Cationic amphiphilic drugs induce elevation in lysoglycerophospholipid levels and cell death in leukemia cells.

Inger Ødum Nielsen, Line Groth-Pedersen, Jano Dicroce-Giacobini, Anna Sofie Holm Jonassen, Monika Mortensen, Mesut Bilgin, Kjeld Schmiegelow, Marja Jäättelä, Kenji Maeda
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引用次数: 14

Abstract

Introduction: Repurposing of cationic amphiphilic drugs (CADs) emerges as an attractive therapeutic solution against various cancers, including leukemia. CADs target lysosomal lipid metabolism and preferentially kill cancer cells via induction of lysosomal membrane permeabilization, but the exact effects of CADs on the lysosomal lipid metabolism remain poorly illuminated.

Objectives: We aimed to systematically monitor CAD-induced alterations in the quantitative lipid profiles of leukemia cell lines in order to chart effects of CADs on the metabolism of various lipid classes present in these cells.

Methods: We conducted this study on eight cultured cell lines representing two leukemia types, acute lymphoblastic leukemia and acute myeloid leukemia. Mass spectrometry-based quantitative shotgun lipidomics was employed to quantify the levels of around 400 lipid species of 26 lipid classes in the leukemia cell lines treated or untreated with a CAD, siramesine.

Results: The two leukemia types displayed high, but variable sensitivities to CADs and distinct profiles of cellular lipids. Treatment with siramesine rapidly altered the levels of diverse lipid classes in both leukemia types. These included sphingolipid classes previously reported to play key roles in CAD-induced cell death, but also lipids of other categories. We demonstrated that the treatment with siramesine additionally elevated the levels of numerous cytolytic lysoglycerophospholipids in positive correlation with the sensitivity of individual leukemia cell lines to siramesine.

Conclusions: Our study shows that CAD treatment alters balance in the metabolism of glycerophospholipids, and proposes elevation in the levels of lysoglycerophospholipids as part of the mechanism leading to CAD-induced cell death of leukemia cells.

阳离子两亲性药物诱导白血病细胞溶甘油磷脂水平升高和细胞死亡。
阳离子两亲性药物(CADs)的再利用是一种有吸引力的治疗方案,可用于治疗包括白血病在内的各种癌症。CADs以溶酶体脂质代谢为靶点,通过诱导溶酶体膜渗透作用优先杀死癌细胞,但其对溶酶体脂质代谢的确切影响尚不清楚。目的:我们旨在系统地监测cad诱导的白血病细胞系定量脂质谱的改变,以便绘制cad对这些细胞中存在的各种脂质代谢的影响。方法:对急性淋巴细胞白血病和急性髓细胞白血病两种白血病类型的8株培养细胞系进行了研究。采用质谱为基础的定量散弹枪脂质组学,量化了使用CAD、siramesine治疗或未治疗的白血病细胞系中26类脂质中约400种脂质的水平。结果:两种白血病类型对CADs表现出高但可变的敏感性和不同的细胞脂质谱。西拉辛治疗迅速改变了两种白血病类型中不同脂类的水平。其中包括先前报道的在cad诱导的细胞死亡中起关键作用的鞘脂类,以及其他类别的脂类。我们证明,用西拉斯辛治疗还可以提高许多细胞溶解溶甘油磷脂的水平,这与单个白血病细胞系对西拉斯辛的敏感性呈正相关。结论:我们的研究表明,CAD治疗改变了甘油磷脂代谢的平衡,并提出溶甘油磷脂水平的升高是导致CAD诱导的白血病细胞死亡的部分机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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