{"id":8602,"date":"2021-04-14T15:49:50","date_gmt":"2021-04-14T07:49:50","guid":{"rendered":"https:\/\/www.fst.um.edu.mo\/personal\/?page_id=8602"},"modified":"2025-12-19T16:42:53","modified_gmt":"2025-12-19T08:42:53","slug":"publications","status":"publish","type":"page","link":"https:\/\/www.fst.um.edu.mo\/personal\/yanweijia\/publications\/","title":{"rendered":"publications"},"content":{"rendered":"\t\t<div data-elementor-type=\"wp-page\" data-elementor-id=\"8602\" class=\"elementor elementor-8602\" data-elementor-post-type=\"page\">\n\t\t\t\t\t\t<section data-particle_enable=\"false\" data-particle-mobile-disabled=\"false\" class=\"elementor-section elementor-top-section elementor-element elementor-element-026f255 elementor-section-boxed elementor-section-height-default elementor-section-height-default\" data-id=\"026f255\" data-element_type=\"section\">\n\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-default\">\n\t\t\t\t\t<div class=\"elementor-column 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data-element_type=\"widget\" data-widget_type=\"image.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t<img fetchpriority=\"high\" decoding=\"async\" width=\"402\" height=\"536\" src=\"https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2021\/05\/lab_6.jpg\" class=\"attachment-large size-large wp-image-8823\" alt=\"\" srcset=\"https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2021\/05\/lab_6.jpg 402w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2021\/05\/lab_6-225x300.jpg 225w\" sizes=\"(max-width: 402px) 100vw, 402px\" \/>\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t<div class=\"elementor-column elementor-col-50 elementor-inner-column elementor-element elementor-element-9f17136\" data-id=\"9f17136\" data-element_type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap elementor-element-populated\">\n\t\t\t\t\t\t<div class=\"elementor-element elementor-element-b5695c9 elementor-widget elementor-widget-text-editor\" data-id=\"b5695c9\" data-element_type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t<p><span style=\"font-size: 36pt;color: #008080\">Yanwei Jia Microfluidics Group<\/span><\/p><p><span style=\"color: #ff6600\">University of Macau<\/span><\/p>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<section data-particle_enable=\"false\" data-particle-mobile-disabled=\"false\" class=\"elementor-section elementor-top-section elementor-element elementor-element-3150368 elementor-section-boxed elementor-section-height-default elementor-section-height-default\" data-id=\"3150368\" data-element_type=\"section\">\n\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-default\">\n\t\t\t\t\t<div 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class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t<p><span style=\"color: #000000;font-size: 18pt\"><strong>Featured Articles<\/strong><\/span><\/p>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<div class=\"elementor-element elementor-element-237b5dd elementor-widget elementor-widget-image\" data-id=\"237b5dd\" data-element_type=\"widget\" data-widget_type=\"image.