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Hybrid Polyelectrolyte Nanocomplexes for Non-Viral Gene Delivery with Favorable Efficacy and Safety Profile

Articolo
Data di Pubblicazione:
2022
Citazione:
Hybrid Polyelectrolyte Nanocomplexes for Non-Viral Gene Delivery with Favorable Efficacy and Safety Profile / G. Maiorano, C. Guido, A. Russo, A. Giglio, L. Rizzello, M. Testini, B. Cortese, S. D’Amone, G. Gigli, I.E. Palamà. - In: PHARMACEUTICS. - ISSN 1999-4923. - 14:7(2022 Jun 21), pp. 1310.1-1310.17. [10.3390/pharmaceutics14071310]
Abstract:
The development of nanovectors for precise gene therapy is increasingly focusing on avoiding uncontrolled inflammation while still being able to effectively act on the target sites. Herein, we explore the use of non-viral hybrid polyelectrolyte nanocomplexes (hPECs) for gene delivery, which display good transfection efficacy coupled with non-inflammatory properties. Monodisperse hPECs were produced through a layer-by-layer self-assembling of biocompatible and biodegradable polymers. The resulting nanocomplexes had an inner core characterized by an EGFP-encoding plasmid DNA (pDNA) complexed with linear polyethyleneimine or protamine (PEI or PRM) stabilized with lecithin and poly(vinyl alcohol) (PVA) and an outer layer consisting of medium-molecular-weight chitosan (CH) combined with tripolyphosphate (TPP). PEI- and PRM-hPECs were able to efficiently protect the genetic cargo from nucleases and to perform a stimuli-responsive release of pDNA overtime, thus guaranteeing optimal transfection efficiency. Importantly, hPECs revealed a highly cytocompatible and a non-inflammatory profile in vitro. These results were further supported by evidence of the weak and unspecific interactions of serum proteins with both hPECs, thus confirming the antifouling properties of their outer shell. Therefore, these hPECs represent promising candidates for the development of effective, safe nanotools for gene delivery.
Tipologia IRIS:
01 - Articolo su periodico
Keywords:
hybrid nanovector; non-viral gene delivery; safety profile;
Elenco autori:
G. Maiorano, C. Guido, A. Russo, A. Giglio, L. Rizzello, M. Testini, B. Cortese, S. D’Amone, G. Gigli, I.E. Palamà
Autori di Ateneo:
RIZZELLO LORIS ( autore )
Link alla scheda completa:
https://air.unimi.it/handle/2434/932179
Link al Full Text:
https://air.unimi.it/retrieve/handle/2434/932179/2046200/pharmaceutics-14-01310-v2.pdf
Progetto:
Pandemics Outbreaks Rationalized: towards a universal therapy to eliminate intracellular pathogens and drug resistance (PANDORA)
  • Aree Di Ricerca

Aree Di Ricerca

Settori (4)


Settore BIO/13 - Biologia Applicata

Settore BIO/14 - Farmacologia

Settore CHIM/08 - Chimica Farmaceutica

Settore CHIM/09 - Farmaceutico Tecnologico Applicativo
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