论文专著:
发表学术论文50余篇。
出版专著:
[1]. 庞代文,蒋兴宇,黄卫华 主编, 纳米生物检测.
[2]. 单细胞分析 程介克 著
本书共分15章,全面系统地介绍21世纪单细胞分析的各种方法学,包括毛细管电泳;微流控芯片;多种光学显微镜(一般荧光显微镜、共聚焦荧光显微镜、近场扫描光学显微镜等)、扫描电化学显微镜、质谱成像、原子力显微镜、扫描隧道显微镜图像分析;阿达玛变换显微光谱及成像;肿瘤电化学及免疫分析;动力学分析;荧光及发光探针;纳米技术;实时动态监测等。
本书第十四章“单细胞释放实时动态监测”由黄卫华教授撰写。
发表英文期刊论文:
2021:
[1]. Jing Yan, Yu Qin, Wen-Ting Fan, Wen-Tao Wu, Song-Wei Lv, Li-Ping Yan, Yan-Ling Liu* and Wei-Hua Huang
Plasticizer and Catalyst Co-Functionalized PEDOT:PSS Enables Stretchable Electrochemical Sensing of Living Cells. Chemical Science, 2021, DOI: 10.1039/D1SC04138J
[2]. Wen-Tao Wu, Hong Jiang, Yu-Ting Qi, Wen-Ting Fan, Jing Yan, Yan-Ling Liu, Wei-Hua Huang*, Large-Scale Synthesis of Functionalized Nanowires to Construct Nanoelectrodes for Intracellular Sensing. Angewandte Chemie International Edition. 2021, 60. DOI: 10.1002/anie.202106251.
[3]. Xiao-Ke Yang, Fu-Li Zhang, Wen-Tao Wu, Yun Tang, Jing Yan, Yan-Ling Liu, Christian Amatore*, and Wei-Hua Huang*, Quantitative Nano-Amperometric Measurement of Intravesicular Glutamate Content and of its Sub-Quantal Release by Living Neurons. Angewandte Chemie International Edition. 2021, 60. DOI:10.1002/anie.202100882.
[4]. Yu Qin, Xue-Bo Hu, Wen-Ting Fan, Jing Yan, Shi-Bo Cheng, Yan-Ling Liu*, Wei-Hua Huang*, A Stretchable Scaffold with Electrochemical Sensing for 3D Culture, Mechanical Loading and Real-time Monitoring of Cells. Advanced Science. 2021 DOI: 10.1002/advs.202003738.
[5]. Yan-Ling Liu, Wei-Hua Huang*, Stretchable Electrochemical Sensors for Cell and Tissue Detection. Angewandte Chemie International Edition. 2021, 60. 2757-2767.
[6]. Xue-Bo Hu, Yu Qin, Wen-Ting Fan, Yan-Ling Liu*, Wei-Hua Huang. A Three-Dimensional Electrochemical Biosensor Integrated with Hydrogel Enables Real-Time Monitoring of Cells under Their In Vivo-like Microenvironment. Anal. Chem. 2021, DOI: 10.1021/acs.analchem.1c00621
[7]. Shi-Bo Cheng#, Miao-Miao Chen#, Yi-Ke Wang, Zi-Han Sun, Yu Qin, Shan Tian, Wei-Guo Dong*, Min Xie*, Wei-Hua Huang. Three Dimensional Conductive Scaffold Microchip for Effective Capture and Recover of Circulating Tumor Cells with High Purity. Anal. Chem. 2021, 93, 7102-7109
[8]. Fu‐Li Zhang#, Yun Tang#, Hong Jiang, Xiao‐Ke Yang, Wei‐Hua Huang*. Harpagide Inhibits Microglial Activation and Protects Dopaminergic Neurons as Revealed by Nanoelectrode Amperometry. Chin. J. Chem. 2021, DOI: 10.1002/cjoc.202100178
2020:
[9]. Hong Jiang, Yu-Ting Qi, Wen-Tao Wu, Ming-Yong Wen, Yan-Ling Liu and Wei-Hua Huang*, Intracellular monitoring of NADH release from mitochondria using a single functionalized nanowire electrode. Chemical Science. 2020, 11. 8771-8778.
[10]. Yan-Ling Liu, Yan Chen, Wen-Ting Fan, Pan Cao, Jing Yan, Xing-Zhong Zhao, Wei-Guo Dong*, and Wei-Hua Huang*, Mechanical Distension Induces Serotonin Release from Intestine as Revealed by Stretchable Electrochemical Sensing. Angewandte Chemie International Edition. 2020, 59. 4075-4081.
[11]. Yun Tang, Xiao-Ke Yang, Xin-Wei Zhang, Wen-Tao Wu, Fu-Li Zhang, Hong Jiang, Yan-Ling Liu, Christian Amatore*, and Wei-Hua Huang*, Harpagide, a natural product, promotes synaptic vesicle release as measured by nanoelectrode amperometry. Chemical Science. 2020, 11. 778–785.
[12]. Yu-Ting Qi#, Fu-Li Zhang#, Si-Yu Tian, Xiao-Ke Yang, Yan-Ling Liu, Wei-Hua Huang*.Construction of micro-nano electrochemical sensing interfaces for real-time monitoring of single cells. Sci. Sin. Chim. 2020, 51, 359-373.
[13]. Wen-Ting Fan, Yu Qin, Xue-Bo Hu, Jing Yan, Wen-Tao Wu, Yan-Ling Liu*, and Wei-Hua Huang.Stretchable Electrode Based on Au@Pt Nanotube Networks for Real-Time Monitoring of ROS Signaling in Endothelial Mechanotransduction.Anal. Chem. 2020. 92, 23, 15639–15646.