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t<img decoding=\"async\" width=\"1536\" height=\"379\" src=\"https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-1536x379.jpg\" class=\"attachment-1536x1536 size-1536x1536 wp-image-54337\" alt=\"\" srcset=\"https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-1536x379.jpg 1536w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-300x74.jpg 300w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-1024x253.jpg 1024w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-768x190.jpg 768w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13-1568x387.jpg 1568w, https:\/\/www.fst.um.edu.mo\/personal\/wp-content\/uploads\/2025\/10\/cover_13.jpg 1693w\" sizes=\"(max-width: 1536px) 100vw, 1536px\" \/>\t\t\t\t\t\t\t\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t<div class=\"elementor-element elementor-element-465875c elementor-widget elementor-widget-text-editor\" data-id=\"465875c\" data-element_type=\"widget\" data-widget_type=\"text-editor.default\">\n\t\t\t\t<div class=\"elementor-widget-container\">\n\t\t\t\t\t\t\t\t\t<p><span style=\"font-size: 18pt\"><strong>Journal Papers<\/strong><\/span> (* corresponding author)<\/p><ol><li>Y. F. Wang, Z. Y. Guo, X. D. Lin, R. Shen, Y. Y. Liu, C. C. Tsoi, P. I. Mak, R. P. Martins, X. M. Zhang, <u>Y. W. Jia*,<\/u> Orthogonal-electrode digital microfluidics for high-throughput droplet manipulations, <strong>Sensors and Actuators B<\/strong>, 451,139303, 2026<\/li><li>J. Zhai*, A. M. Kowsar, Z. S, Wang, T. X. Si, R. C. Lin, M. Z. Q. Xiao, H. J. Song, Y. Y. Liu, <u>Y. W. Jia<\/u>, M. S. Yang*, Teflon wet-on technology for single-cell isolation on digital microfluidic chips: advancing genomic heterogeneity analysis in cancer research, <strong>Talanta<\/strong>, 298, 128833, 2026<\/li><li>X. J. Chen, X. D. Lin, H. R. Li, <u>Y. W. Jia*<\/u>, Integrated 3D microstructured digital microfluidic platform for advanced 3D cell culture, <strong>Microsystems &amp; Nanoengineering<\/strong>, 11, 239, 2025<\/li><li>Q. Zhou, S. H. Fan, Y. Y. Liu, R. P. Martins, P. I. Mak, <u>Y. W. Jia*,<\/u> K. M. Lei*, A chip-based miniature MRI platform with integrated frontend probe for in-situ 3D cell culture monitoring, <strong>IEEE Transactions on Biomedical Circuits and Systems<\/strong>, 41182916, 2025<\/li><li>T. G. Li, S. H. Wang, Q. H. Ling, J. Y. Sun, N. Yang, Z. L. Fu, Z. Y. Zhang, S. Chen, Y. F. Wang, N. Yu, Y. F. Wang, Z. X. Ding, H. D. Liu, <u>Y. W. Jia<\/u>, Y. F. Wang, X. C. Zhang*, Cell viability, drug screening, and mechanism study under mild phototherapy integrated chemotherapy (PIC), <strong>Advanced Science<\/strong>, e02836, 2025<\/li><li>G. W. Xing, S. Feng, Q. Zhang, X. Z. Yi, Z. N. Wu, <u>Y. W. Jia*,<\/u> J. M. Lin*, In-situ cell extraction-mass spectrometry for EpCAM analysis via DNA-mediated rolling circle amplification, <strong>Biosensors and Bioelectronics<\/strong>, 117904, 2025<\/li><li>H. Y. Ma, Y. W. Zhang, R. Shen*, <u>Y. W. Jia<\/u>, Droplet-based microfluidics in single-bacterium analysis: advancements in cultivation, detection, and application, <strong>Biosensors<\/strong>, 15, 535, 2025<\/li><li>Y. Z. Wang, Y. H. Zhang, M. Yu, P. Xiu, <u>Y. W. Jia<\/u>, H. Chen, S. M. Le*, J. Qian*, J. Yan*, Salt-bridge mediated cooperativity and mechanical stabilization of tandem spectrin repeats, <strong>Nanoscale Horizons<\/strong>, 10, 1749-1759, 2025.