Modulation of macrophage plasticity is emerging as a successful strategy in tissue engineering (TE) to control the immune response elicited by the implanted material. Indeed, one major determinant of success in regenerating tissues and organs is to achieve the correct balance between immune pro-inflammatory and pro-resolution players. In recent years, nanoparticle-mediated macrophage polarization towards the pro- or anti-inflammatory subtypes is gaining increasing interest in the biomedical field. In TE, despite significant progress in the use of nanomaterials, the full potential of nanoparticles as effective immunomodulators has not yet been completely realized. This work discusses the contribution that nanotechnology gives to TE applications, helping native or synthetic scaffolds to direct macrophage polarization; here, three bioactive metallic and ceramic nanoparticles (gold, titanium oxide, and cerium oxide nanoparticles) are proposed as potential valuable tools to trigger skeletal muscle regeneration.

Corsi, F., Carotenuto, F., Di Nardo, P., Teodori, L. (2020). Harnessing inorganic nanoparticles to direct macrophage polarization for skeletal muscle regeneration. NANOMATERIALS, 10(10) [10.3390/nano10101963].

Harnessing inorganic nanoparticles to direct macrophage polarization for skeletal muscle regeneration

Corsi, F.;Carotenuto, F.;Di Nardo, P.;
2020-10-02

Abstract

Modulation of macrophage plasticity is emerging as a successful strategy in tissue engineering (TE) to control the immune response elicited by the implanted material. Indeed, one major determinant of success in regenerating tissues and organs is to achieve the correct balance between immune pro-inflammatory and pro-resolution players. In recent years, nanoparticle-mediated macrophage polarization towards the pro- or anti-inflammatory subtypes is gaining increasing interest in the biomedical field. In TE, despite significant progress in the use of nanomaterials, the full potential of nanoparticles as effective immunomodulators has not yet been completely realized. This work discusses the contribution that nanotechnology gives to TE applications, helping native or synthetic scaffolds to direct macrophage polarization; here, three bioactive metallic and ceramic nanoparticles (gold, titanium oxide, and cerium oxide nanoparticles) are proposed as potential valuable tools to trigger skeletal muscle regeneration.
2-ott-2020
Pubblicato
Rilevanza internazionale
Review
Esperti anonimi
Settore MED/50 - SCIENZE TECNICHE MEDICHE APPLICATE
Settore MEDS-26/D - Scienze tecniche mediche e chirurgiche avanzate
English
Con Impact Factor ISI
immunomodulation
macrophage plasticity
nanotechnology
skeletal muscle regeneration
tissue engineering
Corsi, F., Carotenuto, F., Di Nardo, P., Teodori, L. (2020). Harnessing inorganic nanoparticles to direct macrophage polarization for skeletal muscle regeneration. NANOMATERIALS, 10(10) [10.3390/nano10101963].
Corsi, F; Carotenuto, F; Di Nardo, P; Teodori, L
Articolo su rivista
File in questo prodotto:
File Dimensione Formato  
Corsi Carotenuto_Nanopartcles_2020.pdf

accesso aperto

Tipologia: Versione Editoriale (PDF)
Licenza: Creative commons
Dimensione 1.12 MB
Formato Adobe PDF
1.12 MB Adobe PDF Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/283352
Citazioni
  • ???jsp.display-item.citation.pmc??? 5
  • Scopus 10
  • ???jsp.display-item.citation.isi??? 9
social impact