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| 1 | Fabrication of single-walled carbon nanotube-based highly sensitive gas sensors显示文摘A highly sensitive single-walled carbon nanotube(SWCNT)-based ammonia(NH3) gas detector is manufactured by orderly assembling SWCNT using the dielectrophoretical(DEP) technology.Atom force microscopy(AFM) and scanning electron microscopy(SEM) images revealed that SWCNTs were assembled between the microelectrodes.SWCNTs were affected by the electrophoretic force which was carried out by the related theoretical analysis in a nonuniform electric field.The SWCNT field effect transistors geometry was obtained.The electrical performance of NH3 gas sensor with the SWCNT field effect transistors geometry was tested before and after the adoption of NH3 at room temperature.Experimental results indicated that the efficient assembly of SWCNT was obtained by the applied alternating current voltage with frequency of 2 MHz and amplitude of 10 V.The SWCNTs-based gas sensor had high sensitivity to NH3,and the electrical conductance of NH3 gas sensor reduced two times after interaction with NH3.The SWCNTs surface gas molecules were removed by means of ultraviolet ray irradiation for 10 min.Hence,the fabricated NH3 gas sensor could be reversible.There is a clear evidence that the adsorption of NH3 on the SWCNT channel is easy to be realized.Our theoretical results are consistent with recent experiments. | XU Ke TIAN XiaoJun WU ChengDong LIU Jian LI MengXin SUN Ying WEI FaNan | 2013 | Science China(Technological Sciences)2013,56,1: | 4 |
| 2 | A triple-RBD-based mucosal vaccine provides broad protectionagainst SARS-CoV-2 variants of concern显示文摘The rapid mutation and spread of SARS-CoV-2 variants urge the development of effective mucosal vaccines to provide broadspectrum protection against the initial infection and thereby curb the transmission potential.Here,we designed a chimeric tripleRBD immunogen,3Ro-NC,harboring one Delta RBD and two Omicron RBDs within a novel protein scaffold.3Ro-NC elicits potent and broad RBD-specific neutralizing immunity against SARS-CoV-2 variants of concern.Notably,intranasal immunization with 3RoNC plus the mucosal adjuvant KFD(3Ro-NC+KFDi.n)elicits coordinated mucosal IgA and higher neutralizing antibody specificity(closer antigenic distance)against the Omicron variant.In Omicron-challenged human ACE2 transgenic mice,3Ro-NC+KFDi.n immunization significantly reduces the tissue pathology in the lung and lowers the viral RNA copy numbers in both the lung(85.7-fold)and the nasal turbinate(13.6-fold).Nasal virologic control is highly correlated with RBD-specific secretory IgA antibodies.Our data show that 3Ro-NC plus KFD is a promising mucosal vaccine candidate for protection against SARS-CoV-2 Omicron infection,pathology and transmission potential. | Jingyi Yang Mei-Qin Liu Lin Liu Xian Li Mengxin Xu Haofeng Lin Shuning Liu Yunqi Hu Bei Li Bowen Liu Min Li Ying Sun Yao-Qing Chen Zheng-Li Shi Huimin Yan | 2022 | Cellular & Molecular Immunology2022,19,11: | 3 |
| 3 | Rapid isolation and immune profiling of SARS-CoV-2 specific memory B cell in convalescent COVID-19 patients via LIBRA-seq显示文摘B cell response plays a critical role against SARS-CoV-2 infection.However,little is known about the diversity and frequency of the paired SARS-CoV-2 antigen-specific BCR repertoire after SARS-CoV-2 infection.Here,we performed single-cell RNA sequencing and VDJ sequencing using the memory and plasma B cells isolated from five convalescent COVID-19 patients,and analyzed the spectrum and transcriptional heterogeneity of antibody immune responses.Via linking BCR to antigen specificity through sequencing(LIBRA-seq),we identified a distinct activated memory B cell subgroup(CD11c^(high) CD95^(high))had a higher proportion of SARS-CoV-2 antigen-labeled cells compared with memory B cells.Our results revealed the diversity of paired BCR repertoire and the non-stochastic pairing of SARS-CoV-2 antigen-specific immunoglobulin heavy and light chains