荧光标记和t-SNE流式细胞术追踪小鼠胃肠道口服纳米颗粒摄取。

IF 1.1 Q3 BIOLOGY
Rabeya Jafrin Mow, Michal Pawel Kuczma, Xiaodi Shi, Didier Merlin, Chunhua Yang
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引用次数: 0

摘要

对探索纳米治疗的复杂细胞靶点的先进分析技术的需求不断增长,推动了创新方法的发展。该方案提出了一种改进的方法,用于口服脂质纳米颗粒(LNP)治疗后的结肠细胞荧光标记和流式细胞术分析,重点研究了dss诱导结肠炎小鼠模型中结肠细胞亚群对LNP的摄取。通过将优化的荧光选择和门控策略与先进的t分布随机邻居嵌入(t-SNE)分析相结合,该方法能够在复杂的炎症结肠组织条件下对lnp靶向的上皮和巨噬细胞群体进行精确识别和多维可视化。基于我们之前的研究证明了纳米颗粒在靶向药物递送中的有效性,该方法强调了流式细胞术在评估摄取效率和细胞靶向方面的实用性。与传统协议不同,它结合了t-SNE来增强多维分析,允许检测微妙的细胞模式和描绘复杂的集群。通过解决传统方法的不足,该方案为研究体内细胞靶点和优化纳米药物的给药策略提供了一个强大且可重复的框架。主要特点•该方案是优化研究纳米颗粒摄取炎症结肠组织从dss诱导结肠炎模型。•该方案集成流式细胞术与t-SNE高维数据分析,使细胞群体的详细表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tracking Oral Nanoparticle Uptake in Mouse Gastrointestinal Tract by Fluorescent Labeling and t-SNE Flow Cytometry.

The growing demand for advanced analytical techniques to explore complex cellular targets of nanotherapeutics has driven the development of innovative methodologies. This protocol presents a refined approach for fluorescent labeling and flow cytometric analysis of colonic cells following oral lipid nanoparticle (LNP) treatment, focusing on LNP uptake in colonic cell subpopulations in a DSS-induced colitis mouse model. By integrating optimized fluorochrome selection and gating strategies with advanced t-distributed stochastic neighbor embedding (t-SNE) analysis, this method enables precise identification and multidimensional visualization of LNP-targeted epithelial and macrophage populations under the complex conditions of inflamed colon tissue. Building on our previous studies demonstrating the effectiveness of nanoparticles in targeted drug delivery, this approach highlights the utility of flow cytometry for assessing uptake efficiency and cellular targeting. Unlike conventional protocols, it incorporates t-SNE for enhanced multidimensional analysis, allowing for the detection of subtle cellular patterns and the delineation of intricate clusters. By addressing gaps in traditional methodologies, this protocol provides a robust and reproducible framework for investigating in vivo cellular targets and optimizing drug delivery strategies for nanomedicines. Key features • This protocol is optimized for investigating nanoparticle uptake in inflamed colonic tissues from DSS-induced colitis models. • This protocol integrates flow cytometry with t-SNE for high-dimensional data analysis, enabling detailed characterization of cellular populations.

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