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Magnetic nanoparticles for amalgamation of magnetic hyperthermia and chemotherapy: An approach towards enhanced attenuation of tumor

机译:磁体热疗和化疗的磁性纳米粒子:肿瘤增强衰减的方法

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摘要

Targeted cancer therapy facilitates localizing the action of chemotherapeutic drugs at the tumor site enhancing the therapeutic efficacy and reducing the side effects to the healthy cells. The homing property of mesenchymal stem cells (MSCs), towards the tumor tissues makes them a potential cell-based delivery system for targeted cancer therapy. Along with chemotherapy, hyperthermia has gained interest as a treatment modality of cancer due to the higher sensitivity of the cancer cells towards heat and also due to its action on tumor cells to enhance sensitization towards chemotherapy or radiotherapy. In the current study, we have shown the multifaceted application of magnetic nanoparticles (MNPs) as a drug delivery vehicle to deliver anti-cancer drug paclitaxel and also as an inducer for magnetic hyperthermia under alternating magnetic field. The combined approach of paclitaxel loaded MNPs and hyperthermia demonstrated enhanced therapeutic efficacy as compared to any single therapy. Further, we have employed MSCs as carrier for these drugs loaded MNPs to achieve targeted and uniform distribution of the MNPs at the tumor site. We have evaluated the efficacy of the system in in vitro and in vivo prostate tumor model. The in vivo tumor study shows uniform distribution of drug loaded MNPs with use of mesenchymal stem cells as a delivery vehicle and combination of hyperthermia and MNP mediated drug delivery results in better tumor remission.
机译:靶向癌症治疗有助于定位化学治疗药物在肿瘤部位的作用,增强治疗疗效并将副作用降低对健康细胞。朝向肿瘤组织的间充质干细胞(MSCs)的归巢性能使其成为针对靶向癌症治疗的基于潜在的细胞递送系统。随着化疗,由于癌细胞对热量的敏感性较高,并且由于其对肿瘤细胞的作用而增强化疗或放射疗法的敏感性,高温患者对癌症的治疗方式进行了兴趣。在目前的研究中,我们已经示出了磁性纳米颗粒(MNP)的多方型施用作为药物递送载体,以递送抗癌药物紫杉醇,并且还作为交替磁场下的磁体热疗的诱导剂。与任何单一疗法相比,紫杉醇载荷的MNP和热疗的组合方法证明了增强的治疗效果。此外,我们使用MSCs作为这些药物负载MNP的载体,以在肿瘤部位实现MNP的靶向和均匀分布。我们已经评估了系统在体外和体内前列腺肿瘤模型中的疗效。体内肿瘤研究表明,使用间充质干细胞作为递送载体和热疗和MNP介导的药物递送的组合导致更好的肿瘤缓解药物缓解药物负荷的MNP均匀分布。

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