Artículo
Bi-coloured enhanced luminescence imaging by targeted switch on/off laser MEF coupling for synthetic biosensing of nanostructured human serum albumin
Gomez Palacios, Luna R.; Martinez, Sofia Mickaela
; Tettamanti, Cecilia Soledad
; Inda, Ayelén
; Quinteros, Daniela Alejandra
; Bracamonte, Angel Guillermo
Fecha de publicación:
10/2023
Editorial:
Springer
Revista:
Photochemical and Photobiological Sciences
e-ISSN:
1474-9092
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
In this communication Luminescent Bioconjugated Human Serum Albumin Nanostructures (HSA NPs) with tiny Ultraluminescent gold Core-shell Silica Nanoparticles (Au@SiO2-Fl) were designed with Enhanced Bi-coloured Luminescence properties. The HSA NPs were obtained from Human Serum Albumin free (HSA free) through the desolvation method, and Au@SiO2–Fl, through modified Turkevich and Störber methods. In this manner, porous HSA Nanostructures of 150.0-200 nm and Au@SiO2–Fl 45.0 nm final diameters were obtained. Both methodologies and structures were conjugated to obtain modified Nanocomposites based on tiny gold Cores of 15 nm surrounded with well spatial Nanostructured architectures of HSA (d15 Au@SiO2–Fl-HSA) that generated variable Nanopatterns depending on the modified methodology of synthesis applied within colloidal dispersions. Therefore, three methodologies of non-covalent conjugation were developed. In optimal conditions, through Transmission Electronic Microscopy (TEM), well resolved Multilayered Nano-architectures with a size 190.0-200 nm in average with variable contrast depending of the focused Nanomaterial within the Nanocomposite were shown. Optimized Nanoarchitecture was based on a template tiny gold Core-shell surrounded by Nanostructured HSA NPs (d15 Au@SiO2–Fl-HSA). In this manner, the NanoImaging generated by Laser Fluorescence Microscopy permitted to record improved Optical properties and functionalities, such as: i) Enhanced Ultraluminescent d15 Au@SiO2–Fl-HSA composites in comparison to individual components based on Metal Enhanced Fluorescence (MEF); ii) diminished photobleaching; iii) higher dispersibility; iv) higher resolution of single bright Nano-emitters of 210.0 nm sizes; and v) Enhanced Bi-coloured Bio-MEF coupling with potential non-classical Light delivery towards other non-Optical active Biostructures for varied applications. The characterization of these Nanocomposites allowed the comparison, evaluation and discussion focused on new properties generated and functionalities based on the incorporation of different types of tuneable materials. In this context, the Biocompatibility, Cargo confined spaces, protein based materials, Optical transparent could be highlighted, as well as Optical active materials. Thus, the potential applications of Nanotechnology to both Nanomedicine and Nano-pharmaceutics were discussed.
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Colecciones
Articulos(INFIQC)
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Articulos de INST.DE INVESTIGACIONES EN FISICO- QUIMICA DE CORDOBA
Articulos(UNITEFA)
Articulos de UNIDAD DE INVESTIGACION Y DESARROLLO EN TECNOLOGIA FARMACEUTICA
Articulos de UNIDAD DE INVESTIGACION Y DESARROLLO EN TECNOLOGIA FARMACEUTICA
Citación
Gomez Palacios, Luna R.; Martinez, Sofia Mickaela; Tettamanti, Cecilia Soledad; Inda, Ayelén; Quinteros, Daniela Alejandra; et al.; Bi-coloured enhanced luminescence imaging by targeted switch on/off laser MEF coupling for synthetic biosensing of nanostructured human serum albumin; Springer; Photochemical and Photobiological Sciences; 10; 10-2023; 1-24
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