Quantitative Phase-Contrast Imaging for Distinction between Different States of Human Breast Cancer Cells

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초록

We present label-free phase imaging to differentiate human breast cancer cells for breast cancer diagnosis. Low-coherent quantitative phase microscopy (QPM) is exploited to provide speckle-free interference images of live cells adhered to a plate, from which the phase information of the individual cells can be extracted. The phase measurement performance of QPM is validated by the phase-derived optical thickness of a sub-wavelength featured sample, consistent with the results when using conventional atomic force microscopy (AFM). The phase sensitivity is recorded as 44 mrad, corresponding to 2.3 nm depth fluctuation during measurement. Phase-contrast imaging is performed with three breast epithelial cell lines: non-tumorous (MCF-10A), weakly malignant (MCF-7), and highly malignant (MDA-MB-231), which mimic an \textit{in vivo} environments in development of human breast cancer. Our results indicate that MCF-10A and MDA-MB-231 exhibited significantly lower phase-shifts than those of MCF-7, but no difference in phase was observed between MCF-10A and MDA-MB-231. We expect that the use of the QPM approach would be beneficial for clinicians to quantitatively evaluate the breast cancer states from the unmodified specimen of breast biopsy.

키워드

Full-field optical coherence microscopy; Human breast cancer cells; Phase-contrast imaging; Cancer cell discrimination; FIELD
제목
Quantitative Phase-Contrast Imaging for Distinction between Different States of Human Breast Cancer Cells
저자
Choi, Woo June
DOI
10.3938/jkps.74.574
발행일
2019-03
저널명
Journal of the Korean Physical Society
권
74
호
6
페이지
574 ~ 578