[14]. Shi-Bo Cheng, Ming Wang , Chi Zhang, Miao-Miao Chen, Yi-Ke Wang, Shan Tian, Na Zhan, Wei-Guo Dong, Min Xie*, and Wei-Hua Huang*.Flexible Three-Dimensional Net for Intravascular Fishing of Circulating Tumor Cells.Anal. Chem. 2020, 92, 7, 5447–5455.
[15]. Shan Tian, Shi-Bo Cheng, Ying-Yun Guo, Min Xie*, Na Zhan, Zhi Zeng, Wei-Hua Huang, and Wei-Guo Dong*.High Efficient Isolation of Tumor Cells by a Three Dimensional Scaffold Chip for Diagnosis of Malignant Effusions.ACS Appl. Bio Mater. 2020, 3, 4, 2177–2184.
2019:
[16]. Miao-Miao Chen, Shi-Bo Cheng, Kailun Ji, Jingwen Gao, Yan-Ling Liu, Wei Wen, Xiuhua Zhang*, Shengfu Wang and Wei-Hua Huang*, Construction of a flexible electrochemiluminescence platform for sweat detection. Chemical Science. 2019, 10. 6295-6303.
[17]. Xin-Wei Zhang, Alexander Oleinick, Hong Jiang, Quan-Lan Liao, Quan-Fa Qiu, Irina Svir, Yan-Ling Liu, Christian Amatore*, and Wei-Hua Huang*.Electrochemical Monitoring of ROS/RNS Homeostasis Within Individual Phagolysosomes Inside Single Macrophages.Angew. Chem. Int. Ed. 2019, 131, 7835-7838.
[18]. Xiaoke Yang, Yun Tang, Quan-Fa Qiu, Wen-Tao Wu, Fu-Li Zhang, Yan-Ling Liu, and Wei-Hua Huang*.Aβ1-42 oligomers induced a short-term increase of glutamate release prior to its depletion as measured by amperometry on single varicosities.Anal. Chem. 2019, 91 (23), 15123–15129.
[19]. Zi-He Jin, Yan-Ling Liu, Wen-Ting Fan, and Wei-Hua Huang*.Integrating Flexible Electrochemical Sensor into Microfluidic Chip for Simulating and Monitoring Vascular Mechanotransduction. Small 2019, 1903204.
[20]. Shi-Bo Cheng, Miao-Miao Chen, Yi-Ke Wang, Zi-Han Sun, Min Xie*, and Wei-Hua Huang*. Current techniques and future advance of microfluidic devices for circulating tumor cells.Trends in Analytical Chemistry, 2019, 117:116-127.
[21]. Quan-Lan Liao, Hong Jiang, Xin-Wei Zhang, Quan-Fa Qiu, Yun Tang, Xiao-Ke Yang, Yan-Ling Liu, and Wei-Hua Huang*.A single nanowire sensor for intracellular glucose detection.Nanoscale 2019, 11, 10702-10708.
[22]. Hai-Wei Zhang, Xue-Bo Hu, Yu Qin, Zi-He Jin, Xin-Wei Zhang, Yan-Ling Liu, and Wei-Hua Huang*. Conductive Polymer Coated Scaffold to Integrate 3D Cell Culture with Electrochemical Sensing. Anal. Chem. 2019, 91 (7), 4838–4844.
[23]. Hong Jiang, Xin‐Wei Zhang, Quan‐Lan Liao, Wen‐Tao Wu, Yan‐Ling Liu, and Wei‐Hua Huang*. Electrochemical Monitoring of Paclitaxel‐Induced ROS Release from Mitochondria inside Single Cells. Small 2019, 15, 1901787.
2018:
[24]. Shan Guo, Haiyan Huang, Xujing Deng, Yuqi Chen, Zhuoran Jiang, Min Xie, Songmei Liu, Weihua Huang*, and Xiang Zhou*.Programmable DNA-responsive microchip for the capture and release of circulating tumor cells by nucleic acid hybridization. Nano Research 2018, 11(5): 2592–2604.
[25]. Yan-Ling Liu, Rong Liu, Yu Qin, Quan-Fa Qiu, Zhen Chen, Shi-Bo Cheng, and Wei-Hua Huang*.Flexible Electrochemical Urea Sensor Based on Surface Molecularly Imprinted Nanotubes for Detection of Human Sweat. Anal. Chem. 2018, 90, 21, 13081-13087.
[26]. Zhen Chen, Shi-Bo Cheng, PanCao, Quan-Fa Qiu, Yan Chen, Yu Xu*, Min Xie*, Wei-Hua Huang. Detection of Exosomes by ZnO Nanowires Coated Three-Dimensional Scaffold Chip Device. Biosens. Bioelectron. 2018, 122, 211-216.
[27]. Ya-Wen Wang, Yan-Ling Liu, Jiaquan Xu, Yu Qin, and Wei-Hua Huang*. A Stretchable and Photocatalytically Renewable Electrochemical Sensor Based on Sandwich Nanonetworks for Real-time Monitoring of Cells. Anal. Chem. 2018, 90, 10, 5977-5981.
[28]. Miao-Miao Chen, Ying Wang, Shi-Bo Cheng, Wei Wen, Xiuhua Zhang, Shengfu Wang, and Wei-Hua Huang*. Construction of Highly Efficient Resonance Energy Transfer Platform inside a Nanosphere for Ultrasensitive. Electrochemiluminescence Detection .Anal. Chem. 2018, 90, 8, 5075-5081.
[29]. Yun Tang, Quan-Fa Qiu, Fu-Li Zhang, Min Xie and Wei-Hua Huang*. Quantifying Orientational Regeneration of Injured Neurons by Natural Product Concentration Gradients in a 3D Microfluidic Device. Lab Chip 2018, 18, 971-978.
