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用于癌症研究的生物共轭量子点:现状、前景和遗留问题。

Bioconjugated quantum dots for cancer research: present status, prospects and remaining issues.

机构信息

Nanobioanalysis Team, Health Technology Research Center, National Institute of Advanced Industrial Science and Technology, 2217-14 Hayashi-Cho, Takamatsu, Kagawa 761-0395, Japan.

出版信息

Biotechnol Adv. 2010 Mar-Apr;28(2):199-213. doi: 10.1016/j.biotechadv.2009.11.007. Epub 2009 Dec 5.

Abstract

Semiconductor quantum dots (QDs) are nanoparticles in which charge carriers are three dimensionally confined or quantum confined. The quantum confinement provides size-tunable absorption bands and emission color to QDs. Also, the photoluminescence (PL) of QDs is exceptionally bright and stable, making them potential candidates for biomedical imaging and therapeutic interventions. Although fluorescence imaging and photodynamic therapy (PDT) of cancer have many advantages over imaging using ionizing radiations and chemo and radiation therapies, advancement of PDT is limited due to the poor availability of photostable and NIR fluorophores and photosensitizing (PS) drugs. With the introduction of biocompatible and NIR QDs, fluorescence imaging and PDT of cancer have received new dimensions and drive. In this review, we summarize the prospects of QDs for imaging and PDT of cancer. Specifically, synthesis of visible and NIR QDs, targeting cancer cells with QDs, in vitro and in vivo cancer imaging, multimodality, preparation of QD-PS conjugates and their energy transfer, photosensitized production of reactive oxygen intermediates (ROI), and the prospects and remaining issues in the advancement of QD probes for imaging and PDT of cancer are summarized.

摘要

半导体量子点(QDs)是一种纳米颗粒,其中载流子在三维方向上受到限制或量子限制。量子限制为 QDs 提供了可调谐的吸收带和发射颜色。此外,QDs 的光致发光(PL)异常明亮且稳定,使它们成为生物医学成像和治疗干预的潜在候选者。尽管与使用电离辐射以及化学疗法和放射疗法相比,荧光成像是癌症的一种优势,但 PDT 的发展受到限制,因为光稳定性和近红外荧光团和光敏化(PS)药物的可用性较差。随着生物相容性和近红外 QDs 的引入,荧光成像和癌症的 PDT 已获得新的维度和动力。在这篇综述中,我们总结了 QDs 在癌症成像和 PDT 中的应用前景。具体而言,总结了可见和近红外 QDs 的合成、利用 QDs 靶向癌细胞、体外和体内癌症成像、多模态、QD-PS 缀合物的制备及其能量转移、光敏化产生活性氧中间体(ROI),以及在为癌症的成像和 PDT 开发 QD 探针方面的前景和剩余问题。

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