after SARS-CoV-2 infection.The public antibody clonotypes were shared by distinct convalescent individuals.Moreover,several antibodies isolated by LIBRA-seq showed high binding affinity against SARS-CoV-2 receptor-binding domain(RBD)or nucleoprotein(NP)via ELISA assay.Two RBD-reactive antibodies C14646P3S and C2767P3S isolated by LIBRA-seq exhibited high neutralizing activities against both pseudotyped and authentic SARS-CoV-2 viruses in vitro.Our study provides fundamental insights into B cell response following SARS-CoV-2 infection at the single-cell level. | Bing He Shuning Liu Yuanyuan Wang Mengxin Xu Wei Cai Jia Liu Wendi Bai Shupei Ye Yong Ma Hengrui Hu Huicui Meng Tao Sun Yanling Li Huanle Luo Mang Shi Xiangjun Du Wenjing Zhao Shoudeng Chen Jingyi Yang Haipeng Zhu Yusheng Jie Yuedong Yang Deyin Guo Qiao Wang Yuwen Liu Huimin Yan Manli Wang Yao-Qing Chen | 2021 | Signal Transduction and Targeted Therapy2021,6,6: | 2 |
| 4 | Multi-objective Optimization of Non-uniform Beam for Minimum Weight and Sound Radiation显示文摘A multi-objective optimization of non-uniform beams is presented for minimum radiated sound power and weight. The transfer matrix method is used to compute the structural and acoustic responses of a non-uniform beam accurately and efficiently. The multi-objective particle swarm optimization technique is applied to search the Pareto optimal solutions that represent various compromises between weight and sound radiation. Several constraints are imposed, which substantially reduce the volume fraction of feasible solutions in the design space. Two nonuniform beams with different boundary conditions are studied to demonstrate the multi-objective optimal designs of the structure. | Furui Xiong Mengxin He Yousef Naranjani Qian Ding Jianqiao Sun | 2017 | Transactions of Tianjin University2017,23,4: | 1 |
| 5 | Exome sequencing identifies rare mutations of LDLR and QTRT1 conferring risk for early-onset coronary artery disease in Chinese显示文摘Despite the advances made over the past decades,the known loci for coronary artery disease(CAD)still only explain<20%of the genetic variation in risk[1,2].The known loci with the strongest effects usually confer a 20%-37%increased CAD risk and the most loci modulate risk by≤10%[1].While most of the current data are from European populations,the use of trans-ethnic analyses could be helpful to identify additional loci.Genetic inheritance may impose a high burden on early-onset coronary artery disease(EOCAD). | Kang Yao Yuxiang Dai Juan Shen Yi Wang Huanjie Yang Runda Wu Qijun Liao Hongyi Wu Xiaodong Fang Shalaimaiti Shali Lili Xu Meng Hao Chenhao Lin Zhonghan Sun Yilian Liu Mengxin Li Zhen Wang Qiang Gao Shuning Zhang Chenguang Li Wei Gao Lei Ge Yunzeng Zou Aijun Sun Juying Qian Li Jin Shangyu Hong Yan Zheng Junbo Ge | 2022 | National Science Review2022,9,8: | 1 |
| 6 | Mass transfer techniques for large-scaleand high-density microLED arrays显示文摘Inorganic-based micro light-emitting diodes (microLEDs) offer more fascinating properties and unique demands in next-generation displays. However, the small size of the microLED chip (1–100 µm) makes it extremely challenging for high efficiency and low cost to accurately, selectively, integrate millions of microLED chips. Recent impressive technological advances have overcome the drawbacks of traditional pick-and-place techniques when they were utilized in the assembly of microLED display, including the most broadly recognized laser lift-off technique, contact micro-transfer printing (µTP) technique, laser non-contact µTP technique, and self-assembly technique. Herein, we firstly review the key developments in mass transfer technique and highlight their potential value, covering both the state-of-the-art devices and requirements for mass transfer in the assembly of the ultra-large-area display and virtual reality glasses. We begin with the significant challenges and the brief history of mass transfer technique, and expand that mass transfer technique is composed of two major techniques, namely, the epitaxial Lift-off technique and the pick-and-place technique. The basic concept and transfer effects for each representative epitaxial Lift-off and pick-and-place technique in mass transfer are then overviewed separately. Finally, the potential challenges and future research directions of mass transfer are discussed. | Furong Chen Jing Bian Jinlong Hu Ningning Sun Biao Yang Hong Ling Haiyang Yu Kaixin Wang Mengxin Gai Yuhang Ma YongAn Huang | 2022 | International Journal of Extreme Manufacturing2022,4,4: | 1 |
