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量子点在碳纳米管上的共轭用于医疗诊断和治疗。

Conjugation of quantum dots on carbon nanotubes for medical diagnosis and treatment.

机构信息

UCL Centre for Nanotechnology and Regenerative Medicine, University College, London, UK.

出版信息

Int J Nanomedicine. 2013;8:941-50. doi: 10.2147/IJN.S36416. Epub 2013 Mar 3.

Abstract

Cancer is one of the leading causes of death worldwide and early detection provides the best possible prognosis for cancer patients. Nanotechnology is the branch of engineering that deals with the manipulation of individual atoms and molecules. This area of science has the potential to help identify cancerous cells and to destroy them by various methods such as drug delivery or thermal treatment of cancer. Carbon nanotubes (CNT) and quantum dots (QDs) are the two nanoparticles, which have received considerable interest in view of their application for diagnosis and treatment of cancer. Fluorescent nanoparticles known as QDs are gaining momentum as imaging molecules with life science and clinical applications. Clinically they can be used for localization of cancer cells due to their nano size and ability to penetrate individual cancer cells and high-resolution imaging derived from their narrow emission bands compared with organic dyes. CNTs are of interest to the medical community due to their unique properties such as the ability to deliver drugs to a site of action or convert optical energy into thermal energy. By attaching antibodies that bind specifically to tumor cells, CNTs can navigate to malignant tumors. Once at the tumor site, the CNTs enter into the cancer cells by penetration or endocytosis, allowing drug release, and resulting in specific cancer cell death. Alternatively, CNTs can be exposed to near-infrared light in order to thermally destroy the cancer cells. The amphiphilic nature of CNTs allows them to penetrate the cell membrane and their large surface area (in the order of 2600 m(2)/g) allows drugs to be loaded into the tube and released once inside the cancer cell. Many research laboratories, including our own, are investigating the conjugation of QDs to CNTs to allow localization of the cancer cells in the patient, by imaging with QDs, and subsequent cell killing, via drug release or thermal treatment. This is an area of huge interest and future research and therapy will focus on the multimodality of nanoparticles. In this review, we seek to explore the biomedical applications of QDs conjugated to CNTs, with a particular emphasis on their use as therapeutic platforms in oncology.

摘要

癌症是全球主要死因之一,早期发现为癌症患者提供了最佳的预后。纳米技术是工程学的一个分支,涉及对单个原子和分子的操纵。该科学领域有潜力帮助识别癌细胞,并通过各种方法(如药物输送或癌症热疗)破坏它们。碳纳米管(CNT)和量子点(QD)是两种纳米颗粒,由于它们在癌症诊断和治疗方面的应用,受到了相当大的关注。荧光纳米颗粒,即 QD,由于其在生命科学和临床应用中的成像分子的应用而得到了越来越多的关注。在临床上,由于它们的纳米尺寸和穿透单个癌细胞的能力以及与其有机染料相比的窄发射带带来的高分辨率成像,它们可以用于癌细胞的定位。CNT 因其独特的性质而引起医学界的兴趣,例如将药物递送到作用部位或将光学能量转化为热能的能力。通过附着特异性结合肿瘤细胞的抗体,CNT 可以导航到恶性肿瘤。一旦到达肿瘤部位,CNT 通过穿透或内吞作用进入癌细胞,允许药物释放,并导致特定的癌细胞死亡。或者,CNT 可以暴露在近红外光下以热破坏癌细胞。CNT 的两亲性允许它们穿透细胞膜,其大的表面积(约 2600 m²/g)允许将药物加载到管中并在进入癌细胞后释放。许多研究实验室,包括我们自己的实验室,都在研究将 QD 与 CNT 连接起来,以便通过 QD 成像定位患者体内的癌细胞,然后通过药物释放或热疗进行随后的细胞杀伤。这是一个非常感兴趣的领域,未来的研究和治疗将集中在纳米颗粒的多模态上。在这篇综述中,我们试图探讨与 CNT 偶联的 QD 的生物医学应用,特别强调它们作为肿瘤学治疗平台的用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a2e/3592558/9c1c74f0bf24/ijn-8-941f1.jpg

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