Micro-optics for microfluidic analytical applications

被引:126
作者
Yang, Hui [1 ,2 ]
Gijs, Martin A. M. [2 ]
机构
[1] Chinese Acad Sci, Shenzhen Inst Adv Technol, Inst Biomed & Hlth Engn, Shenzhen 518055, Peoples R China
[2] Ecole Polytech Fed Lausanne, Lab Microsyst, CH-1015 Lausanne, Switzerland
基金
欧洲研究理事会; 瑞士国家科学基金会;
关键词
ON-A-CHIP; OPTICAL WAVE-GUIDES; SELF-ASSEMBLED MONOLAYERS; TOTAL INTERNAL-REFLECTION; SINGLE-CELL ANALYSIS; LABEL-FREE DETECTION; PHOTONIC NANOJET; MICROLENS ARRAY; FLUORESCENCE DETECTION; HIGH-THROUGHPUT;
D O I
10.1039/c5cs00649j
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This critical review summarizes the developments in the integration of micro-optical elements with microfluidic platforms for facilitating detection and automation of bio-analytical applications. Micro-optical elements, made by a variety of microfabrication techniques, advantageously contribute to the performance of an analytical system, especially when the latter has microfluidic features. Indeed the easy integration of optical control and detection modules with microfluidic technology helps to bridge the gap between the macroscopic world and chip-based analysis, paving the way for automated and high-throughput applications. In our review, we start the discussion with an introduction of microfluidic systems and micro-optical components, as well as aspects of their integration. We continue with a detailed description of different microfluidic and micro-optics technologies and their applications, with an emphasis on the realization of optical waveguides and microlenses. The review continues with specific sections highlighting the advantages of integrated micro-optical components in microfluidic systems for tackling a variety of analytical problems, like cytometry, nucleic acid and protein detection, cell biology, and chemical analysis applications.
引用
收藏
页码:1391 / 1458
页数:68
相关论文
共 50 条
[31]   Microfluidic Whispering Gallery Mode Optical Sensors for Biological Applications [J].
Wang, Yuye ;
Zeng, Shuwen ;
Humbert, Georges ;
Ho, Ho-Pui .
LASER & PHOTONICS REVIEWS, 2020, 14 (12)
[32]   A review of SERS coupled microfluidic platforms: From configurations to applications [J].
Wang, Chenyang ;
Weng, Guojun ;
Li, Jianjun ;
Zhu, Jian ;
Zhao, Junwu .
ANALYTICA CHIMICA ACTA, 2024, 1296
[33]   Microfluidic Micro-well (size and shape) by numerical optimization for single cell applications: Vertical trapping approach [J].
James, Jasper A. ;
Sushmitha, M. ;
Narayanamurthy, Vigneswaran ;
Premkumar, R. ;
Kalpana, R. .
2017 INTERNATIONAL CONFERENCE ON MICROELECTRONIC DEVICES, CIRCUITS AND SYSTEMS (ICMDCS), 2017,
[34]   The Development and Progression of Micro-Nano Optics [J].
Wang, Yong ;
Yang, Jie ;
Wang, Zhiwei ;
Kong, Xiaofei ;
Sun, Xiangyu ;
Tian, Jingjing ;
Zhang, Xiushuo ;
Zhao, Xiaolong ;
Liu, Yanping ;
Li, Hongsheng ;
Su, Yuqing ;
Hao, Xiaorui ;
Xu, Jing .
FRONTIERS IN CHEMISTRY, 2022, 10
[35]   Microfluidic Synthesis of Nanoparticles and their Biosensing Applications [J].
Boken, Jyoti ;
Soni, Sarvesh K. ;
Kumar, Dinesh .
CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 2016, 46 (06) :538-561
[36]   Advances in analytical microfluidic workflows for differential cancer diagnosis [J].
Kafshgari, Morteza Hasanzadeh ;
Hayden, Oliver .
NANO SELECT, 2023, 4 (01) :1-47
[37]   Microfluidic Systems for Cancer Diagnosis and Applications [J].
Akgonullu, Semra ;
Bakhshpour, Monireh ;
Piskin, Ayse Kevser ;
Denizli, Adil .
MICROMACHINES, 2021, 12 (11)
[38]   Biomedical Applications of Microfluidic Devices: A Review [J].
Gharib, Ghazaleh ;
Butun, Ismail ;
Muganli, Zulal ;
Kozalak, Gul ;
Namli, Ilayda ;
Sarraf, Seyedali Seyedmirzaei ;
Ahmadi, Vahid Ebrahimpour ;
Toyran, Ercil ;
van Wijnen, Andre J. ;
Kosar, Ali .
BIOSENSORS-BASEL, 2022, 12 (11)
[39]   Microfluidic Applications in Prostate Cancer Research [J].
Szewczyk, Kailie ;
Jiang, Linan ;
Khawaja, Hunain ;
Miranti, Cindy K. ;
Zohar, Yitshak .
MICROMACHINES, 2024, 15 (10)
[40]   Microfluidic Synthesis of Nanomaterials for Biomedical Applications [J].
Li, Li-Li ;
Li, Xiaodong ;
Wang, Hao .
SMALL METHODS, 2017, 1 (08)