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全基因组扫描发现青蒿素细胞毒性可用于治疗人脑肿瘤。

A whole-genome scan for Artemisinin cytotoxicity reveals a novel therapy for human brain tumors.

机构信息

IMBA, Institute of Molecular Biotechnology of the Austrian Academy of Sciences, Vienna Biocenter, Vienna, Austria.

JLP Health GmbH, Vienna, Austria.

出版信息

EMBO Mol Med. 2023 Mar 8;15(3):e16959. doi: 10.15252/emmm.202216959. Epub 2023 Feb 6.

Abstract

The natural compound Artemisinin is the most widely used antimalarial drug worldwide. Based on its cytotoxicity, it is also used for anticancer therapy. Artemisinin and its derivates are endoperoxides that damage proteins in eukaryotic cells; their definite mechanism of action and host cell targets, however, have remained largely elusive. Using yeast and haploid stem cell screening, we demonstrate that a single cellular pathway, namely porphyrin (heme) biosynthesis, is required for the cytotoxicity of Artemisinins. Genetic or pharmacological modulation of porphyrin production is sufficient to alter its cytotoxicity in eukaryotic cells. Using multiple model systems of human brain tumor development, such as cerebral glioblastoma organoids, and patient-derived tumor spheroids, we sensitize cancer cells to dihydroartemisinin using the clinically approved porphyrin enhancer and surgical fluorescence marker 5-aminolevulinic acid, 5-ALA. A combination treatment of Artemisinins and 5-ALA markedly and specifically killed brain tumor cells in all model systems tested, including orthotopic patient-derived xenografts in vivo. These data uncover the critical molecular pathway for Artemisinin cytotoxicity and a sensitization strategy to treat different brain tumors, including drug-resistant human glioblastomas.

摘要

天然化合物青蒿素是世界上应用最广泛的抗疟药物。基于其细胞毒性,它也被用于癌症治疗。青蒿素及其衍生物是内过氧化物,可破坏真核细胞中的蛋白质;然而,其确切的作用机制和宿主细胞靶点在很大程度上仍未被揭示。通过酵母和单倍体干细胞筛选,我们证明卟啉(血红素)生物合成是青蒿素细胞毒性所必需的单一细胞途径。卟啉产生的遗传或药理学调节足以改变其在真核细胞中的细胞毒性。我们使用多种人类脑肿瘤发育的模型系统,如脑胶质母细胞瘤类器官和患者来源的肿瘤球体,使用临床批准的卟啉增强剂和手术荧光标记物 5-氨基酮戊酸(5-ALA)使癌症细胞对二氢青蒿素敏感。青蒿素和 5-ALA 的联合治疗在所有测试的模型系统中,包括体内原位患者来源的异种移植,显著且特异性地杀死脑肿瘤细胞。这些数据揭示了青蒿素细胞毒性的关键分子途径和治疗不同脑肿瘤的敏化策略,包括耐药性人类胶质母细胞瘤。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e74b/10237280/ac640489e505/EMMM-15-e16959-g009.jpg

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