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评估喷墨分配器/液体涡旋捕获质谱法用于他莫昔芬诱导的Hep G2脂肪变性中的单细胞代谢组学研究。

Evaluating inkjet dispenser/liquid vortex capture-mass spectrometry for single-cell metabolomics in Hep G2 steatosis caused by tamoxifen.

作者信息

Zambrzycki Stephen C, Kertesz Vilmos, Cahill John F

机构信息

Bioanalytical Mass Spectrometry Group, Biosciences Division, Oak Ridge National Laboratory, 1 Bethel Valley Rd, Oak Ridge, TN, 37831 - 6131, USA.

出版信息

Anal Bioanal Chem. 2025 May 5. doi: 10.1007/s00216-025-05885-1.

Abstract

Single-cell mass spectrometry (MS) is advancing our understanding of metabolic pathways in heterogeneous cell populations; however, many techniques are slow or require disruptive sample preparations. This study evaluated coupling a modified HP D100 single-cell inkjet dispenser with liquid vortex capture-mass spectrometry (D100/LVC-MS). The D100 is a single-cell inkjet dispenser capable of titrating solutions and isolating single cells via disposable cassettes equipped with microfluidic channels and an impedance sensor. The LVC-MS enables high-throughput capture, lysis, and ionization of analytes for mass spectrometric analysis. The D100/LVC-MS system was characterized through titration and single-cell experiments. Propranolol titration demonstrated linearity across a broad concentration range using the D100/LVC-MS system. Additionally, Hep G2 hepatocarcinoma cells and Chlamydomonas reinhardtii algae were used to showcase the D100's high-throughput or low-buffer-volume single-cell dispensing strategies. The D100/LVC-MS system's performance was validated by evaluating tamoxifen-induced steatosis in Hep G2 cells. Tamoxifen, associated with nonalcoholic fatty liver disease in breast cancer patients following long-term use, was tested in Hep G2 cells at 20 µM for 72 h against DMSO-treated controls. High-throughput analysis of 500 cells per condition, completed in 25 min per run, demonstrated the system's efficiency. The D100/LVC-MS system simultaneously quantified tamoxifen and measured triglycerides and phosphatidylcholines. Triglycerides were upregulated in the tamoxifen-treated cells and the results indicated two distinct cell populations, differing in tamoxifen and phosphatidylcholines levels, suggesting heterogeneity within the treated population. These findings highlight the D100/LVC-MS system as a cost-effective, high-throughput platform for single-cell metabolomics and lipidomics, with significant potential for evaluating metabolic alterations.

摘要

单细胞质谱(MS)正在加深我们对异质细胞群体中代谢途径的理解;然而,许多技术速度缓慢或需要进行破坏性的样品制备。本研究评估了将改良的惠普D100单细胞喷墨分配器与液体涡旋捕获质谱(D100/LVC-MS)联用的情况。D100是一种单细胞喷墨分配器,能够通过配备微流体通道和阻抗传感器的一次性盒式装置滴定溶液并分离单细胞。LVC-MS能够对分析物进行高通量捕获、裂解和离子化,以进行质谱分析。通过滴定和单细胞实验对D100/LVC-MS系统进行了表征。普萘洛尔滴定表明,使用D100/LVC-MS系统在很宽的浓度范围内具有线性关系。此外,使用Hep G2肝癌细胞和莱茵衣藻展示了D100的高通量或低缓冲液体积单细胞分配策略。通过评估他莫昔芬诱导的Hep G2细胞脂肪变性,验证了D

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