<\/li><li>G. W. Xing, Y. X. Li, Z. N. Wu, Y. T. Shang, H. R. Yao, <u>Y. W. Jia<\/u>*, J. M. Lin*, Alginate-gelatin hydrogel scaffolds for establishing physiological barriers on a gut-brain-axis microchip<strong>, International Journal of Biological Macromolecules<\/strong>, 312, 144084, 2025<\/li><li>Y. Y. Liu, A. M. Lyu, J. J. Wu, X. Y. Wang, Y. Liu, P. I. Mak, R. P. Martins, R. H. Xu,* <u>Y. W. Jia*,<\/u> Wound healing accelerated by stem cell bandage stored at room temperature, <strong>Chemical Engineering Journal,<\/strong> 517, 164346, 2025<\/li><li>W. H. Hui, K. M. Lei, Y. Y. Liu, X. R. Huang, Y. L. Zhong, X. J. Chen, Mingji Wei, Jie Yan, Ren Shen, P. I. Mak, R. P. Martins, S. H. Yi*, P. Wang*, <u>Y. W. Jia*,<\/u> Identification and drug screening of single cells from human tumors on semiconductor chip for cancer precision medicine, <strong>Advanced Science,<\/strong> \u00a0202503131, 2025 <span style=\"color: #0000ff\"><strong>(Cover Story)<\/strong><\/span><\/li><li>C. W. Li, N. Shi, S. Andaluz, Y. Lu, P. I. Mak, R. P. Martins, <u>Y. W. Jia*,<\/u> Portable integrated digital microfluidic system for on-chip rapid antibiotic susceptibility testing, <strong>Chemical Engineering Journal<\/strong>, 512, 162205, 2025<\/li><li>J. M. Li, S. J. Lin, Z. Y. Lang, G. W. Xing, <u>Y. W. Jia<\/u>, H. M. Cao, A hairpin reporters-based one-pot LAMP-CRISPR\/Cas12a assay for the highly sensitive and visual detection of Vibrio parahaemolyticus, <strong>Food Control<\/strong>, <span style=\"color: #808080\"><a style=\"color: #808080\" href=\"https:\/\/doi.org\/10.1016\/j.foodcont.2025.111184\">172, 111184<\/a>, <\/span>2025<\/li><li>R. Shen, Y. M. Fang, C. X. Yang, Q. D. Wei, P. I. Mak, R. P. Martins, <u>Y. W. Jia*,<\/u> UV-assisted ratiometric fluorescence sensor for one-pot visual detection of Salmonella, <strong>Chinese Chemical Letters<\/strong>, 36, 110143, 2025<\/li><li>T. Peng, Z. X. Zhang, S. Yuan, J. Qiang, <u>Y. W. Jia*,<\/u> Investigation on sheathless inertial focusing within low-aspect ratio spiral microchannel for cascaded microfluidic tumor cell separation, <strong>Physics of Fluids<\/strong>, 36, 077153, 2024<\/li><li>Y. P. Xia, R. T. Rao, M. Q. Xiong, B. S. He, B. X. Zheng, <u>Y. W. Jia,<\/u> Y. Li, Y. H. Yang, CRISPR-powered strategies for amplification-free diagnostics of infectious diseases, <strong>Analytical Chemistry<\/strong>, 96, 8091-8108, 2024<\/li><li>J. Zhai, Y. Y. Liu, W. Q. Ji, X. R. Huang, P. Wang, Y. Y. Li, H. R. Li, A. H. H. Wong, X. Zhou, L. H. Wang, N. Yang, C. Chen, H. T. Chen, P. I. Mak, C. X. Deng, R. Martins, M. S. Yang, S. H. Yi, H. L. Yao, T. Y. Ho, <u>Y. W. Jia*,<\/u> Drug screening on digital microfluidics for cancer precision medicine, <strong>Nature Communications<\/strong>, 15, 4363, 2024<\/li><li>M. Q. Liu, H. Y. Zhunag, Y. Zhang, <u>Y. W. Jia*,<\/u> A sandwich FRET biosensor for lysozyme detection based on peptide-functionalized bold nanoparticles and FAM-labeled aptamer, <strong>Talanta<\/strong>, 276, 126226, 2024<\/li><li>R. Shen, W. H. Hui, W. G. Wu, N. Yang, X. D. Lin, P. I. Mak, R. P. Martins, A. Q. Liu, <u>Y. W. Jia*,<\/u> A cost-effective and field-deployable sensing system for chip-integrated detection of bacteria with the naked eye, <strong>Sensors and Actuators B<\/strong>, 410, 135668, 2024<\/li><li>T. Peng*, X. D. Lin, L. M. Li, L. Huang, B. Y. Jiang*, <u>Y. W. Jia*,<\/u> Investigation on submicron particle separation and deflection using tilted-angle standing surface acoustic wave microfluidics, <strong>Heliyon<\/strong>, 10, e25042, 2024<\/li><li>H. Jiang, C. C. Tsoi, L. R. Sun, W. X. Yu, H. Fan, M. C. Ma, <u>Y. W. Jia<\/u>, X. M. Zhang*, Biomimetic curved artificial compound eyes: a review, <strong>Advanced Devices &amp; Instrumentation<\/strong>, 5, 0034, 2024<\/li><li>T. Peng, C. X. Zhou, Z. X. Zhang, Y. Y. Liu, X. D. Lin, Y. Q. Ye, Y. L. Zhong, P. Wang*, <u>Y. W. Jia*<\/u>, Bile dynamics within the biliary tract and microfluidic-based bile component detection: a review, <strong>Biomicrofluidics<\/strong>, 18, 014105, 