[30]. Xue-Bo Hu, Yan-Ling Liu*, Wen-Jie Wang, Hai-Wei Zhang, Yu Qin, Shan Guo, Xin-Wei Zhang, Lei Fu, and Wei-Hua Huang*.Biomimetic Graphene-Based 3D Scaffold for Long-Term Cell Culture and Real-Time Electrochemical Monitoring.Anal. Chem. 2018, 90, 2, 1136-1141.
2017:
[31]. Xin-Wei Zhang, Quan-Fa Qiu, Hong Jiang, Fu-Li Zhang, Yan-Ling Liu, Christian Amatore*, and Wei-Hua Huang*, Real-Time Intracellular Measurements of ROS and RNS in Living Cells with Single Core–Shell Nanowire Electrodes. Angewandte Chemie International Edition. 2017, 56. 12997-13000.
[32]. Yan-Ling Liu, Yu Qin, Zi-He Jin, Xue-Bo Hu, Miao-Miao Chen, Rong Liu, Christian Amatore, and Wei-Hua Huang*, A Stretchable Electrochemical Sensor for Inducing and Monitoring Cell Mechanotransduction in Real Time. Angewandte Chemie International Edition. 2017, 56. 9454 –9458.
[33]. Zi-He Jin, Yan-Ling Liu, Jing-Jing Chen, Si-Liang Cai, Jia-Quan Xu, and Wei-Hua Huang* Conductive Polymer-Coated Carbon Nanotubes to Construct Stretchable and Transparent Electrochemical Sensors. Anal. Chem. 2017, 89, 2032−2038.
[34]. Shi-Bo Cheng,# Min Xie,# Yan Chen, Jun Xiong, Ya Liu, Zhen Chen, Shan Guo, Ying Shu, Ming Wang, Bi-Feng Yuan, Wei-Guo Dong,* and Wei-Hua Huang*.Three-Dimensional Scaffold Chip with Thermosensitive Coating for Capture and Reversible Release of Individual and Cluster of Circulating Tumor Cells. Anal. Chem. 2017, 89, 15, 7924-7932
2016:
[35]. Song-Wei Lv, Ya Liu, Min Xie, Jing Wang, Xue-Wei Yan, Zhen Li, Wei-Guo Dong*, and Wei-Hua Huang*, Near Infrared Light Responsive Hydrogel for Specific Recognition and Photothermal Site-Release of Circulating Tumor Cells. ACS Nano. 2016, 10. 6201-6210.
[36]. Yan-Ling Liu, Zi-He Jin, Yan-Hong Liu, Yu Qin, Jia-Quan Xu, Cui-Fang Fan and Wei-Hua Huang*, Stretchable Electrochemical Sensor for Real-time Monitoring of Cells and Tissues. Angewandte Chemie International Edition. 2016, 128, 4613-4617.
[37]. Wei Huang, Chu-Bo Qi, Song-Wei Lv, Min Xie, Yu-Qi Feng*, Wei-Hua Huang* and Bi-feng Yuan*.Determination of DNA and RNA Methylation in Circulating Tumor Cells by Mass Spectrometry. Anal. Chem. 2016, 88, 1378-1384.
[38]. Chang-liang Zhang, Jia-Quan Xu, Yu-tao Li, Le Huang, Dai-Wen Pang, Yong Ning, Wei-Hua Huang*, Zhi-Yong Zhang* and Guo-Jun Zhang*.Photocatalysis-Induced Renewable Field-Effect Transistor for Protein Detection.Anal. Chem. 2016, 88, 4048-4054.
[39]. Jia-Quan Xu, Huan-Huan Duo, Yu-Ge Zhang, Xin-Wei Zhang, Wei Fang, Yan-Ling Liu, Ai-Guo Shen, Ji-Ming Hu and Wei-Hua Huang*. Photochemical Synthesis of Shape-Controlled Nanostructured Au on ZnO Nanorods as Photocatalytically Renewable Sensors. Anal. Chem. 2016, 88, 3789-3795.
[40]. Shan Guo, Jia-Quan Xu, Min Xie, Wei Huang, Er-Feng Yuan, Ya Liu, Li-Ping Fan, Shi-Bo Cheng, Song-Mei Liu, Fu-Bing Wang, Bi-Feng Yuan, Wei-Guo Dong, Xiao-Lian Zhang, Wei-Hua Huang*, and Xiang Zhou*.Degradable Zinc Phosphate-Based Hierarchical Nanosubstrates for Capture and Release of Circulating Tumor Cells. ACS Appl. Mater. Interfaces 2016, 8, 15917−15925.
[41]. Shi-Bo Cheng, Min Xie, Jia-Quan Xu, Jing Wang, Song-Wei Lv, Shan Guo, Ying Shu, Ming Wang, Wei-Guo Dong, and Wei-Hua Huang*.High-Efficient Capture of Individual and Cluster of Circulating Tumor Cells by a Microchip Embedded with Three-Dimensional PDMS Scaffold.Anal. Chem. 2016, 88, 6773−6780.
[42]. Xue-Bo Hu, Yan-Ling Liu, Hai-Wei Zhang, Chong Xiao, Yu Qin, Huan-Huan Duo, Jia-Quan Xu, Shan Guo, Dai-Wen Pang, and Wei-Hua Huang*.Electrochemical Monitoring of Hydrogen Sulfide Release from Single Cells(VIP).Chem. ElectroChem. 2016, 3, 1998−2002
[43]. Huan-Huan Duo, Jia-Quan Xu, Yan-Ling Liu, Zi-He Jin, Xue-Bo Hu, and Wei-Hua Huang*.Construction of Visible Light-Induced Renewable Electrode for Monitoring of Living Cells.J. Electroanal. Chem. 2016, 781, 371–376.
