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介孔硅 MCM-41 包覆的金纳米棒的合成与表征及其在光热疗法中的生物应用平台。

Synthesis and characterization of gold nanorods coated by mesoporous silica MCM-41 as a platform bioapplication in photohyperthermia.

机构信息

Centro de Desenvolvimento da Tecnologia Nuclear, CDTN, 31270-901 Belo Horizonte, MG, Brazil.

Departamento de Bioquímica e Imunologia-ICB-UFMG, 31270-901 Belo Horizonte, MG, Brazil.

出版信息

Nanotechnology. 2021 Oct 11;32(50). doi: 10.1088/1361-6528/ac28db.

Abstract

Gold nanoparticles have been widely investigated for biomedical applications due to their optical properties. These particles present the interesting feature of absorbing light when stimulated with laser radiation to generate heating. Among the possible morphologies for synthetic gold nanoparticles, gold nanorods have properties of great interest for applications in the photohyperthermia processes. Due to their morphology, gold nanorods can absorb light at longer wavelengths comprising specific regions of the electromagnetic spectrum, such as the region of the biological window, in which laser radiation has less interaction with tissues. However, these nanoparticles present limitations in biomedical applications, such as low colloidal and thermal stabilities that can be overcome by coating the gold nanorods with silica MCM-41. The silicate covering can provide greater stability for gold nanorods and allow multifunctionality in treating different diseases through photohyperthermia. This work developed a specific chemical route through seed and growth solutions to synthesize gold nanorods with controlled particle size, rod morphology, and silica covering for photohyperthermia applications. The synthesized samples were characterized through a multi-technique approach that successfully demonstrated the presence of gold nanorods inside the silica coating, presenting high stability and desirable textural and morphological characteristics for bioapplications. Furthermore, silica-coated gold nanorods exhibit high biocompatibility and great performance in generating therapeutic heating by absorbing laser radiation in the biological window range, making the system developed in this work a promising agent in photohyperthermia.

摘要

金纳米颗粒由于其光学性质而被广泛研究用于生物医学应用。这些颗粒具有有趣的特性,即在激光辐射刺激下吸收光以产生加热。在合成金纳米颗粒的可能形态中,金纳米棒具有在光热疗过程中应用的极大兴趣的特性。由于其形态,金纳米棒可以吸收更长波长的光,包括电磁光谱的特定区域,例如生物窗口区域,其中激光辐射与组织的相互作用较小。然而,这些纳米颗粒在生物医学应用中存在局限性,例如低胶体和热稳定性,这可以通过用硅 MCM-41 涂覆金纳米棒来克服。硅酸盐覆盖物可以为金纳米棒提供更大的稳定性,并允许通过光热疗治疗不同的疾病实现多功能性。这项工作通过种子和生长溶液开发了一种特定的化学途径,以合成具有受控粒径、棒状形态和用于光热疗应用的硅覆盖层的金纳米棒。通过多技术方法对合成的样品进行了表征,成功地证明了硅涂层内部存在金纳米棒,表现出高稳定性和对生物应用所需的纹理和形态特征。此外,硅涂层金纳米棒表现出高生物相容性和在吸收生物窗口范围内的激光辐射以产生治疗性加热方面的出色性能,使这项工作中开发的系统成为光热疗中很有前途的试剂。

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