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Titlebook: Advancing Gene Fusion Detection Towards Personalized Cancer Nanodiagnostics; Kevin M. Koo Book 2019 Springer Nature Switzerland AG 2019 Pr

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发表于 2025-3-21 17:58:16 | 显示全部楼层 |阅读模式
期刊全称Advancing Gene Fusion Detection Towards Personalized Cancer Nanodiagnostics
影响因子2023Kevin M. Koo
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发行地址Nominated as an outstanding PhD thesis by the Australian Institute for Bioengineering and Nanotechnology.Describes the design of various novel nano-strategies for prostate cancer detection.Offers an e
学科分类Springer Theses
图书封面Titlebook: Advancing Gene Fusion Detection Towards Personalized Cancer Nanodiagnostics;  Kevin M. Koo Book 2019 Springer Nature Switzerland AG 2019 Pr
影响因子.This book presents a unique concept of merging nanotechnology and novel urinary biomarkers for accurate early prostate cancer detection, discussing an entire progressive pipeline of innovative new strategies in biosensor development, from a simple colorimetric system to a complex system for simultaneous multiple biomarker sensing. For newcomers to the field of nucleic acid biosensing, it also describes various isothermal amplification and amplification-free strategies, which are currently the main research areas. Lastly, the book introduces and demonstrates the notion of clinical nanobiosensor validation toward clinical translation: the ultimate aim of researchers in the biosensor field. This book is a valuable reference resource learners seeking inspiration for cancer biosensor development..
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Alexander G. Ramm,Semion Gutmanr the simultaneous analysis of various next-generation PCa urinary biomarkers (including TMPRSS2:ERG) to further improve clinical PCa risk stratification. Here we report a nanodevice that uniquely uses alterable alternating current electrohydrodynamic (ac-EHD) forces to enhance probe-target hybridiz
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Alexander Shapiro,Arkadi Nemirovski worldwide research effort in this area, there is still a dearth of nanodiagnostics which have been successfully translated for real-world patient usage due to the predominant sole focus on assay analytical performance and lack of detailed investigations into clinical performance in human samples. I
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Amplification-Free Electrochemical RNA Biomarker Sensing,y labels for detection, and it is prone to bias/artifacts. Herein, we introduce the first successful amplification-free electrochemical assay for direct detection of TMPRSS2:ERG mRNA in PCa urinary samples by selectively isolating and adsorbing TMPRSS2:ERG mRNA onto bare gold electrodes without requiring any surface modification.
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Takagi–van der Waerden-Type Functions IIIn the previous chapter, we introduced the role of miniaturized detection systems for the detection of next-generation PCa biomarkers. Herein, we report a miniaturized, rapid, cost-efficient and minimal-equipment assay named “FusBLU” for detecting .-. gene fusions from urine.
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