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Analysis and differentiation of seminal plasma via polarized SERS spectroscopy

Authors Chen X, Huang Z, Feng S, Chen J, Wang, Lu, Zeng H, Chen R

Received 5 September 2012

Accepted for publication 22 October 2012

Published 17 December 2012 Volume 2012:7 Pages 6115—6121

DOI https://doi.org/10.2147/IJN.S37782

Checked for plagiarism Yes

Review by Single anonymous peer review

Peer reviewer comments 6



Xiwen Chen,1,* Zufang Huang,1,* Shangyuan Feng,1 Jinhua Chen,2 Lan Wang,1 Peng Lu,1 Haishan Zeng,3 Rong Chen1

1Key Laboratory of Opto-Electronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory for Photonics Technology, Fujian Normal University, Fuzhou, China; 2Fujian Provincial Hospital, Fuzhou, China; 3Imaging Unit – Integrative Oncology Department, British Columbia Cancer Agency Research Centre, Vancouver, BC, Canada

*These authors contributed equally to this work

Abstract: Polarized surface-enhanced Raman scattering (SERS) spectroscopy was applied for obtaining biochemical information about the seminal plasma. The effect of different laser polarizations (nonpolarized, linear-polarized, right-handed circularly polarized, and left-handed circularly polarized) on seminal plasma SERS spectroscopy was explored for the first time. The diagnostic performance in differentiating abnormal seminal plasma (n = 37) from normal seminal plasma (n = 24) was evaluated. A combination of principal component analysis (PCA) and linear discriminant analysis (LDA) was employed to develop diagnostic algorithms. Classification results of different laser polarizations demonstrated different diagnostic sensitivities and specificities, among which, left-handed circularly polarized laser excitation showed the best diagnostic result (95.8% sensitivity and 64.9% specificity). Our exploratory study demonstrated that SERS spectroscopy with left-handed circularly polarized laser excitation has the potential for becoming a new diagnostic method in semen-quality assessment.

Keywords: SERS, seminal plasma, PCA-LDA, polarized laser excitation, silver nanoparticles, biomolecule chirality

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