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Integrated prodrug micelles with two-photon bioimaging and pH-triggered drug delivery for cancer theranostics

机译:综合前药胶束,具有双光子生物成像和pH-触发的癌症治疗药物递送

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Nanodrug carriers with fluorescence radiation are widely used in cancer diagnosis and therapy due to their real-time imaging, less side effect, better drug utilization as well as the good bioimaging ability. However, traditional nanocarriers still suffer from unexpectable drug leakage, unsatisfactory tumor-targeted drug delivery and shallow imaging depth, which limit their further application in cancer theranostics. In this study, an integrated nanoplatform is constructed by polymeric prodrug micelles with two-photon and aggregation-induced emission bioimaging, charge reversal and drug delivery triggered by acidic pH. The prodrug micelles can be self-assembled by the TP-PEI (DA/DOX)-PEG prodrug polymer, which consists of the two-photon fluorophore (TP), dimethylmaleic anhydride (DA) grafted polyethyleneimine (PEI) and polyethylene glycol (PEG). The PEG segment, DOX and DA are bridged to polymer by acid cleavable bonds, which provides the micelles a ‘stealth’ property and a satisfactory stability during blood circulation, while the outside PEG segment is abandoned along with the DA protection in the tumor acidic microenvironment, thus leading to charge reversal-mediated accelerated endocytosis and tumor-targeted drug delivery. The great antitumor efficacy and reduced side effect of these pH-sensitive prodrug micelles are confirmed by antitumor assays in vitro and in vivo. Meanwhile, these micelles exhibited great deep-tissue two-photon bioimaging ability up to 150?μm in depth. The great antitumor efficacy, reduced side effect and deep two-photon tissue imaging make the TP-PEI (DA/DOX)-PEG prodrug micelles would be an efficient strategy for theranostic nanoplatform in cancer treatment.
机译:由于其实时成像,副作用较少,药物利用率更少,使用良好的生物分析能力,具有荧光辐射的纳米室载体广泛应用于癌症诊断和治疗。然而,传统的纳米载体仍然患有未观望的药物泄漏,不令人满意的肿瘤靶向药物递送和浅层成像深度,这限制了它们在癌症治疗中的进一步应用。在该研究中,通过具有双光子和聚集诱导的发射的聚合物前药胶束构建的集成纳米粒状,用酸性pH引发的电荷反转和药物输送。前药胶束可以通过TP-PEI(DA / DOX)-PEG前药聚合物自组装,其由双光子荧光团(TP),二甲基Maleic酸酐(DA)接枝聚乙烯亚胺(PEI)和聚乙二醇(PEG)组成)。 PEG段,DOX和DA通过酸性可切割键桥接到聚合物上,其在血液循环期间提供胶束A'隐身的性质和令人满意的稳定性,而外部PEG段与肿瘤酸性微环境的DA保护一起被遗弃因此,引导逆转介导的加速促进的内吞作用和肿瘤靶向药物递送。通过体外和体内的抗肿瘤测定证实了这些pH敏感前药胶束的抗肿瘤功效和减少副作用。同时,这些胶束的深层组织两光子生物成像能力达到150Ωμm深度。大抗肿瘤功效,减少副作用和深两光膜组织成像使TP-PEI(DA / DOX)-PEG前药胶束将是癌症治疗中治疗纳米片的有效策略。

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