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  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
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Development of a novel PTD-mediated IVT-mRNA delivery platform for potential protein replacement therapy of metabolic/genetic disorders

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Autor
Miliotou A.N., Pappas I.S., Spyroulias G., Vlachaki E., Tsiftsoglou A.S., Vizirianakis I.S., Papadopoulou L.C.
Datum
2021
Language
en
DOI
10.1016/j.omtn.2021.09.008
Schlagwort
cytochrome c oxidase
hemoglobin beta chain
messenger RNA
oxidoreductase
3' untranslated region
5' untranslated region
animal experiment
Article
beta thalassemia
bone marrow cell
cardiomyopathy
cloning
comparative study
conjugation
controlled study
cytochrome c oxidase deficiency
disorders of mitochondrial functions
encephalomyopathy
gene mutation
histochemistry
human
human cell
in vitro gene transfer
in vitro study
infant
K-562 cell line
mouse
mRNA expression level
nonhuman
nonviral gene delivery system
nuclear magnetic resonance spectroscopy
promoter region
protein domain
protein expression level
protein transduction domain
Cell Press
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Zusammenfassung
The potential clinical applications of the powerful in vitro-transcribed (IVT)-mRNAs, to restore defective protein functions, strongly depend on their successful intracellular delivery and transient translation through the development of safe and efficient delivery platforms. In this study, an innovative (international patent-pending) methodology was developed, combining the IVT-mRNAs with the protein transduction domain (PTD) technology, as an efficient delivery platform. Based on the PTD technology, which enables the intracellular delivery of various cargoes intracellularly, successful conjugation of a PTD to the IVT-mRNAs was achieved and evaluated by band-shift assay and NMR spectroscopy. In addition, the PTD-IVT-mRNAs were applied and evaluated in two protein-disease models, including the mitochondrial disorder fatal infantile cardioencephalomyopathy and cytochrome c oxidase (COX) deficiency (attributed to SCO2 gene mutations) and β-thalassemia. The PTD-IVT-mRNA of SCO2 was successfully transduced and translated to the corresponding Sco2 protein inside the primary fibroblasts of a SCO2/COX-deficient patient, whereas the PTD-IVT-mRNA of β-globin was transduced and translated in bone marrow cells, derived from three β-thalassemic patients. The transducibility and the structural stability of the PDT-IVT-mRNAs, in both cases, were confirmed at the RNA and protein levels. We propose that our novel delivery platform could be clinically applicable as a protein therapy for metabolic/genetic disorders. © 2021 The Authors
URI
http://hdl.handle.net/11615/76643
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  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19743]
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