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用纳米放射性药物变革核医学。

Transforming Nuclear Medicine with Nanoradiopharmaceuticals.

作者信息

Roy Indrajit, Krishnan Sunil, Kabashin Andrei V, Zavestovskaya Irina N, Prasad Paras N

机构信息

Department of Chemistry, University of Delhi, Delhi 110007, India.

Department of Radiation Oncology, Mayo Clinic Florida, Jacksonville, Florida 32224, United States.

出版信息

ACS Nano. 2022 Apr 26;16(4):5036-5061. doi: 10.1021/acsnano.1c10550. Epub 2022 Mar 16.

Abstract

Nuclear medicine is expected to make major advances in cancer diagnosis and therapy; tumor-targeted radiopharmaceuticals preferentially eradicate tumors while causing minimal damage to healthy tissues. The current scope of nuclear medicine can be significantly expanded by integration with nanomedicine, which utilizes nanoparticles for cancer diagnosis and therapy by capitalizing on the increased surface area-to-volume ratio, the passive/active targeting ability and high loading capacity, the greater interaction cross section with biological tissues, the rich surface properties of nanomaterials, the facile decoration of nanomaterials with a plethora of functionalities, and the potential for multiplexing several functionalities within one construct. This review provides a comprehensive discussion of nuclear nanomedicine using tumor-targeted nanoparticles for cancer radiation therapy with either pre-embedded radionuclides or nonradioactive materials which can be extrinsically triggered using various external nuclear particle sources to produce radioactivity. In addition, it describes the prospect of combining nuclear nanomedicine with other modalities to enable synergistically enhanced combination therapies. The review also discusses advances in the fabrication of radionuclides as well as describes laser ablation technologies for producing nanoradiopharmaceuticals, which combine the ease of production with exceptional purity and rapid biodegradability, along with additional imaging or therapeutic functionalities. From a practical standpoint, these attributes of nanoradiopharmaceuticals may provide distinct advantages in diagnostic/therapeutic sensitivity and specificity, imaging resolution, and scalability of turnkey platforms. Coupling image-guided targeted radiation therapy with the possibility of activation of nanomaterials as well as combining with other therapeutic modalities using a multifunctional nanoplatform could herald an era of exciting technological and therapeutic advances to radically transform the landscape of nuclear medicine. The review concludes with a discussion of current challenges and presents the authors' views on future opportunities to stimulate further research in this rewarding field of high societal impact.

摘要

核医学有望在癌症诊断和治疗方面取得重大进展;肿瘤靶向放射性药物能在对健康组织造成最小损害的同时优先根除肿瘤。通过与纳米医学相结合,核医学的当前范围可以得到显著扩展。纳米医学利用纳米颗粒进行癌症诊断和治疗,其优势在于增加的表面积与体积比、被动/主动靶向能力和高负载能力、与生物组织更大的相互作用截面、纳米材料丰富的表面性质、纳米材料易于用多种功能进行修饰,以及在一个构建体中复用多种功能的潜力。本综述全面讨论了核纳米医学,它使用肿瘤靶向纳米颗粒进行癌症放射治疗,这些纳米颗粒要么预先嵌入放射性核素,要么是可使用各种外部核粒子源进行外部触发以产生放射性的非放射性材料。此外,它还描述了将核纳米医学与其他模式相结合以实现协同增强联合治疗的前景。该综述还讨论了放射性核素制造方面的进展,并描述了用于生产纳米放射性药物的激光烧蚀技术,这种技术兼具易于生产、卓越的纯度和快速的生物降解性,以及额外的成像或治疗功能。从实际角度来看,纳米放射性药物的这些特性可能在诊断/治疗敏感性和特异性、成像分辨率以及交钥匙平台的可扩展性方面提供独特优势。将图像引导的靶向放射治疗与纳米材料激活的可能性相结合,以及使用多功能纳米平台与其他治疗模式相结合,可能预示着一个激动人心的技术和治疗进步时代的到来,将从根本上改变核医学的面貌。综述最后讨论了当前面临的挑战,并阐述了作者对未来机遇的看法,以激发在这个具有高度社会影响力的有价值领域的进一步研究。

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