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多功能金纳米棒用于硼中子俘获和光热治疗的评价。

Evaluation of Multifunctional Gold Nanorods for Boron Neutron Capture and Photothermal Therapies.

机构信息

CIC biomaGUNE, Basque Research and Technology Alliance (BRTA), Paseo de Miramón 194, Donostia-San Sebastian 20014, Spain.

Centro de Investigación Biomédica en Red de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Paseo de Miramón 194, Donostia-San Sebastian 20014, Spain.

出版信息

ACS Appl Mater Interfaces. 2021 Oct 27;13(42):49589-49601. doi: 10.1021/acsami.0c17575. Epub 2021 Oct 13.

Abstract

The incidence and mortality of cancer demand more innovative approaches and combination therapies to increase treatment efficacy and decrease off-target side effects. We describe a boron-rich nanoparticle composite with potential applications in both boron neutron capture therapy (BNCT) and photothermal therapy (PTT). Our strategy is based on gold nanorods (AuNRs) stabilized with polyethylene glycol and functionalized with the water-soluble complex cobalt (dicarbollide) ([3,3'-Co(1,2-CBH)]), commonly known as COSAN. Radiolabeling with the positron emitter copper-64 (Cu) enabled tracking using positron emission tomography imaging. Cu-labeled multifunctionalized AuNRs proved to be radiochemically stable and capable of being accumulated in the tumor after intravenous administration in a mouse xenograft model of gastrointestinal cancer. The resulting multifunctional AuNRs showed high biocompatibility and the capacity to induce local heating under external stimulation and trigger cell death in heterogeneous cancer spheroids as well as the capacity to decrease cell viability under neutron irradiation in cancer cells. These results position our nanoconjugates as suitable candidates for combined BNCT/PTT therapies.

摘要

癌症的发病率和死亡率需要更多创新的方法和联合疗法,以提高治疗效果并减少脱靶副作用。我们描述了一种富硼纳米粒子复合材料,具有在硼中子俘获治疗(BNCT)和光热治疗(PTT)中应用的潜力。我们的策略基于金纳米棒(AuNRs),其通过聚乙二醇稳定,并通过水溶性复合物钴(双(1,2-环丁二烯))([3,3'-Co(1,2-CBH)])进行功能化,通常称为 COSAN。正电子发射体铜-64(Cu)的放射性标记使能够使用正电子发射断层扫描成像进行追踪。Cu 标记的多功能化 AuNRs 被证明具有放射化学稳定性,并且能够在胃肠道癌的小鼠异种移植模型中经静脉给药后在肿瘤中积累。所得多功能 AuNRs 表现出高生物相容性,并能够在外部刺激下引起局部加热,在异质癌细胞球体中触发细胞死亡,并能够在癌细胞中的中子辐照下降低细胞活力。这些结果使我们的纳米缀合物成为联合 BNCT/PTT 治疗的合适候选物。

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