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首页> 外文期刊>Nanoscale >Design of Raman tag-bridged core-shell Au@Cu-3(BTC)(2) nanoparticles for Raman imaging and synergistic chemo-photothermal therapy
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Design of Raman tag-bridged core-shell Au@Cu-3(BTC)(2) nanoparticles for Raman imaging and synergistic chemo-photothermal therapy

机译:设计的拉曼tag-bridged核壳Au@Cu-3 (BTC)(2)纳米粒子的拉曼成像和协同chemo-photothermal治疗

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Nanoscale metal-organic frameworks (NMOFs) with ultrahigh porosities and incredibly high internal surface areas are potential nanomaterials to fabricate multifunctional theranostic platforms. This work describes the design of Raman tag-bridged core-shell nanoparticles (NPs) for multifunctional Raman imaging and chemo-phototherapy. Au@Cu-3(BTC)(2) NPs are characterized with the core of gold nanoparticles (Au NPs), the bridging of the Raman reporter molecule 4-mercaptobenzoic acid (4-MBA), and the shell of copper(ii) carboxylate MOFs (Cu-3(BTC)(2)). The preparation strategy is based on the assembly of Cu-3(BTC)(2) on Au NPs with the help of bifunctional 4-MBA. The Raman reporter molecule 4-MBA with characteristic Raman signals is involved in the linking of Au NPs and Cu-3(BTC)(2), avoiding additional modification of Raman reporter molecules and thus simplifying the synthesis process. Aptamers and the anti-cancer drug doxorubicin (DOX) were modified on Au@Cu-3(BTC)(2) for functionalization. The Au NP core not only acted as photothermal agents to produce hyperthermia for destroying cancer cells and promoting drug release, but also served as surface enhanced Raman scattering (SERS) substrates to enhance the Raman signal of 4-MBA. The Cu-3(BTC)(2) shell can provide sites for aptamer functionalization and drug loading. The Au@Cu-3(BTC)(2) NPs exhibited high drug loading capacity (57%) and good photothermal conversion efficiency. With good biocompatibility, high drug loading capacity, excellent SERS effect and photothermal effect, Au@Cu-3(BTC)(2) NPs showed effective theranostic applications in cell tracking and in vivo synergistic chemo-photothermal therapy of tumors, demonstrating the feasibility of theranostic applications in cancer diagnosis and therapy. It is speculated that this work would inspire further studies on the construction of theranostic nanoplatforms.
机译:纳米级有机框架(NMOFs)超高峰值和极高的内部表面区域潜在的纳米材料制造多功能theranostic平台。本工作描述拉曼的设计tag-bridged核壳纳米粒子(NPs)多功能拉曼成像和chemo-phototherapy。与金纳米粒子的核心特点(非盟NPs),拉曼的桥接记者分子4-mercaptobenzoic酸(4-MBA),壳牌的铜(ii)羧酸盐mof(Cu-3 (BTC)(2))。的组装Cu-3 (BTC)(2)盟NPs双官能4-MBA的帮助。记者拉曼分子4-MBA特征参与Au NPs的连接和信号Cu-3 (BTC)(2),避免额外的修改记者拉曼分子,从而简化了合成过程。药物阿霉素(阿霉素)被修改对功能化Au@Cu-3 (BTC)(2)。不仅作为光热光谱分析的核心代理商产生高热,破坏癌细胞和促进药物释放,还担任表面增强喇曼散射(ser)基质4-MBA增强拉曼信号。Cu-3 (BTC)(2)外壳可以提供网站适体功能化和药物加载。Au@Cu-3 (BTC) (2) NPs表现出高药物加载能力(57%)和良好的光热光谱分析转换效率。装载能力,优秀的ser效应和光照效果,Au@Cu-3 (BTC) (2) NPs显示在细胞有效theranostic应用程序跟踪和体内协同chemo-photothermal治疗肿瘤,展示theranostic的可行性在癌症诊断和治疗中的应用。推测这个工作激励吗在建设的进一步的研究theranostic nanoplatforms。

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