Bioinspired negatively charged calcium phosphate nanocarriers for cardiac delivery of MicroRNAs

Author:

Di Mauro Vittoria12,Iafisco Michele3,Salvarani Nicolò12,Vacchiano Marco1,Carullo Pierluigi12,Ramírez-Rodríguez Gloria Belén3,Patrício Tatiana3,Tampieri Anna3,Miragoli Michele12,Catalucci Daniele12

Affiliation:

1. National Research Council (CNR), Institute of Genetics & Biomedical Research, Milan Unit, Milan 20138, Italy

2. Humanitas Clinical & Research Center, Rozzano (MI) 20089, Italy

3. National Research Council (CNR), Institute of Science & Technology for Ceramics (ISTEC) 48018 Faenza (RA), Italy

Abstract

Aim: To develop biocompatible and bioresorbable negatively charged calcium phosphate nanoparticles (CaP-NPs) as an innovative therapeutic system for the delivery of bioactive molecules to the heart. Materials & methods: CaP-NPs were synthesized via a straightforward one-pot biomineralization-inspired protocol employing citrate as a stabilizing agent and regulator of crystal growth. CaP-NPs were administered to cardiac cells in vitro and effects of treatments were assessed. CaP-NPs were administered in vivo and delivery of microRNAs was evaluated. Results: CaP-NPs efficiently internalized into cardiomyocytes without promoting toxicity or interfering with any functional properties. CaP-NPs successfully encapsulated synthetic microRNAs, which were efficiently delivered into cardiac cells in vitro and in vivo. Conclusion: CaP-NPs are a safe and efficient drug-delivery system for potential therapeutic treatments of polarized cells such as cardiomyocytes.

Publisher

Future Medicine Ltd

Subject

Development,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering

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