| 7 | A Novel 2D Piezo-Nanopositioning Stage Based on Triangle Amplifier Mechanism显示文摘To satisfy the demand on dynamic performance and load characteristics of piezoelectric actuators in aeronautics and astronautics fields,a novel 2Dpiezo-nanopositioning stage utilizing a triangle amplifier mechanism is proposed.The stage is driven by piezoelectric rhombic units in both X and Ydirections,which is composed of four piezoelectric stacks.Theoretical static model develops the relationships among output force,displacement,static stiffness and the structure parameters of the platform.The experimental results of the prototype show that the output performances in X and Ydirections are similar and both of them are within an 8% deviation from the theoretical values.The stroke of the stage reaches 41.6μm and 42.9μm in Xand Ydirections,respectively,and is directly proportional to the amplitude of the input sinusoidal voltage 10 Hz.Moreover,the nano-positioning stage is featured with bidirectional symmetrical output characteristic and millisecond starting characteristic,whose minimum output displacement step is 50 nm. | Liu Xuerui Huang Weiqing Sun Mengxin | 2017 | Transactions of Nanjing University of Aeronautics and Astronautics2017,34,1: | 1 |
| 8 | Comparative analyses of aging-related genes in long-lived mammals provide insights into natural longevity显示文摘Extreme longevity has evolved multiple times during the evolution of mammals,yet its underlying molecular mechanisms remain largely underexplored.Here,we compared the evolution of 115 aging-related genes in 11 long-lived species and 25 mammals with non-increased lifespan(control group)in the hopes of better understanding the common molecular mechanisms behind longevity.We identified 16 unique positively selected genes and 23 rapidly evolving genes in long-lived species,which included nine genes involved in regulating lifespan through the insulin/IGF-1 signaling(IIS)pathway and 11 genes highly enriched in immune-response-related pathways,suggesting that the IIS pathway and immune response play a particularly important role in exceptional mammalian longevity.Interestingly,11 genes related to cancer progression,including four positively selected genes and seven genes with convergent amino acid changes,were shared by two or more long-lived lineages,indicating that long-lived mammals might have evolved convergent or similar mechanisms of cancer resistance that extended their lifespan.This suggestion was further corroborated by our identifi-cation of 12 robust candidates for longevity-related genes closely related to cancer. | Zhenpeng Yu Inge Seim Mengxin Yin Ran Tian Di Sun Wenhua Ren Guang Yang Shixia Xu | 2021 | The Innovation2021,2,2: | 1 |
| 9 | Experiment on a Double-Foot Stepping Piezoelectric Linear Motor显示文摘A novel double-foot piezoelectric linear motor is proposed.The kinematic model of the motor under stepping motion is presented.The motor mainly consists of a stator with four piezoelectric stacks,a mover,a holding mechanism,and a preloading mechanism to achieve large stroke with high resolution.Finite element simulations are carried out to analyze the motion characteristics of the motor.A prototype is fabricated and a serial experiments are conducted to validate the feasibility of the motor principle.Experimental results indicate that the motor can move at a speed of 670.22μm/s with a driving frequency of 120 Hz and a voltage of 120 V.The resolution of the proposed motor is 3.6μm while the resolution of the single-step motion is 0.1μm. | Sun Mengxin Huang Weiqing Wang Yin Lu Qian | 2018 | Transactions of Nanjing University of Aeronautics and Astronautics2018,35,3: | 0 |
