PO.MCB09.01 · 分子与细胞生物学

禁食通过调节脂质代谢诱导乳腺癌铁死亡

Fasting induces ferroptosis by modulating lipid metabolism in breast cancer

海报缩略图:禁食通过调节脂质代谢诱导乳腺癌铁死亡
编号 2008 展板 1 时间 4/20 09:00–12:00 区域 Section 24 主讲 Claudio Vernieri, MD;PhD
分会场 Metabolic Regulation in Breast and Gynecologic Cancers
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作者与单位 Authors & Affiliations

Claudio Vernieri1, Giovanni Fucà2, Francesca Ligorio2, Laura Tronci1, Paola A. Corsetto3, Giulia Salvadori1, Arta Ajazi1, Antonino Belfiore2, Andrea Vingiani2, Beatrice Cantarelli1, Mattia Pavani1, Keagile Bati1, Lorenzo Drufuca1, Saverio Minucci4, Pagani Massimiliano1, Filippo de Braud2, Pruneri Giancarlo2, Angela Bachi1, Marzia Santamaria5

1IFOM ETS, the AIRC Institute of Molecular Oncology, Milan, Italy,2Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy,3University of Milan, Milan, Italy,4IEO - European institute of Oncology, Milan, Italy,5IFOM-FIRC Institute of Molecular Oncology, Milan, Italy

