Use of a platform with lens-free shadow imaging technology to monitor natural killer cell activity

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초록

Natural killer (NK) cells are a crucial component of the innate immune system. This study introduces Cellytics NK, a novel platform for rapid and precise measurement of NK cell activity. This platform combines an NKspecific activation stimulator cocktail (ASC) and lens-free shadow imaging technology (LSIT), using optoelectronic components. LSIT captures digital hologram images of resting and ASC-activated NK cells, while an algorithm evaluates cell size and cytoplasmic complexity using shadow parameters. The combined shadow parameter derived from the peak-to-peak distance and width standard deviation rapidly distinguishes active NK cells from inactive NK cells at the single-cell level within 30 s. Here, the feasibility of the system was demonstrated by assessing NK cells from healthy donors and immunocompromised cancer patients, demonstrating a significant difference in the innate immunity index (I3). Cancer patients showed a lower I3 value (161%) than healthy donors (326%). I3 was strongly correlated with NK cell activity measured using various markers such as interferon-gamma, tumor necrosis factor-alpha, perforin, granzyme B, and CD107a. This technology holds promise for advancing immune functional assays, offering rapid and accurate on-site analysis of NK cells, a crucial innate immune cell, with its compact and cost-effective optoelectronic setup, especially in the postCOVID-19 era.

키워드

Lens-free shadow imaging technology; Natural killer cell; Activation stimulator cocktail; Innate immunity index; In vitro diagnosis; GRANZYME-B; NK CELLS; INTERLEUKIN-2; BLOOD; CYTOTOXICITY; ACTIVATION; BINDING; ASSAY
제목
Use of a platform with lens-free shadow imaging technology to monitor natural killer cell activity
저자
Lee, Inha; Lee, Ahyeon; Shin, Sanghoon; Kumar, Samir; Nam, Myung-Hyun; Kim, Byung Soo; Cho, Sung-Dong; Kim, Hawon; Han, Sunmi; Park, Su-Hyung; Seo, Sungkyu; Jun, Hyun Sik
DOI
10.1016/j.bios.2024.116512
발행일
2024-10-01
유형
Article
저널명
Biosensors and Bioelectronics
권
261