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Bioorganic & Medicinal Chemistry|March 7, 2020
Bifunctional small molecule-oligonucleotide hybrid as microRNA inhibitorUmesh Bhattarai, Wei-Che Hsieh, Hao Yan, et al.Current Gene Therapy|September 2, 2014
Single-stranded γPNAs for in vivo site-specific genome editing via Watson-Crick recognitionRaman Bahal, Elias Quijano, Nicole A McNeer, et al.Molecular Therapy. Nucleic Acids|December 17, 2017
Anti-tumor Activity of miniPEG-γ-Modified PNAs to Inhibit MicroRNA-210 for Cancer TherapyAnisha Gupta, Elias Quijano, Yanfeng Liu, et al.Journal of the American Chemical Society|May 3, 2012
Effect of backbone flexibility on charge transfer rates in peptide nucleic acid duplexesEmil Wierzbinski, Arnie de Leon, Xing Yin, et al.Biochemistry|March 22, 2018
Design of Bivalent Nucleic Acid Ligands for Recognition of RNA-Repeated Expansion Associated with Huntington's DiseaseShivaji A Thadke, J Dinithi R Perera, V M Hridya, et al.Proceedings of the National Academy of Sciences of the United States of America|January 9, 2026
A pothole-filling strategy for selective targeting of rCUG-repeats associated with myotonic dystrophy type 1J Dinithi R Perera, Shivaji A Thadke, Savani W Thrikawala, et al.ACS Chemical Biology|November 2, 2012
Antitumor effects of EGFR antisense guanidine-based peptide nucleic acids in cancer modelsSufi M Thomas, Bichismita Sahu, Srinivas Rapireddy, et al.Nature Communications|June 28, 2018
In utero nanoparticle delivery for site-specific genome editingAdele S Ricciardi, Raman Bahal, James S Farrelly, et al.Nature Communications|October 27, 2016
In vivo correction of anaemia in β-thalassemic mice by γPNA-mediated gene editing with nanoparticle deliveryRaman Bahal, Nicole Ali McNeer, Elias Quijano, et al.Nature|April 8, 2021
The NIH Somatic Cell Genome Editing programKrishanu Saha, Erik J Sontheimer, P J Brooks, et al.Pageof 5