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An intelligent ZIF-8-gated polydopamine nanoplatform for in vivo cooperatively enhanced combination phototherapy

机译:一种智能ZIF-8门聚二胺纳米胺,用于体内合作增强组合光疗法

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The extreme complexity and heterogeneity of fatal tumors requires the development of combination phototherapy considering the limited therapeutic efficiency of conventional monomodal photodynamic therapy (PDT) or photothermal therapy (PTT). However, tumor-specific drug administration and the accompanying hypoxia-restrained PDT present the main obstacles for executing an efficient combination phototherapy. Developing a highly biocompatible, tumor-specific, near infrared absorbing, and oxygen (O _(2) )-evolving multifunctional nanoplatform is thus crucial for an effective PDT-based combination therapy. In this contribution, a multifunctional ZIF-8-gated polydopamine nanoparticle (PDA) carrier was synthesized for simultaneously delivering a photosensitizer and a catalase (CAT) into tumor cells, thus realizing a cooperatively enhanced combination photodynamic and photothermal therapy, as systematically demonstrated in vitro and in vivo . The ZIF-8 gatekeeper facilitates the simultaneous and effective delivery of these functional payloads, and the subsequent tumor acidic pH-stimulated drug release. This leads to a significant improvement of combination efficacy by ameliorating tumor hypoxic conditions since the CAT-mediated self-sufficient O _(2) generation could substantially promote an efficient PDT operation. In addition, this nanoplatform can effectively convert near infrared photoradiation into heat, resulting in thermally induced elimination of cancerous cells. As an intelligent multi-mode therapeutic nanosystem, this inorganic/organic hybrid nanosystem showed great potential for accurate cancer diagnosis and immediate therapy.
机译:致命肿瘤的极端复杂性和异质性需要在常规单态光动力治疗(PDT)或光热疗(PTT)的有限治疗效率(PTT)的情况下,致死化光疗的发展。然而,肿瘤特异性药物管理和随附的缺氧受访PDT呈现了执行有效组合光疗法的主要障碍。因此,开发高度生物相容性,肿瘤特异性,近红外吸收和氧气(O _(2)) - 旨在对多官能纳米纳米甲型形成至关重要,对于有效的PDT基联合疗法至关重要。在该贡献中,合成多官能ZIF-8门络胺纳米胺纳米粒子(PDA)载体,用于将光敏剂和过氧化氢酶(CAT)递送到肿瘤细胞中,从而实现了合作增强的组合光动力和光热疗法,如体外所示在体内。 ZIF-8网守促进了这些功能有效载荷的同时和有效的递送,以及随后的肿瘤酸性pH刺激的药物释放。这导致通过改善肿瘤缺氧条件来显着提高组合效果,因为猫介导的自给式o _(2)代产生显着促进有效的PDT操作。另外,该纳米纳米载物可以有效地将近红外光放射转换成热量,导致热诱导消除癌细胞。作为智能多模治疗纳米系统,这种无机/有机杂交纳米系统表现出准确的癌症诊断和立即治疗的巨大潜力。

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