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一石四鸟:一种带隙调控的多功能肖特基异质结,可在外源/内源性刺激下实现稳健的协同抗肿瘤治疗。

Four Birds with One Stone: A Bandgap-Regulated Multifunctional Schottky Heterojunction for Robust Synergistic Antitumor Therapy upon Endo-/Exogenous Stimuli.

机构信息

Key Laboratory of Superlight Materials and Surface Technology, Ministry of Education, College of Material Science and Chemical Engineering, Harbin Engineering University, Harbin 150001, P. R. China.

出版信息

ACS Nano. 2024 Aug 27;18(34):23579-23598. doi: 10.1021/acsnano.4c07904. Epub 2024 Aug 16.

Abstract

Considering the profound impact of structure on heterojunction catalysts, the rational design of emerging catalysts with optimized energy band structures is required for antitumor efficiency. Herein, we select titanium nitride (TiN) and Pt to develop a multifunctional Schottky heterojunction named Pt/H-TiN&SRF (PHTS) nanoparticles (NPs) with a narrowed bandgap to accomplish "four birds with one stone" involving enzyo/sono/photo three modals and additional ferroptosis. The -grown Pt NPs acted as electron traps that can cause the energy band to bend upward and form a Schottky barrier, thereby facilitating the separation of electron/hole pairs in exogenous stimulation catalytic therapy. In addition, endogenous catalytic reactions based on peroxidase (POD)- and catalase (CAT)-mimicking activities can also be amplified, triggering intense oxidative stress, in which CAT-like activity decomposes endogenous HO into O alleviating hypoxia and provides reactants for sonodynamic therapy. Moreover, PHTS NPs can elicit mild photothermal therapy with boosted photothermal properties as well as ferroptosis with loaded ferroptosis inducer sorafenib for effective tumor ablation and apoptosis-ferroptosis synergistic tumor inhibitory effect. In summary, this paper proposes an attractive design for antitumor strategies and highlights findings for heterojunction catalytic therapy with potential in tumor theranostics.

摘要

鉴于结构对异质结催化剂的深远影响,需要设计具有优化能带结构的新兴催化剂,以提高抗肿瘤效率。在此,我们选择氮化钛 (TiN) 和 Pt 来开发一种多功能肖特基异质结,命名为 Pt/H-TiN&SRF (PHTS) 纳米粒子 (NPs),其带隙较窄,可实现酶/声/光三种模式和额外的铁死亡的“一石四鸟”。生长的 Pt NPs 充当电子陷阱,可导致能带向上弯曲并形成肖特基势垒,从而在外源刺激催化治疗中促进电子/空穴对的分离。此外,基于过氧化物酶 (POD) 和过氧化氢酶 (CAT) 模拟活性的内源性催化反应也可以被放大,引发强烈的氧化应激,其中 CAT 样活性将内源性 HO 分解为 O,缓解缺氧,并为声动力学治疗提供反应物。此外,PHTS NPs 可引发光热治疗,具有增强的光热性能,以及负载铁死亡诱导剂索拉非尼的铁死亡,以实现有效的肿瘤消融和凋亡-铁死亡协同肿瘤抑制作用。总之,本文提出了一种有吸引力的抗肿瘤策略设计,并强调了异质结催化治疗在肿瘤治疗中的潜在应用。

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