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Featured researches published by Luo Yong.


Acta Chimica Sinica | 2017

Ultrasensitive Detection of Hair Cortisol Based on Portable Raman Spectrometer and Double-layer Paper Microdevice

Gao Zhigang; Zheng Tingting; Deng Jiu; Li Xiaorui; Qu Yueyang; Lu Yao; Liu Tingjiao; Luo Yong; Zhao Weijie; Lin Bingcheng

Cortisol in the human hair is a clinical biomarker of long-term social-and-work-related mental stress, which is of high morbidity rate in the current modern society. This study developed a sensitive hair cortisol assay, featuring surface- enhanced Raman spectroscopy, immunoreaction, and a double-layer paper microdevice. The first layer of the paper microdevice was used to remove the hair residue in the hair extract by filtration (sample pretreatment). The second layer was used for competitive immunoreaction and detection. Standard cortisol antigen immobilized in the second layer and the free cortisol in hair extract competed to bind the spiked Raman-active cortisol monoclonal antibody solution. The hair cortisol can be quantitated by the intensity of Raman signal of monoclonal antibody bound on the paper. We found the Raman signal decreased as the cortisol concentration increases in hair samples. The relative Raman intensity measured was linearly proportional to the logarithmic value of the cortisol concentration in hair samples we measured. The detection of limit (LOD) was 1 pg/mL with the portable Raman spectrometer. The RSD of measurement was 8.38% (n=6). In addition, we used LC-MS to measure two real samples as a comparison with our method as above. The results are 0.771 and 0.153 ng/mL by LC-MS method and 0.63 and 0.247 ng/mL by the proposed method. It can be observed that the results are in same order, demonstrating the validity of the proposed method. In addition, 48 samples can be measured in a single chip. These results showed that this method is sensitive, specific, and suitable for large-scale screening of hair cortisol samples.


Archive | 2003

Micro flow control plastic chip injection mould

Dai Zhongpeng; Luo Yong; Lin Bingcheng


Archive | 2006

Miniflow control chip with capillary miniflow control chip interface

Luo Yong; Lin Bingcheng


Archive | 2005

Hydrophilic poly methyl methacrylate chip material, chip and its preparing method

Zhu Xiaomian; Dai Zhongpeng; Luo Yong


Archive | 2014

High-flux micro-fluidic chip for detecting clenbuterol type substances

Luo Yong; Yu Xiao; Gao Zhigang; Zhao Weijie; Lin Bingcheng; Tian Zhongqun


Archive | 2014

Switch-control-type paper microfluidic chip for detecting clenbuterol hydrochloride based on SERS (surface-enhanced raman scatting)

Luo Yong; Zheng Tingting; Gao Zhigang; Zhao Weijie; Lin Bingcheng; Tian Zhongqun


Archive | 2005

Micro fluid control chip for immunilogical analysis and its use in immunilogical analysis

Luo Yong; Lin Bingcheng


Archive | 2004

Preparation of plastic micro-flow control chip with screen pores

Dai Zhongpeng; Luo Yong; Gai Hongwei


Archive | 2015

Multidimensional multi-concentration drug sensitivity detection microfluidic chip

Liu Tingjiao; Jin Dong; Lin Bingcheng; Luo Yong


Archive | 2015

Micro-fluidic chip for realizing chemotaxis of white blood cell

Luo Yong; Lyu Chang; Lu Xiaoguang; Gao Zhigang; Zhao Weijie; Lin Bingcheng; Tian Zhongqun

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Lin Bingcheng

Dalian Institute of Chemical Physics

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