| 10 | Laser projection proximity transfer for deterministic assembly of microchip arrays at scale显示文摘Deterministic assembly techniques that enable programmatic and massively parallel integration of chips are essential for the development of novel electronic systems such as micro LED displays.However,large-area integration of ultrathin micro-chips with high yield and transfer accuracy remains a great challenge due to the difficulties in selective transfer,adhesion switchability,and transfer deviation.Here,a“laser projection proximity transfer(Laser PPT)”technique is presented for the deterministic assembly of microchip arrays at scale.One of the remarkable features is that the transfer status between the chip and the receiver substrate evolves from the original non-contact mode to contact mode for high-precision transfer,which overcomes the strict requirements of the flatness of stamp and substrate in contact-style transfer,and flight deviation of microchip array in noncontact-style transfer.Another feature is the rapid modulation of interfacial adhesion for reliable transfer via the use of thermally expandable microspheres to form microstructures and combining with a laser-induced blister.The adhesion regulation range is over 20 times without any damage to chip arrays.The results show that the transfer accuracy has been improved substantially with a minimum relative error of~0.5%.Combined with a laser beam projection system,demonstrations of Laser PPT for selective assembly of fragile objects onto challenging non-adhesive/cured surfaces in batch illustrate its potential in the highprecision integration of microscale chips at scale. | HU JinLong CHEN FuRong BIAN Jing SUN NingNing WANG KaiXin LING Hong YU HaiYang GAI MengXin XU LiZhi HUANG YongAn | 2022 | Science China(Technological Sciences)2022,65,9: | 0 |
| 11 | Broad phenotypic alterations and potential dysfunction of lymphocytes in individuals clinically recovered from COVID-19显示文摘Although millions of patients have clinically recovered from COVID-19,little is known about the immune status of lymphocytes in these individuals.In this study,the peripheral blood mononuclear cells of a clinically recovered(CR)cohort were comparatively analyzed with those of an age-and sex-matched healthy donor cohort.We found that CD8^(+)T cells in the CR cohort had higher numbers of effector T cells and effector memory T cells but lower Tc1(IFN-γ^(+)),Tc2(IL-4^(+)),and Tc17(IL-17A^(+))cell frequencies.The CD4^(+)T cells of the CR cohort were decreased in frequency,especially the central memory T cell subset.Moreover,CD4^(+)T cells in the CR cohort showed lower programmed cell death protein 1(PD-1)expression and had lower frequencies of Th1(IFN-γ^(+)),Th2(IL-4^(+)),Th17(IL-17A^(+)),and circulating follicular helper T(CXCR5^(+)PD-1^(+))cells.Accordingly,the proportion of isotype-switched memory B cells(IgM−CD20^(hi))among B cells in the CR cohort showed a significantly lower proportion,although the level of the activation marker CD71 was elevated.For CD3−HLA-DR−lymphocytes in the CR cohort,in addition to lower levels of IFN-γ,granzyme B and T-bet,the correlation between T-bet and IFN-γ was not observed.Additionally,by taking into account the number of days after discharge,all the phenotypes associated with reduced function did not show a tendency toward recovery within 4-11 weeks.The remarkable phenotypic alterations in lymphocytes in the CR cohort suggest that severe acute respiratory syndrome coronavirus 2 infection profoundly affects lymphocytes and potentially results in dysfunction even after clinical recovery. | Jingyi Yang Maohua Zhong Ejuan Zhang Ke Hong Qingyu Yang Dihan Zhou Jianbo Xia Yao-Qing Chen Mingbo Sun Bali Zhao Jie Xiang Ying Liu Yang Han Mengxin Xu Xi Zhou Chaolin Huang You Shang Huimin Yan | 2021 | Journal of Molecular Cell Biology2021,13,3: | 0 |