2024<\/li><li>L. Meng, M. Z. Li, Z. Y. Xu, A. M. Lv, <u>Y. W. Jia<\/u>, M. W. Chen, P. I. Mak, R. P. Martins, M. K. Law, Absolute Quantification of Nucleic Acid on Digital Microfluidics Platform Based on Superhydrophobic\u2013Superhydrophilic Micropatterning, <strong>Sensors and Actuators B<\/strong>, 402, 135079, 2024<\/li><li>Y. J. Zhu, F. J. Xie, T. C. K. Wun, K. C. Li, H. Lin, C. C. Tsoi, H. P. Jia, Y. Chai, Q. Zhao. B. T. Lo, S. Y. Leu, <u>Y. W. Jia<\/u>, K. N. Ren, and X. M. Zhang, Bio-inspired microreactors continuously synthesize glucose precursor from CO2 with an energy conversion efficiency 3.3 times of rice, <strong>Advanced Science<\/strong>, 11(6), 2470037, 2024<\/li><li>T. Peng, Y. L. Zhong, X. D. Lin, F. Z. Jiang, B. Y. Jiang, P. Wang*, <u>Y. W. Jia*,<\/u> Analysis and numerical investigation of bile flow dynamics within the strictured biliary duct, <strong>Numerical Methods in Biomedical Engineering<\/strong>, e3790,\u00a0 2023 <strong>(<span style=\"color: #0000ff\">Cover Story <\/span><\/strong>\u00a0<a href=\"https:\/\/doi.org\/10.1002\/cnm.3829\">https:\/\/doi.org\/10.1002\/cnm.3829<\/a> <strong>)<\/strong><\/li><li>H. R. Li, T. Peng, Y. L. Zhong, M. Q. Liu, P. I. Mak, R. P. Martins, P. Wang*, <u>Y. W. Jia*<\/u>, pH regulation on digital microfluidics with pico-dosing technique, <strong>Biosensors<\/strong>, 13, 951, 2023<\/li><li>L. Wan, M. Z. Li, M. K. Law, P. I. Mak, R. P. Martins, <u>Y. W. Jia*<\/u>, Sub-5-minute ultrafast PCR using digital microfluidics, <strong>Biosensors and Bioelectronics<\/strong>, 242, 115711, 2023<\/li><li>T. Peng, X. D. Lin, S. Yuan, M. Y. Zhou, B. Y. Jiang, <u>Y. W. Jia*<\/u>, Mixing enhancement in a straight microchannel with ultrasonically activated attached bubbles, <strong>International Journal of Heat and Mass Transfer<\/strong>, 217, 124635, 2023\u00a0<\/li><li>X. L. Chen, R. J. Deng, D. D. su, X. C. Ma, X. Han. S. Z. Wang, Y. Q. Xia, Z. F. Yang, <u>Y. W. Jia<\/u>, X. Y. Gao, X. J. Ren*, Visual genetic typing of glioma using proximity-anchored in situ spectral coding amplification, <strong>Exploration<\/strong>, 3(5): 20220175, 2023\u00a0<\/li><li>C. W. Li, J. Zhai, <u>Y. W. Jia*<\/u>, Digital microfluidics with an on-chip dispenser for single or combinational drug screening, <strong>Microfluidic Systems for Cancer Diagnosis<\/strong>, 25-39, Springer Protocols, Humana Press, 2023<\/li><li>J. Hu, E.L. Song, Y.H. Liu, Q.C. Yang, H.H. Sun, J.N. Chen, Y. Meng, <u>Y.W. Jia<\/u>, Z.G. Yu, Y. Ran, L.Y. Shao, P. P. Shum, Fiber Laser-Based Lasso-Shaped Biosensor for High Precision Detection of Cancer Biomarker-CEACAM5 in Serum, <strong>Biosensors<\/strong>, 13 (7), 674, 2023.<\/li><li>X. D. Lin*, M. Y. Zhao, T. Peng, P. Zhang, R. Shen, <u>Y. W. Jia*,<\/u> Detection and discrimination of pathogenic bacteria with nanomaterials-based optical biosensors: a review, <strong>Food Chemistry<\/strong>, 426, 136578, 2023<\/li><li>X. D. Lin*, H. T. Wu, S.Y. Zeng , T Peng, P Zhang, X. Wan, Y Lang, B Zhang, <u>Y. W. Jia<\/u>, R Shen, B. Yin*, A self-designed device integrated with a Fermat spiral microfluidic chip for ratiometric and automated point-of-care testing of anthrax biomarker in real samples, <strong>Biosensors and Bioelectronics<\/strong>, 230\uff0c115283, 2023<\/li><li>R. Shen, S. H. Yi, P. Wang, P. I. Mak, R. P. Martins,<u> Y. W. Jia*,<\/u> Nucleic acid analysis on electrowetting-based digital microfluidics, <strong>Trends in Analytical Chemistry<\/strong>, 158, 116826, 