摘要 Abstract

中文摘要
引言:周期性禁食和模拟禁食饮食(FMDs)在乳腺癌(BC)小鼠中显示出广泛的抗肿瘤活性,并在已完成或正在进行的临床试验(NCT03340935;NCT03454282;NCT04248998;NCT05763992)入组的患者(pts)中取得了有希望的结果。然而,除葡萄糖和生长因子调节外,禁食/FMD抗肿瘤活性的机制决定因素仍知之甚少。 方法:我们将BC模型的体外和体内实验与临床试验(NCT03454282;NCT04248998)背景下接受FMD的BC患者血液和肿瘤样本的离体分析相结合,以研究脂质代谢调节在介导禁食/FMD抗肿瘤效应中的作用。在体外实验中,我们使用六种鼠源和人源BC细胞系,研究多不饱和脂肪酸(PUFAs)在营养饥饿期间影响细胞增殖(IncucyteS3)、存活(碘化丙啶)、凋亡(切割的PARP/caspase 3)、脂质过氧化(丙二醛,MDA)和铁死亡的作用。在体内实验中,原位小鼠BC模型(荷4T1的BALB/c小鼠、荷E0771的C57BL/6J小鼠和荷MDA-MB-231的NOD-scid IL2rgnull(NSG)小鼠)被随机分为对照条件(自由采食)、间歇性禁食(IF)、口服PUFAs花生四烯酸(AA)或二十二碳六烯酸(DHA)、或IF与PUFAs联合,联用或不联用卡铂。我们评估了原发肿瘤生长、肺转移形成(通过IVIS)和动物存活。质谱分析用于定量小鼠和患者血浆及肿瘤内游离脂肪酸(FAs)以及脂质组分中的FAs。 结果:在BC小鼠和患者(n=112)中,禁食/FMD诱导的血糖和胰岛素降低激活了脂肪组织的脂解,随后血液和肿瘤内AA和DHA升高。通过BAY 59-9435抑制脂解逆转了禁食在小鼠体内的抗肿瘤效应,从而揭示了血液FA升高在营养饥饿抗肿瘤活性中的关键作用。在受禁食调节的多种FAs中,AA和DHA在线粒体磷脂中累积,在此促进活性氧(ROS)形成、脂质过氧化和铁死亡。将周期性禁食与AA/DHA给药相结合,通过激活铁死亡协同延迟体内肿瘤进展、减少转移形成并延长动物存活。当化疗与IF加AA/DHA联合时,这些效应进一步增强。相反,维生素E逆转了营养饥饿加AA/DHA的抗肿瘤效应。 结论:铁死亡成为禁食/FMD抗癌活性的一个新型决定因素,通过PUFA累积实现。周期性禁食/FMD加AA/DHA补充是一种新的、安全有效的抗肿瘤代谢联合方案,值得在I/II期临床试验中进行研究。
查看英文原文 English abstract
Introduction: Cyclic fasting and fasting-mimicking diets (FMDs) showed broad antitumor activity in mice with breast cancer (BC), with promising results in patients (pts) enrolled in conpleted or ongoing clinical trials (NCT03340935; NCT03454282; NCT04248998; NCT05763992 ). However, with the exception of glucose and growth factor modulation, the mechanistic determinants of fasting/FMD antitumor activity are poorly understood. Methods: We combined in vitro and in vivo experiments in BC models with ex vivo analyses of blood and tumor samples collected from BC pts undergoing FMD in the context of clinical trials (NCT03454282; NCT04248998) to investigate the role of lipid metabolism modulation in mediating fasting/FMD antitumor effects. In in vitro experiments, we used six murine and human BC cell lines to study the role of polyunsaturated fatty acids (PUFAs) in affecting cell proliferation (IncucyteS3), survival (propidium iodide), apoptosis (cleaved PARP/caspase 3), lipid peroxidation (malondialdehyde, MDA) and ferroptosis during nutrient starvation. In in vivo experiments, orthotopic mouse BC models (4T1-bearing BALB/c mice, E0771-bearing C57BL/6J mice and MDA-MB-231-bearing NOD-scid IL2rgnull (NSG) mice) were randomized to control conditions (ad libitum diet), intermittent fasting (IF), oral administration of the PUFAs arachidonic acid (AA) or docosaexahenoic acid (DHA), or a combination of IF and PUFAs, with or without carboplatin. We assessed primary tumor growth, lung metastasis formation (through IVIS) and animal survival. Mass Spectrometry analysis was used to quantify plasma and intratumor free fatty acids (FAs), as well as FAs in lipid fractions, in mice and in patients. Results : In both mice and pts (n=112) with BC, fasting/FMD-induced reduction of blood glucose and insulin activated lipolysis in fat tissue, followed by an increase of blood and intratumor AA and DHA. Inhibiting lipolysis through BAY 59-9435 reversed the in vivo antitumor effects of fasting in mice, thus revealing a crucial role of blood FA increase in nutrient starvation antitumor activity. Among several FAs modulated by fasting, AA and DHA accumulate in mitochondrial phospholipids, where they promote radical oxygen species (ROS) formation, lipid peroxidation and ferroptosis. Combining cyclic fasting with AA/DHA administration resulted in cooperative delay of in vivo tumor progression, reduced metastasis formation and prolonged animal survival via ferroptosis activation. These effects were enhanced when chemotherapy was combined with IF plus AA/DHA. Conversely, vitamin E reversed the antitumor effects of nutrient starvation plus AA/DHA. Conclusions: Ferroptosis emerges as a novel determinant of fasting/FMD anticancer activity via PUFA accumulation. Cyclic fasting/FMD plus AA/DHA supplementation is a new, safe and effective antitumor metabolic combination that deserves investigation in phase I/II clinical trials.
利益披露 Disclosure
C. Vernieri, Pfizer Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. Novartis Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. Eli Lilly Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. Astra Zeneca Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. Daiichi Sankyo Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. Gilead Travel, Other. Menarini Stemline Travel, Other, Role in advisory board, honoraria as a speaker, consultancy. G. Fucà, None. F. Ligorio, Novartis Role in advisory board, honoraria as a speaker. Pfizer Honoraria as a speaker. L. Tronci, None.. P. A. Corsetto, None.. G. Salvadori, None.. A. Ajazi, None.. A. Belfiore, None.. A. Vingiani, None.. B. Cantarelli, None.. M. Pavani, None.. K. Bati, None.. L. Drufuca, None.. S. Minucci, None.. P. Massimiliano, None.. P. Giancarlo, None.. A. Bachi, None.

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