018,45,12: | 0 |
| 11 | Adaptive Energy-Efficient Power Allocation for DAS with Imperfect Channel State Information and Antenna Selection显示文摘Considering that perfect channel state information(CSI) is difficult to obtain in practice,energy efficiency(EE) for distributed antenna systems(DAS) based on imperfect CSI and antennas selection is investigated in Rayleigh fading channel.A novel EE that is defined as the average transmission rate divided by the total consumed power is introduced.In accordance with this definition,an adaptive power allocation(PA) scheme for DAS is proposed to maximize the EE under the maximum transmit power constraint.The solution of PA in the constrained EE optimization does exist and is unique.A practical iterative algorithm with Newton method is presented to obtain the solution of PA.The proposed scheme includes the one under perfect CSI as a special case,and it only needs large scale and statistical information.As a result,the scheme has low overhead and good robustness.The theoretical EE is also derived for performance evaluation,and simulation result shows the validity of the theoretical analysis.Moreover,EE can be enhanced by decreasing the estimation error and/or path loss exponents. | Weiye Xu Min Lin Yu Yang Xiangbin Yu | 2016 | China Communications2016,13,7: | 0 |