2023<\/li><li>N. Yang, T. W. Li, S. Z. Dong, S. L. Zhang, <u>Y. W. Jia*<\/u>, H. P. Mao*, Z. Zhang*, F. Zhang, X. Q. Pan, X. D. Zhang, and Zining Dong, Detection of airborne pathogens with single photon counting and real-time spectrometer on microfluidics, <strong>Lab on a Chip<\/strong>, 22, 4995, 2022<\/li><li>N. Yang, K. P. Chang, S. Z. Dong, J. Tang*, A. Y. Wang, R. B. Huang, <u>Y. W. Jia<\/u>*, Rapid image detection and recognition of rice false smut based on mobile smart devices with anti-light features from cloud database, <strong>Biosystems Engineering<\/strong>, 218, 229-244, 2022<\/li><li>K. U. Wong, J. X. Shi, P. Li, H. T. Wang, <u>Y. W. Jia<\/u>, C. X. Deng, L. M. Jiang, A. H. H. Wong, Assessment of Chimeric antigen receptor T (CAR-T) cytotoxicity by droplet microfluidics in vitro, <strong>Antibody Therapeutics<\/strong>, 5(2), 85-99, 2022<\/li><li>M. Z. Li, L. Wan, M. K. Law*, L. Meng, <u>Y. W. Jia*,<\/u>\u00a0 P. I. Mak, and R. Martins, One-shot high resolution melting curve analysis for Kras point-mutation discrimination on a digital microfluidic platform, <strong>Lab on a Chip<\/strong>, 22, 537, 2022 <strong><span style=\"color: #0000ff\">(Cover Story)<\/span><\/strong><\/li><li>M. Q. Liu, R. Shen, H. R. Li, <u>Y. W. Jia*,<\/u>\u00a0 P. I. Mak, and R. Martins, Ratiometric fluorescence analysis for miR-141 detection with hairpin DNA-templated silver nanoclusters, <strong>Journal of Materials Chemistry C<\/strong>, 10, 655, 2022<\/li><li>J. Zhai, C. W. Li, H. R. Li, S. H. Yi, N. Yang, K. Miao, C. X. Deng, <u>Y. W. Jia*,<\/u>\u00a0 P. I. Mak, and R. Martins, Cancer drug screening with an on-chip multi-drug dispenser in digital microfluidics, <strong>Lab on a Chip<\/strong>, 21, 4749-4759, 2021 <span style=\"color: #0000ff\"><strong>(Cover Story)<\/strong><\/span><\/li><li>N. Yang, W. H. Hui, S. Z. Dong, X. M. Zhang, L. Y. Shao, <u>Y. W. Jia*,<\/u> P. I. Mak and R. Martins, Temperature tolerance electric cell-substrate impedance sensing (ECIS) for joint assessment of cell viability and vitality, <strong>ACS Sensors<\/strong>, 6, 10, 3640-3649, 2021<span style=\"color: #0000ff\"> <strong>(Cover Story)<\/strong><\/span><\/li><li>M. Q. Liu, H. R. Li, <u>Y. W. Jia*<\/u>, P. I. Mak and R. P. Martins, SARS-CoV-2 RNA detection with duplex-specific nuclease signal amplification, <strong>Micromachines<\/strong>, 12, 197, 2021.<\/li><li>H. R. Li, R. Shen, <u>Y. W. Jia*,<\/u> P. I. Mak, R. P. Martins, Turning on\/off satellite droplet ejection for flexible sample delivery on digital microfluidics, <strong>Lab on a Chip,<\/strong> 20,3709-3719, 2020\u00a0<span style=\"font-weight: bolder;color: #0000ff\">(Cover Story)<\/span><\/li><li>J. Zhai, H. R. Li, A. H. H. Wong, C. Dong, S. H. Yi, <u>Y. W. Jia*,<\/u> P. I. Mak, C. X. Deng and R. P. Martins, A novel and robust single-cell trapping method on digital microfluidics, <strong>Bio-protocol<\/strong>, 10(19): e3769, 2020.<\/li><li>C. C. Tsoi, X. W. Huang, P. H. M. Leung, N. Wang, W. X. Yu, <u>Y. W. Jia<\/u>, Z. H. Li and X. M. Zhang, Photocatalytic ozonation for sea water decontamination, <strong>Journal of Water Process Engineering<\/strong>, 37, 101501, 2020.<\/li><li>R. Shen, <u>Y. W. Jia*,<\/u> P. I. Mak, and R. P. Martins, Clip to release on amplification (CRoA): a novel enhancer for DNA amplification on and off microfluidics, <strong>Lab on a Chip<\/strong>, 20, 1928-1938, 2020\u00a0<span style=\"font-weight: bolder;color: #0000ff\">(Cover Story)<\/span><\/li><li>Q. M. Chen, X. L. Tong, Y. J. Zhu, C. C. Tsoi, <u>Y. W. Jia<\/u>, Z. H. Li, and X. M. Zhang, Aberration-free aspherical tunable liquid lenses by regulating local curvatures, <strong>Lab on a Chip<\/strong>, 20, 995-1001, 2020.