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Robust Two-Photon Visualized Nanocarrier with Dual Targeting Ability for Controlled Chemo-Photodynamic Synergistic Treatment of Cancer

机译:具有双重靶向能力的鲁棒双光子可视化纳米载体,用于癌症的化学-光动力协同治疗。

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In consideration of the intrinsic complexity of cancer, just being a delivery nanovehicle for the nanocarrier is no longer enough to fulfill requirements of dealing with cancer. In this regard, the multifunctional nanocarrier appears to be an appealing choice in cancer treatment. Herein, the novel multifunctional nanocarrier (Fe3O4-NS-C3N4@mSiO(2)-PEG-RGD) possessing properties of dual targeting (the peptide- and magnetism-mediated targeting), imaging (one- and two-photon modes), pH-triggered release of loaded anticancer drug, and synergistic treatment (photodynamic therapy (PDT) combined with chemotherapy) are successfully developed. The nanocarrier specifically centralizes within cancer cells with the enhanced amount through the dual targeting ability and is facilely tracked under one- and two-photon imaging modes attributed to the autofluorescence. Then, visible light irradiation-induced PDT combined with low pH-triggered chemotherapy synergistically cooperate to efficiently kill cancer cells. Following the above process, the multifunctional nanocarrier demonstrates effective inhibition of the growth of A549 and HeLa cancer cells. The efficient manipulation of Fe3O4-NS-C3N4@mSiO(2)-PEG-RGD also implies potential applications of the multifunctional nanocarrier in delivery of different agents. Furthermore, it might also broaden the scope of fabrication of the multifunctional nanocarrier for inhibiting the growth of cancer cells.
机译:考虑到癌症的内在复杂性,仅作为用于纳米载体的递送纳米载体已不足以满足治疗癌症的要求。在这方面,多功能纳米载体似乎是癌症治疗中的诱人选择。在这里,新型多功能纳米载体(Fe3O4-NS-C3N4 @ mSiO(2)-PEG-RGD)具有双重靶向(肽和磁性介导的靶向),成像(单光子和双光子模式),pH值的特性触发释放负载的抗癌药物,并成功开发了协同治疗(光动力疗法(PDT)结合化学疗法)。纳米载体通过双重靶向能力以增加的量特异性地集中在癌细胞内,并在归因于自发荧光的单光子和双光子成像模式下容易追踪。然后,可见光辐射诱导的PDT与低pH触发的化学疗法协同协同作用,以有效杀死癌细胞。按照上述过程,多功能纳米载体表现出对A549和HeLa癌细胞生长的有效抑制。 Fe3O4-NS-C3N4 @ mSiO(2)-PEG-RGD的有效处理还暗示了多功能纳米载体在不同试剂递送中的潜在应用。此外,它还可以拓宽用于抑制癌细胞生长的多功能纳米载体的制造范围。

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