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用于腹腔内放射治疗的中子可激活纳米颗粒。

Neutron-Activatable Nanoparticles for Intraperitoneal Radiation Therapy.

作者信息

Hargrove Derek, Lu Xiuling

机构信息

Department of Pharmaceutical Sciences, University of Connecticut, Storrs, CT, 06269, USA.

出版信息

Methods Mol Biol. 2017;1530:379-389. doi: 10.1007/978-1-4939-6646-2_24.

Abstract

Intraperitoneal internal radiation therapy is a cancer treatment option that is employed in situations where surgical resection, systemic chemotherapy, and external beam radiotherapy are not amenable for patients. However, exposure of noncancerous tissues to radiation continues to be a hindrance to safe and effective treatment of patients. In addition, reducing prolonged radiation exposure of personnel during preparation of internal radiation therapy agents makes their manufacture complicated and hazardous. Developments in nanotechnology have provided a platform for targeted treatments that combine dual imaging and treatment capabilities all in one package, while also being robust enough to withstand the intense stresses faced during neutron activation. Here, we describe a method for synthesizing neutron activatable mesoporous silica nanoparticles for use in radiotherapy of metastatic peritoneal cancers while limiting personal exposure to radioactive materials, limiting the leakage of radioactive isotopes caused by nanoparticle degradation during neutron activation, and increasing cancer tissue specificity of radiation.

摘要

腹腔内放射治疗是一种癌症治疗选择,适用于手术切除、全身化疗和外照射放疗对患者不适用的情况。然而,非癌组织暴露于辐射仍然是安全有效地治疗患者的一个障碍。此外,在制备内放射治疗剂期间减少人员的长时间辐射暴露使得其制造复杂且具有危险性。纳米技术的发展提供了一个用于靶向治疗的平台,该平台将双重成像和治疗能力整合在一个组件中,同时还足够坚固以承受中子活化过程中面临的强烈应力。在此,我们描述了一种合成可中子活化的介孔二氧化硅纳米颗粒的方法,用于转移性腹膜癌的放射治疗,同时限制个人对放射性物质的暴露,限制中子活化期间纳米颗粒降解导致的放射性同位素泄漏,并提高辐射的癌组织特异性。

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