Department of Chemistry and The Natural Science Research Institute, Myongji University, 116 Myongji-Ro, Yongin, Gyeonggi-do 17058, Republic of Korea.
School of Integrative Engineering, Chung-Ang University, Seoul 06974, Republic of Korea.
ACS Appl Bio Mater. 2021 Dec 20;4(12):8377-8385. doi: 10.1021/acsabm.1c00946. Epub 2021 Nov 9.
Stimuli-responsive nanoparticles are favorable for improving the selective delivery and rational vocation that easily avoids the undesirable barriers or side effects, leading to a further improved therapeutic efficiency. Furthermore, multifunctional nanomaterials have been extensively developed as attractive candidates for theranostic reagents for cancer treatment. In this article, we developed reversibly pH-responsive gold nanoparticles (AuNPs) with an enhanced Raman scattering signal as well as an efficient photothermal effect and demonstrated their applications as a theranostic reagent for cancer treatment. Surfaces of these AuNPs were modified with mixed layers of Cy3-modified single-stranded DNA (ssDNA-Cy3) for Raman probing and a negative charge supply and cytochrome C (Cyt C) for pH-responsive charge inversion. This combination of pH-responsive ligands and Raman probes played an important role in inducing the assembly or disassembly of AuNPs corresponding to the neighboring pH, accompanied by an additional highly distinguished Raman signal intensity. An operative reversible response of the AuNPs to pH is endowed with the characteristic behavior of AuNPs with the cancerous cell's acidic microenvironment of low pH. The responsive aggregation of AuNPs in a lower pH medium provides highly amplified signals attributed to well-formed hot spots between the particle surfaces that deliver better Raman scattering signals. The acidic pH-responsive aggregation of the particles also provided efficient photothermal treatments using a long-wavelength laser light with the benefit of deeper penetration for cancer cells. experiments employing cancer cells and control normal cells well-demonstrated the specificity of the particles to cancer cells in terms of highly enhanced Raman imaging and therapeutic efficiency.
刺激响应型纳米颗粒有利于提高选择性递药和合理的靶向性,从而容易避免不理想的障碍或副作用,进一步提高治疗效率。此外,多功能纳米材料已被广泛开发为癌症治疗的治疗试剂的有吸引力的候选物。在本文中,我们开发了具有增强的拉曼散射信号以及高效光热效应的可逆 pH 响应金纳米颗粒(AuNPs),并证明了它们作为癌症治疗的治疗试剂的应用。这些 AuNPs 的表面用 Cy3 修饰的单链 DNA(ssDNA-Cy3)的混合层进行修饰,用于拉曼探测和提供负电荷,并使用细胞色素 C(Cyt C)进行 pH 响应电荷反转。这些 pH 响应配体和拉曼探针的组合在诱导 AuNPs 的组装或解组装方面起着重要作用,这与邻近 pH 对应的周围 pH 有关,同时伴随着额外的高度区分的拉曼信号强度。AuNPs 对 pH 的可操作的可逆响应赋予了 AuNPs 的特征行为,因为 AuNPs 具有癌细胞的低 pH 酸性微环境。在较低 pH 介质中,AuNPs 的响应性聚集提供了归因于颗粒表面之间形成的热点的高度放大的信号,从而提供了更好的拉曼散射信号。颗粒的酸性 pH 响应性聚集还提供了使用长波长激光的高效光热治疗,其有益于癌细胞的更深穿透。使用癌细胞和对照正常细胞的实验很好地证明了颗粒对癌细胞的特异性,表现在高度增强的拉曼成像和治疗效率方面。