Liu Yulong, Yang Kang, Wang Jun, Tian Yanzhang, Song Bin, Zhang Ruiping
General Surgery Department, Third Hospital of Shanxi Medical University, Shanxi Bethune Hospital, Shanxi Academy of Medical Sciences, Tongji Shanxi Hospital, Taiyuan, 030032, China.
Shanxi Medical University, Taiyuan, 030001, China.
Mater Today Bio. 2024 Jan 28;25:100981. doi: 10.1016/j.mtbio.2024.100981. eCollection 2024 Apr.
Nanomedicines receive great attention in cancer treatment. Nevertheless, nonbiodegradable and long-term retention still limit their clinical translation. Herein, we successfully synthesize a hypoxia-triggered degradable porphyrinic covalent organic framework (HPCOF) for antitumor therapy . HPCOF possesses wide absorption in near infrared region (NIR) which endows HPCOF excellent photothermal conversion efficiency and photoacoustic (PA) imaging ability. Moreover, HPCOF exhibits excellent photodynamic and photothermal effect under special-wavelength laser irradiation. For the first time, the and tests demonstrate that HPCOF shows effective therapeutic effect for the combination of PDT and PTT under the monitoring of PA imaging. Importantly, in tumor region, HPCOF could be triggered by hypoxia microenvironment and collapsed gradually, then cleared from the body after treatment. This work fabricates a novel COF for cancer treatment and testifies great potential of HPCOF in clinical application with reducing long-term toxicity.
纳米药物在癌症治疗中备受关注。然而,不可生物降解和长期留存问题仍然限制了它们的临床转化。在此,我们成功合成了一种用于抗肿瘤治疗的缺氧触发可降解卟啉共价有机框架(HPCOF)。HPCOF在近红外区域(NIR)具有广泛吸收,这赋予了HPCOF优异的光热转换效率和光声(PA)成像能力。此外,HPCOF在特定波长激光照射下表现出优异的光动力和光热效应。首次通过 和 测试表明,HPCOF在PA成像监测下对光动力疗法(PDT)和光热疗法(PTT)的联合治疗显示出有效的治疗效果。重要的是,在肿瘤区域,HPCOF可被缺氧微环境触发并逐渐解体,然后在治疗后从体内清除。这项工作制备了一种用于癌症治疗的新型共价有机框架,并证明了HPCOF在临床应用中具有降低长期毒性的巨大潜力。