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流式细胞术在短波红外区。

Cytometry in the Short-Wave Infrared.

机构信息

Institute of Atomic and Molecular Sciences, Academia Sinica, Taipei City 106319, Taiwan.

Department of Materials Science and Engineering, National Taiwan University, Taipei City 106319, Taiwan.

出版信息

ACS Nano. 2024 Jul 16;18(28):18534-18547. doi: 10.1021/acsnano.4c04345. Epub 2024 Jul 8.

Abstract

Cytometry plays a crucial role in characterizing cell properties, but its restricted optical window (400-850 nm) limits the number of stained fluorophores that can be detected simultaneously and hampers the study and utilization of short-wave infrared (SWIR; 900-1700 nm) fluorophores in cells. Here we introduce two SWIR-based methods to address these limitations: SWIR flow cytometry and SWIR image cytometry. We develop a quantification protocol for deducing cellular fluorophore mass. Both systems achieve a limit of detection of ∼0.1 fg cell within a 30 min experimental time frame, using individualized, high-purity (6,5) single-wall carbon nanotubes as a model fluorophore and macrophage-like RAW264.7 as a model cell line. This high-sensitivity feature reveals that low-dose (6,5) serves as an antioxidant, and cell morphology and oxidative stress dose-dependently correlate with (6,5) uptake. Our SWIR cytometry holds immediate applicability for existing SWIR fluorophores and offers a solution to the issue of spectral overlapping in conventional cytometry.

摘要

流式细胞术在描述细胞特性方面发挥着至关重要的作用,但它的光学窗口受限(400-850nm),限制了同时检测的染色荧光团数量,阻碍了对细胞内短波长近红外(SWIR;900-1700nm)荧光团的研究和利用。在这里,我们引入了两种基于 SWIR 的方法来解决这些限制:SWIR 流式细胞术和 SWIR 图像细胞术。我们开发了一种用于推断细胞内荧光团质量的定量方案。这两个系统都使用个体定制的、高纯度的(6,5)单壁碳纳米管作为模型荧光团,在 30 分钟的实验时间内实现了约 0.1fg 细胞的检测限,巨噬细胞样 RAW264.7 作为模型细胞系。这种高灵敏度的特性表明,低剂量的(6,5)作为抗氧化剂,细胞形态和氧化应激与(6,5)摄取呈剂量依赖性相关。我们的 SWIR 细胞术对现有的 SWIR 荧光团具有直接的适用性,并为传统细胞术的光谱重叠问题提供了解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4643/11256901/e108d043239c/nn4c04345_0001.jpg

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