<\/li><li>J. Zhai, H. R. Li, A. H. H. Wong, C. Dong, S. H. Yi, <u>Y. W. Jia*,<\/u> P. I. Mak, C. X. Deng and R. P. Martins, A digital microfluidic system with 3D microstructures for single-cell culture, <strong>Microsystems and Nanoengineering<\/strong>, 6, 6, 2020.<\/li><li>Y. J. Zhu, Q. M. Chen, L. Y. Shao, <u>Y. W. Jia<\/u>, and X. M. Zhang, Microfluiidc immobilized enzyme reactors for continuous biocatalysis, <strong>Reaction Chemistry and Engineering<\/strong>, 5, 9-32, 2020\u00a0<span style=\"font-weight: bolder;color: #0000ff\">(Cover Story)<\/span><\/li><li>Y. J. Zhu, Z. Huang, Q. Chen, Q. Wu, X. Huang, P. So, L. Shao, Z. Yao, <u>Y. W. Jia<\/u>, Z. Li, W. Yu, Y. Yang, A. Jian, S. Sang, W. Zhang, X. M. Zhang, Continuous artificial synthesis of glucose precursor using enzyme-immobilized microfluidic reactors, <strong>Nature Communications<\/strong>, 10, 4049, 2019.<\/li><li>J. Zhai, S. H. Yi, <u>Y. W. Jia*,<\/u> P. I. Mak, R. P. Martins, Cell-based drug screening on microfluidics, <strong>Trends in Analytical Chemistry<\/strong>, 117, 231-241, 2019.<\/li><li>M. Z. Li, C. Dong, M. K. Law*, <u>Y. W. Jia*,<\/u> P. I. Mak and R. P. Martins, Hydrodynamic-flow-enhanced rapid mixer for isothermal DNA hybridization kinetics analysis on digital microfluidics platform, <strong>Sensors and Actuators B<\/strong>, 287, 390-397, 2019.<\/li><li>L. Wan, J. Gao, T. L. chen, C. Dong, H. R. Li, Y. Z. Wen, Z. R. Lun, <u>Y. W. Jia<\/u>*, P. I. Mak, R. P. Martins, LampPort: a handheld digital microfluidic device for loop-mediated isothermal amplification (LAMP), <strong>Biomedical Microdevices<\/strong>, 21:9, 2019.<\/li><li>R. Shen, L. Wan, and <u> W. Jia*<\/u>, Applications of microfluidic technology in clinical diagnosis, (in Chinese), <strong>Journal of Molecular Diagnostics and Therapy<\/strong>, 10(5), 289, 2018.<\/li><li>J. Zhai, <u>Y. W. Jia<\/u>, L. N. Zhao, Q. Yuan, F. P. Gao, X. C. Zhang, P. J. Cai, L. Gao, J. J. Guo, S. H. Yi, Z. F. Chai, Y. L. Zhao and X. Y. Gao, Turning on\/off the anti-tumor effect of the Au cluster via atomically controlling its molecular size, <strong>ACS Nano<\/strong>, 12(5), 4378-4386, 2018.<\/li><li>L. Wan, T. L. Chen, J. Gao, C. Dong, A. H. H. Wong, <u>Y. W. Jia<\/u>*, P. I. Mak, C. X. Deng and R. Martins, A digital microfluidic system for loop-mediated isothermal amplification and sequence specific pathogen detection, <strong>Scientific Reports<\/strong>, 7, 14586, 2017.<\/li><li>A. H. H. Wong, H. R. Li, <u>Y. W. Jia,<\/u> P. I. Mak, R. P. Martins, Y. Liu, C. M. Vong, H. C. Won, P. K. Wong, H. T. Wang, H. Sun, C. X. Deng, Drug screening of cancer cell lines and human primary tumors using droplet microfluidics,<strong> Scientific Reports, <\/strong>7, 9109, 2017.<\/li><li>C. Xu, Y. L. Wang, C. Y. Zhang, <u>Y. W. Jia<\/u>, Y. J. Luo and X. Y. Gao, AuGd integrated nanoprobes for optical\/MRI\/CT triple-modal in vivo tumor imaging, <strong>Nanoscale<\/strong>, 9, 4620-4628, 2017.<\/li><li>C. Dong, <u>Y. W. Jia*<\/u>, J. Gao, T. L. Chen, P. I. Mak, M. I. Vai and R. P. Martins, A 3D microblade structure for precise and parallel droplet splitting on digital microfluidic chips, <strong>Lab on a Chip<\/strong>, 17, 896-904<em>, <\/em>2017.<\/li><li>T. L. Chen,<u> Y. W. Jia, <\/u>C. Dong, J. Gao, P. I. Mak, and R. P. Martins, Sub-7-second genotyping of single-nucleotide polymorphism by high-resolution melting curve analysis on a thermal digital microfluidic device, <strong>Lab on a Chip<\/strong><strong>,<\/strong> 16, 743-752, 2016.