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Targeted destruction of cancer stem cells using multifunctional magnetic nanoparticles that enable combined hyperthermia and chemotherapy

机译:使用多功能磁性纳米粒子靶向癌症干细胞的破坏,使能热疗和化疗组合

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Cancer stem cells (CSCs) have been implicated in cancer recurrence and therapy resistance. Therefore, a CSC-targeted therapy that disrupts the maintenance and survival of CSCs may offer an effective approach in killing tumor cells in primary tumors and preventing the metastasis caused by CSCs. Nanoparticles (NPs)-based thermotherapy and/or chemotherapy are promising therapeutic methods for cancer treatment. Methods: A silica-based multifunctional NP system was present, which encapsulated a chemotherapeutic agent and magnetic cores and coated with a specific antibody against the lung CSCs. The efficacy of this novel therapeutic strategy was systematically studied both in vitro and in vivo by simultaneous activating the combined thermotherapy and chemotherapy via CSC-targeted NPs. Results: These NPs were systematically administered and activated for targeted chemotherapy and thermotherapy by using an externally applied alternating magnetic field (AMF). The antibody-modified NPs targeted to lung CSCs with enhanced cellular uptake in vitro and extended accumulation in tumor in vivo. Up to 98% of lung CSCs was killed in vitro with 30-min application of AMF, due to the combined effects of hyperthermia and chemotherapeutic drug treatment. In in vivo models, this combined therapy significantly suppressed tumor growth and metastasis in lung CSC xenograft-bearing mice, with minimal side effects and adverse effects. Conclusion: With good biocompatibility and targeting capability, the nanodrug delivery system may offer a promising clinical platform for the combined thermotherapy and chemotherapy. This work demonstrated the feasibility of developing multifunctional nanomedicine targeting CSCs for effective cancer treatment.? The author(s).
机译:癌症干细胞(CSC)已经牵涉癌症复发和治疗抗性。因此,CSC靶向疗法的CSCs的破坏维持和存活可以提供在原发肿瘤杀死肿瘤细胞和防止由CSC的转移的有效方法。纳米颗粒(NP)为基础的热疗和/或化疗是有前途的用于癌症治疗的治疗方法。方法:基于二氧化硅的多功能NP系统存在时,其包封的化疗剂和磁芯和包被有抗肺的CSC的特异性抗体。这个新的治疗策略的效力进行了系统的通过同时经由活化CSC靶向纳米粒子组合热疗,化疗在体外和体内研究。结果:这些NP通过使用外部施加的交变磁场(AMF)进行了系统的给药,并且对于靶向化疗和热疗激活。所述抗体修饰的NP靶向肺的CSCs在体外增强细胞摄取和在体内肿瘤扩展积累。肺的CSCs的高达98%是在体外用AMF的30分钟施用杀死,由于高热和化学治疗药物治疗的联合作用。在体内模型中,该组合疗法显著抑制肿瘤生长和转移肺中的CSC异种移植小鼠中,具有最小的副作用和不良反应。结论:良好的生物相容性和定位能力,在纳米药物输送系统可以提供组合热疗和化疗有前途的临床平台。这项工作展示了开发的多功能纳米靶向肿瘤干细胞进行有效的癌症治疗的可行性?作者。

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