Department of Chemistry, Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration and Reconstruction, Division of Life Science, State Key Laboratory of Molecular Neuroscience, Institute for Advanced Study, Institute of Molecular Functional Materials, Division of Biomedical Engineering, The Hong Kong University of Science and Technology , Clear Water Bay, Kowloon, Hong Kong, China.
State Key Laboratory of Medicinal Chemical Biology, Key Laboratory of Bioactive Materials, Ministry of Education, and College of Life Sciences, Nankai University , Tianjin 300071, China.
ACS Nano. 2017 Jul 25;11(7):7177-7188. doi: 10.1021/acsnano.7b03062. Epub 2017 Jul 12.
Near-infrared (NIR)-absorbing organic small molecules hold great promise as the phototheranostic agents for clinical translation by virtue of their intrinsic advantages such as well-defined chemical structure, high purity, and good reproducibility. However, most of the currently available ones face the challenges in varying degrees in terms of photothermal instability, and photobleaching/reactive oxygen nitrogen species (RONS) inresistance, which indeed impair their practical applications in precise diagnosis and treatment of diseases. Herein, we developed highly stable and biocompatible organic nanoparticles (ONPs) for effective phototheranostic application by design and synthesis of an organic small molecule (namely TPA-T-TQ) with intensive absorption in the NIR window. The TPA-T-TQ ONPs with no noticeable in vivo toxicity possess better capacities in photothermal conversion and photoacoustic imaging (PAI), as well as show far higher stabilities including thermal/photothermal stabilities, and photobleaching/RONS resistances, when compared with the clinically popularly used indocyanine green. Thanks to the combined merits, the ONPs can serve as an efficient probe for in vivo PAI in a high-contrast manner, which also significantly causes the stoppage of tumor growth in living mice through PAI-guided photothermal therapy. This study thus provides an insight into the development of advanced NIR-absorbing small molecules for practical phototheranostic applications.
近红外(NIR)吸收有机小分子由于其固有优势,如明确的化学结构、高纯度和良好的重现性,有望成为临床转化的光热治疗剂。然而,目前大多数可用的小分子在光热不稳定性和光漂白/活性氧氮物种(RONS)抗性方面都面临着不同程度的挑战,这确实影响了它们在疾病精确诊断和治疗中的实际应用。在此,我们通过设计和合成具有强烈 NIR 窗口吸收的有机小分子(即 TPA-T-TQ),开发了高度稳定且生物相容的有机纳米粒子(ONPs),用于有效的光热治疗应用。TPA-T-TQ ONPs 具有无明显体内毒性,在光热转换和光声成像(PAI)方面具有更好的能力,并且与临床常用的吲哚菁绿相比,具有更高的热/光热稳定性和光漂白/RONS 抗性。由于这些优点的结合,ONPs 可以作为一种高效的探针,以高对比度的方式进行体内 PAI,通过 PAI 引导的光热治疗也显著导致活鼠体内肿瘤生长停止。因此,本研究为开发实用的光热治疗应用的先进 NIR 吸收小分子提供了新的思路。