College of Chemistry, Chemical Engineering and Materials Science, Key Laboratory of Molecular and Nano Probes, Ministry of Education, Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong, Institute of Molecular and Nano Science, Shandong Normal University, Jinan, 250014, P. R. China.
Biomater Sci. 2021 Nov 23;9(23):7977-7983. doi: 10.1039/d1bm01245b.
Photothermal therapy effectively ablates tumors by hyperthermia (>50 °C) under laser irradiation. However, the hyperthermia may inevitably diffuse to the surrounding healthy tissues to induce additional damage. Thus, effective cancer therapy by mild photothermal therapy at low temperatures is greatly desirable. In this study, a nanoagent (COF-GA) was designed to inhibit HSP90 for enhanced photothermal therapy against cancer at low temperatures. The nanoscale covalent organic frameworks (COFs) were able to increase the temperature of the tumor tissue under laser irradiation, which can transfer the energy of laser into heat for cancer cell killing. Gambogic acid (GA), as an inhibitor of HSP90, was used to overcome the heat resistance of tumor, achieving efficient mild-temperature photothermal therapy. As an excellent candidate for the photothermal therapy agent, COF-GA can induce the temperature to elevate as the exposure time increased when irradiated with laser. tests further demonstrated that the tumor growth was able to be significantly suppressed after being treated with COF-GA. The mild-temperature photothermal therapy exhibits an excellent antitumor efficacy at a relatively low temperature and minimizes the nonspecific thermal damage to normal tissues. This COF-GA nanoagent also enriches our understanding towards the various applications of COFs, particularly in the biomedicine field.
光热疗法通过激光照射下的高温(>50°C)有效地消融肿瘤。然而,这种高温不可避免地会扩散到周围的健康组织,导致额外的损伤。因此,人们非常希望通过低温下温和的光热疗法来有效治疗癌症。在本研究中,设计了一种纳米试剂(COF-GA),通过抑制 HSP90 来增强光热疗法治疗癌症的效果。纳米级共价有机框架(COFs)能够在激光照射下提高肿瘤组织的温度,从而将激光能量转化为热能杀死癌细胞。藤黄酸(GA)作为 HSP90 的抑制剂,用于克服肿瘤的耐热性,实现高效的温和温度光热治疗。作为光热治疗剂的优秀候选物,COF-GA 在激光照射下随着暴露时间的增加能够诱导温度升高。进一步的测试表明,用 COF-GA 处理后,肿瘤生长能够得到显著抑制。这种温和温度的光热疗法在相对较低的温度下表现出优异的抗肿瘤疗效,并最大限度地减少对正常组织的非特异性热损伤。这种 COF-GA 纳米试剂还丰富了我们对 COFs 各种应用的理解,特别是在生物医学领域。