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Decoration of gold nanoparticles with glycopeptides leads to a lower cellular uptake and liver retention

  • Mahmoud G. Soliman
  • , Jennifer Fernandez Alarcon
  • , Tanja Ursula Luedtke
  • , Martina B. Violatto
  • , Marko Dobricic
  • , Chiara Cordiglieri
  • , Alessandro Corbelli
  • , Fabio Fiordaliso
  • , Giovanni Sitia
  • , James S. O'Donnell
  • , Daniel I. R. Spencer
  • , Sergio Moya
  • , Paolo Bigini
  • , Marco P. Monopoli

Producción científica: Artículo en revista indizadaArtículorevisión exhaustiva

3 Citas (Scopus)

Resumen

Unspecific uptake by the liver is one of the main drawbacks of the translation of nanomaterials into clinics, preventing their delivery into diseased tissues. Here, we synthesized gold nanoparticles (GNPs) decorated with a sialic acid-displaying glycopeptide to enhance their specific targeting properties by reducing their uptake inside hepatic cells. We demonstrated the biocompatibility of the glycopeptide-coated GNPs with two different nanomaterial shapes (spherical and rod-like GNPs) and the targeting properties of the glycopeptide were retained in serum-free and protein-rich media. We found that the glycopeptide reduces nanomaterial interaction with hepatic cells by 1.96 times. In the liver, Kupffer cells (KCs) and liver sinusoidal endothelial cells (LSECs) were the only cells that interacted with the GNPs, increasing the expression of sialic acid-binding receptors such as Siglec-1. This work provides potential new strategies to overcome off-target nanomaterial accumulation by manipulating nanomaterial functionalisation with glycans to alter hepatic cell interactions.
Idioma originalInglés
Páginas (desde-hasta)5784-5798
Número de páginas15
PublicaciónNanoscale Advances
Volumen7
N.º18
Fecha en línea anticipadaago 2025
DOI
EstadoPublicada - 10 sept 2025
Publicado de forma externa

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