We have developed new dynamic amphiphilic peptides for the intracellular delivery of different nucleic acids and nucleases for genetic edition. These discoveries have gone beyond the state of the art as they have generated new kind of penetrating peptide vehicles with the capacity of delivering new cargos with potential therapeutic interest.1-5 For instance we have demonstrated, for the first time, the delivery of Cas9 using a penetrating peptide in a full supramolecular strategy using a penetrating peptide vehicle.3 We have extended this methodology to incorporate targeting ligands for enhanced cytosolic release and reduced toxicity.6 We have prepared the first polyhydrazides scaffolds to anchor different pendant tails to prepare in situ different amphiphlic polymers to screen for the delivery of nucleic acids (siRNA and plasmid DNA)4,5 across a consistent degree of polymerization. We have also advanced in the synthesis and characterization of novel fluorescent probes for the study of the internalization pathway. We are also now trying to reach a higher level of risk by approaching the delivery of new challenging cargos such as therapeutic antibodies and by the design of new protein nanoparticles for anticancer vaccines. We have also recently started a project to quantify the amount delivered and to simultaneously track it with spatiotemporal resolution.
(1) Aqueous Synthesis and in-Situ Rapid Screening of Amphiphilic Polymers; Priority Date: 17 December 2015; Priority Application Number: ES201531831; Int: WO 2017/102894 A1; US 16/062,536; European EP 16822404.6.
(2) Louzao, I.; García-Fandiño, R. G. X. A.-F. X.; Montenegro, J. Hydrazone-Modulated Peptides for Efficient Gene Transfection. J. Mat. Chem. B 2017, 5 (23), 4426.
(3) Lostalé-Seijo, I.; Louzao, I.; Juanes, M.; Montenegro, J. Peptide/Cas9 Nanostructures for Ribonucleoprotein Cell Membrane Transport and Gene Edition. Chem. Sci. 2017, 8 (12), 7923.
(4) Priegue, J. M.; Crisan, D. N.; Martínez-Costas, J.; Granja, J. R.; Fernandez-Trillo, F.; Montenegro, J. In Situ Functionalized Polymers for siRNA Delivery. Angew. Chem. Int. Ed. 2016, 55 (26), 7492.
(5) Priegue, J. M.; Lostalé-Seijo, I.; Crisan, D.; Granja, J. R.; Fernandez-Trillo, F.; Montenegro, J. Different-Length Hydrazone Activated Polymers for Plasmid DNA Condensation and Cellular Transfection. Biomacromolecules 2018, 19 (7), 2638.
(6) Cell Penetrating Peptides; Priority Date: April 2018; Priority Application Number EP18382216.8. Not Published.
(7) Pazo, M.; Fernández-Caro, H.; Priegue, J. M.; Lostalé-Seijo, I.; Montenegro, J. Tuning the Properties of Penetrating Peptides by Oxime Conjugation. Synlett 2017, 28, 924.
(8) Juanes, M.; Lostalé-Seijo, I.; Granja, J. R.; Montenegro, J. Supramolecular Recognition and Selective Protein Uptake by Peptide Hybrids. Chem. Eur. J. 2018, 24 (42), 10689.
(9) Reina, J.; Rioboo, A.; Montenegro, J. Glycosyl Aldehydes: New Scaffolds for the Synthesis of Neoglycoconjugates via Bioorthogonal Oxime Bond Formation. Synthesis 2018, 50 (04), 831.
(10) Pazo, M.; Juanes, M.; Lostalé-Seijo, I.; Montenegro, J. Oligoalanine Helical Callipers for Cell Penetration. Chem. Commun. 2018, 54 (50), 6919.