Skip to Main Content (Press Enter)

Logo CNR
  • ×
  • Home
  • Persone
  • Pubblicazioni
  • Strutture
  • Competenze

UNI-FIND
Logo CNR

|

UNI-FIND

cnr.it
  • ×
  • Home
  • Persone
  • Pubblicazioni
  • Strutture
  • Competenze
  1. Pubblicazioni

Surface Phenomena Enhancing the Antibacterial and Osteogenic Ability of Nanocrystalline Hydroxyapatite, Activated by Multiple-Ion Doping

Articolo
Data di Pubblicazione:
2019
Abstract:
The present work describes a novel nano crystalline, multidoped hydroxyapatite featuring excellent eukaryotic versus prokaryotic cell selectivity, attested by excellent osteoinductive character and evaluated with human stem cells, and anti-infective ability, tested against different pathogens. Physicochemical analysis and transmission electron microscopy (TEM)/scanning STEM observations highlighted that such enhanced biological features are related to the lower crystallinity level and increased surface charge of hydroxyapatite, both induced by multiple-ion doping. Specifically, the lattice substitution of Ca2+ with Zn2+ promotes the segregation of Ca2+ and doping Mg2+ cations to a less-ordered surface layer, thus promoting dynamic ion absorption/release acting as bioactive signals for cells and exerting an antiproliferative effect on all tested pathogens. These findings open the design of new biodevices, combining regenerative ability and effective microbial inhibition without using any antibiotic drugs. This is extremely important to circumvent bacterial resistance to antibiotics, which is today considered as one of the biggest threats to global health.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
nanocrystalline apatites; ion exchange; zinc; magnesium; bone regeneration; antimicrobial effect
Elenco autori:
Preti, Lorenzo; Sprio, Simone; Panseri, Silvia; Montesi, Monica; Adamiano, Alessio; Tampieri, Anna
Autori di Ateneo:
ADAMIANO ALESSIO
MONTESI MONICA
PANSERI SILVIA
SPRIO SIMONE
TAMPIERI ANNA
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/366546
Pubblicato in:
ACS BIOMATERIALS SCIENCE & ENGINEERING
Journal
  • Utilizzo dei cookie

Realizzato con VIVO | Designed by Cineca | 26.5.0.0 | Sorgente dati: PREPROD (Ribaltamento disabilitato)