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Smita Nahar
Smita Nahar
Adresse e-mail validée de fmi.ch
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In silico selection of an aptamer to estrogen receptor alpha using computational docking employing estrogen response elements as aptamer-alike molecules
R Ahirwar, S Nahar, S Aggarwal, S Ramachandran, S Maiti, P Nahar
Scientific reports 6 (1), 21285, 2016
1032016
Selective inhibition of miR-21 by phage display screened peptide
D Bose, S Nahar, MK Rai, A Ray, K Chakraborty, S Maiti
Nucleic acids research 43 (8), 4342-4352, 2015
562015
Nonconventional chemical inhibitors of microRNA: therapeutic scope
GG Jayaraj, S Nahar, S Maiti
Chemical communications 51 (5), 820-831, 2015
432015
Potent inhibition of miR-27a by neomycin–bisbenzimidazole conjugates
S Nahar, N Ranjan, A Ray, DP Arya, S Maiti
Chemical Science 6 (10), 5837-5846, 2015
412015
A G-quadruplex motif at the 3′ end of sgRNAs improves CRISPR–Cas9 based genome editing efficiency
S Nahar, P Sehgal, M Azhar, M Rai, A Singh, S Sivasubbu, D Chakraborty, ...
Chemical communications 54 (19), 2377-2380, 2018
282018
Enhanced and synergistic downregulation of oncogenic miRNAs by self-assembled branched DNA
S Nahar, AK Nayak, A Ghosh, U Subudhi, S Maiti
Nanoscale 10 (1), 195-202, 2018
242018
Anti-cancer therapeutic potential of quinazoline based small molecules via global upregulation of miRNAs
Nahar S, Bose D, Kumar Panja S, Saha S
Chemical communications 50 (35), 4639-4642, 2014
232014
Targeting miRNA by tunable small molecule binders: peptidic aminosugar mediated interference in miR-21 biogenesis reverts epithelial to mesenchymal transition
A Ghosh, N Degyatoreva, C Kukielski, S Story, S Bhaduri, K Maiti, ...
MedChemComm 9 (7), 1147-1154, 2018
212018
A pH sensitive high-throughput assay for miRNA binding of a peptide-aminoglycoside (PA) library
D Watkins, L Jiang, S Nahar, S Maiti, DP Arya
PLoS One 10 (12), e0144251, 2015
202015
A specific type of Argonaute phosphorylation regulates binding to microRNAs during C. elegans development
MQ Huberdeau, VN Shah, S Nahar, J Neumeier, F Houle, A Bruckmann, ...
Cell reports 41 (11), 2022
122022
Systematic evaluation of biophysical and functional characteristics of selenomethylene-locked nucleic acid-mediated inhibition of miR-21
S Nahar, A Singh, K Morihiro, Y Moai, T Kodama, S Obika, S Maiti
Biochemistry 55 (50), 7023-7032, 2016
122016
Inhibition of miR-21 by 3′/5′-Serinyl-Capped 2′-O-Methyl RNA Interspersed with 2′-O-(2-Amino-3-Methoxypropyl) Uridine Units
S Nahar, V Kotikam, VA Kumar, S Maiti
nucleic acid therapeutics 26 (5), 327-334, 2016
122016
C. elegans molting requires rhythmic accumulation of the Grainyhead/LSF transcription factor GRH‐1
MWM Meeuse, YP Hauser, S Nahar, AAT Smith, K Braun, C Azzi, ...
The EMBO Journal 42 (4), e111895, 2023
102023
β, γ-Bis-substituted PNA with configurational and conformational switch: Preferred binding to CDNA/RNA and cell-uptake studies
T Bose, A Banerjee, S Nahar, S Maiti, VA Kumar
Chemical communications 51 (36), 7693-7696, 2015
62015
Cyclic cationic peptides containing sugar amino acids selectively distinguishes and inhibits maturation of pre-miRNAs of the same family
S Nahar, D Bose, S Pal, TK Chakraborty, S Maiti
nucleic acid therapeutics 25 (6), 323-329, 2015
42015
The Grainyhead/LSF transcription factor GRH-1 is rhythmically required for molting
MWM Meeuse, S Nahar, K Braun, H Großhans
bioRxiv, 2022.03. 01.482504, 2022
22022
Inhibition of miR-21 by 3 [variant prime]/5 [variant prime]-Serinyl-Capped 2 [variant prime]-O-Methyl RNA Interspersed with 2 [variant prime]-O-(2-Amino-3-Methoxypropyl …
S Nahar, V Kotikam, VA Kumar, S Maiti
Nucleic Acid Therapeutics 26 (5), 327, 2016
12016
Dynamics of miRNA accumulation during C. elegans larval development
S Nahar, LJ Morales Moya, J Brunner, GJ Hendriks, B Towbin, YP Hauser, ...
Nucleic acids research, gkae115, 2024
2024
Epigenetics: Use of C: elegans to Examine How a Glucose Diet Impacts Transgenerational Phenotypes.
MA Ruiz, S Nahar, PA Padilla
MOLECULAR BIOLOGY OF THE CELL 29 (26), 2018
2018
2′/3′/5′-(R/S)-serinyl functionalized oligonucleotides
VA Kumar, V Kotikam, S Maiti, S Nahar
US Patent 9,920,319, 2018
2018
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