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3D in vitro cancerous tumor models: Using 3D printers

机译:3D体外癌性肿瘤模型:使用3D打印机

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摘要

Recently, magnetic Hyperthermia is one of the promising methods for cancer treatments. In this method by applying magnetic fields and generating heat, cancerous tissues are eliminated. The degree and pattern of generated heat in cancerous and adjacent non-cancerous tissues plays an important role on the outcome of the treatment. it is mainly affected by diffusion and distribution pattern of magnetic nanoparticles within the cancerous and non-cancerous tissues. Study the diffusion and distribution patterns of magnetic nanoparticle in vivo is difficult and costly in many cases and in some cases evaluating the amount of generated heat at cancer site is almost impossible. In vitro models for cancer tissues are alternatives for in vivo models. However, usual in vitro models could not resembling all the characteristics of a cancer tumor. In this hypothesis we propose that using 3D printers can provide a platform to fabricate a personalized in vitro cancer model which could simulate the most important features of the cancerous tissues (including shape and vascular network) and can be used to study magnetic hyperthermia in a simulated media of compatible to in vivo conditions.
机译:最近,磁体热疗是癌症治疗方法之一。在该方法中,通过施加磁场和产生热量,消除癌组织。癌癌和相邻的非癌组织中产生的热的程度和模式在治疗结果上起重要作用。它主要受癌症和非癌组织内磁性纳米粒子的扩散和分布模式的影响。研究在许多情况下,体内磁性纳米粒子的扩散和分布模式在许多情况下难以且昂贵,并且在某些情况下评估癌症遗址的产生的热量几乎是不可能的。癌组织的体外模型是体内模型的替代品。然而,通常的体外模型不能类似于癌症肿瘤的所有特征。在这一假设中,我们提出使用3D打印机可以提供一个平台来制造个性化体外癌症模型,该平台可以模拟癌组织(包括形状和血管网络)的最重要特征,并且可用于在模拟中研究磁体热疗媒体兼容体内条件。

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