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用于原位胶质瘤抑制的血脑屏障可渗透且多刺激响应的纳米平台:协同增强化学/化学动力学/光热/饥饿疗法

Blood-brain Barrier Permeable and Multi-stimuli Responsive Nanoplatform for Orthotopic Glioma Inhibition by Synergistic Enhanced Chemo-/Chemodynamic/Photothermal/Starvation Therapy.

作者信息

Cao Yue, Jin Longhai, Zhang Shuai, Lv Zhijia, Yin Na, Zhang Hao, Zhang Tianqi, Wang Yinghui, Chen Yong, Liu Xinrui, Zhao Gang

机构信息

Department of Neurosurgery, The First Hospital of Jilin University, Changchun 130021, China.

Department of Radiology, The Second Hospital of Jilin University, Changchun 130041, China.

出版信息

Eur J Pharm Sci. 2023 Jan 1;180:106319. doi: 10.1016/j.ejps.2022.106319. Epub 2022 Nov 1.

Abstract

Glioblastoma (GBM) is a common malignant tumor in brain, and the treatment is still a challenge owing to the high invasiveness and the existence of blood-brain barrier (BBB). Although temozolomide (TMZ) is the first line medication, its efficacy is not ideal, which is related to the defect of dose distribution and drug resistance. It is urgent to develop a novel BBB-permeable nanoagent with multiple therapeutic modalities for improving the treatment effect of GBM. In this work, we constructed an intelligent BBB-permeable nanoplatform (CTHG-Lf NPs) with hollow mesoporous copper sulfide nanoparticles (HM-CuS NPs) as temozolomide (TMZ) carrier and hyaluronic acid (HA) as gatekeeper, as well as further modification with glucose oxidase (GOx) and lactoferrin (Lf) for highly efficient synergistic therapy of orthotopic GBM. The modification of Lf endows CTHG-Lf NPs with good target and BBB-permeable ability. HA not only prevents the TMZ leakage during circulation, but also achieves responsive drug release at tumor site for effective chemotherapy (CT). GOx provides high hydrogen peroxide (HO) and gluconic acid for improving the treatment effect of chemodynamic therapy (CDT), and realizes the starvation therapy (ST) by consuming glucose. The good photothermal effect of CTHG-Lf NPs achieves the "mild" photothermal therapy (PTT), while enhancing the efficiency of Fenton-like reaction. The synergistic strategy with CT/CDT/PTT/ST can not only promote brain drug delivery, but also realize the combination of multiple mechanisms for effective tumor growth suppression in vivo.

摘要

胶质母细胞瘤(GBM)是一种常见的脑部恶性肿瘤,由于其高侵袭性和血脑屏障(BBB)的存在,治疗仍然是一项挑战。尽管替莫唑胺(TMZ)是一线药物,但其疗效并不理想,这与剂量分布缺陷和耐药性有关。迫切需要开发一种新型的具有多种治疗方式的血脑屏障穿透纳米制剂,以提高GBM的治疗效果。在这项工作中,我们构建了一种智能的血脑屏障穿透纳米平台(CTHG-Lf NPs),以中空介孔硫化铜纳米颗粒(HM-CuS NPs)作为替莫唑胺(TMZ)载体,透明质酸(HA)作为守门人,并进一步用葡萄糖氧化酶(GOx)和乳铁蛋白(Lf)进行修饰,用于原位GBM的高效协同治疗。Lf的修饰赋予CTHG-Lf NPs良好的靶向和血脑屏障穿透能力。HA不仅能防止TMZ在循环过程中泄漏,还能在肿瘤部位实现响应性药物释放,以进行有效的化疗(CT)。GOx提供高浓度的过氧化氢(HO)和葡萄糖酸,以提高化学动力疗法(CDT)的治疗效果,并通过消耗葡萄糖实现饥饿疗法(ST)。CTHG-Lf NPs良好的光热效应实现了“温和”的光热疗法(PTT),同时提高了类芬顿反应的效率。CT/CDT/PTT/ST的协同策略不仅可以促进脑部药物递送,还能实现多种机制的联合,以在体内有效抑制肿瘤生长。

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