Computational design and experimental validation of oligonucleotide-sensing allosteric ribozymes R Penchovsky, RR Breaker Nature biotechnology 23 (11), 1424-1433, 2005 | 266 | 2005 |
DNA library design for molecular computation R Penchovsky, J Ackermann Journal of Computational Biology 10 (2), 215-229, 2003 | 128 | 2003 |
Riboswitch distribution, structure, and function in bacteria N Pavlova, D Kaloudas, R Penchovsky Gene 708, 38-48, 2019 | 118 | 2019 |
Designing drugs that overcome antibacterial resistance: where do we stand and what should we do? R Penchovsky, M Traykovska Expert opinion on drug discovery 10 (6), 631-650, 2015 | 97 | 2015 |
Development and application of a high-throughput assay for glmS riboswitch activators K Blount, I Puskarz, R Penchovsky, R Breaker RNA biology 3 (2), 77-81, 2006 | 91 | 2006 |
Phycoremediation of wastewater by microalgae: a review D Kaloudas, N Pavlova, R Penchovsky Environmental Chemistry Letters, 2021 | 64 | 2021 |
Riboswitch-based antibacterial drug discovery using high-throughput screening methods R Penchovsky, CC Stoilova Expert opinion on drug discovery 8 (1), 65-82, 2013 | 59 | 2013 |
Lignocellulose, algal biomass, biofuels and biohydrogen: a review D Kaloudas, N Pavlova, R Penchovsky Environmental Chemistry Letters, 2021 | 54 | 2021 |
Engineering integrated digital circuits with allosteric ribozymes for scaling up molecular computation and diagnostics R Penchovsky ACS Synthetic Biology 1 (10), 471-482, 2012 | 45 | 2012 |
Computational design of allosteric ribozymes as molecular biosensors R Penchovsky Biotechnology advances 32 (5), 1015-1027, 2014 | 42 | 2014 |
Genome-wide bioinformatics analysis of FMN, SAM-I, glmS, TPP, lysine, purine, cobalamin, and SAH riboswitches for their applications as allosteric antibacterial drug targets in … N Pavlova, R Penchovsky Expert opinion on therapeutic targets 23 (7), 631-643, 2019 | 38 | 2019 |
Computational design and biosensor applications of small molecule-sensing allosteric ribozymes R Penchovsky Biomacromolecules 14 (4), 1240-1249, 2013 | 35 | 2013 |
Environmental factors influencing the transmission of the coronavirus 2019: a review A Valsamatzi-Panagiotou, R Penchovsky Environmental Chemistry Letters, 2022 | 31 | 2022 |
Engineering Antisense Oligonucleotides as Antibacterial Agents That Target FMN Riboswitches and Inhibit the Growth of Staphylococcus aureus, Listeria monocytogenes, and … M Traykovska, R Penchovsky ACS Synthetic Biology, 2022 | 26 | 2022 |
End-specific covalent photo-dependent immobilisation of synthetic DNA to paramagnetic beads R Penchovsky, E Birch-Hirschfeld, JS McCaskill Nucleic Acids Research 28 (22), e98-e98, 2000 | 25 | 2000 |
Targeting glmS Ribozyme with Chimeric Antisense Oligonucleotides for Antibacterial Drug Development M Traykovska, K Popova, R Penchovsky ACS Synthetic Biology, 2021 | 23 | 2021 |
Computational selection and experimental validation of allosteric ribozymes that sense a specific sequence of human telomerase reverse transcriptase mRNAs as universal … R Penchovsky, GT Kostova Nucleic acid therapeutics 23 (6), 408-417, 2013 | 21 | 2013 |
Methods for prevention and constraint of antimicrobial resistance: a review A Valsamatzi-Panagiotou, KB Popova, R Penchovsky Environmental Chemistry Letters 19 (3), 2005-2012, 2021 | 17 | 2021 |
Programmable and automated bead-based microfluidics for versatile DNA microarrays under isothermal conditions R Penchovsky Lab on a Chip 13 (12), 2370-2380, 2013 | 17 | 2013 |
Targeting TPP Riboswitches Using Chimeric Antisense Oligonucleotide Technology for Antibacterial Drug Development M Traykovska, L Otcheva, R Penchovsky ACS Appl. Bio Mater, 2022 | 16 | 2022 |