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Enhanced Plasmonic Resonance Energy Transfer in Mesoporous Silica-Encased Gold Nanorod for Two-Photon-Activated Photodynamic Therapy

机译:介孔二氧化硅包裹的金纳米棒中增强的等离子体共振能量转移用于双光子激活的光动力疗法

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摘要

The unique optical properties of gold nanorods (GNRs) have recently drawn considerable interest from those working in in vivo biomolecular sensing and bioimaging. Especially appealing in these applications is the plasmon-enhanced photoluminescence of GNRs induced by two-photon excitation at infrared wavelengths, owing to the significant penetration depth of infrared light in tissue. Unfortunately, many studies have also shown that often the intensity of pulsed coherent irradiation of GNRs needed results in irreversible deformation of GNRs, greatly reducing their two-photon luminescence (TPL) emission intensity. In this work we report the design, synthesis, and evaluation of mesoporous silica-encased gold nanorods (MS-GNRs) that incorporate photosensitizers (PSs) for two-photon-activated photodynamic therapy (TPA-PDT). The PSs, doped into the nano-channels of the mesoporous silica shell, can be efficiently excited via intra-particle plasmonic resonance energy transfer from the encased two-photon excited gold nanorod and further generates cytotoxic singlet oxygen for cancer eradication. In addition, due to the mechanical support provided by encapsulating mesoporous silica matrix against thermal deformation, the two-photon luminescence stability of GNRs was significantly improved; after 100 seconds of 800 nm repetitive laser pulse with the 30 times higher than average power for imaging acquisition, MS-GNR luminescence intensity exhibited ~260% better resistance to deformation than that of the uncoated gold nanorods. These results strongly suggest that MS-GNRs with embedded PSs might provide a promising photodynamic therapy for the treatment of deeply situated cancers via plasmonic resonance energy transfer.
机译:金纳米棒(GNR)的独特光学性质最近吸引了从事体内生物分子传感和生物成像工作的人们的极大兴趣。在这些应用中,特别吸引人的是由于红外光在组织中的穿透深度大,由双光子在红外波长激发引起的GNR的等离子体增强光致发光。不幸的是,许多研究还表明,所需的GNR脉冲相干辐照强度经常会导致GNR不可逆地变形,从而大大降低其两光子发光(TPL)发射强度。在这项工作中,我们报告了介孔二氧化硅包裹的金纳米棒(MS-GNR)的设计,合成和评估,该纳米棒结合了用于两光子活化光动力疗法(TPA-PDT)的光敏剂(PSs)。掺杂到中孔二氧化硅壳纳米通道中的PS可以通过粒子内的等离振子共振能量从包裹的两光子激发的金纳米棒中转移而得到有效激发,并进一步产生细胞毒性单线态氧,从而根除癌症。另外,由于通过包封介孔二氧化硅基质提供的抗热变形的机械支持,GNR的双光子发光稳定性得到显着改善;在100秒钟的800 nm重复激光脉冲下,其成像采集的平均功率比平均功率高30倍,MS-GNR发光强度比未涂覆的金纳米棒表现出约260%的抗变形能力。这些结果强烈表明,具有嵌入式PS的MS-GNR可能为通过等离子共振能量转移治疗深处的癌症提供有希望的光动力疗法。

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