Yao Ming, Wang Yuli, Cornwell Lucas, Sims Christopher E, Allbritton Nancy L
Department of Bioengineering, University of Washington, SeattleWashington98195, United States.
Paul G. Allen School of Computer Science & Engineering, University of Washington, SeattleWashington98195, United States.
Anal Chem. 2025 Feb 11;97(5):2981-2990. doi: 10.1021/acs.analchem.4c05953. Epub 2025 Jan 28.
Cell-to-cell heterogeneity in lipid signaling underlies variations in response and recurrence for many cancers, including leukemias. A highly parallel, miniaturized thin-layer chromatographic platform capable of assaying single cells was developed. Ultrasmall volumes (50 pL) of standard fluorescent lipids were separated with excellent repeatability, reproducibility, and limits of detection. Sphingosine-cyanine 5 (Sph-Cy5) was loaded into cells, and the single-cell contents were separated to identify Sph-Cy5 and two metabolites, Sph-1-phosphate-Cy5 (S1P-Cy5) and hexadecanoic acid Cy5 (HA-Cy5). In leukemic cells, the CD34+ blast cells demonstrated significantly greater conversion of Sph-Cy5 to its phosphorylated form compared to that of the CD34- cells. After treatment with a sphingosine kinase (SphK) inhibitor, the level of formation of S1P-Cy5 remained significantly greater for the inhibited CD34+ cells relative to that of the inhibited CD34- cells. Over 1200 single cells were rapidly assayed using 8 chips within 4 h. Sphingosine kinase activity in the CD34+ blast cells of 3 patients with acute myeloid leukemia was assayed with and without inhibitors. The patient cells displayed intertumor and intratumor heterogeneity, and subsets of cells with distinct enzymatic activities and products, highlighting the diversity of the cells within a clinical sample and between patients.
脂质信号传导中的细胞间异质性是包括白血病在内的许多癌症反应和复发差异的基础。我们开发了一种能够检测单细胞的高度平行、小型化的薄层色谱平台。超小体积(50皮升)的标准荧光脂质被分离,具有出色的重复性、再现性和检测限。将鞘氨醇-花青素5(Sph-Cy5)加载到细胞中,分离单细胞内容物以鉴定Sph-Cy5及其两种代谢物,鞘氨醇-1-磷酸-Cy5(S1P-Cy5)和十六烷酸Cy5(HA-Cy5)。在白血病细胞中,与CD34-细胞相比,CD34+母细胞显示出Sph-Cy5向其磷酸化形式的转化率明显更高。在用鞘氨醇激酶(SphK)抑制剂处理后,相对于受抑制的CD34-细胞,受抑制的CD34+细胞中S1P-Cy5的形成水平仍然明显更高。在4小时内使用8个芯片快速检测了超过1200个单细胞。对3例急性髓性白血病患者的CD34+母细胞在有和没有抑制剂的情况下测定鞘氨醇激酶活性。患者细胞表现出肿瘤间和肿瘤内的异质性,以及具有不同酶活性和产物的细胞亚群,突出了临床样本内和患者之间细胞的多样性。