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近红外光光控靶向、生物成像及载药上转换纳米粒子的化疗:体外与体内研究

Near-infrared light photocontrolled targeting, bioimaging, and chemotherapy with caged upconversion nanoparticles in vitro and in vivo.

机构信息

Department of Chemistry, Center for Micro/Nano Science and Technology, and Advanced Optoelectronic Technology Center, National Cheng Kung University , Tainan, 701 Taiwan.

出版信息

ACS Nano. 2013 Oct 22;7(10):8516-28. doi: 10.1021/nn402399m. Epub 2013 Sep 30.

Abstract

The major challenge in current chemotherapy is to increase local effective therapeutic concentration of drugs as well as to minimize toxicity and side effects for patients. The targeted delivery of drugs to their desired site of action in a controlled manner plays an essential role in the development of drug formulations. A photocage refers to a caged molecule rendered biologically inert by a photolabile protecting group. Molecules are illuminated with light to liberate the caged group and then become active forms. In this study, we formulate upconversion nanoparticles (UCNPs) as the NIR-triggered targeting and drug delivery vehicles that successfully deliver in vitro and in vivo for near-infrared light photocontrolled targeting, bioimaging, and chemotherapy. It is noted that there has been no report on the systemic administration UCNP-based drug delivery agents for evaluation of bioimaging and chemotherapy. To achieve phototargeting, the tumor-homing agent (i.e., folic acid) has been constructed as a photoresponsive molecule. For the chemotherapeutic effect, the antitumor drug doxorubicin is thiolated on the surface of UCNPs, forming a disulfide bond that can be cleaved by lysosomal enzymes within the cells. The caged UNCPs can serve as a platform for the improvement of selective targeting and possible reduction of adverse side effects from chemotherapy.

摘要

当前化疗的主要挑战是增加药物的局部有效治疗浓度,同时最大程度地降低患者的毒性和副作用。以可控的方式将药物靶向递送至其所需的作用部位在药物制剂的开发中起着至关重要的作用。光笼是指通过光不稳定保护基团使生物惰性的笼状分子。用光照使分子释放出笼状基团,然后变成活性形式。在这项研究中,我们将上转换纳米粒子(UCNP)制成近红外光触发靶向和药物递送载体,成功地进行了体外和体内递药,用于近红外光光控靶向、生物成像和化学疗法。值得注意的是,目前还没有关于全身给药的基于 UCNP 的药物递送剂用于生物成像和化学疗法评估的报道。为了实现光靶向,肿瘤归巢剂(即叶酸)已被构建为光响应分子。对于化疗效果,将阿霉素作为疏基化的抗肿瘤药物连接到 UCNP 的表面,形成可以被细胞内溶酶体酶裂解的二硫键。光笼 UCNP 可以作为提高选择性靶向和可能减少化疗不良反应的平台。

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