Area of research
Molecular Biology
Research interest
Research interests include Chemistry, DNA, Oligonucleotide, Nucleic acid, Computational biology, and Monomer.
Molecular basis of UV lesion binding and repair inhibition by ETS-family transcription factors
DNA-targeting Invader probes: discovery, principles and applications
Efficient and specific DNA-targeting using single-stranded LNA/MOE mixmers and chimeric Invader:XenoRNA probes
An electrophoretic mobility shift assay with chemiluminescent readout to evaluate DNA-targeting oligonucleotide-based probes
Conformation matters: siRNAs with antisense strands with 5′-(<i>E</i>)-vinyl-phosphonate-α-<scp>l</scp>-LNA elicit stronger RNAi-mediated gene silencing than those with 5′-(<i>E</i>)-vinyl-phosphonate-LNA
Recognition of mixed-sequence double-stranded DNA regions using chimeric Invader/LNA probes
Metabolomic Analysis of Barley by Gas Chromatography/Mass Spectrometry
Serine-γPNA, Invader probes, and chimeras thereof: three probe chemistries that enable sequence-unrestricted recognition of double-stranded DNA
Factors Impacting Invader-Mediated Recognition of Double-Stranded DNA
CTCF binding modulates UV damage formation to promote mutation hot spots in melanoma
Recognition of double-stranded DNA using LNA-modified toehold Invader probes
Nicked Invader probes: multistranded and sequence-unrestricted recognition of double-stranded DNA
Chimeric γPNA–Invader probes: using intercalator-functionalized oligonucleotides to enhance the DNA-targeting properties of γPNA
Impact of non-nucleotidic bulges on recognition of mixed-sequence dsDNA by pyrene-functionalized Invader probes
Head-to-head comparison of LNA, <sup>MP</sup>γPNA, INA and Invader probes targeting mixed-sequence double-stranded DNA
Recognition of mixed-sequence DNA targets using spermine-modified Invader probes
Synthesis and biophysical characterization of oligonucleotides modified with O2′-alkylated RNA monomers featuring substituted pyrene moieties
25 years and still going strong: 2′-<i>O</i>-(pyren-1-yl)methylribonucleotides – versatile building blocks for applications in molecular biology, diagnostics and materials science
Recognition of mixed-sequence DNA using double-stranded probes with interstrand zipper arrangements of O2′-triphenylene- and coronene-functionalized RNA monomers
Next-generation bis-locked nucleic acids with stacking linker and 2′-glycylamino-LNA show enhanced DNA invasion into supercoiled duplexes
Merging Two Strategies for Mixed-Sequence Recognition of Double-Stranded DNA: Pseudocomplementary Invader Probes
Efficient Discrimination of Single Nucleotide Polymorphisms (SNPs) Using Oligonucleotides Modified with C5‐Pyrene‐Functionalized DNA and Flanking Locked Nucleic Acid (LNA) Monomers
Invader probes: harnessing the energy of intercalation to facilitate recognition of chromosomal DNA for diagnostic applications
Bulged Invader probes: activated duplexes for mixed-sequence dsDNA recognition with improved thermodynamic and kinetic profiles
Increased duplex stabilization in porphyrin-LNA zipper arrays with structure dependent exciton coupling
Recognition of Double-Stranded DNA Using Energetically Activated Duplexes Modified with N2′-Pyrene-, Perylene-, or Coronene-Functionalized 2′-<i>N</i>-Methyl-2′-amino-DNA Monomers
Mixed-Sequence Recognition of Double-Stranded DNA Using Enzymatically Stable Phosphorothioate Invader Probes
Synthesis and characterization of oligodeoxyribonucleotides modified with 2′-thio-2′-deoxy-2′-S-(pyren-1-yl)methyluridine
Locked nucleic acid (LNA) induced effect on the hybridization and fluorescence properties of oligodeoxyribonucleotides modified with nucleobase-functionalized DNA monomers
Synthesis and Biophysical Properties of C5-Functionalized LNA (Locked Nucleic Acid)
Looking for a research collaborator?
Search millions of scientists by field, institution, impact, and funding status — see their work, find their email, and reach out directly.
Find collaborators in Molecular Biology →