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Nanostructuring Lipophilic Dyes in Water Using Stable Vesicles,Quatsomes, as Scaffolds and Their Use as Probes for Bioimaging
Authors:Antonio Ardizzone  Siarhei Kurhuzenkau  Sílvia Illa‐Tuset  Jordi Faraudo  Mykhailo Bondar  David Hagan  Eric W. Van Stryland  Anna Painelli  Cristina Sissa  Natalia Feiner  Lorenzo Albertazzi  Jaume Veciana  Nora Ventosa
Affiliation:1. Institut Ciencia Materials Barcelona (ICMAB‐CSIC)‐CIBER‐BBN, Campus Universitari de Bellaterra, Cerdanyola, Spain;2. Dipartimento di Scienze Chimiche, della Vita e della Sostenibilità Ambientale, Università di Parma, Parma, Italy;3. Theoretical Sciences Unit, JNCASR, Bangalore, India;4. Institute of Physics, National Academy of Sciences of Ukraine, Kyiv, Ukraine;5. The College of Optics and Photonics (CREOL), University of Central Florida, Orlando, FL, USA;6. Institute for Bioengineering of Catalonia (IBEC), Parc Cientìfic de Barcelona (PCB), Barcelona, Spain
Abstract:A new kind of fluorescent organic nanoparticles (FONs) is obtained using quatsomes (QSs), a family of nanovesicles proposed as scaffolds for the nanostructuration of commercial lipophilic carbocyanines (1,1′‐dioctadecyl‐3,3,3′,3′‐tetramethyl‐indocarbocyanine perchlorate (DiI), 1,1′‐dioctadecyl‐3,3,3′,3′‐tetramethyl‐indodicarbocyanine perchlorate (DiD), and 1,1′‐dioctadecyl‐3,3,3′,3′‐tetramethyl‐indotricarbocyanine iodide (DiR)) in aqueous media. The obtained FONs, prepared by a CO2‐based technology, show excellent colloidal‐ and photostability, outperforming other nanoformulations of the dyes, and improve the optical properties of the fluorophores in water. Molecular dynamics simulations provide an atomistic picture of the disposition of the dyes within the membrane. The potential of QSs for biological imaging is demonstrated by performing superresolution microscopy of the DiI‐loaded vesicles in vitro and in cells. Therefore, fluorescent QSs constitute an appealing nanomaterial for bioimaging applications.
Keywords:dyes  fluorescent nanoparticles  molecular dynamics  STORM  vesicles
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