CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Engineered Macrophages-Based uPA-Scavenger Load Gemcitabine to Prompt Robust Treating Cancer Metastasis.
Engineered Macrophages-Based uPA-Scavenger Load Gemcitabine to Prompt Robust Treating Cancer Metastasis.
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大多数癌症患者死于转移而非原发肿瘤,并且大多数患者在诊断时可能已经完成了隐匿性转移过程,使其难以进行治疗干预。尿激酶型纤溶酶原激活物(uPA)系统被证明可驱动癌症转移。
然而,当前的阻断剂如uPA抑制剂或抗体由于药代动力学差而远不能令人满意,尤其是必须面对多种转移机制。在此,提出了一种有效策略,开发uPA清除型巨噬细胞(uPAR-MΦ),随后负载纳米颗粒化疗药物(GEM@PLGA)以对抗癌症转移。有趣的是,通过体外肿瘤细胞的transwell分析和转移性肿瘤小鼠外周血的酶联免疫吸附测定检测,证明uPAR-MΦ可显著清除uPA,有助于显著抑制肿瘤细胞的迁移和小鼠转移性肿瘤病灶的发生。
此外,负载GEM@PLGA的uPAR-MΦ在4T1荷瘤小鼠模型中显示出强大的抗转移效果并显著延长生存期。这项工作提供了一种新型活体药物平台,为实现对癌症转移患者的有效治疗策略提供了可能,并可进一步扩展以应对其他介导癌症转移的肿瘤转移标志物。
The majority of cancer patients die of metastasis rather than primary tumors, and most patients may have already completed the cryptic metastatic process at the time of diagnosis, making them intractable for therapeutic intervention. The urokinase-type plasminogen activator (uPA) system is proved to drive cancer metastasis.
However, current blocking agents such as uPA inhibitors or antibodies are far from satisfactory due to poor pharmacokinetics and especially have to face multiplex mechanisms of metastasis.
Herein, an effective strategy is proposed to develop a uPA-scavenger macrophage (uPAR-MΦ), followed by loading chemotherapeutics with nanoparticles (GEM@PLGA) to confront cancer metastasis. Interestingly, significant elimination of uPA by uPAR-MΦ is demonstrated by transwell analysis on tumor cells in vitro and enzyme-linked immunosorbent assay detection in peripheral blood of mice with metastatic tumors, contributing to significant inhibition of migration of tumor cells and occurrence of metastatic tumor lesions in mice.
Moreover, uPAR-MΦ loaded with GEM@PLGA shows a robust antimetastasis effect and significantly prolonged survival in 4T1-tumor-bearing mice models. This work provides a novel living drug platform for realizing a potent treatment strategy to patients suffering from cancer metastasis, which can be further expanded to handle other tumor metastasis markers mediating cancer metastasis.
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