2015:
[44]. Jia-Quan Xu, Yan-Ling Liu, Qian Wang, Huan-Huan Duo, Xin-Wei Zhang, Yu-Tao Li and Wei-Hua Huang*, Photocatalytically Renewable Micro-electrochemical Sensor for Real-Time Monitoring of Cells. Angewandte Chemie International Edition. 2015, 54. 14402-14406.
[45]. Yu-Tao Li, Shu-Hui Zhang, Xue-Ying Wang, Xin-Wei Zhang, Alexander I. Oleinick, Irina Svir,Christian Amatore,* and Wei-Hua Huang*, Real-time Monitoring of Discrete Synaptic Release Events and Excitatory Potentials within Self-reconstructed Neuro-muscular Junctions. Angewandte Chemie International Edition. 2015, 54. 9313-9318.
[46]. Yan-Ling Liu, Xue-Ying Wang, Jia-Quan Xu, Chong Xiao, Yan-Hong Liu, Xin-Wei Zhang, Jun-Tao Liu and Wei-Hua Huang*, Functionalized graphene-based biomimetic microsensor interfacing with living cells to sensitively monitor nitric oxide release. Chemical Science. 2015, 6. 1853-1858.
[47]. Xue-Ying Wang, Ying Pei, Min Xie, Zi-He Jin, Ya-Shi Xiao, Yang Wang, Li-Na Zhang, Yan Li and Wei-Hua Huang*.An Artificial Blood Vessel Implanted Three-Dimensional Microsystem for Modeling Transvascular Migration of Tumor Cells.Lab Chip 2015, 15, 1178-1187
[48]. Chong Xiao, Yan-Ling Liu, Jia-Quan Xu, Song-Wei Lv, Shan Guo and Wei-Hua Huang*.Real-time Monitoring of H2O2 Release from Single Cells Using Nanoporous Gold Microelectrodes Decorated with Platinum Nanoparticles. Analyst 2015, 140, 3753-3758
[49]. Ning-Ning Lu,# Min Xie,# Jing Wang, Song-Wei Lv, Jia-Sheng Yi, Wei-Guo Dong,* and Wei-Hua Huang*.Biotin-Triggered Decomposable Immunomagnetic Beads for Capture and Release of Circulating Tumor Cells.ACS Appl. Mater. Interfaces 2015, 7, 8817-8826
[50]. Song-Wei Lv,# Jing Wang,# Min Xie, Ning-Ning Lu, Zhen Li, Xue-Wei Yan, Si-Liang Cai, Ping-An Zhang, Wei-Guo Dong* and Wei-Hua Huang*.Photoresponsive Immunomagnetic Nanocarrier for Capture and Release of Rare Circulating Tumor Cells.Chem. Sci. 2015, 6, 6432–6438
2014:
[51]. Yu-Tao Li, Shu-Hui Zhang, Li Wang, Rong-Rong Xiao, Wei Liu, Xin-Wei Zhang, Zhuan Zhou, Christian Amatore and Wei-Hua Huang*, Nanoelectrode for Amperometric Monitoring of Individual Vesicular Exocytosis inside Single Synapses. Angewandte Chemie International Edition. 2014, 53. 12456-12460.
[52]. Jun-Tao Liu, Liang-Sheng Hu, Yan-Ling Liu, Rong-Sheng Chen, Zhi Cheng, Shi-Jing Chen, Christian Amatore, Wei-Hua Huang,* and Kai-Fu Huo* Real-time monitoring of auxin vesicular exocytotic efflux from single plant protoplasts by amperometry at microelectrodes decorated with nanowires. Angewandte Chemie International Edition. 2014, 53. 2643-2647.
[53].Xue-YingWang,Zi-HeJin,Bo-WenGan,Song-WeiLv,MinXie and Wei-HuaHuang*.Engineering Interconnected 3D Vascular Networks in Hydrogels Using Molded Sodium Alginate Lattice as the Sacrificial Template.Lab Chip 2014, 14, 2709-2716
[54]. MinXie,Ning-NingLu,Shi-BoCheng,Xue-YingWang,MingWang,ShanGuo,Cong-YingWen,JiaoHu,Dai-WenPang,and Wei-HuaHuang*, Engineered Decomposable Multifunctional Nanobioprobes for Capture and Release of Rare Cancer Cells, Anal.Chem.86(2014),4618-4626.
[55]. Rong-Rong Xiao, Lei Wang, Lin Zhang, Yu-Ning Liu, Xiao-Lei Yu and Wei-Hua Huang*.Quantifying Biased Response of Axon to Chemical Gradient Steepness in a Microfluidic Device.Anal. Chem. 2014, 86, 11649-11656.
2013:
[56].Rong-RongXiao,Wen-JuanZeng,Yu-TaoLi,WeiZou,LeiWang,Xue-FeiPei,MinXie, Wei-HuaHuang*,
Simultaneous Generation of Gradients with Gradually Changed Slope in a Microfluidic Device for Quantifying Axon Response, Anal.Chem.85(2013),7842-7850.
[57]. Qin-Shu Kang, Xiao-Fan Shen, Na-Na Hu, Meng-Jia Hu, Hui Liao, Han-Zhong Wang, Zhi-Ke Hea and Wei-Hua Huang*.A 3D porous polymer monolith-based platform integrated in poly(dimethylsiloxane) microchips for immunoassay.Analyst 2013, 138, 2613-2619.
