Patra C., Hussein Z., Ace V.D., Misnik E.V., Rybalko D.S., Salimova A.A., Ereshko D.S., Dubovichenko M.V., Nour M., Drozd V.S., Kolpashchikov D.M. The efficacy of oligonucleotide-based gene therapeutics in gene silencing. Theranostics. 2026. Vol. 16. No. 2. pp. 599-616.. doi: 10.7150/thno.121775
Ace V., Ereshko D.S., Zaplavnaia S., Hussein Z., Kolpashchikov D.M., Patra C., El-Deeb A.A. G/T mismatch discrimination by positioning the mismatch site close to the catalytic core of a 10–23 DNAzyme sensor. Chemical Communications. 2026.. doi: DOI https://doi.org/10.1039/D6CC02030E
Development of ZIF-8 Nanocarriers for Targeted Intracellular Delivery of Nucleic Acids
Targeting Essential Genes in Lung Adenocarcinoma: Antisense Oligonucleotide Therapy for Apoptosis Induction
Selection of Novel Target Genes for Antisense Oligonucleotide-Based Therapy in Colorectal Cancer
CREATION OF CIRCULAR ANTISENSE OLIGONUCLEOTIDES: A NOVEL STABILIZATION STRATEGY FOR GENE THERAPY AGENTS
DESIGN AND DEVELOPMENT OF MARKER ACTIVATED NANOMACHINES USING DNA ORIGAMI FOR CANCER THERAPY
Patra C.K., Smirnov V.V., Drozd V.S., Hussein Z., Rybalko D.S., Kozlova A.V., Nour M., Zemerova T.P., Kolosova O.S., Kalnin A.Y., El-Deeb A. Towards the Development of a DNA Automaton: Modular RNA-cleaving Deoxyribozyme Logic Gates Regulated by miRNAs. Analyst. 2024. Vol. 149. No. 6. pp. 1947-1957.. doi: 10.1039/D3AN02178E
Hussein Z., Golovina L.A., Alaji M., Nour M., Kolpashchikov D.M., Komissarov A.B., El-Deeb A. Enhancing Sensitivity in Nucleic Acid Detection via Collaborative Multiple Catalytic Cores in DNAzyme Nanomachines. ChemBioChem. 2024. Vol. 25. No. 23. pp. e202400572.. doi: 10.1002/cbic.202400572
DESIGN AND DEVELOPMENT OF A PROTECTIVE DNA NANO-TUBE USING DNA ORIGAMI FOR ENHANCED CANCER GENE THERAPY
ДНК-МАШИНА С НЕСКОЛЬКИМИ КАТАЛИТИЧЕСКИМИ ЦЕНТРАМИ НА ОСНОВЕ ДЕЗОКСИРИБОЗИМА ДЛЯ БЕЗАМПЛИФИКАЦИОННОГО ДЕТЕКТИРОВАНИЯ SARS-COV-2
ДНК-МАШИНЫ НА ОСНОВЕ БИНАРНЫХ ДЕЗОКСИРИБОЗИМОВ КАК ПЕРСПЕКТИВНЫЙ ИНСТРУМЕНТ БЕЗАМПЛИФИКАЦИОННОЙ ДИАГНОСТИКИ SARS-CoV-2
MULTICORE DNA-MACHINE BASED ON BINARY DEOXYRIBOZYME FOR AMPLIFICATION-FREE DETECTION OF SARS-COV-2
ADVANCING DNA AUTOMATION: MIRNAS-REGULATED “NOT-GATE” LOGIC ELEMENTS BASED ON DEOXYRIBOZYME DNA MACHINES
Hussein Z., Nour M., Kozlova A.V., Kolpashchikov D.M., Komissarov A., El-Deeb A. DNAzyme Nanomachine with Fluorogenic Substrate Delivery Function: Advancing Sensitivity in Nucleic Acid Detection. Analytical Chemistry. 2023. Vol. 95. No. 51. pp. 18667-18672.. doi: 10.1021/acs.analchem.3c04420
МНОГОЯДЕРНАЯ ДНК-МАШИНА НА ОСНОВЕ БИНАРНЫХ ДЕЗОКСИРИБОЗИМОВ ДЛЯ БЕЗАМПЛИФИКАЦИОННОЙ ДЕТЕКЦИИ SARS-COV-2
ANTENNA-EQUIPPED DEOXYRIBOZYME MACHINE FOR ULTRA-SENSITIVITY AMPLIFICATION-FREE DETECTION OF SARS-COV-2 RNA
ДНК МАШИНА С НЕСКОЛЬКИМИ КАТАЛИТИЧЕСКИМИ ЦЕНТРАМИ НА ОСНОВЕ ДЕЗОКСИРИБОЗИМА ДЛЯ БЕЗАМПЛИФИКАЦИОННОЙ ДЕТЕКЦИИ SARS-COV-2
ANTENNA-EQUIPPED DEOXYRIBOZYME-BASED DNA MACHINE FOR ULTRA -SENSITIVITY DETECTION OF SARS-COV-2 RNA
КОНСТРУКЦИИ НА ОСНОВЕ НУКЛЕИНОВЫХ КИСЛОТ ДЛЯ ШИРОКОГО СПЕКТРА ПРИМЕНЕНИЙ
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