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脂肪酸合酶硫酯酶结构域抑制剂,对乳腺癌细胞的细胞毒性增强,在血浆中稳定性提高。

An Inhibitor of Fatty Acid Synthase Thioesterase Domain with Improved Cytotoxicity against Breast Cancer Cells and Stability in Plasma.

机构信息

Division of Endocrinology and Metabolism, Department of Medicine, Norris Cotton Cancer Center (W.B.K.) and Section of Clinical Pharmacology & The Clinical Pharmacology Shared Resource (L.D.L., D.B.P.), The Geisel School of Medicine (L.E.L., W.B.K.), and Program in Experimental and Molecular Medicine, Dartmouth-Hitchcock Medical Center (L.E.L.), Dartmouth College, Lebanon, New Hampshire; and Department of Chemistry, Keene State College, Keene, New Hampshire (E.M.D., M.J.M., I.B.L., M.G.F., M.E.O., P.W.B.).

Division of Endocrinology and Metabolism, Department of Medicine, Norris Cotton Cancer Center (W.B.K.) and Section of Clinical Pharmacology & The Clinical Pharmacology Shared Resource (L.D.L., D.B.P.), The Geisel School of Medicine (L.E.L., W.B.K.), and Program in Experimental and Molecular Medicine, Dartmouth-Hitchcock Medical Center (L.E.L.), Dartmouth College, Lebanon, New Hampshire; and Department of Chemistry, Keene State College, Keene, New Hampshire (E.M.D., M.J.M., I.B.L., M.G.F., M.E.O., P.W.B.)

出版信息

J Pharmacol Exp Ther. 2019 Oct;371(1):171-185. doi: 10.1124/jpet.119.258947. Epub 2019 Jul 12.

Abstract

It is well recognized that many cancers are addicted to a constant supply of fatty acids (FAs) and exhibit brisk de novo FA synthesis. Upregulation of a key lipogenic enzyme, fatty acid synthase (FASN), is a near-universal feature of human cancers and their precursor lesions, and has been associated with chemoresistance, tumor metastasis, and diminished patient survival. FASN inhibition has been shown to be effective in killing cancer cells, but progress in the field has been hindered by off-target effects and poor pharmaceutical properties of candidate compounds. Our initial hit (compound ) was identified from a high-throughput screening effort by the Sanford-Burnham Center for Chemical Genomics using purified FASN thioesterase (FASN-TE) domain. Despite being a potent inhibitor of purified FASN-TE, compound proved highly unstable in mouse plasma and only weakly cytotoxic to breast cancer (BC) cells in vitro. An iterative process of synthesis, cytotoxicity testing, and plasma stability assessment was used to identify a new lead (compound ). This lead is more cytotoxic against multiple BC cell lines than tetrahydro-4-methylene-2-octyl-5-oxo-3-furancarboxylic acid (the literature standard for inhibiting FASN), is stable in mouse plasma, and shows negligible cytotoxic effects against nontumorigenic mammary epithelial cells. Compound also has drug-like physical properties based on Lipinski's rules and is, therefore, a valuable new lead for targeting fatty acid synthesis to exploit the requirement of tumor cells for fatty acids. SIGNIFICANCE STATEMENT: An iterative process of synthesis and biological testing was used to identify a novel thioesterase domain FASN inhibitor that has drug-like properties, is more cytotoxic to breast cancer cells than the widely used tetrahydro-4-methylene-2-octyl-5-oxo-3-furancarboxylic acid, and has negligible effects on the growth and proliferation of noncancerous mammary epithelial cells. Our studies have confirmed the value of using potent and selective FASN inhibitors in the treatment of BC cells and have shown that the availability of exogenous lipoproteins may impact both cancer cell FA metabolism and survival.

摘要

众所周知,许多癌症依赖于脂肪酸(FAs)的持续供应,并表现出快速的从头脂肪酸合成。关键的生脂酶,脂肪酸合酶(FASN)的上调是人类癌症及其前体病变的近普遍特征,并与化疗耐药性、肿瘤转移和患者生存减少有关。已经证明 FASN 抑制在杀死癌细胞方面是有效的,但该领域的进展受到了脱靶效应和候选化合物的不良药物特性的阻碍。我们最初的命中(化合物)是由圣达福-伯纳姆化学基因组学中心通过高通量筛选发现的,使用纯化的 FASN 硫酯酶(FASN-TE)结构域。尽管是纯化的 FASN-TE 的有效抑制剂,但化合物在小鼠血浆中极不稳定,仅对体外乳腺癌(BC)细胞表现出弱细胞毒性。通过合成、细胞毒性测试和血浆稳定性评估的迭代过程,确定了一种新的先导化合物(化合物)。这种先导化合物对多种 BC 细胞系的细胞毒性比对四氢-4-亚甲基-2-辛基-5-氧代-3-呋喃羧酸(抑制 FASN 的文献标准)更强,在小鼠血浆中稳定,对非致瘤性乳腺上皮细胞几乎没有细胞毒性作用。化合物还具有基于 Lipinski 规则的类药物理性质,因此是一种有价值的新的脂肪酸合成靶向先导化合物,可利用肿瘤细胞对脂肪酸的需求。意义陈述:通过合成和生物学测试的迭代过程,鉴定了一种新型的硫酯酶结构域 FASN 抑制剂,它具有类药性质,对乳腺癌细胞的细胞毒性比广泛使用的四氢-4-亚甲基-2-辛基-5-氧代-3-呋喃羧酸更强,对非癌性乳腺上皮细胞的生长和增殖几乎没有影响。我们的研究证实了在治疗 BC 细胞中使用有效和选择性的 FASN 抑制剂的价值,并表明外源性脂蛋白的可用性可能会影响癌细胞的 FA 代谢和存活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3d3/7184194/e22fdfcf2f5b/jpet.119.258947absf1.jpg

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