<\/li><li>J. Gao, T. L. Chen, C. Dong, <u>Y. W. Jia<\/u><strong>,<\/strong> P. I. Mak, M. I. Vai and R. P. Martins, Adhesion Promoter for Multi-dielectric-layer on digital microfluidic chip, <strong>RSC Advances<\/strong><strong>,<\/strong> <strong>5<\/strong>, 48626-48630, 2015.<\/li><li>C. Dong, T. L. Chen, J. Gao. <u>Y. W. Jia<\/u>. P. I. Mak, M. I. Vai and R. P. Martins, On the droplet velocity and electrode lifetime of digital microfluidics: voltage actuation techniques and comparison, <strong>Microfluidics and Nanofluidic<\/strong><em>s<\/em>, 18, 673-683, 2015.<\/li><li>T. L. Chen, C. Dong, J. Gao, <u>Y. W. Jia<\/u>, P. I. Mak, M. I., Vai and R. P. Martins, Natural discharge after pulse and cooperative electrodes to enhance droplet velocity in digital microfluidics, <strong>AIP Advance<\/strong><em>s<\/em>, 4, 047129, 2014.<\/li><li><u>Y. W. Jia<\/u>, J. A. Sanchez, L. J. Wangh, Kinetic Hairpin Oligonucleotide Blockers for Selective Amplification of Rare Mutations, <strong>Scientific Reports<\/strong>, 4, 5921, 2014.<\/li><li><u>Y. W. Jia<\/u>, P. I. Mak, C. Massey, R. P. Martins and L. J. Wangh, Construction of a Microfluidic Chip for LATE-PCR Amplification and Detection of Single-Stranded DNA using Dried-Down Reagents, <strong>Lab on a Chip<\/strong>, 13, 4635-4641, 2013<\/li><li><u>Y. W. Jia<\/u>, A. Osborne, J. E. Rice and L. J. Wangh, Dilute-\u2018N\u2019-Go Dideoxy Sequencing of All DNA Strands Generated in Multiplexed LATE-PCR Assays, <strong>Nucleic Acids Research,<\/strong> 38 (11), e119, 2010.<\/li><li><u>Y. W. Jia<\/u>, C. Hartshorn, O. Hartung and L. J. Wangh, Heat Shock Memory in Preimplantation Mouse Embryos, <strong>Fertility and Sterility<\/strong>, 93 (8), 2760-2763, 2010.<\/li><li>H. Boukellal, S. Selimovic, <u>Y. W. Jia<\/u>, G. Cristobal and S. Fraden, Simple, Robust Storage of Drops and Fluids in a Microfluidic Device, <strong>Lab on a Chip<\/strong>, 9, 331-338, 2009.<\/li><li>S. Selimovic, <u>Y. W. Jia<\/u> and S. Fraden, Measuring the Nucleation Rate of Lysozyme Using Microfluidics, <strong>Crystal Growth &amp; Design<\/strong>, 9, 1808-1810, 2009.<\/li><li>J.-uk Shim, G. Cristobal, D. Link, T. Thorsen, <u>Y. W. Jia<\/u>, K. Piatelli and S. Fraden, Control and Measurement of the Phase Behavior of Aqueous Solutions Using Microfluidics, <strong>Journal of the American Chemical Society<\/strong>, 129, 8825-8835, 2007. <span style=\"color: #0000ff\"><strong>(<\/strong>Highlighted by<strong> Lab on a Chip <\/strong>7, 1091-1093, 2007; <strong>SCIENCE <\/strong>317, 18, 2007<strong>)<\/strong><\/span><\/li><li>C. Hartshorn, A. Anshelevich, <u>Y. W. Jia<\/u> and L. J. Wangh, Early Onset of Heat-Shock Response in Mouse Embryos Revealed by Quantification of Stress-Inducible hsp70i RNA, <strong>Gene Regulation and Systems Biology,<\/strong> 1, 365-373,2007.<\/li><li><u>Y. W. Jia<\/u> and X. Y. Liu, From Surface Self-assembly to Crystallization: Prediction of Protein Crystallization Conditions, <strong>Journal of Physical Chemistry B, <\/strong>110, 6949-6955, 2006.<\/li><li><u>Y. W. Jia,<\/u> J. Narayanan, X. Y. Liu and Y. Liu, Investigation of the Mechanism of Crystallization of Soluble Protein in the Presence of Nonionic Surfactant, <strong>Biophysical Journal <\/strong>89, 4245-4251, 2005.<\/li><li><u>Y. W. Jia<\/u> and X. Y. Liu, Prediction of Protein Crystallization Based on Interfacial and Diffusion Kinetics,<strong> Applied Physics Letters<\/strong> 87(10), 103902, 2005.