[58]. Yu-Jie Zou, Tai-Lang Yin, Shi-Jing Chen, Jing Yang* and Wei-Hua Huang*.On-Chip Cryopreservation: A Novel Method for Ultra-Rapid Cryoprotectant-Free Cryopreservation of Small Amounts of Human Spermatozoa. PLOS ONE 2013, 8, e61593.
[59]. Ying Pei, Xue-Ying Wang, Wei-Hua Huang, Pan Liu and Li-Na Zhang*.Cellulose-based hydrogels with excellent microstructural replication ability and cytocompatibility for microfluidic devices. Cellulose 2013, 20, 1897-1909
2012:
[60]. Lin-MeiLi,Xue-YingWang,Liang-ShengHu,Rong-ShengChen,YingHuang,Shi-JingChen, Wei-HuaHuang*,Kai-FuHuo*,PaulK.Chu,Vascular lumen simulation and highly-sensitive nitric oxide detection using three-dimensional gelatin chip coupled to TiC/C nanowire arrays microelectrode. LabChip 12(2012),4249-4256 (封面论文).
[61]. Yun Li, Qin-Shu Kang, Guo-Ping Sun, Li-Jin Su, Zhen-Hua Zheng, Zhen-Feng Zhang, Han-Zhong Wang, Zhi-Ke He and Wei-Hua Huang*.Microchip-based immunoassays with application of silicon dioxide nanoparticle film.
Anal. Bioanal. Chem. 2012, 403, 2449-2457
2011:
[62]. Lin-MeiLi,WeiWang,Shu-HuiZhang,Shi-ShangGuo,Shi-JingChen,OlivierFrancais,Jie-KeCheng,Wei-HuaHuang*,Integrated Microdevice for Long-Term Automated Perfusion Culture without Shear Stress and Real-Time Electrochemical Monitoring of Cells. Anal.Chem.83(2011), 9524–9530.
2010:
[63]. Jun-Hua Wang, Lin-Mei Li, Wei-Hua Huang* and Jie-Ke Cheng*.Development and Evaluation of a Rotary Cell for Capillary Electrophoresis-Chemiluminescence Detection. Anal. Chem. 2010, 82, 5380-5383.
[64]. Qin-Shu Kang, Yun Li, Jun-Qing Xu, Li-Jin Su, Yu-Tao Li and Wei-Hua Huang*.Polymer monolith-integrated multilayer poly(dimethylsiloxane) microchip for online microextraction and capillary electrophoresis. Electrophoresis 2010, 31, 3028-3034.
2009:
[65]. Feng Ai, Hong Chen, Shu-Hui Zhang, Sheng-Yi Liu, Fang Wei, Xu-Yan Dong, Jie-Ke Cheng, Wei-Hua Huang*, Real-Time Monitoring of Oxidative Burst from single Plant Protoplasts Using Microelectrochemical Sensors Modified by Platinum Nanoparticles, Analytical Chemistry2009, 81, 8453–8458. (Anal.Chem.“ResearchProfile”News 撰文特别介绍).
[66].Wei Wang I Shu-Hui Zhang & Lin-Mei Li & Zong-Li Wang & Jie-Ke Cheng &Wei-Hua Huang.Monitoring of vesicular exocytosis from single cells using micrometer and nanometer-sized electrochemical sensors. Anal. Bioanal. Chem. 2009, 394, 17-32
2008:
[67]. Fu-Ying Du, Wei-Hua Huang*, Ying-Xiang Shi, Zong-Li Wang, Jie-Ke Cheng, Real Time Monitoring of NO Release from Single Cells Using Carbon Fiber Microdisk Electrodes Modified with Single-walled Carbon Nanotubes, Biosensors and Bioelectronics,2008, 24415-24421.
[68]. Baoxian Shi, Weihua Huang*, Jieke Cheng*.Analysis of amino acids in human vascular endothelial (ECV-304) cells by microchip electrophoresis with fluorescence detection.J. Sep. Sci. 2008, 31, 1144-1150
[69]. Wei-Hua Huang*, Feng Ai, Zong-Li Wang, Jie-Ke Cheng.Recent advances in single-cell analysis using capillary electrophoresis and microfluidic devices.J. Chrom. B 2008, 866, 104-122.
[70]. Fu-Ying Du, Wei-Hua Huanga*, Yin-Xiang Shi, Zong-Li Wang and Jie-Ke Cheng*.Real-time monitoring of NO release from single cells using carbon fiber microdisk electrodes modified with single walled carbon nanotubes. Biosensors and Bioelectronics 2008, 24, 415-421
2007:
[71].Yan-Jun Liu,1,2 Shi-Shang Guo,2 Zhi-Ling Zhang,1 Wei-Hua Huang,1,2 Damien Baig1,2 Min Xie,1 Yong Chen,2* Dai-Wen Pang1 .A micropillar-integrated smart microfluidic device for specific capture and sorting of cells. Volume28, Issue24. MINIATURIZATION.No. 24 December 2007 Pages 4713-4722.
[72]. Yan-Jun Liu, Shi-Shang Guo, Zhi-Ling Zhang, Wei-Hua Huang, Damien Baigl and Yong Chena, Dai-Wen Pang.Integration of minisolenoids in microfluidic device for magnetic bead–based immunoassays. Journal of Applied Physics 102, 084911 (2007); https://doi.org/10.1063/1.2801347.
[73].Wei-Hua Huang,[a]Anatoly A. Zinchenko,[b] Cyril Pawlak,[a] Yong Chen,[a] and Damien Baigl*[a] .Dynamic Conformational Behavior and Molecular Interaction Discrimination of DNA/Binder Complexesby Single-Chain Stretching in a MicroDevice.Volume8, Issue15,October 15, 2007, ChemBioChem.Pages 1771-1774.
