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Local moderate magnetically induced hyperthermia using an implant formed in situ in a mouse tumor model

机译:使用在小鼠肿瘤模型中原位形成的植入物进行局部中度磁感应热疗

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摘要

Purpose: We investigate a new heat delivery technique for the local treatment of solid tumors. The technique involves injecting a formulation that solidifies to form an implant in situ. This implant entraps superparamagnetic iron oxide nanoparticles (SPIONs) embedded in silica microbeads for magnetically induced moderate hyperthermia. Particle entrapment prevents phagocytosis and distant migration of SPIONs. The implant can be repeatedly heated by magnetic induction. Methods: We evaluated heating and treatment efficacies by means of thermometry and survival studies in nude mice carrying subcutaneous human colocarcinomas. At day 1, we injected the formulation into the tumor. At day 2, a single 20-min hyperthermia treatment was delivered by 141-kHz magnetic induction using field strengths of 9 to 12 mT under thermometry. Results: SPIONs embedded in silica microbeads were effectively confined within the implant at the injection site. Heat-induced necro-apoptosis was assessed by histology on day 3. On average, 12 mT resulted in tumor temperature of 47.8 degrees C, and over 70% tumor necrosis that correlated to the heat dose (AUC = 282 degrees C.min). In contrast, a 9-mT field strength induced tumoral temperature of 40 degrees C (AUC = 131 degrees C.min) without morphologically identifiable necrosis. Survival after treatment with 10.5 or 12 mT fields was significantly improved compared to non-implanted and implanted controls. Median survival times were 27 and 37 days versus 12 and 21 days respectively. Conclusion: Five of eleven mice (45%) of the 12 mT group survived one year without any tumor recurrence, holding promise for tumor therapy using magnetically induced moderate hyperthermia through injectable implants.
机译:目的:我们研究一种用于局部治疗实体瘤的新的热传递技术。该技术涉及注射可固化形成原位植入物的制剂。该植入物捕获嵌入在二氧化硅微珠中的超顺磁性氧化铁纳米粒子(SPION),用于磁诱导的中度高温。颗粒截留可防止SPIONs的吞噬作用和远距离迁移。植入物可以通过磁感应被反复加热。方法:我们通过体温计和存活研究评估了携带皮下人结肠癌的裸鼠的加热和治疗效果。在第1天,我们将制剂注射入肿瘤。在第2天,在141 kHz电磁感应下使用20至12 mT的磁场强度在测温法下进行一次20分钟的高温治疗。结果:嵌入二氧化硅微珠的SPION被有效地限制在注入部位的植入物中。在第3天通过组织学评估热诱导的坏死性细胞凋亡。平均而言,12 mT导致肿瘤温度为47.8℃,并且超过70%的肿瘤坏死与热剂量相关(AUC = 282℃.min)。相反,9-mT场强诱导的肿瘤温度为40摄氏度(AUC = 131摄氏度/分钟),而没有形态学上可鉴定的坏死。与未植入和植入的对照组相比,用10.5或12 mT电场治疗后的存活率显着提高。中位生存时间分别为27天和37天,而12天和21天。结论:12 mT组中的11只小鼠中有5只(45%)存活了一年,没有任何肿瘤复发,这有望通过可植入的植入物通过磁诱导的中度高温进行肿瘤治疗。

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