Yunhao Sun, Kaijun Ying, Jian Sun, Limin Qiu, Yao Wang, Mingming Ji, Lulu Zhou, Jinjin Chen
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引用次数: 0
Abstract
Cisplatin (CDDP) is the primary drug used in the initial treatment of esophageal cancer (EC). However, its side effects and resistance can limit its effectiveness in clinical therapy. Curcumin (Cur)-mediated glutathione (GSH) depletion can reverse resistance, enhance the chemosensitivity of CDDP, and further improve the efficacy of platinum-containing chemotherapy in the treatment of esophageal cancer. However, it is also faced with problems of poor water solubility and low bioavailability in vivo, which severely hinders cancer treatments. In order to address these issues, we developed a novel nanotherapeutic system called CDCZA, combining Cur/CDDP/Cu/ZIF8@Au to enhance chemotherapy through GSH depletion and chemodynamic therapy through self-produced H2O2. Cu and CDDP were precisely co-loaded into Cu/ZIF8 nanoparticles using a one-pot method, then ultra-small gold nanoparticles mimicking glucose oxidase (Au nanoparticles) were embedded in the outer shell to create the CDCZA nano system. The released Cur could notably decrease intracellular GSH content and thus improve the chemosensitivity of CDDP, resulting in severe cellular apoptosis. And the Au nanoparticles effectively enabled chemodynamic therapy enhancement by accelerating the depletion of β-D-glucose into H2O2. As a result, the CDCZA nanoparticles showed increased tumor accumulation and improved antitumor effectiveness in a model of EC. Taken together, this work provides a new idea for the clinical design of efficient treatment reagents for EC.
顺铂(CDDP)是食管癌(EC)初始治疗的主要药物。然而,其副作用和耐药性限制了其临床治疗的有效性。姜黄素(Curcumin, Cur)介导的谷胱甘肽(glutathione, GSH)耗竭可逆转耐药,增强CDDP的化疗敏感性,进一步提高含铂化疗治疗食管癌的疗效。然而,它也面临着水溶性差和体内生物利用度低的问题,严重阻碍了癌症的治疗。为了解决这些问题,我们开发了一种名为CDCZA的新型纳米治疗系统,将Cur/CDDP/Cu/ZIF8@Au结合起来,通过GSH耗竭和自产H2O2的化学动力学治疗来增强化疗。采用一锅法将Cu和CDDP精确共负载到Cu/ZIF8纳米颗粒中,然后将模拟葡萄糖氧化酶的超小金纳米颗粒(Au纳米颗粒)嵌入到Cu/ZIF8纳米颗粒的外壳中,形成CDCZA纳米体系。释放的Cur可显著降低细胞内GSH含量,从而提高CDDP的化学敏感性,导致细胞严重凋亡。金纳米颗粒通过加速β- d -葡萄糖转化为H2O2,有效地增强了化疗效果。结果,CDCZA纳米颗粒在EC模型中显示出增加肿瘤积聚和提高抗肿瘤效果。本研究为临床设计高效的EC治疗试剂提供了新的思路。
期刊介绍:
Nanoscale Research Letters (NRL) provides an interdisciplinary forum for communication of scientific and technological advances in the creation and use of objects at the nanometer scale. NRL is the first nanotechnology journal from a major publisher to be published with Open Access.