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通过光学条形码和多通路采集克服流式细胞术中的固定和通透化挑战。

Overcoming fixation and permeabilization challenges in flow cytometry by optical barcoding and multi-pass acquisition.

机构信息

LASE Innovation Inc., Waltham, Massachusetts, USA.

Center for Regenerative Medicine, Massachusetts General Hospital, Boston, Massachusetts, USA.

出版信息

Cytometry A. 2024 Nov;105(11):838-848. doi: 10.1002/cyto.a.24904. Epub 2024 Oct 28.

DOI:10.1002/cyto.a.24904
PMID:39467031
Abstract

The fixation and permeabilization of cells are essential for labeling intracellular biomarkers in flow cytometry. However, these chemical treatments often alter fragile targets, such as cell surface and fluorescent proteins (FPs), and can destroy chemically-sensitive fluorescent labels. This reduces measurement accuracy and introduces compromises into sample workflows, leading to losses in data quality. Here, we demonstrate a novel multi-pass flow cytometry approach to address this long-standing problem. Our technique utilizes individual cell barcoding with laser particles, enabling sequential analysis of the same cells with single-cell resolution maintained. Chemically-fragile protein markers and their fluorochrome conjugates are measured prior to destructive sample processing and adjoined to subsequent measurements of intracellular markers after fixation and permeabilization. We demonstrate the effectiveness of our technique in accurately measuring intracellular FPs and methanol-sensitive antigens and fluorophores, along with various surface and intracellular markers. This approach significantly enhances assay flexibility, enabling accurate and comprehensive cellular analysis without the constraints of conventional one-time measurement flow cytometry. This innovation paves new avenues in flow cytometry for a wide range of applications in immuno-oncology, stem cell research, and cell biology.

摘要

细胞的固定和通透对于流式细胞术中标记细胞内生物标志物至关重要。然而,这些化学处理通常会改变脆弱的靶标,如细胞表面和荧光蛋白(FPs),并且可能破坏化学敏感的荧光标记物。这降低了测量的准确性,并对样品工作流程造成了妥协,导致数据质量的损失。在这里,我们展示了一种新的多通流式细胞术方法来解决这个长期存在的问题。我们的技术利用激光颗粒对单个细胞进行编码,实现了相同细胞的顺序分析,同时保持单细胞分辨率。在破坏性样品处理之前测量化学脆弱的蛋白质标记物及其荧光染料缀合物,并在固定和通透后与后续的细胞内标记物测量相结合。我们证明了我们的技术在准确测量细胞内 FPs 和甲醇敏感抗原和荧光染料以及各种表面和细胞内标记物方面的有效性。这种方法显著提高了测定的灵活性,实现了准确和全面的细胞分析,而不受传统一次性测量流式细胞术的限制。这项创新为免疫肿瘤学、干细胞研究和细胞生物学等广泛应用的流式细胞术开辟了新的途径。

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