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基于脂质组学的聚谷氨酸包裹层状纳米粒子靶向 STAT3 驱动型乳腺癌细胞。

Lipidome-based Targeting of STAT3-driven Breast Cancer Cells Using Poly-l-glutamic Acid-coated Layer-by-Layer Nanoparticles.

机构信息

Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts.

Harvard Medical School, Boston, Massachusetts.

出版信息

Mol Cancer Ther. 2021 Apr;20(4):726-738. doi: 10.1158/1535-7163.MCT-20-0505. Epub 2021 Feb 3.

Abstract

The oncogenic transcription factor STAT3 is aberrantly activated in 70% of breast cancers, including nearly all triple-negative breast cancers (TNBCs). Because STAT3 is difficult to target directly, we considered whether metabolic changes driven by activated STAT3 could provide a therapeutic opportunity. We found that STAT3 prominently modulated several lipid classes, with most profound effects on N-acyl taurine and arachidonic acid, both of which are involved in plasma membrane remodeling. To exploit these metabolic changes therapeutically, we screened a library of layer-by-layer (LbL) nanoparticles (NPs) differing in the surface layer that modulates interactivity with the cell membrane. We found that poly-l-glutamic acid (PLE)-coated NPs bind to STAT3-transformed breast cancer cells with 50% greater efficiency than to nontransformed cells, and the heightened PLE-NP binding to TNBC cells was attenuated by STAT3 inhibition. This effect was also observed in densely packed three-dimensional breast cancer organoids. As STAT3-transformed cells show greater resistance to cytotoxic agents, we evaluated whether enhanced targeted delivery via PLE-NPs would provide a therapeutic advantage. We found that cisplatin-loaded PLE-NPs induced apoptosis of STAT3-driven cells at lower doses compared with both unencapsulated cisplatin and cisplatin-loaded nontargeted NPs. In addition, because radiation is commonly used in breast cancer treatment, and may alter cellular lipid distribution, we analyzed its effect on PLE-NP-cell binding. Irradiation of cells enhanced the STAT3-targeting properties of PLE-NPs in a dose-dependent manner, suggesting potential synergies between these therapeutic modalities. These findings suggest that cellular lipid changes driven by activated STAT3 may be exploited therapeutically using unique LbL NPs.

摘要

致癌转录因子 STAT3 在 70%的乳腺癌中异常激活,包括几乎所有三阴性乳腺癌(TNBC)。由于 STAT3 难以直接靶向,我们考虑是否由激活的 STAT3 驱动的代谢变化可以提供治疗机会。我们发现 STAT3 显著调节了几种脂质类,对 N-酰基牛磺酸和花生四烯酸的影响最大,这两者都参与了质膜重塑。为了从治疗的角度利用这些代谢变化,我们筛选了不同表面层的层层(LbL)纳米粒子(NP)文库,该表面层调节与细胞膜的相互作用。我们发现聚-L-谷氨酸(PLE)涂层的 NPs 与 STAT3 转化的乳腺癌细胞的结合效率比非转化细胞高 50%,而 TNBC 细胞中 PLE-NP 结合的增加被 STAT3 抑制所减弱。这种效应在密集的三维乳腺癌类器官中也观察到。由于 STAT3 转化的细胞对细胞毒性剂显示出更大的抗性,我们评估了通过 PLE-NP 增强靶向递送来提供治疗优势的可能性。我们发现与未封装的顺铂和载顺铂的非靶向 NPs 相比,载顺铂的 PLE-NP 在较低剂量下诱导 STAT3 驱动的细胞凋亡。此外,由于辐射常用于乳腺癌治疗,并且可能改变细胞脂质分布,我们分析了其对 PLE-NP-细胞结合的影响。细胞的辐射以剂量依赖的方式增强了 PLE-NP 的 STAT3 靶向特性,表明这些治疗方式之间可能存在协同作用。这些发现表明,激活的 STAT3 驱动的细胞脂质变化可以使用独特的 LbL NPs 进行治疗。

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