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ACS Omega|March 3, 2020
Evaluation of Second-Generation Lipophosphonoxins as Antimicrobial Additives in Bone CementEva Zborníková, Jiří Gallo, Renata Večeřová, et al.Plos One|December 31, 2015
Insights into the Mechanism of Action of Bactericidal LipophosphonoxinsNatalya Panova, Eva Zborníková, Ondřej Šimák, et al.Biomolecules|January 8, 2025
Assessment of Agrimonia eupatoria L. and Lipophosphonoxin (DR-6180) Combination for Wound Repair: Bridging the Gap Between Phytomedicine and Organic ChemistryMiriam Kaňuchová, Veronika Brindza Lachová, Kateřina Bogdanová, et al.Molecular Cell|June 26, 2021
RelA-SpoT Homolog toxins pyrophosphorylate the CCA end of tRNA to inhibit protein synthesisTatsuaki Kurata, Tetiana Brodiazhenko, Sofia Raquel Alves Oliveira, et al.Journal of Medicinal Chemistry|June 28, 2017
Lipophosphonoxins II: Design, Synthesis, and Properties of Novel Broad Spectrum Antibacterial AgentsGabriela Seydlová, Radek Pohl, Eva Zborníková, et al.Journal of Medicinal Chemistry|July 15, 2022
LEGO-Lipophosphonoxins: A Novel Approach in Designing Membrane Targeting AntimicrobialsDuy Dinh Do Pham, Viktor Mojr, Michaela Helusová, et al.Scientific Reports|September 4, 2021
Novel lipophosphonoxin-loaded polycaprolactone electrospun nanofiber dressing reduces Staphylococcus aureus induced wound infection in miceDuy Dinh Do Pham, Věra Jenčová, Miriam Kaňuchová, et al.Biomaterials Advances|June 27, 2026
Polycaprolactone and poly(vinyl alcohol) electrospun single-layer nanofiber materials loaded with novel antibacterial LEGO-LPPO for advanced wound dressingNitjawan Sahatsapan, Jana Sabová, Ivana Kóšiová, et al.Cancer Discovery|August 28, 2024
MYC Induces Oncogenic Stress through RNA Decay and Ribonucleotide Catabolism in Breast CancerJitendra K Meena, Jarey H Wang, Nicholas J Neill, et al.Pageof 6