[74]. Rongsheng Chen, Han Cheng, Wenzhan Wu, Xiaoni Ai, Weihua Huang, Zongli Wang, Jieke Cheng.Analysis of inorganic and small organic ions by CE with amperometric detection. ELECTROPHORESIS, Volume28, Issue19.Special Issue: Inorganic Species and Small Organic Ions.No. 19 October 2007.Pages 3347-3361.
[75]. Xin Lu, Wei-Hua Huang*, Feng Ai, Zong-Li Wang, Jie-Ke Cheng* .Indirect determination of pyruvic acid by capillary electrophoresis with amperometric detection.Journal of Chromatography B Volume 857, Issue 2, 1 October 2007, Pages 347-351.
[76]. Baoxian Shi, Weihua Huang*, Jieke Cheng .Determination of neurotransmitters in PC 12 cells by microchip electrophoresis with fluorescence detection .ELECTROPHORESIS, Volume28, Issue10,No. 10 May 2007,Pages 1595-1600.
[77]. Wei Wang, Yue Xiong, Fu-Ying Du, Wei-Hua Huang, Wen-Zhan Wu, Zong-Li Wang, Jie-Ke Cheng* and Yi-Fu Yang*.Imaging and detection of morphological changes of single cells before and after secretion using scanning electrochemical microscopy. Analyst, 2007,132, 515-518
[78]. Han Cheng, Wei-Hua Huang*, Rong-Sheng Chen, Zong-Li Wang, Jie-Ke Cheng .Carbon fiber nanoelectrodes applied to microchip electrophoresis amperometric detection of neurotransmitter dopamine in rat pheochromocytoma (PC12) cells. ELECTROPHORESIS,Volume28, Issue10,No. 10 May 2007,Pages 1579-1586.
[79].Wen-ZhanWu, Wei-HuaHuang,WeiWang,Zong-LiWang,Jie-KeCheng,TaoXu,Rong-YingZhang,YuChen,JieLiu, Monitoringdopaminereleasefromsinglelivingvesicleswithnanoelectrodes, J.Am.Chem.Soc.127(2005)8914-8915
[80].Wen-Zhan Wu, Wei-Hua Huang, Wei Wang, Zong-Li Wang, Jie-Ke Cheng, Tao Xu, Rong-Ying Zhang, Yu Chen, Jie Liu, Monitoring Dopamine Release from Single Living Vesicles with Nanoelectrodes. Journal of the American Chemical Society 2005, 127,8914-8915. .(入选美国分析化学经典教材QuantitativeChemicalAnalysis” 第八版以及“ExploringChemicalAnalysis”第四版)
[81].Wei-Hua Huang, Wei-Cheng, Dai-Wen Pang, Zong-Li Wang, Jie-Ke Cheng, Da-Fu Cui., Transport, Location and Quantal Release Monitoring of Single Cells on a Microfluidic Device. Analytical Chemistry2004,76, 483-488.
[82].Wei-HuaHuang,Dai-WenPang,HuaTong,Zong-LiWang,andJie-KeCheng, A Method for the Fabrication of Low-Noise Carbon Fiber Nanoelectrodes, Anal.Chem.73(2001)1048-1052.(入选美国分析化学经典教材QuantitativeChemicalAnalysis” 第八版以及“ExploringChemicalAnalysis”第四版)
发表中文期刊论文:
[1]齐昱婷,张芙莉,田思玉,杨小柯,刘艳玲,黄卫华.微纳电化学传感界面的构建及其用于单细胞实时监测[J].中国科学:化学,2021,51(03):359-373.
[2]厉婷,徐加泉,黄卫华.聚3,4-乙烯二氧噻吩/碳纳米管/TiO_2电化学传感器构建及其在细胞检测中的应用[J].分析科学学报,2020,36(05):701-709.
[3]吕松伟,叶思远,尤蓉蓉,黄卫华.基于微流控芯片的循环肿瘤细胞捕获与光热定点释放的研究[J].分析科学学报,2020,36(05):717-724.
[4]张芙莉,邱权发,杨小柯,黄卫华.突触传递逆行性信号分子的实时电化学监测[J].分析化学,2019,47(10):1689-1694.
[5]度欢欢,刘艳玲,王雅文,汤匀,黄卫华.光致清洁电极可见光在线更新与细胞实时监测[J].化学学报,2017,75(11):1091-1096.
[6]张林,汤匀,肖荣荣,刘渝宁,谢敏,黄卫华.基于纳米金密度的物理-化学双重梯度构建及其用于神经元轴突响应研究[J].分析科学学报,2016,32(03):297-302.
[7]陆宁宁,谢敏,程世博,吕松伟,黄卫华.血液中循环肿瘤细胞捕获与释放方法研究进展[J].分析科学学报,2015,31(03):416-426.
[8]刘俊桃,刘艳玲,程治,陈时靖,黄卫华.超微电极实时监测植物细胞壁参与调控的单细胞活性氧爆发(英文)[J].电化学,2015,21(01):29-38.
[9]康勤书,杨沫,刘蒙蒙,姜晓彤,杨晓庆,陈浩,谢敏,黄卫华.纳米金修饰的微柱型微流控芯片用于循环肿瘤细胞检测[J].武汉理工大学学报,2014,36(07):45-49.
[10]程寒,兰嘉峰,韦光汉,黄卫华,程介克.单壁碳纳米管修饰电极的抗污染性能研究及其用于五羟色胺检测[J].分析化学,2013,41(04):540-545.
[11]胡娜娜,苏利进,康勤书,黄卫华.微流控芯片中金属离子印迹整体柱集成及用于Cd~(2+)富集和在线检测[J].分析科学学报,2013,29(01):1-5.
[12]王军华,黄卫华,李灵军,程介克.芯片电色谱的最新研究进展及应用[J].色谱,2010,28(03):264-272.
