Kong Xinyu, Li Mingyue, Xiao Wei, Li Yongxin, Luo Zewei, Shen Ji-Wei, Duan Yixiang
Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of Ministry of Education, College of Chemistry & Materials Science, Northwest University, Xi'an, 710069, Shaanxi, China.
Research Center of Analytical Instrumentation, School of Mechanical Engineering, Sichuan University, Chengdu, 610065, China.
Talanta. 2024 Oct 1;278:126381. doi: 10.1016/j.talanta.2024.126381. Epub 2024 Jun 17.
Circulating tumor cell (CTC) in the blood is the main cause of cancer metastasis for death in cancer patients. It is extremely important for cancer diagnosis at an early stage and treatment to simultaneously detect and kill the CTCs. In this work, a new hybridized nanolayer, namely gold nanoparticle/gold nanorods@ Polydopamine (AuNPs/AuNRs@PDA), was coated on the Ω-shaped fiber optics (Ω-FO) for localized surface plasmonic resonance (LSPR) to perform tumor cell sensing and photothermal treatment (PTT). The PDA nanolayer was formed on a bare fiber optic through the self-polymerization of dopamine under mild conditions. The AuNRs and AuNPs were absorbed on the surface of the PDA nanolayer to form a hybridized nanolayer. The hybridized nanolayer-modified Ω-FO LSPR exhibited a high refractive index sensitivity (RIS) of 37.59 (a.u/RIU) and photothermal conversion efficiency. After being modified with the recognition element of aptamer, the Ω-FO LSPR was used to develop a sensitive and specifical tumor cell sensing. Under the irradiation of near-infrared light (NIR) laser, the Ω-FO LSPR can kill the captured tumor cells with the apoptotic/necrotic rate of 62.6 % and low side-effect for the nontarget cells. The FO LSPR sensor realized the dual functions of CTC sensing and PTT, which provided a new idea for the early diagnosis and treatment of cancer.
血液中的循环肿瘤细胞(CTC)是癌症患者因癌症转移而死亡的主要原因。同时检测并杀死CTC对癌症早期诊断和治疗极为重要。在这项工作中,一种新型的杂交纳米层,即金纳米颗粒/金纳米棒@聚多巴胺(AuNPs/AuNRs@PDA),被包覆在Ω形光纤(Ω-FO)上用于局域表面等离子体共振(LSPR),以实现肿瘤细胞传感和光热治疗(PTT)。PDA纳米层通过多巴胺在温和条件下的自聚合作用在裸光纤上形成。AuNRs和AuNPs吸附在PDA纳米层表面形成杂交纳米层。杂交纳米层修饰的Ω-FO LSPR表现出37.59(a.u/RIU)的高折射率灵敏度(RIS)和光热转换效率。在用适体识别元件修饰后,Ω-FO LSPR被用于开发一种灵敏且特异的肿瘤细胞传感方法。在近红外(NIR)激光照射下,Ω-FO LSPR能够杀死捕获的肿瘤细胞,凋亡/坏死率为62.6%,对非靶细胞的副作用较低。光纤LSPR传感器实现了CTC传感和PTT的双重功能,为癌症的早期诊断和治疗提供了新思路。