Moyano Rodríguez Edelweiss, Gomez-Mendoza Miguel, Pérez-Ruiz Raúl, Peñín Beatriz, Sampedro Diego, Caamaño Antonio, de la Peña O'Shea Víctor A
Signal Theory and Communications and Telematic System and Computing, Rey Juan Carlos University, Cam/del Molino 5, 28942 Madrid, Spain.
Photoactivated Processes Unit, IMDEA Energy Institute, C/Ramón de la Sagra, 3, 28935 Madrid, Spain.
Biomedicines. 2021 Dec 20;9(12):1953. doi: 10.3390/biomedicines9121953.
Up-Conversion materials have received great attention in drug delivery applications in recent years. A specifically emerging field includes the development of strategies focusing on photon processes that promote the development of novel platforms for the efficient transport and the controlled release of drug molecules in the harsh microenvironment. Here, modified reaction time, thermal treatment, and pH conditions were controlled in the synthesis of NaYF:Yb,Tm up-converted (UC) material to improve its photoluminescence properties. The best blue-emission performance was achieved for the UC3 sample prepared through 24 h-synthesis without thermal treatment at a pH of 5, which promotes the presence of the β-phase and smaller particle size. NaYF:Yb,Tm has resulted in a highly efficient blue emitter material for light-driven drug release under near-IR wavelength. Thus, NaYF:Yb,Tm up-converted material promotes the N-O bond cleavage of the oxime ester of Ciprofloxacin (prodrug) as a highly efficient photosensitized drug delivery process. HPLC chromatography and transient absorption spectroscopy measurements were performed to evaluate the drug release conversion rate. UC3 has resulted in a very stable and easily recovered material that can be used in several reaction cycles. This straightforward methodology can be extended to other drugs containing photoactive chromophores and is present as an alternative for drug release systems.
近年来,上转换材料在药物递送应用中受到了广泛关注。一个特别新兴的领域包括开发专注于光子过程的策略,这些策略促进了在恶劣微环境中高效运输和控制药物分子释放的新型平台的发展。在此,在NaYF:Yb,Tm上转换(UC)材料的合成过程中控制了改性反应时间、热处理和pH条件,以改善其光致发光性能。对于在pH为5的条件下未经热处理合成24小时制备的UC3样品,实现了最佳的蓝光发射性能,这促进了β相的存在和更小的粒径。NaYF:Yb,Tm已成为一种用于近红外波长下光驱动药物释放的高效蓝光发射材料。因此,NaYF:Yb,Tm上转换材料促进了环丙沙星肟酯(前药)的N-O键断裂,作为一种高效的光敏药物递送过程。进行了HPLC色谱分析和瞬态吸收光谱测量以评估药物释放转化率。UC3已成为一种非常稳定且易于回收的材料,可用于多个反应循环。这种直接的方法可以扩展到其他含有光活性发色团的药物,并且是药物释放系统的一种替代方案。