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首页> 外文期刊>ACS Omega >Gold Nanoshell-Linear Tetrapyrrole Conjugates for Near Infrared-Activated Dual Photodynamic and Photothermal Therapies
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Gold Nanoshell-Linear Tetrapyrrole Conjugates for Near Infrared-Activated Dual Photodynamic and Photothermal Therapies

机译:金纳米壳线性四吡咯共轭物用于近红外激活的光动力和光热疗法

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Photodynamic therapy (PDT) is a treatment in which photoactive compounds delivered to cancerous tissues are excited with light and then transfer the absorbed energy to adjacent tissue oxygen molecules to generate toxic singlet oxygen (1O2). As 1O2 is produced only where light and photosensitizers (PSs) are combined, PDT holds promise as a minimally invasive, highly selective treatment for certain cancers. The practical application of PDT requires easily synthesized, water-soluble PSs that have low dark toxicities, high 1O2 quantum yields, and efficient absorption of 650–850 nm near-infrared (NIR) light, which deeply penetrates tissue. We recently developed a linear tetrapyrrole metal complex, Pd[DMBil1]–PEG750, that meets most of these criteria. This complex is remarkably effective as a PS for PDT against triple-negative breast cancer (TNBC) cells but, critically, it does not absorb NIR light, which is necessary to treat deeper tumors. To enable NIR activation, we synthesized a new derivative, Pd[DMBil1]–PEG5000–SH, which bears a thiol functionality that facilitates conjugation to NIR-absorbing gold nanoshells (NSs). Upon excitation with pulsed 800 nm light, NSs emit two-photon-induced photoluminescence spanning 500–700 nm, which can sensitize the attached PSs to initiate PDT. Additionally, NSs produce heat upon 800 nm irradiation, endowing the NS–PS conjugates with an auxiliary photothermal therapeutic (PTT) capability. Here, we demonstrate that NS–PS conjugates are potent mediators of NIR-activated tandem PDT/PTT against TNBC cells in vitro. We show that Pd[DMBil1]–PEG5000–SH retains the photophysical properties of the parent Pd[DMBil1] complex, and that NS–PS generate 1O2 under pulsed 800 nm irradiation, confirming activation of the PSs by photoluminescence emitted from NSs. TNBC cells readily internalize NS PS conjugates, which generate reactive oxygen species in the cells upon pulsed NIR irradiation to damage DNA and induce apoptosis. Together, these findings demonstrate that exploiting photoluminescent NSs as carriers of efficient Pd[DMBil1] PSs is an effective strategy to enable NIR light-activated tandem PDT/PTT.
机译:光动力疗法(PDT)是一种治疗方法,其中传递到癌组织的光敏化合物被光激发,然后将吸收的能量转移到相邻的组织氧分子上,产生有毒的单线态氧(1O2)。由于仅在将光敏剂和光敏剂(PSs)结合使用时才产生1O2,因此PDT有望成为对某些癌症的微创,高选择性治疗。 PDT的实际应用需要易于合成的水溶性PS,该PS具有低的暗毒性,高的1O2量子产率和有效吸收650-850 nm的近红外(NIR)光的能力,该光可以深深地穿透组织。我们最近开发了一种线性四吡咯金属配合物Pd [DMBil1] -PEG750,它满足大多数标准。该复合物作为PDT抗三阴性乳腺癌(TNBC)细胞的PS非常有效,但至关重要的是,它不吸收NIR光,这是治疗更深的肿瘤所必需的。为了使NIR活化,我们合成了一种新的衍生物Pd [DMBil1] –PEG5000–SH,该衍生物具有巯基官能团,可促进与吸收NIR的金纳米壳(NSs)的结合。在用800 nm脉冲光激发后,NSs发出跨500-700 nm的双光子诱导的光致发光,这可以使附着的PS敏感以引发PDT。此外,NS在800 nm的辐射下会产生热量,从而使NS-PS共轭物具有辅助光热治疗(PTT)功能。在这里,我们证明了NS-PS偶联物是NIR激活的串联PDT / PTT对TNBC细胞的有效介体。我们显示,Pd [DMBil1] –PEG5000–SH保留了母体Pd [DMBil1]复合物的光物理特性,并且NS–PS在脉冲800 nm辐射下产生了1O2,证实了NSs发出的光致发光激活了PSs。 TNBC细胞易于内在化NS PS偶联物,在脉冲NIR照射下,它们会在细胞中产生活性氧,从而破坏DNA并诱导凋亡。在一起,这些发现表明,利用光致发光的NSs作为有效Pd [DMBil1] PS的载体是使NIR光激活串联PDT / PTT的有效策略。

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