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RGD 功能化磁小体是 X 射线和质子有效的肿瘤放射增敏剂。

RGD-functionalized magnetosomes are efficient tumor radioenhancers for X-rays and protons.

机构信息

Laboratoire TIRO, UMRE 4320, BIAM, DRT, CEA, Nice Côte d'Azur University, France.

Laboratoire de Bioénergétique Cellulaire, Institute of Biosciences and Biotechnologies of Aix Marseille (BIAM), Saint-Paul-lez-Durance, France.

出版信息

Nanomedicine. 2020 Jan;23:102084. doi: 10.1016/j.nano.2019.102084. Epub 2019 Aug 24.

Abstract

Although chemically synthesized ferro/ferrimagnetic nanoparticles have attracted great attention in cancer theranostics, they lack radio-enhancement efficacy due to low targeting and internalization ability. Herein, we investigated the potential of RGD-tagged magnetosomes, bacterial biogenic magnetic nanoparticles naturally coated with a biological membrane and genetically engineered to express an RGD peptide, as tumor radioenhancers for conventional radiotherapy and proton therapy. Although native and RGD-magnetosomes similarly enhanced radiation-induced damage to plasmid DNA, RGD-magnetoprobes were able to boost the efficacy of radiotherapy to a much larger extent than native magnetosomes both on cancer cells and in tumors. Combined to magnetosomes@RGD, proton therapy exceeded the efficacy of X-rays at equivalent doses. Also, increased secondary emissions were measured after irradiation of magnetosomes with protons versus photons. Our results indicate the therapeutic advantage of using functionalized magnetoparticles to sensitize tumors to both X-rays and protons and strengthen the case for developing biogenic magnetoparticles for multimodal nanomedicine in cancer therapy.

摘要

尽管化学合成的铁磁/亚铁磁纳米颗粒在癌症治疗学中引起了极大的关注,但由于靶向性和内化能力低,它们缺乏放射增强效果。在此,我们研究了 RGD 标记的磁小体(一种天然带有生物膜的细菌生物磁性纳米颗粒,并经过基因工程表达 RGD 肽)作为传统放射治疗和质子治疗的肿瘤放射增强剂的潜力。尽管天然和 RGD 磁小体同样增强了质粒 DNA 的辐射诱导损伤,但 RGD 磁探针能够在癌细胞和肿瘤中比天然磁小体更大程度地提高放射治疗的疗效。与磁小体@RGD 结合使用,质子治疗在等效剂量下超过了 X 射线的疗效。此外,与光子辐照相比,测量到辐照磁小体后二次发射增加。我们的结果表明,使用功能化磁颗粒使肿瘤对 X 射线和质子敏感的治疗优势,并为开发用于癌症治疗的多模式纳米医学的生物磁颗粒提供了依据。

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