研究目的
To explore the application of Raman Microspectroscopy (RM) starting from living sperm in aqueous conditions to test different media and to evaluate Raman spectra from un-damaged and UV-damaged sperm nuclei under different hydration status.
研究成果
Raman microspectroscopy was successfully applied for sperm analysis in different conditions, among them in live spermatozoa in aqueous solution during the initial measurement, revealing the principle use of this technique. However, implementation of Raman spectroscopy as a technique for clinical sperm analysis and selection may be especially relevant when DNA evaluation can be established using live sperm.
研究不足
The study found that in aqueous environment the differences between the spectrum of UVB-treated sperm and the untreated control sperm are latent, indicating an interference of the hydration status for determination of DNA integrity by Raman microspectroscopy.
1:Experimental Design and Method Selection
Human sperm were immobilized and Raman spectra were obtained from individual sperm as repeated measurements. To create conditions with controlled DNA damage, sperm samples were exposed to ultraviolet light. Several media were used to evaluate their effect on Raman spectra in aqueous conditions. The spectra were analyzed by Principal Component Analysis.
2:Sample Selection and Data Sources
Human normozoospermic semen samples from six donors were collected by masturbation after 2–5 days of sexual abstinence and prepared by swim-up.
3:List of Experimental Equipment and Materials
Suprasil slides (Quartzglas Heinrich QGH, Aachen, Germany) coated overnight with poly-lysine (1mg/ml), Olympus BX41 microscope (x100 objective, NA = 0.9 at 210 μm working distance), confocal Raman system (LabRAM Aramis, HORIBA Jobin Yvon S.A.S, Lille, France).
4:Experimental Procedures and Operational Workflow
Sperm were immobilized and Raman spectra were obtained from individual sperm as repeated measurements. To create conditions with controlled DNA damage, sperm samples were exposed to ultraviolet light. Several media were used to evaluate their effect on Raman spectra in aqueous conditions.
5:Data Analysis Methods
The spectra were analyzed by Principal Component Analysis using R 3.4.1 and RStudio 1.0.153.
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