Jiang Renting, Rao Jinchan, Su Hua, Li Ming
School of Materials Science and Engineering, Central South University, Changsha, Hunan, 410083, China.
Small. 2025 Jul;21(26):e2501721. doi: 10.1002/smll.202501721. Epub 2025 May 7.
The intrinsic DNA damage repair response represents a major limiting factor for the therapeutic efficacy of many anticancer therapies such as chemodynamic therapy (CDT). Here, a degradable metal-small molecule drug coordination nanomedicine (siAPE1/Cu-MP@HA) is developed for DNA damage-augmented CDT treatment of lung cancers. The design is achieved by the coordination-driven self-assembly of Cu and 6-mercaptopurine (6-MP) with the siAPE1 loading and hyaluronic acid (HA) modification. The siAPE1/Cu-MP@HA possesses the tumor targeting ability and is degradable in lysosomes for specific releases of Cu, siAPE1, and 6-MP because of the weak acidity/glutathione (GSH) dual-responsiveness. Upon the depletion of endogenous GSH, the siAPE1/Cu-MP@HA promotes the ∙OH generation from endogenous HO via the Fenton-like reaction, significantly enhancing the CDT anticancer effect. It is evidenced that the siAPE1/Cu-MP@HA treatment effectively disrupts the DNA synthesis and inhibits the DNA damage repair, thereby augmenting the DNA damage. In vivo, experiments demonstrate the remarkable therapeutic efficacy against A549 lung cancer in mice with negligible systemic toxicity after intravenous administration of the siAPE1/Cu-MP@HA. This study offers an innovative approach targeting the DNA damage repair system for enhancing CDT effects in cancer treatment.
内在的DNA损伤修复反应是许多抗癌疗法(如化学动力疗法(CDT))治疗效果的主要限制因素。在此,开发了一种可降解的金属-小分子药物配位纳米药物(siAPE1/Cu-MP@HA),用于DNA损伤增强的CDT治疗肺癌。该设计是通过铜和6-巯基嘌呤(6-MP)与负载的siAPE1和透明质酸(HA)修饰的配位驱动自组装实现的。siAPE1/Cu-MP@HA具有肿瘤靶向能力,由于弱酸性/谷胱甘肽(GSH)双响应性,可在溶酶体中降解以特异性释放铜、siAPE1和6-MP。内源性GSH耗尽后,siAPE1/Cu-MP@HA通过类Fenton反应促进内源性HO产生∙OH,显著增强CDT抗癌效果。有证据表明,siAPE1/Cu-MP@HA治疗有效破坏DNA合成并抑制DNA损伤修复,从而增强DNA损伤。在体内,实验证明静脉注射siAPE1/Cu-MP@HA后,对小鼠A549肺癌具有显著的治疗效果,且全身毒性可忽略不计。本研究提供了一种靶向DNA损伤修复系统以增强癌症治疗中CDT效果的创新方法。