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Adina Cimpanu

Showing results (1-10 of 5) with videos related to

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Nano Letters|June 27, 2025
Asymmetric Nanopore Sensing Enables Single-Molecule Identification of Nucleobases in Minimalist Peptide Nucleic AcidsAdina Cimpanu, Jonggwan Park, Loredana Mereuta, et al.
Nano Letters|February 2, 2026
Nanopore-Based, Real-Time Single-Molecule Probing of i-Motif Structural Dynamics and Targeted PNA DisruptionAdina Cimpanu, Jonggwan Park, Loredana Mereuta, et al.
Analytical Chemistry|February 28, 2025
Vectorial Discrimination of Small Molecules with a Macrocycle Adaptor-Protein Nanopore System and Nanocavity-Dependent, pH Gradient-Controlled Analyte KineticsLoredana Mereuta, Adina Cimpanu, Jonggwan Park, et al.
Small Methods|May 8, 2026
Single-Molecule Detection and Characterization of Non-Canonical DNA Structures With α-Hemolysin-Based Protein Nanopore TechnologyTudor Luchian, Adina Cimpanu, Jonggwan Park, et al.
ACS Applied Materials & Interfaces|July 22, 2024
Controlling DNA Fragments Translocation across Nanopores with the Synergic Use of Site-Directed Mutagenesis, pH-Dependent Charge Tuning, and Electroosmotic FlowLoredana Mereuta, Huma Bhatti, Alina Asandei, et al.
Pageof 1

Showing results (1-10 of 5) with videos related to

Sort By:
Pageof 1
Nano Letters|June 27, 2025
Asymmetric Nanopore Sensing Enables Single-Molecule Identification of Nucleobases in Minimalist Peptide Nucleic AcidsAdina Cimpanu, Jonggwan Park, Loredana Mereuta, et al.
Nano Letters|February 2, 2026
Nanopore-Based, Real-Time Single-Molecule Probing of i-Motif Structural Dynamics and Targeted PNA DisruptionAdina Cimpanu, Jonggwan Park, Loredana Mereuta, et al.
Analytical Chemistry|February 28, 2025
Vectorial Discrimination of Small Molecules with a Macrocycle Adaptor-Protein Nanopore System and Nanocavity-Dependent, pH Gradient-Controlled Analyte KineticsLoredana Mereuta, Adina Cimpanu, Jonggwan Park, et al.
Small Methods|May 8, 2026
Single-Molecule Detection and Characterization of Non-Canonical DNA Structures With α-Hemolysin-Based Protein Nanopore TechnologyTudor Luchian, Adina Cimpanu, Jonggwan Park, et al.
ACS Applied Materials & Interfaces|July 22, 2024
Controlling DNA Fragments Translocation across Nanopores with the Synergic Use of Site-Directed Mutagenesis, pH-Dependent Charge Tuning, and Electroosmotic FlowLoredana Mereuta, Huma Bhatti, Alina Asandei, et al.
Pageof 1