Balberg Michal, Levi Mattan, Kalinowski Ksawery, Barnea Itay, Mirsky Simcha K, Shaked Natan T
Department of Biomedical Engineering, Faculty of Engineering, Tel Aviv University, Tel Aviv, Israel.
Department of Cell and Developmental Biology, Sackler Faculty of Medicine, Tel-Aviv University, Tel Aviv, Israel.
J Biophotonics. 2017 Oct;10(10):1305-1314. doi: 10.1002/jbio.201600186. Epub 2017 Jan 12.
We developed a new method to identify the separate cellular compartments in the optical path delay (OPD) maps of un-labeled spermatozoa. This was conducted by comparing OPD maps of fixed, un-labeled spermatozoa to bright field images of the same cells following labeling. The labeling enabled us to identify the acrosomal and nuclear compartments in the corresponding OPD maps of the cells. We then extracted the refractive index maps of fixed cells by dividing the OPD maps of spermatozoa by the corresponding thickness maps of the same cells, obtained with AFM. Finally, the dry mass of the head, nucleus and acrosome of un-labeled immobile spermatozoa, was measured. This method provides the ability to quantitatively measure the dry mass of cellular compartments within human spermatozoa. We expect that these measurements will assist label-free selection of sperm cells for fertilization.
我们开发了一种新方法,用于识别未标记精子的光程延迟(OPD)图中的各个细胞区室。这是通过将固定的未标记精子的OPD图与标记后相同细胞的明场图像进行比较来实现的。标记使我们能够在细胞相应的OPD图中识别顶体和细胞核区室。然后,我们通过将精子的OPD图除以用原子力显微镜(AFM)获得的相同细胞的相应厚度图,提取固定细胞的折射率图。最后,测量了未标记的静止精子头部、细胞核和顶体的干质量。该方法能够定量测量人类精子内细胞区室的干质量。我们期望这些测量将有助于无标记地选择用于受精的精子细胞。