Molecular Pharmacology Program, Memorial Sloan Kettering Cancer Center, New York, NY 10065, USA.
Department of Chemistry and Biochemistry, The City College of New York, 1024 Marshak, 160 Convent Avenue, New York, New York 10031, USA.
Nanotheranostics. 2022 Jan 1;6(2):184-194. doi: 10.7150/ntno.65530. eCollection 2022.
The application of nanomaterials made of rare earth elements within biomedical sciences continues to make significant progress. The rare earth elements, also called the lanthanides, play an essential role in modern life through materials and electronics. As we learn more about their utility, function, and underlying physics, we can contemplate extending their applications to biomedicine. This particularly applies to diagnosis and radiation therapy due to their relatively unique features, such as an ultra-wide Stokes shift in the luminescence, variable magnetism and potentially tunable properties, due to the library of lanthanides available and their multivalent oxidation state chemistry. The ability to prepare nanomaterials of relatively smaller sizes has increased the likelihood of use . In this review, we summarize the different emerging applications of nanoparticles with rare earth elements as the host or doped elements for biomedical applications in the past three to four years, especially in the area of imaging and disease diagnosis. Researchers have made progress in utilizing surfactants and polymers to modify the surface of lanthanide nanoparticles to enhance biocompatibility. At the same time, specific antibodies and proteins can also be conjugated to these nanoparticles to increase targeting efficiency for specific tumor models. Finally, in the near-infrared II imaging window, lanthanide nanoparticles have been shown to exhibit extraordinary bright emission, which is an exciting development for image-guided surgery.
在生物医学科学中,基于稀土元素的纳米材料的应用持续取得显著进展。稀土元素,也被称为镧系元素,通过材料和电子在现代生活中发挥着重要作用。随着我们对它们的用途、功能和基础物理学的了解不断加深,我们可以考虑将它们的应用扩展到生物医学领域。这在诊断和放射治疗方面尤为适用,因为它们具有相对独特的特性,例如在发光方面具有超宽的斯托克斯位移、可变磁性以及由于可用的镧系元素库及其多价氧化态化学,潜在的可调性质。能够制备相对较小尺寸的纳米材料增加了它们的使用可能性。在这篇综述中,我们总结了过去三到四年中作为宿主或掺杂元素的稀土元素纳米颗粒在生物医学应用方面的不同新兴应用,特别是在成像和疾病诊断领域。研究人员在利用表面活性剂和聚合物来修饰镧系纳米颗粒的表面以提高生物相容性方面取得了进展。同时,也可以将特定的抗体和蛋白质连接到这些纳米颗粒上,以提高针对特定肿瘤模型的靶向效率。最后,在近红外 II 成像窗口中,镧系纳米颗粒表现出非凡的明亮发射,这是图像引导手术的一个令人兴奋的发展。