[13]程介克,王玮,吴文展,黄卫华,王宗礼.探索脑化学纳米电化学——监测单细胞、单囊泡、突触间隙释放化学信号分子及形貌分析[J].高等学校化学学报,2008,29(12):2609-2617.
[14]程寒,吴剑虹,陈荣生,黄卫华,王宗礼,程介克.芯片毛细管电泳集成电化学检测装置和4种碳纤维电极的比较研究[J].分析化学,2008(01):1-6.
[15]杜富滢,黄卫华,吴文展,王宗礼,程介克.新型微盘传感器的研制及用于单细胞释放NO监测[J].高等学校化学学报,2007(06):1069-1071.
[16]邬丽明,时宝宪,黄卫华,程介克.芯片毛细管电泳荧光检测器灵敏度的研究[J].分析科学学报,2007(02):160-162.
[17]程介克,黄卫华,王宗礼.单细胞分析的研究[J].色谱,2007(01):1-10.
[18]时宝宪,邬丽明,张淑慧,叶丹,黄卫华,程介克.汞灯光源芯片毛细管电泳荧光电荷耦合器件检测系统[J].分析科学学报,2006(02):149-152.
[19]吴文展,黄卫华,王玮,王宗礼,程介克,张蓉颖,陈宇,刘杰,郑从义,沈超.纳米电极-膜片钳监测单个活囊泡连续释放[J].高等学校化学学报,2005(05):829-831.
[20]王军华,黄卫华,刘彦明,程介克.毛细管电泳免疫化学发光检测鼠血管平滑肌细胞中zmol骨形成蛋白-2[J].高等学校化学学报,2004(09):1642-1644.
[21]张丽瑶,黄卫华,王宗礼,程介克.NDA柱前衍生毛细管电泳高灵敏安培检测组胺[J].分析科学学报,2004(01):1-4.
[22]张丽瑶,黄卫华,王宗礼,程介克.毛细管电泳分离几种神经递质的研究[J].分析试验室,2003(06):1-5.
[23]郑汉巧,欧阳静萍,余峰,黄卫华,李银萍,吴珂,庞代文.脂肪组织干细胞分化为神经元样细胞研究[J].武汉大学学报(医学版),2003(04):305-306+311-417.
[24]程伟,黄卫华,庞代文,王宗礼,程介克,崔大付,屈三甫,郑从义.微流控芯片操纵传输及实时监测单细胞量子释放[J].高等学校化学学报,2003(09):1585-1587.
[25]程介克,庞代文,黄卫华,鲁馨.21世纪单细胞分析发展[J].大学化学,2003(04):1-10.
[26]陈荣生,肖华,黄卫华,童华,王宗礼,程介克.单壁碳纳米管修饰的高灵敏纳米碳纤维电极[J].高等学校化学学报,2003(05):808-810.
[27]黄卫华,张丽瑶,程伟,庞代文,王宗礼,程介克.纳米电极时空分辨监测单个PC12细胞多巴胺量子释放[J].高等学校化学学报,2003(03):425-427.
[28]张丽瑶,黄卫华,王宗礼,程介克.再生碳纤维电极的新方法[J].分析科学学报,2002(06):457-459.
[29]黄卫华,庞代文,王宗礼,程介克.一种新型低噪音碳纤维纳米电极[J].高等学校化学学报,2001(09):1561-1563.
[30]黄卫华,胡深,庞代文,王宗礼,程介克.单个细胞释放时空监测[J].科学通报,1999(20):2129-2135.
会议论文:
[1]黄卫华. 纳米电极亚细胞实时探测[C]. 中国化学会第十四届全国电分析化学学术会议会议论文集(第一分册).2020:23.
[2]刘艳玲,黄卫华. 柔性可拉伸电化学传感实时监测力学信号转导[C]. 中国化学会第十四届全国电分析化学学术会议会议论文集(第一分册). 2020:156.
[3]范文婷,严景,金紫荷,刘艳玲,黄卫华. 可拉伸电化学传感器与器官芯片集成用于实时信号分子监测[C]. 中国化学会第十二届全国微全分析系统学术会议、第七届全国微纳尺度生物分离分析学术会议、第七届国际微流控学学术论坛、The 11th International Symposium on Microchemistry and Microsystems摘要集 2019:369.
[4]黄卫华. 微流控细胞/组织芯片的电化学实时监测[C]. 中国化学会第十二届全国微全分析系统学术会议、第七届全国微纳尺度生物分离分析学术会议、第七届国际微流控学学术论坛、The 11th International Symposium on Microchemistry and Microsystems摘要集. 2019:76.
[5]谢敏,程世博,黄卫华. 三维多孔微流控芯片用于循环肿瘤细胞的捕获和释放[C]. 中国化学会第十三届全国分析化学年会论文集(二). 2018:584.
[6]张欣伟,姜宏,廖全兰,邱权发,黄卫华. 巨噬细胞内ROS/RNS受炎性因子调控的定量研究[C]. 中国化学会第十三届全国分析化学年会论文集(二). 2018:713.
[7]黄卫华. 纳米电极亚细胞实时动态监测[C]. 中国化学会第十三届全国分析化学年会论文集(二). 2018:732.
[8]张芙莉,邱权发,黄卫华. 酶型微电化学传感器实时监测单个神经元谷氨酸胞吐释放[C]. 第十届全国化学生物学学术会议论文摘要集(墙报). 2017:226.
[9]邱权发,张芙莉,姜宏,张欣伟,黄卫华. 单根SiC@C纳米线电极用于胞内活性氧检测[C]. 第十三届全国电分析化学学术会议会议论文摘要集. 2017:420.
