首页> 美国卫生研究院文献>Nanotheranostics >Dual radiosensitization and anti-STAT3 anti-proliferative strategy based on delivery of gold nanoparticle - oligonucleotide nanoconstructs to head and neck cancer cells.
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Dual radiosensitization and anti-STAT3 anti-proliferative strategy based on delivery of gold nanoparticle - oligonucleotide nanoconstructs to head and neck cancer cells.

机译:双重放射增敏和抗STAT3抗增殖策略基于金纳米颗粒-寡核苷酸纳米结构向头颈部癌细胞的传递。

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摘要

Constitutively activated signal transducer and activator of transcription 3 (STAT3) factor is an important therapeutic target in head and neck cancer (HNC). Despite early promising results, a reliable systemic delivery system for STAT3- targeted oligonucleotide (ODN) drugs is still needed for future clinical translation of anti-STAT3 therapies. We engineered and tested a novel ODN duplex/gold nanoparticle (AuNP)-based system carrying a therapeutic STAT3 decoy (STAT3d) payload. This strategy is two-pronged because of the additive STAT3 antagonism and radiosensitizing properties of AuNP. The specificity to head and neck cancer cell surface was imparted by using a nucleolin aptamer (NUAP) that was linked to AuNP for taking the advantage of an aberrant presentation of a nuclear protein nucleolin on the cell surface. STAT3d and nucleolin aptamer constructs were independently linked to AuNPs via Au-S bonds. The synthesized AuNP constructs (AuNP-NUAP-STAT3d) exhibited internalization in cells that was quantified by using radiolabeled STAT3d. AuNP-NUAP-STAT3d showed radiosensitizing effect in human HNC FaDu cell culture experiments that resulted in an increase of cell DNA damage as determined by measuring γ-H2AX phosphorylation levels by flow cytometry. The radiosensitization study also demonstrated that AuNP-NUAP-STAT3d as well as STAT3d alone resulted in the efficient inhibition of A431 cell proliferation. While FaDu cells did not show instant proliferation inhibition after incubating with AuNP-NUAP-STAT3d, the cell DNA damage in these cells showed nearly a 50% increase in AuNP-NUAP-STAT3d group after treating with radiation. Compared with anti-EGFR humanized antibody (Cetuximab), AuNP-NUAP-STAT3d system had an overall stronger radiosensitization effect in both A431 and FaDu cells.
机译:组成性激活的信号转导子和转录激活子3(STAT3)因子是头颈癌(HNC)的重要治疗靶标。尽管取得了令人鼓舞的早期成果,但仍需要用于STAT3靶向寡核苷酸(ODN)药物的可靠全身递送系统,才能用于抗STAT3疗法的未来临床翻译。我们设计并测试了一种新型的基于ODN双工/金纳米颗粒(AuNP)的系统,该系统带有治疗性STAT3诱饵(STAT3d)有效载荷。由于加成的STAT3拮抗作用和AuNP的放射增敏特性,该策略是两方面的。通过使用与AuNP连接的核仁素适体(NUAP)赋予对头颈部癌细胞表面的特异性,以利用核蛋白核仁素在细胞表面异常呈递的优势。 STAT3d和核仁适体构建体通过Au-S键独立连接到AuNPs。合成的AuNP构建体(AuNP-NUAP-STAT3d)在细胞中表现出内在化,可通过使用放射性标记的STAT3d进行定量。 AuNP-NUAP-STAT3d在人类HNC FaDu细胞培养实验中显示出放射增敏作用,导致流式细胞术测量γ-H2AX磷酸化水平所导致的细胞DNA损伤增加。放射增敏研究还表明,单独的AuNP-NUAP-STAT3d和STAT3d可以有效抑制A431细胞的增殖。虽然FaDu细胞与AuNP-NUAP-STAT3d孵育后未显示出即时增殖抑制作用,但在用放射线处理后,这些细胞中的细胞DNA损伤显示AuNP-NUAP-STAT3d组增加了近50%。与抗EGFR人源化抗体(西妥昔单抗)相比,AuNP-NUAP-STAT3d系统在A431和FaDu细胞中均具有更强的放射增敏作用。

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