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基于菁染料的用于癌症治疗与诊断的纳米探针。

Cyanine based Nanoprobes for Cancer Theranostics.

机构信息

Department of Biomedical Engineering, College of Engineering, Peking University, Beijing, 100871, China.

出版信息

Adv Healthc Mater. 2017 Jul;6(14). doi: 10.1002/adhm.201700262. Epub 2017 May 30.

Abstract

Cyanine dyes are greatly accredited in the development of non-invasive therapy that can "see" and "treat" tumor cells via imaging, photothermal and photodynamic treatment. However, these dyes suffer from poor pharmacokinetics inducing severe toxicity to normal cells, insufficient accumulation in tumor regions and rapid photobleaching when delivered in free forms. Nanoparticles engineered to encapsulate these compounds and delivering them into tumor regions have increased rapidly, however, so far, these nanoparticles (NPs) have not proved to be so effective to circumvent existing challenges. Newly designed multifunctional smart nanocarriers that can improve phototherapeutic properties of these dyes, co-encapsulate multiple potent therapeutic compounds, and simultaneously overcome limitations related to tumor recurrence, metastases, limited intracellular uptake, and tumor hypoxia have potential to revolutionize modern paradigm of cancer therapy. Such cyanine based multifunctional nanocarriers integrating imaging and therapy in a single platform can effectively produce better clinical outcomes in cancer treatment. This review briefly summarizes recent advancements of cyanine nanoprobes that are currently used as imaging/phototherapeutic agents in unimodal/bimodal/trimodal cancer theranostics. Finally, we conclude this review by addressing challenges of pre-existing therapeutic systems and designs adopted to overcome them with a brief insight assimilating future perspective of emerging cyanine-based NPs in cancer theranostics.

摘要

菁染料在开发非侵入性治疗方面得到了广泛认可,通过成像、光热和光动力治疗,可以“看到”和“治疗”肿瘤细胞。然而,这些染料的药代动力学不佳,会导致正常细胞产生严重毒性,在以游离形式给药时,在肿瘤区域的积累不足且光漂白迅速。为了将这些化合物封装并递送到肿瘤区域,已经开发出了大量的纳米粒子,然而,到目前为止,这些纳米粒子(NPs)并没有被证明能够有效地克服现有的挑战。新设计的多功能智能纳米载体可以改善这些染料的光疗特性,共包封多种有效的治疗化合物,同时克服与肿瘤复发、转移、有限的细胞内摄取和肿瘤缺氧相关的限制,有可能彻底改变癌症治疗的现代模式。这种基于菁染料的多功能纳米载体将成像和治疗整合在单个平台中,可以有效地在癌症治疗中产生更好的临床效果。本文简要总结了目前用作单模态/双模态/三模态癌症诊治中成像/光疗剂的菁纳米探针的最新进展。最后,我们通过解决现有治疗系统的挑战和为克服这些挑战而采用的设计,并简要介绍了新兴基于菁染料的 NPs 在癌症诊治中的未来前景,来结束本文的综述。

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