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基于 SlipChip-SERS 的单细胞代谢组学分析人类衰老特征

A Single-Cell Metabolic Profiling Characterizes Human Aging via SlipChip-SERS.

机构信息

School of Biomedical Engineering, Shanghai Jiao Tong University, Shanghai, 200030, China.

State Key Laboratory of Systems Medicine for Cancer, Shanghai Cancer Institute, Ren Ji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai, 200032, China.

出版信息

Adv Sci (Weinh). 2024 Nov;11(41):e2406668. doi: 10.1002/advs.202406668. Epub 2024 Sep 4.

Abstract

Metabolic dysregulation is a key driver of cellular senescence, contributing to the progression of systemic aging. The heterogeneity of senescent cells and their metabolic shifts are complex and unexplored. A microfluidic SlipChip integrated with surface-enhanced Raman spectroscopy (SERS), termed SlipChip-SERS, is developed for single-cell metabolism analysis. This SlipChip-SERS enables compartmentalization of single cells, parallel delivery of saponin and nanoparticles to release intracellular metabolites and to realize SERS detection with simple slipping operations. Analysis of different cancer cell lines using SlipChip-SERS demonstrated its capability for sensitive and multiplexed metabolic profiling of individual cells. When applied to human primary fibroblasts of different ages, it identified 12 differential metabolites, with spermine validated as a potent inducer of cellular senescence. Prolonged exposure to spermine can induce a classic senescence phenotype, such as increased senescence-associated β-glactosidase activity, elevated expression of senescence-related genes and reduced LMNB1 levels. Additionally, the senescence-inducing capacity of spermine in HUVECs and WRL-68 cells is confirmed, and exogenous spermine treatment increased the accumulation and release of HO. Overall, a novel SlipChip-SERS system is developed for single-cell metabolic analysis, revealing spermine as a potential inducer of senescence across multiple cell types, which may offer new strategies for addressing ageing and ageing-related diseases.

摘要

代谢失调是细胞衰老的关键驱动因素,导致全身性衰老的进展。衰老细胞的异质性及其代谢转变是复杂且尚未被探索的。本文开发了一种与表面增强拉曼光谱(SERS)集成的微流控 SlipChip,称为 SlipChip-SERS,用于单细胞代谢分析。这种 SlipChip-SERS 能够对单个细胞进行分区,并行递送皂素和纳米颗粒以释放细胞内代谢物,并通过简单的滑动操作实现 SERS 检测。使用 SlipChip-SERS 对不同的癌细胞系进行分析,证明了其对单个细胞进行敏感和多重代谢分析的能力。当应用于不同年龄的人原代成纤维细胞时,它确定了 12 种差异代谢物,其中精胺被验证为细胞衰老的有效诱导剂。精胺的长期暴露可诱导典型的衰老表型,如衰老相关β-半乳糖苷酶活性增加、衰老相关基因表达升高和 LMNB1 水平降低。此外,还证实了精胺在 HUVECs 和 WRL-68 细胞中的诱导衰老能力,并且外源性精胺处理增加了 HO 的积累和释放。总的来说,开发了一种用于单细胞代谢分析的新型 SlipChip-SERS 系统,揭示了精胺作为多种细胞类型衰老的潜在诱导剂,这可能为解决衰老和与衰老相关的疾病提供新的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f6e/11538647/d9ad8ddde55c/ADVS-11-2406668-g005.jpg

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