Non-optical screening platforms: the next wave in label-free screening?

被引:51
|
作者
Cooper, Matthew A. [1 ]
机构
[1] Univ Cambridge, Dept Chem, Cambridge CB2 1EW, England
关键词
D O I
10.1016/j.drudis.2006.10.001
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The use of optical biosensors for compound screening was first demonstrated in the mid-1990s, but there has been limited uptake in the market owing to issues of limited throughput and a lack of applications for key receptor classes. Recently, several start-up and established tools companies have exploited nonoptical detection modalities that seek to address the shortcomings of more established optical approaches. Platforms based on acoustic resonance, electrical impedance, microcantilevers, nanowires and differential calorimetry are beginning to appear with commercially available products targeted at post-high-throughput screening hit confirmation and mode-of-action studies. This article highlights key advances in commercial label-free analysis platforms, which complement more traditional optical system and which also allow novel assay formats for the analysis of previously intractable targets.
引用
收藏
页码:1068 / 1074
页数:7
相关论文
共 50 条
  • [41] A New Device Based on Interferometric Optical Detection Method for Label-Free Screening of C-Reactive Protein
    Maigler, Maria V.
    Holgado, Miguel
    Fe Laguna, Maria
    Sanza, Francisco J.
    Santamaria, Beatriz
    Lavin, Alvaro
    Espinosa, Rocio L.
    IEEE TRANSACTIONS ON INSTRUMENTATION AND MEASUREMENT, 2019, 68 (09) : 3193 - 3199
  • [42] Microfluidic microscopy-assisted label-free approach for cancer screening: automated microfluidic cytology for cancer screening
    Veerendra Kalyan Jagannadh
    G. Gopakumar
    Gorthi R. K. Sai Subrahmanyam
    Sai Siva Gorthi
    Medical & Biological Engineering & Computing, 2017, 55 : 711 - 718
  • [43] Microfluidic microscopy-assisted label-free approach for cancer screening: automated microfluidic cytology for cancer screening
    Jagannadh, Veerendra Kalyan
    Gopakumar, G.
    Subrahmanyam, Gorthi R. K. Sai
    Gorthi, Sai Siva
    MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 2017, 55 (05) : 711 - 718
  • [44] Quantitative label-free screening for antibodies using scattering biophotonic microarray imaging
    Olkhov, Rouslan V.
    Shaw, Andrew M.
    ANALYTICAL BIOCHEMISTRY, 2010, 396 (01) : 30 - 35
  • [45] High-throughput screening based on label-free detection of smallmolecule microarrays
    Zhu, Chenggang
    Fei, Yiyan
    Zhu, Xiangdong
    FRONTIERS IN BIOLOGICAL DETECTION: FROM NANOSENSORS TO SYSTEMS IX, 2017, 10081
  • [46] Label-free screening of foodborne Salmonella using surface plasmon resonance imaging
    Chen, Jing
    Park, Bosoon
    ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2018, 410 (22) : 5455 - 5464
  • [47] A Simple Optofluidic Platform for Label-Free Cell-Surface Marker Screening
    Mir, Mustafa
    Scheideler, Olivia
    Sohn, Lydia L.
    TRANSLATIONAL BIOPHOTONICS, 2014, 9155
  • [48] Label-free Raman imaging for screening of anti-inflammatory function food
    Zeng, Qi
    Peng, Yangyao
    Zhou, Xianzhen
    Zhang, Jiaojiao
    Yang, Yuhang
    Xu, Xinyi
    Guan, Bin
    Zhang, Yuntian
    Hu, Xiaojia
    Chen, Xueli
    FOOD CHEMISTRY-X, 2024, 22
  • [49] Machine Learning Enables Live Label-Free Phenotypic Screening in Three Dimensions
    O'Duibhir, Eoghan
    Paris, Jasmin
    Lawson, Hannah
    Sepulveda, Catarina
    Shenton, Dahlia Doughty
    Carragher, Neil O.
    Kranc, Kamil R.
    ASSAY AND DRUG DEVELOPMENT TECHNOLOGIES, 2018, 16 (01) : 51 - 63
  • [50] Digital Holographic Microscopy: A Quantitative Label-Free Microscopy Technique for Phenotypic Screening
    Rappaz, Benjamin
    Breton, Billy
    Shaffer, Etienne
    Turcatti, Gerardo
    COMBINATORIAL CHEMISTRY & HIGH THROUGHPUT SCREENING, 2014, 17 (01) : 80 - 88