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设计氧化铁(FeO)纳米颗粒药物在现实胆管癌模型中的分布以及磁感应热疗过程中的升温模拟。

Design of the distribution of iron oxide (FeO) nano-particle drug in realistic cholangiocarcinoma model and the simulation of temperature increase during magnetic induction hyperthermia.

机构信息

The First Clinical Medical College of Lanzhou University, Lanzhou 730030, China.

Medical Frontier Innovation Research Center, The First Hospital of Lanzhou University, Lanzhou 730000, China.

出版信息

Pharmacol Res. 2024 Sep;207:107333. doi: 10.1016/j.phrs.2024.107333. Epub 2024 Jul 30.

Abstract

The prognosis for Cholangiocarcinoma (CCA) is unfavorable, necessitating the development of new therapeutic approach such as magnetic hyperthermia therapy (MHT) which is induced by magnetic nano-particle (MNPs) drug to bridge the treatment gap. Given the deep location of CCA within the abdominal cavity and proximity to vital organs, accurately predict the individualized treatment effects and safety brought by the distribution of MNPs in tumor will be crucial for the advancement of MHT in CCA. The Mimics software was used in this study to conduct three-dimensional reconstruction of abdominal computed tomography (CT) and magnetic reso-nance imaging images from clinical patients, resulting in the generation of a realistic digital geometric model representing the human biliary tract and its adjacent structures. Subsequently, The COMSOL Multiphysics software was utilized for modeling CCA and calculating the heat transfer law resulting from the multi-regional distribution of MNPs in CCA. The temperature within the central region of irregular CCA measured approximately 46°C, and most areas within the tumor displayed temperatures surpassing 41°C. The temperature of the inner edge of CCA is only 39 ∼ 41℃, however, it can be ameliorated by adjusting the local drug concentration through simulation system. For CCA with diverse morphologies and anatomical locations, the multi-regional distribution patterns of intratumoral MNPs and a slight overlap of drug distribution areas synergistically enhance intratumoral temperature while ensuring treatment safety. The present study highlights the practicality and imperative of incorporating personalized intratumoral MNPs distribution strategy into clinical practice for MHT, which can be achieved through the development of an integrated simulation system which incorporates medical image data and numerical calculations.

摘要

胆管癌(CCA)的预后不佳,需要开发新的治疗方法,例如磁热疗(MHT),这是通过磁性纳米粒子(MNPs)药物诱导的,以弥补治疗差距。鉴于 CCA 在腹腔内的深部位置和靠近重要器官,准确预测 MNP 在肿瘤中的分布带来的个体化治疗效果和安全性对于推进 CCA 的 MHT 至关重要。本研究使用 Mimics 软件对来自临床患者的腹部计算机断层扫描(CT)和磁共振成像图像进行三维重建,生成代表人体胆道及其相邻结构的真实数字几何模型。随后,使用 COMSOL Multiphysics 软件对 CCA 进行建模并计算由于 CCA 中 MNPs 的多区域分布而产生的传热规律。不规则 CCA 中心区域的温度约为 46°C,肿瘤内的大多数区域的温度超过 41°C。CCA 的内缘温度仅为 39 ~ 41°C,但可以通过模拟系统调整局部药物浓度来改善。对于具有不同形态和解剖位置的 CCA,肿瘤内 MNPs 的多区域分布模式和药物分布区域的轻微重叠协同提高了肿瘤内温度,同时确保了治疗安全性。本研究强调了将个体化肿瘤内 MNPs 分布策略纳入 MHT 临床实践的实用性和必要性,可以通过开发一种集成的模拟系统来实现,该系统结合了医学图像数据和数值计算。

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