Guangdong Key Laboratory for Research and Development of Natural Drugs, Key Laboratory for Nanomedicine, Guangdong Medical University, Dongguan 523808, PR China.
Guangdong Key Laboratory of Nanomedicine, CAS-HK Joint Lab of Biomaterials, Shenzhen Engineering Laboratory of Nanomedicine and Nanoformulations, Institute of Biomedicine and Biotechnology, Shenzhen Institute of Advanced Technology (SIAT), Chinese Academy of Sciences, Shenzhen 518055, P.R. China.
Biomater Sci. 2021 Dec 21;10(1):294-305. doi: 10.1039/d1bm01710a.
Sonodynamic therapy (SDT) is a highly attractive therapy due to its advantages of being non-invasive and having good penetration depth, but tumor hypoxia extremely restricts its therapeutic effect. Here, a novel oxygen-enhanced hybrid protein nanosonosensitizer system (MnPcS@HPO) is designed using human serum albumin (HSA) and hemoglobin (Hb) through disulfide reconfiguration, followed by encapsulating Mn-phthalocyanine (MnPcS), aiming to develop O self-supplementing nanoparticles (NPs) for enhanced SDT. Benefitting from the O-carrying ability of Hb and the tumor-targeting property of HSA, the MnPcS@HPO NPs are able to target tumor sites and alleviate hypoxia. Meanwhile, as a sonosensitizer, MnPcS is excited under US irradiation and activates dioxygen to generate abundant singlet oxygen (O), resulting in oxidative damage of tumor cells. Guided by photoacoustic and magnetic resonance dual-modal imaging, the MnPcS@HPO NPs alleviate tumor hypoxia and achieve good SDT efficiency for suppressing tumor growth. This work presents a novel insight into enhanced SDT antitumor activity through natural protein-mediated tumor microenvironment improvement.
声动力学疗法(SDT)具有非侵入性和良好的穿透深度等优点,因此极具吸引力,但肿瘤缺氧极大地限制了其治疗效果。在这里,通过二硫键重构,使用人血清白蛋白(HSA)和血红蛋白(Hb)设计了一种新型的氧增强杂合蛋白纳米声敏剂系统(MnPcS@HPO),然后包裹 Mn-酞菁(MnPcS),旨在开发用于增强 SDT 的 O 自补充纳米颗粒(NPs)。受益于 Hb 的携氧能力和 HSA 的肿瘤靶向特性,MnPcS@HPO NPs 能够靶向肿瘤部位并减轻缺氧。同时,作为声敏剂,MnPcS 在超声照射下被激发,并激活分子氧产生丰富的单线态氧(1O2),导致肿瘤细胞发生氧化损伤。在光声和磁共振双模态成像的引导下,MnPcS@HPO NPs 减轻了肿瘤缺氧,并实现了抑制肿瘤生长的良好 SDT 效率。这项工作通过天然蛋白质介导的肿瘤微环境改善,为增强 SDT 抗肿瘤活性提供了新的见解。
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