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Synthesis and characterization of pHLIP® coated gold nanoparticles

机译:pHLIP®包覆的金纳米颗粒的合成与表征

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摘要

Novel approaches in synthesis of spherical and multispiked gold nanoparticles coated with polyethylene glycol (PEG) and pH Low Insertion Peptide (pHLIP®) were introduced. The presence of a tumor-targeting pHLIP® peptide in the nanoparticle coating enhances the stability of particles in solution and promotes a pH-dependent cellular uptake. The spherical particles were prepared with sodium citrate as a gold reducing agent to form particles of 7.0±2.5 nm in mean metallic core diameter and ∼43 nm in mean hydrodynamic diameter. The particles that were injected into tumors in mice (21 µg of gold) were homogeneously distributed within a tumor mass with no staining of the muscle tissue adjacent to the tumor. Up to 30% of the injected gold dose remained within the tumor one hour post-injection. The multispiked gold nanoparticles with a mean metallic core diameter of 146.0±50.4 nm and a mean hydrodynamic size of ~161 nm were prepared using ascorbic acid as a reducing agent and disk-like bicelles as a template. Only the presence of a soft template, like bicelles, ensured the appearance of spiked nanoparticles with resonance in the near infrared region. The irradiation of spiked gold nanoparticles by an 805 nm laser led to the time- and concentration-dependent increase of temperature. Both pHLIP® and PEG coated gold spherical and multispiked nanoparticles might find application in radiation and thermal therapies of tumors.
机译:介绍了合成聚乙二醇(PEG)和pH低插入肽(pHLIP ®)包被的球形和多峰金纳米颗粒的新方法。纳米颗粒涂层中靶向肿瘤的pHLIP ®肽的存在增强了溶液中颗粒的稳定性,并促进了pH依赖性细胞的摄取。用柠檬酸钠作为金还原剂制备球形颗粒,以形成平均金属芯直径为7.0±2.5 nm和平均流体力学直径为〜43 nm的颗粒。注射到小鼠肿瘤中的颗粒(21 µg金)均匀分布在肿瘤块内,而邻近肿瘤的肌肉组织没有染色。注射后一小时,高达30%的注射金剂量仍保留在肿瘤内。使用抗坏血酸作为还原剂并以圆盘状单体为模板,制备了平均金属芯直径为146.0±50.4 nm,平均流体力学尺寸为〜161 nm的多峰金纳米颗粒。仅软模板(如Bicelles)的存在才能确保在近红外区域内出现带有共振的尖峰纳米颗粒。 805 nm激光对掺入的金纳米颗粒的照射导致温度随时间和浓度的增加。 pHLIP ®和PEG包被的金球形和多掺钉纳米颗粒都可能在肿瘤的放射和热疗中找到应用。

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