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经靶向金纳米粒子治疗后,应用无创射频场破坏胰腺腺癌异种移植物。

Noninvasive radiofrequency field destruction of pancreatic adenocarcinoma xenografts treated with targeted gold nanoparticles.

机构信息

Department of Surgical Oncology, The University of Texas M. D. Anderson Cancer Center, Houston, Texas 77030, USA.

出版信息

Clin Cancer Res. 2010 Dec 1;16(23):5712-21. doi: 10.1158/1078-0432.CCR-10-2055.

Abstract

PURPOSE

Pancreatic carcinoma is one of the deadliest cancers with few effective treatments. Gold nanoparticles (AuNP) are potentially therapeutic because of the safety demonstrated thus far and their physiochemical characteristics. We used the astounding heating rates of AuNPs in nonionizing radiofrequency (RF) radiation to investigate human pancreatic xenograft destruction in a murine model.

EXPERIMENTAL DESIGN

Weekly, Panc-1 and Capan-1 human pancreatic carcinoma xenografts in immunocompromised mice were exposed to an RF field 36 hours after treatment (intraperitoneal) with cetuximab- or PAM4 antibody-conjugated AuNPs, respectively. Tumor sizes were measured weekly, whereas necrosis and cleaved caspase-3 were investigated with hematoxylin-eosin staining and immunofluorescence, respectively. In addition, AuNP internalization and cytotoxicity were investigated in vitro with confocal microscopy and flow cytometry, respectively.

RESULTS

Panc-1 cells demonstrated increased apoptosis with decreased viability after treatment with cetuximab-conjugated AuNPs and RF field exposure (P = 0.00005). Differences in xenograft volumes were observed within 2 weeks of initiating therapy. Cetuximab- and PAM4-conjugated AuNPs demonstrated RF field-induced destruction of Panc-1 and Capan-1 pancreatic carcinoma xenografts after 6 weeks of weekly treatment (P = 0.004 and P = 0.035, respectively). There was no evidence of injury to murine organs. Cleaved caspase-3 and necrosis were both increased in treated tumors.

CONCLUSIONS

This study demonstrates a potentially novel cancer therapy by noninvasively inducing intracellular hyperthermia with targeted AuNPs in an RF field. While the therapy is dependent on the specificity of the targeting antibody, normal tissues were without toxicity despite systemic therapy and whole-body RF field exposure.

摘要

目的

胰腺癌是最致命的癌症之一,目前治疗方法有限。金纳米颗粒(AuNP)具有潜在的治疗作用,因为迄今为止已证明其安全性及其物理化学特性。我们利用 AuNP 在非电离射频(RF)辐射下惊人的升温速率,在小鼠模型中研究了人类胰腺异种移植物的破坏。

实验设计

每周,在免疫功能低下的小鼠中,将与人胰腺癌细胞系 Panc-1 和 Capan-1 异种移植的肿瘤在分别用 cetuximab 或 PAM4 抗体偶联的 AuNP 治疗后 36 小时(腹腔内)暴露于 RF 场。每周测量肿瘤大小,并用苏木精-伊红染色和免疫荧光分别研究坏死和裂解的 caspase-3。此外,还分别通过共聚焦显微镜和流式细胞术研究 AuNP 的内化和细胞毒性。

结果

与单独接受 cetuximab 偶联的 AuNP 或 RF 场处理的 Panc-1 细胞相比,经 cetuximab 偶联的 AuNP 和 RF 场暴露后,Panc-1 细胞的凋亡增加,活力降低(P = 0.00005)。在开始治疗后 2 周内观察到异种移植体积的差异。经过 6 周的每周治疗,cetuximab 和 PAM4 偶联的 AuNP 表现出 RF 场诱导的 Panc-1 和 Capan-1 胰腺癌细胞系异种移植物的破坏(P = 0.004 和 P = 0.035)。未发现对小鼠器官的损伤。处理后的肿瘤中 cleaved caspase-3 和坏死均增加。

结论

本研究通过在 RF 场中用靶向 AuNP 非侵入性地诱导细胞内过热,展示了一种潜在的新型癌症治疗方法。虽然该疗法依赖于靶向抗体的特异性,但尽管进行了全身治疗和全身 RF 场暴露,正常组织仍无毒性。

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