[10]黄卫华. 单细胞实时动态电化学检测[C]. 第十三届全国电分析化学学术会议会议论文摘要集. 2017:53.
[11]刘艳玲,秦羽,黄卫华. 可拉伸电化学传感器构建及细胞机械力信号转导实时监测[C]. 第十三届全国电分析化学学术会议会议论文摘要集. 2017:71.
[12]王雅文,刘艳玲,徐加泉,度欢欢,黄卫华. 基于金纳米管和二氧化钛纳米线复合纳米材料的柔性光致自清洁电化学传感器构建[C]. 第十三届全国电分析化学学术会议会议论文摘要集. 2017:316.
[13]刘艳玲,秦羽,刘蓉,黄卫华. 可拉伸电化学传感器用于细胞机械转导信号分子监测[C]. 中国化学会第30届学术年会摘要集-第四十一分会:纳米材料与器件. 2016:115.
[14]胡雪波,刘艳玲,肖冲,黄卫华. 单细胞硫化氢释放的电化学实时监测[C]. 中国化学会.中国化学会第30届学术年会摘要集-第四分会:生物分析和生物传感. 2016:119.
[15]黄卫华. 高性能微纳米电化学传感器构建及单细胞实时动态监测[C]. 中国化学会.中国化学会第30届学术年会摘要集-第三分会:纳米传感新原理新方法. 2016:45.
[16]方威,张欣伟,黄卫华,沈爱国,胡继明. 基于微滴管SERS基底的生长素检测[C]. 中国光学学会、中国化学会.第十八届全国分子光谱学学术会议论文集. 2014:487-488.
[17]鲁馨,黄卫华,王宗礼,程介克. 碳纳米管修饰碳纤维微盘电极毛细管电泳安培法检测细胞及大鼠脑组织中神经递质[C]. 湖北省化学化工学会第十一届分析化学专业年会论文集. 2007:85-86.
[18]艾枫,黄卫华,陈洪,王宗礼,程介克. 超微电极电化学实时监测单个油菜原生质体活性氧爆发[C]. 湖北省化学化工学会第十一届分析化学专业年会论文集. 2007:163-164.
[19]王玮,吴文展,黄卫华,王宗礼,程介克. 扫描电化学显微镜监测单个细胞三维形貌[C]. 湖北省化学化工学会第十一届分析化学专业年会论文集. 2007:220-221.
[20]黄卫华,Yong Chen,Damien Baigl. 基于微流控系统的单个DNA分子压缩机制研究[C]. 第四届海峡两岸分析化学学术会议论文集. 2006:37.
[21]时宝宪,黄卫华,程介克. 芯片毛细管电泳荧光检测PC12细胞中神经递质[C]. 第四届海峡两岸分析化学学术会议论文集. 2006:125-126.
[22]程寒,陈荣生,黄卫华,王宗礼,程介克. 纳米电极用于微流控芯片安培测定细胞中神经递质多巴胺[C]. 第四届海峡两岸分析化学学术会议论文集. 2006:195-196.
[23]王玮,熊跃,吴文展,黄卫华,王宗礼,程介克. 扫描电化学显微镜监测单个细胞释放前后形貌[C]. 第四届海峡两岸分析化学学术会议论文集. 2006:197-198.
[24]杜富滢,黄卫华,施银香,王宗礼,程介克. 单壁碳纳米管修饰的碳纤维微盘电极实时监测单个细胞NO释放[C]. 第四届海峡两岸分析化学学术会议论文集. 2006:199-200.
[25]陈荣生,程寒,黄卫华,王宗礼,程介克. 微流控芯片集成微电极系统用于PC12细胞分析[C]. 第三届全国微全分析系统学术会议论文集. 2005:80-81.
[26]时宝宪,邬丽明,黄卫华,程介克. 芯片毛细管电泳荧光电荷耦合器件检测系统[C]. 第三届全国微全分析系统学术会议论文集. 2005:82.
[27]陈荣生,程寒,黄卫华,程介克. 玻璃微流控芯片上微通道堵塞的疏通方法[C]. 第三届全国微全分析系统学术会议论文集. 2005:83-84.
[28]程寒,陈荣生,黄卫华,王宗礼,程介克. 芯片毛细管电泳电化学检测儿茶酚胺类神经递质[C]. 第三届全国微全分析系统学术会议论文集 2005:198-199.
[29]王军华,周世来,黄卫华,成成,程介克. 碳酸酐酶催化鲁米诺化学发光的初步探索及应用于蛋白质的毛细管电泳分离[C]. 第三届全国微全分析系统学术会议论文集. 2005:209-210.
[30]周世来,王军华,黄卫华,成成,程介克. 毛细管电泳化学发光检测纳米金[C]. 第三届全国微全分析系统学术会议论文集. 2005:268-269.
[31]鲁馨,黄卫华,王军华,陈荣生,周世来,王宗礼,程介克. 碳纳米管修饰电极用于毛细管电泳安培法检测血红蛋白[C]. 第三届全国微全分析系统学术会议论文集. 2005:270-271.
[32]杜富滢,陈荣生,黄卫华,程介克,王宗礼. 碳纳米管修饰纳米碳纤维电极的NO传感器[C]. 第三届全国微全分析系统学术会议论文集. 2005:272-273.
[33]吴文展,王玮,黄卫华,张志凌,王宗礼,程介克. 纳米电极监测囊泡及突触内神经信号分子传导[C]. 第三届全国微全分析系统学术会议论文集. 2005:274.
[34]黄卫华,吴文展,庞代文,王宗礼,程介克. 超微电极电化学及显微荧光成像时空监测单细胞释放[C]. 第二届全国微全分析系统学术会议论文摘要集. 2004:187-188.