<\/li><li><u>Y. W. Jia <\/u>and X. Y. Liu, Self-assembly of Protein at Aqueous Solution Surface in Correlation to Protein Crystallization, <strong>Applied Physics Letters<\/strong> 86(2), 023903, 2005.<\/li><li>Q. H. Liu, <u>Y. W. Jia<\/u>, W. H. Qi, Z. C. Ou-Yang, Static Bistable Helices in Generalized Helfrich Elastic Theory of a Chiral Filament, <strong>Physics Letters A<\/strong>, 317, 401-405, 2003.<\/li><li><u>Y. W. Jia<\/u>, Q. H. Liu, X. H. Peng, X. Wang, K. C. Shen, The Quantum-classical Correspondence of Matrix Elements of Hydrogen Atom\u2019s Inverse Radius in Heisenberg Principle, <strong>Acta Physica Sinica<\/strong> 51(2), 201-204,2002.<\/li><li><u>Y. W. Jia<\/u>, Q. H. Liu, New Method to Solve the Nonlinear Equation of Membrane, <strong>Journal of Hunan University<\/strong> 29(2), 10-13, 2002<\/li><\/ol>\t\t\t\t\t\t\t\t<\/div>\n\t\t\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<section data-particle_enable=\"false\" data-particle-mobile-disabled=\"false\" class=\"elementor-section elementor-top-section elementor-element elementor-element-2c276c7 elementor-section-boxed elementor-section-height-default elementor-section-height-default\" data-id=\"2c276c7\" data-element_type=\"section\">\n\t\t\t\t\t\t<div class=\"elementor-container elementor-column-gap-default\">\n\t\t\t\t\t<div class=\"elementor-column elementor-col-50 elementor-top-column elementor-element elementor-element-b5a289b\" data-id=\"b5a289b\" data-element_type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap\">\n\t\t\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t<div class=\"elementor-column elementor-col-50 elementor-top-column elementor-element elementor-element-584a058\" data-id=\"584a058\" data-element_type=\"column\">\n\t\t\t<div class=\"elementor-widget-wrap\">\n\t\t\t\t\t\t\t<\/div>\n\t\t<\/div>\n\t\t\t\t\t<\/div>\n\t\t<\/section>\n\t\t\t\t<\/div>\n\t\t","protected":false},"excerpt":{"rendered":"<p>Yanwei Jia Microfluidics Group University of Macau Home Research Publications Patents Grants People Links Contact Featured Articles Journal Papers (* corresponding author) Y. F. Wang, Z. Y. Guo, X. D. Lin, R. Shen, Y. Y. Liu, C. C. Tsoi, P. I. Mak, R. P. Martins, X. M. Zhang, Y. W. Jia*, Orthogonal-electrode digital microfluidics for &hellip; <\/p>\n<p class=\"link-more\"><a href=\"https:\/\/www.fst.um.edu.mo\/personal\/yanweijia\/publications\/\" class=\"more-link\">Continue reading<span class=\"screen-reader-text\"> &#8220;publications&#8221;<\/span><\/a><\/p>\n","protected":false},"author":101,"featured_media":0,"parent":8857,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"elementor_canvas","meta":{"footnotes":"","_links_to":"","_links_to_target":""},"class_list":["post-8602","page","type-page","status-publish","hentry","entry"],"_links":{"self":[{"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/pages\/8602","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/users\/101"}],"replies":[{"embeddable":true,"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/comments?post=8602"}],"version-history":[{"count":10,"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/pages\/8602\/revisions"}],"predecessor-version":[{"id":55509,"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/pages\/8602\/revisions\/55509"}],"up":[{"embeddable":true,"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/pages\/8857"}],"wp:attachment":[{"href":"https:\/\/www.fst.um.edu.mo\/personal\/wp-json\/wp\/v2\/media?parent=8602"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}