用于癌细胞药物递送与成像的有害蓝藻光致发光碳纳米标签
Photoluminescent carbon nanotags from harmful cyanobacteria for drug delivery and imaging in cancer cells.
作者信息
Lee Hyun Uk, Park So Young, Park Eun Sik, Son Byoungchul, Lee Soon Chang, Lee Jae Won, Lee Young-Chul, Kang Kyoung Suk, Kim Moon Il, Park Hyun Gyu, Choi Saehae, Huh Yun Suk, Lee Seung-Yeul, Lee Kyung-Bok, Oh You-Kwan, Lee Jouhahn
机构信息
1] Division of Materials Science, Korea Basic Science Institute (KBSI), Daejeon 305-333, Republic of Korea [2].
1] Korea Standards Research Institute of Food and Drug, Busan 607-120, Republic of Korea [2].
出版信息
Sci Rep. 2014 Apr 11;4:4665. doi: 10.1038/srep04665.
Using a simple method of mass production of green carbon nanotags (G-tags) from harmful cyanobacteria, we developed an advanced and efficient imaging platform for the purpose of anticancer therapy. Approximately 100 grams of G-tags per 100 kilograms of harmful cyanobacteria were prepared using our eco-friendly approach. The G-tags possess high solubility, excellent photostability, and low cytotoxicity (<1.5 mg/mL for 24 h). Moreover, doxorubicin-conjugated G-tags (T-tags; >0.1 mg/mL) induced death in cancer cells (HepG2 and MCF-7) in-vitro at a higher rate than that of only G-tags while in-vivo mice experiment showed enhanced anticancer efficacy by T-tags at 0.01 mg/mL, indicating that the loaded doxorubicin retains its pharmaceutical activity. The cancer cell uptake and intracellular location of the G- and T-tags were observed. The results indicate that these multifunctional T-tags can deliver doxorubicin to the targeted cancer cells and sense the delivery of doxorubicin by activating the fluorescence of G-tags.
我们采用一种从有害蓝藻大规模生产绿色碳纳米标签(G标签)的简单方法,开发了一个用于抗癌治疗的先进高效成像平台。使用我们的环保方法,每100千克有害蓝藻可制备约100克G标签。G标签具有高溶解性、出色的光稳定性和低细胞毒性(24小时内<1.5毫克/毫升)。此外,阿霉素偶联的G标签(T标签;>0.1毫克/毫升)在体外诱导癌细胞(HepG2和MCF-7)死亡的速率高于仅G标签,而体内小鼠实验表明,0.01毫克/毫升的T标签具有增强的抗癌效果,这表明负载的阿霉素保留了其药理活性。观察了G标签和T标签在癌细胞中的摄取和细胞内定位。结果表明,这些多功能T标签可以将阿霉素递送至靶向癌细胞,并通过激活G标签的荧光来感知阿霉素的递送情况。
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