Iglesias-Mejuto Ana, Lamy-Mendes Alyne, Pina João, Costa Benilde F O, García-González Carlos A, Durães Luisa
AerogelsLab, I + D Farma Group (GI-1645), Department of Pharmacology, Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, iMATUS and Health Research Institute of Santiago de Compostela (IDIS), Universidade de Santiago de Compostela, E-15782 Santiago de Compostela, Spain.
University of Coimbra, CIEPQPF-Centro de Investigação em Engenharia dos Processos Químicos e Produtos da Floresta, Department of Chemical Engineering, 3030-790 Coimbra, Portugal.
Gels. 2023 Dec 22;10(1):13. doi: 10.3390/gels10010013.
Upconversion nanoparticles (UCNPs) are under consideration for their use as bioimaging probes with enhanced optical performance for real time follow-up under non-invasive conditions. Photostable and core-shell NaYF:Yb, Er-SiO UCNPs obtained by a novel and simple co-precipitation method from lanthanide nitrates or oxides were herein synthesized for the first time. The sol-gel Stöber method followed by oven or supercritical gel drying was used to confer biocompatible surface properties to UCNPs by the formation of an ultrathin silica coating. Upconversion (UC) spectra were studied to evaluate the fluorescence of UCNPs upon red/near infrared (NIR) irradiation. ζ-potential measurements, TEM analyses, XRD patterns and long-term physicochemical stability were also assessed and confirmed that the UCNPs co-precipitation synthesis is a shape- and phase-controlling approach. The bio- and hemocompatibility of the UCNPs formulation with the highest fluorescence intensity was evaluated with murine fibroblasts and human blood, respectively, and provided excellent results that endorse the efficacy of the silica gel coating. The herein synthesized UCNPs can be regarded as efficient fluorescent probes for bioimaging purposes with the high luminescence, physicochemical stability and biocompatibility required for biomedical applications.
上转换纳米颗粒(UCNPs)正被考虑用作生物成像探针,其具有增强的光学性能,可在非侵入性条件下进行实时跟踪。本文首次通过一种新颖且简单的共沉淀法,从镧系硝酸盐或氧化物中合成了具有光稳定性的核壳结构NaYF:Yb, Er-SiO UCNPs。采用溶胶-凝胶Stöber法,随后通过烘箱干燥或超临界凝胶干燥,通过形成超薄二氧化硅涂层赋予UCNPs生物相容性表面性质。研究了上转换(UC)光谱,以评估UCNPs在红色/近红外(NIR)照射下的荧光。还进行了ζ电位测量、透射电子显微镜(TEM)分析、X射线衍射(XRD)图谱分析以及长期物理化学稳定性评估,证实了UCNPs共沉淀合成是一种形状和相控制方法。分别用小鼠成纤维细胞和人血评估了具有最高荧光强度的UCNPs制剂的生物相容性和血液相容性,结果优异,证明了硅胶涂层的有效性。本文合成的UCNPs可被视为用于生物成像目的的高效荧光探针,具有生物医学应用所需的高发光性、物理化学稳定性和生物相容性。