Institute of Protein Biochemistry, National Research Council of Italy, Via P Castellino 111, Naples, 80131, Italy.
Institute for Microelectronic and Microsystems, Unit of Naples, National Research Council of Italy, Via P Castellino 111, Naples, 80131, Italy.
Sci Rep. 2019 Mar 18;9(1):4823. doi: 10.1038/s41598-019-41400-0.
Raman microspectroscopy (RM) and polarization sensitive digital holographic imaging (PSDHI) are valuable analytical tools in biological and medical research, allowing the detection of both biochemical and morphological variations of the sample without labels or long sample preparation. Here, using this multi-modal approach we analyze in vitro human sperm capacitation and the acrosome reaction induced by heparin. The multimodal microscopy provides morphofunctional information that can assess the sperms ability to respond to capacitation stimuli (sperm function). More precisely, the birefringence analysis in sperm cells can be used as an indicator of its structural normality. Indeed, digital holography applied for polarization imaging allows for revelation of the polarization state of the sample, showing a total birefringence of the sperm head in non-reacted spermatozoa, and a birefringence localized in the post-acrosomal region in reacted spermatozoa. Additionally, RM allows the detection and spectroscopic characterization of protein/lipid delocalization in the plasma and acrosomal membranes that can be used as valuable Raman biomarkers of sperm function. Interestingly, these spectral variations can be correlated with different time phases of the cell capacitation response. Although further experimentation is required, the proposed multimodal approach could represent a potential label-free diagnostic tool for use in reproductive medicine and the diagnosis of infertility.
拉曼微光谱(RM)和偏振敏感数字全息成像(PSDHI)是生物医学研究中非常有价值的分析工具,它们可以在无需标记或进行长时间样品制备的情况下,检测到样品的生化和形态变化。在这里,我们使用这种多模态方法来分析体外人类精子的获能和肝素诱导的顶体反应。多模态显微镜提供形态功能信息,可以评估精子对获能刺激的反应能力(精子功能)。更准确地说,精子细胞的双折射分析可用作其结构正常性的指标。事实上,应用于偏振成像的数字全息术允许揭示样品的偏振状态,显示非反应性精子头部的总双折射,以及反应性精子头部在顶体后区的双折射。此外,RM 允许检测和对等离子体和顶体膜中的蛋白质/脂质定位进行光谱特征分析,这些可以用作精子功能的有价值的拉曼生物标志物。有趣的是,这些光谱变化可以与细胞获能反应的不同时间阶段相关联。尽管还需要进一步的实验,但所提出的多模态方法可能代表一种潜在的无标记诊断工具,可用于生殖医学和不孕症的诊断。