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首页> 外文期刊>Journal of Cancer >In Vitro Administration of Gold Nanoparticles Functionalized with MUC-1 Protein Fragment Generates Anticancer Vaccine Response via Macrophage Activation and Polarization Mechanism
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In Vitro Administration of Gold Nanoparticles Functionalized with MUC-1 Protein Fragment Generates Anticancer Vaccine Response via Macrophage Activation and Polarization Mechanism

机译:MUC-1蛋白片段功能化的金纳米粒子的体外给药通过巨噬细胞激活和极化机制产生抗癌疫苗反应。

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Therapeutic cancer vaccines (or active immunotherapy) aim to guide the patient's personal immune system to eradicate cancer cells. An exciting approach to cancer vaccines has been offered by nanoscale drug delivery systems containing tumor associated antigens (TAAs). Their capacity to stimulate the immune system has been suggested during late years. However, the role of the macrophages as key-elements in antigen-presentation process following TAAs-containing nanosystems is not completely understood. We aimed to evaluate the effect of gold nanoparticles functionalized with mucin-1 peptide (MUC-1) on murine peritoneal macrophages. Gold nanoparticles, obtained using a modified Turkevich method, were functionalized with MUC-1 protein using Clealand's reagent. The obtained GNP-MUC-1 solution was used to treat at various concentrations monolayers of peritoneum-derived macrophages that were further analyzed using confocal and hyperspectral microscopy, ELISA assays and spectroscopic techniques. The GNP-MUC-1 nano-construct had proven to function as a powerful macrophage activator with consequent release of cytokines such as: TNF-ɑ, IL-6, IL-10 and IL-12 on peritoneal macrophages we have isolated from mice. Our results demonstrate optimization of antigen-presenting process and predominant M1 polarization following exposure GNP-MUC-1. To our best knowledge this is the first study to evaluate the anticancer effects of a newly designed nano-biocompound on the complex antigen- processing apparatus of peritoneal macrophages.
机译:治疗性癌症疫苗(或主动免疫疗法)旨在指导患者的个人免疫系统根除癌细胞。包含肿瘤相关抗原(TAA)的纳米级药物输送系统已为癌症疫苗提供了令人兴奋的方法。近年来已经提出了它们刺激免疫系统的能力。然而,还没有完全理解巨噬细胞在包含TAA的纳米系统之后的抗原呈递过程中作为关键元素的作用。我们旨在评估用粘蛋白1肽(MUC-1)功能化的金纳米颗粒对小鼠腹膜巨噬细胞的影响。使用Clealand试剂将MUC-1蛋白功能化,使用改良的Turkevich方法获得的金纳米颗粒。将获得的GNP-MUC-1溶液用于处理各种浓度的腹膜衍生巨噬细胞单层,然后使用共聚焦和高光谱显微镜,ELISA分析和光谱技术对其进行进一步分析。 GNP-MUC-1纳米结构已被证明可作为强大的巨噬细胞激活剂起作用,随后在我们从小鼠中分离出的腹膜巨噬细胞上释放出诸如TNF-α,IL-6,IL-10和IL-12等细胞因子。我们的结果表明,在暴露GNP-MUC-1之后,抗原呈递过程和主要的M1极化最优化。据我们所知,这是第一个评估新设计的纳米生物化合物对腹膜巨噬细胞复杂抗原加工装置的抗癌作用的研究。

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