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Charge neutralized poly(ß-amino ester) polyplex nanoparticles for delivery of self-amplifying RNA.
Dastgerdi, Nazgol Karimi; Gumus, Nurcan; Bayraktutan, Hulya; Jackson, Darryl; Polra, Krunal; McKay, Paul F; Atyabi, Fatemeh; Dinarvand, Rassoul; Shattock, Robin J; Martinez-Pomares, Luisa; Gurnani, Pratik; Alexander, Cameron.
Affiliation
  • Dastgerdi NK; Division of Molecular Therapeutics and Formulation, School of Pharmacy, University of Nottingham NG7 2RD UK cameron.alexander@nottingham.ac.uk.
  • Gumus N; Department of Pharmaceutical Nanotechnology, School of Pharmacy, Tehran University of Medical Sciences Tehran Iran.
  • Bayraktutan H; Division of Molecular Therapeutics and Formulation, School of Pharmacy, University of Nottingham NG7 2RD UK cameron.alexander@nottingham.ac.uk.
  • Jackson D; Division of Molecular Therapeutics and Formulation, School of Pharmacy, University of Nottingham NG7 2RD UK cameron.alexander@nottingham.ac.uk.
  • Polra K; School of Life Sciences, Faculty of Medicine & Health Sciences, University of Nottingham NG7 2RD UK.
  • McKay PF; Department of Infectious Diseases, Section of Immunology of Infection, Imperial College London Norfolk Place London W21PG UK.
  • Atyabi F; Department of Infectious Diseases, Section of Immunology of Infection, Imperial College London Norfolk Place London W21PG UK.
  • Dinarvand R; Department of Pharmaceutical Nanotechnology, School of Pharmacy, Tehran University of Medical Sciences Tehran Iran.
  • Shattock RJ; Department of Pharmaceutical Nanotechnology, School of Pharmacy, Tehran University of Medical Sciences Tehran Iran.
  • Martinez-Pomares L; Nanotechnology Research Centre, Faculty of Pharmacy, Tehran University of Medical Sciences Tehran 1417614315 Iran.
  • Gurnani P; Department of Infectious Diseases, Section of Immunology of Infection, Imperial College London Norfolk Place London W21PG UK.
  • Alexander C; School of Life Sciences, Faculty of Medicine & Health Sciences, University of Nottingham NG7 2RD UK.
Nanoscale Adv ; 6(5): 1409-1422, 2024 Feb 27.
Article in En | MEDLINE | ID: mdl-38419881
ABSTRACT
Therapeutic self-amplifying RNA (saRNA) is a promising approach for disease treatment, as it can be administered in lower doses than messenger RNA (mRNA) to achieve comparable protein production levels. However, saRNA requires an appropriate delivery vehicle to protect it during transit and facilitate its transfection. A widely-adopted approach has been to use polycations to condense these large anionic macromolecules into polyplex nanoparticles, however their high charge density often elicits cytotoxic effects. In this study we postulated that we could improve the potency and tolerability of such delivery vehicles by co-formulating poly(ß-amino ester)s saRNA polyplexes with a non-toxic anionic polymer, γ-polyglutamic acid (γ-PGA) to neutralize partially this positive charge. Accordingly, we prepared a poly(ß-amino ester) from 1,6-hexanedioldiacrylate (HDDA) and 4-aminobutanol (ABOL) and initially evaluated the physicochemical properties of the binary polyplexes (i.e. formed from polymer and saRNA only). Optimised binary polyplex formulations were then taken forward for preparation of ternary complexes containing pHDDA-ABOL, saRNA and γ-PGA. Our findings demonstrate that γ-PGA integration into polyplexes significantly enhanced transfection efficacy in HEK293T and A431 cells without affecting polyplex size. Notably, γ-PGA incorporation leads to a pronounced reduction in zeta potential, which reduced the toxicity of the ternary complexes in moDC, NIH3T3, and A431 cells. Furthermore, the presence of γ-PGA contributed to colloidal stability, reducing aggregation of the ternary complexes, as evidenced by insignificant changes in polydispersity index (PDI) after freeze-thaw cycles. Overall, these results suggest that incorporating the appropriate ratio of a polyanion such as γ-PGA with polycations in RNA delivery formulations is a promising way to improve the in vitro delivery of saRNA.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Adv Year: 2024 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Nanoscale Adv Year: 2024 Document type: Article