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首页> 外文期刊>ACS applied materials & interfaces >Cerenkov Radiation Induced Photodynamic Therapy Using Chlorin e6-Loaded Hollow Mesoporous Silica Nanoparticles
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Cerenkov Radiation Induced Photodynamic Therapy Using Chlorin e6-Loaded Hollow Mesoporous Silica Nanoparticles

机译:氯霉素e6负载的中孔二氧化硅纳米粒子对Cerenkov辐射诱导的光动力治疗

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摘要

Traditional photodynamic therapy (PDT) requires external light to activate photosensitizers for therapeutic purposes. However, the limited tissue penetration of light is still a major challenge for this method. To overcome this limitation, we report an optimized system that uses Cerenkov radiation for PDT by using radionuclides to activate a well-known photosensitizer (chlorin e6, Ce6). By taking advantage of hollow mesoporous silica nanoparticles (HMSNs) that can intrinsically radiolabel an oxophilic zirconium-89 (Zr-89, t(1/2) = 78.4 h) radionuclide, as well as possess great drug loading capacity, Ce6 can be activated by Cerenkov radiation from Zr-89 in the same nanoconstruct. In-vitro cell viability experiments demonstrated dose-dependent cell deconstruction as a function of the concentration of Ce6 and Zr-89. In vivo studies show inhibition of tumor growth when mice were subcutaneously injected with [Zr-89]HMSN-Ce6, and histological analysis of the tumor section showed damage to tumor tissues, implying that reactive oxygen species mediated the destruction. This study offers a way to use an internal radiation source to achieve deep-seated tumor therapy without using any external light source for future applications.
机译:传统的光动力疗法(PDT)需要外部光才能激活用于治疗目的的光敏剂。然而,光的有限组织穿透仍然是该方法的主要挑战。为克服此限制,我们报告了一种优化的系统,该系统通过使用放射性核素激活众所周知的光敏剂(二氢卟酚e6,Ce6),将Cerenkov辐射用于PDT。通过利用空心中孔二氧化硅纳米颗粒(HMSN),该纳米颗粒可以固有地放射性标记亲氧锆89(Zr-89,t(1/2)= 78.4 h)放射性核素,并且具有强大的载药能力,因此可以激活Ce6切伦科夫用Zr-89辐射在同一纳米结构中。体外细胞活力实验证明,剂量依赖性细胞解构与Ce6和Zr-89的浓度有关。体内研究显示,当给小鼠皮下注射[Zr-89] HMSN-Ce6时,肿瘤的生长受到抑制,肿瘤切片的组织学分析显示对肿瘤组织的损害,这表明活性氧介导了破坏。这项研究提供了一种使用内部辐射源实现深层肿瘤治疗的方法,而无需为将来的应用使用任何外部光源。

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