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Standardized Method to Functionalize Plasma-Extracellular Vesicles via Copper-Free Click Chemistry for Targeted Drug Delivery Strategies.
Ciferri, Maria Chiara; Bruno, Silvia; Rosenwasser, Nicole; Gorgun, Cansu; Reverberi, Daniele; Gagliani, Maria Cristina; Cortese, Katia; Grange, Cristina; Bussolati, Benedetta; Quarto, Rodolfo; Tasso, Roberta.
Afiliação
  • Ciferri MC; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Bruno S; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Rosenwasser N; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Gorgun C; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Reverberi D; UO Molecular Pathology, IRCCS Ospedale Policlinico San Martino, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Gagliani MC; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Cortese K; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Grange C; Department of Medical Sciences, University of Torino, Via Nizza 52, Torino 10126, Italy.
  • Bussolati B; UO Cellular Oncology, IRCCS Ospedale Policlinico San Martino, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Quarto R; Department of Experimental Medicine, University of Genova, Largo Rosanna Benzi 10, Genova 16132, Italy.
  • Tasso R; Department of Molecular Biotechnology and Health Sciences, University of Torino, Torino 10126, Italy.
ACS Appl Bio Mater ; 7(2): 827-838, 2024 02 19.
Article em En | MEDLINE | ID: mdl-38227342
ABSTRACT
Extracellular vesicles (EVs) have emerged as potential vehicles for targeted drug delivery and diagnostic applications. However, achieving consistent and reliable functionalization of EV membranes remains a challenge. Copper-catalyzed click chemistry, commonly used for EV surface modification, poses limitations due to cytotoxicity and interference with biological systems. To overcome these limitations, we developed a standardized method for functionalizing an EV membrane via copper-free click chemistry. EVs derived from plasma hold immense potential as diagnostic and therapeutic agents. However, the isolation and functionalization of EVs from such a complex biofluid represent considerable challenges. We compared three different EV isolation methods to obtain an EV suspension with an optimal purity/yield ratio, and we identified sucrose cushion ultracentrifugation (sUC) as the ideal protocol. We then optimized the reaction conditions to successfully functionalize the plasma-EV surface through a copper-free click chemistry strategy with a fluorescently labeled azide, used as a proof-of-principle molecule. Click-EVs maintained their identity, size, and, more importantly, capacity to be efficiently taken up by responder tumor cells. Moreover, once internalized, click EVs partially followed the endosomal recycling route. The optimized reaction conditions and characterization techniques presented in this study offer a foundation for future investigations and applications of functionalized EVs in drug delivery, diagnostics, and therapeutics.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Química Click / Vesículas Extracelulares Tipo de estudo: Guideline Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Química Click / Vesículas Extracelulares Tipo de estudo: Guideline Idioma: En Ano de publicação: 2024 Tipo de documento: Article