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Engineering pH-Sensitive Stable Nanovesicles for Delivery of MicroRNA Therapeutics

Authors :
Ministerio de Educación, Cultura y Deporte (España)
Ministerio de Economía y Competitividad (España)
Ministerio de Ciencia, Innovación y Universidades (España)
Instituto de Salud Carlos III
Centro de Investigación Biomédica en Red Bioingeniería, Biomateriales y Nanomedicina (España)
Matem lo Bitxo
Asociación Española Contra el Cáncer
Generalitat de Catalunya
Boloix, Ariadna [0000-0002-1648-5589]
Köber, Mariana [0000-0001-9962-7900]
Soriano, Aroa [0000-0001-9659-1471]
Masanas, Marc [0000-0002-2249-8554]
Segovia, Nathaly [0000-0001-8814-6095]
Vargas Nadal, Guillem [0000-0003-4383-1325]
Merlo Mas, Josep [0000-0002-3698-6655]
Danino, Dganit [0000-0002-9782-4940]
Foradada, Laia [0000-0002-0589-4360]
Roma, Josep [0000-0001-7692-6123]
Toledo, Josep Sánchez de [0000-0002-1034-1920]
Gallego, Soledad [0000-0002-4712-9624]
Veciana, Jaume [0000-0003-1023-9923]
Albertazzi, Lorenzo [0000-0002-6837-0812]
Segura, Miguel F. [0000-0003-0916-3618]
Ventosa, Nora [0000-0002-8008-4974]
Boloix, Ariadna
Feiner-Gracia, Natalia
Köber, Mariana
Repetto, Javier
Pascarella, Rosa
Soriano, Aroa
Masanas, Marc
Segovia, Nathaly
Vargas Nadal, Guillem
Merlo Mas, Josep
Danino, Dganit
Abutbul-Ionita, Inbal
Foradada, Laia
Roma, Josep
Córdoba, Alba
Sala Vergés, Santiago
Toledo, Josep Sánchez de
Gallego, Soledad
Veciana, Jaume
Albertazzi, Lorenzo
Segura, Miguel F.
Ventosa, Nora
Ministerio de Educación, Cultura y Deporte (España)
Ministerio de Economía y Competitividad (España)
Ministerio de Ciencia, Innovación y Universidades (España)
Instituto de Salud Carlos III
Centro de Investigación Biomédica en Red Bioingeniería, Biomateriales y Nanomedicina (España)
Matem lo Bitxo
Asociación Española Contra el Cáncer
Generalitat de Catalunya
Boloix, Ariadna [0000-0002-1648-5589]
Köber, Mariana [0000-0001-9962-7900]
Soriano, Aroa [0000-0001-9659-1471]
Masanas, Marc [0000-0002-2249-8554]
Segovia, Nathaly [0000-0001-8814-6095]
Vargas Nadal, Guillem [0000-0003-4383-1325]
Merlo Mas, Josep [0000-0002-3698-6655]
Danino, Dganit [0000-0002-9782-4940]
Foradada, Laia [0000-0002-0589-4360]
Roma, Josep [0000-0001-7692-6123]
Toledo, Josep Sánchez de [0000-0002-1034-1920]
Gallego, Soledad [0000-0002-4712-9624]
Veciana, Jaume [0000-0003-1023-9923]
Albertazzi, Lorenzo [0000-0002-6837-0812]
Segura, Miguel F. [0000-0003-0916-3618]
Ventosa, Nora [0000-0002-8008-4974]
Boloix, Ariadna
Feiner-Gracia, Natalia
Köber, Mariana
Repetto, Javier
Pascarella, Rosa
Soriano, Aroa
Masanas, Marc
Segovia, Nathaly
Vargas Nadal, Guillem
Merlo Mas, Josep
Danino, Dganit
Abutbul-Ionita, Inbal
Foradada, Laia
Roma, Josep
Córdoba, Alba
Sala Vergés, Santiago
Toledo, Josep Sánchez de
Gallego, Soledad
Veciana, Jaume
Albertazzi, Lorenzo
Segura, Miguel F.
Ventosa, Nora
Publication Year :
2022

Abstract

MicroRNAs (miRNAs) are small non-coding endogenous RNAs, which are attracting a growing interest as therapeutic molecules due to their central role in major diseases. However, the transformation of these biomolecules into drugs is limited due to their unstability in the bloodstream, caused by nucleases abundantly present in the blood, and poor capacity to enter cells. The conjugation of miRNAs to nanoparticles (NPs) could be an effective strategy for their clinical delivery. Herein, the engineering of non-liposomal lipid nanovesicles, named quatsomes (QS), for the delivery of miRNAs and other small RNAs into the cytosol of tumor cells, triggering a tumor-suppressive response is reported. The engineered pH-sensitive nanovesicles have controlled structure (unilamellar), size (<150 nm) and composition. These nanovesicles are colloidal stable (>24 weeks), and are prepared by a green, GMP compliant, and scalable one-step procedure, which are all unavoidable requirements for the arrival to the clinical practice of NP based miRNA therapeutics. Furthermore, QS protect miRNAs from RNAses and when injected intravenously, deliver them into liver, lung, and neuroblastoma xenografts tumors. These stable nanovesicles with tunable pH sensitiveness constitute an attractive platform for the efficient delivery of miRNAs and other small RNAs with therapeutic activity and their exploitation in the clinics.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1306019585
Document Type :
Electronic Resource