Selective Anti-Leishmanial Strathclyde Minor Groove Binders Using an N-Oxide Tail-Group Modification
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Fraser J. Scott | A. Khalaf | C. Suckling | Fraser J Scott | D. Macmillan | C. Shaw | K. Carter | K. Gillingwater | M. Perieteanu | Leah M. C. McGee | Rebecca Beveridge
[1] I. Hunter,et al. Multitargeted anti-infective drugs: resilience to resistance in the antimicrobial resistance era , 2022, Future drug discovery.
[2] OUP accepted manuscript , 2022, Journal of Antimicrobial Chemotherapy.
[3] J. Torrado,et al. Antileishmanial Drug Discovery and Development: Time to Reset the Model? , 2021, Microorganisms.
[4] M. Barrett,et al. Truncated S-MGBs: towards a parasite-specific and low aggregation chemotype , 2021, RSC medicinal chemistry.
[5] N. Tucker,et al. Novel antibiotic mode of action by repression of promoter isomerisation , 2021, bioRxiv.
[6] A. Sil,et al. Therapeutic Modalities in Post Kala-azar Dermal Leishmaniasis: A Systematic Review of the Effectiveness and Safety of the Treatment Options , 2021, Indian journal of dermatology.
[7] Michael S. Deiner,et al. Predicted Impact of COVID-19 on Neglected Tropical Disease Programs and the Opportunity for Innovation , 2020, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[8] R. Williams,et al. Structure and Antiparasitic Activity Relationship of Alkylphosphocholine Analogues against Leishmania donovani , 2020, Microorganisms.
[9] K. Marsh,et al. Patients’ preferences of cutaneous leishmaniasis treatment outcomes: Findings from an international qualitative study , 2020, PLoS neglected tropical diseases.
[10] F. Gay,et al. Leishmaniasis , 2019, The Lancet.
[11] Fraser J. Scott,et al. Novel Minor Groove Binders Cure Animal African Trypanosomiasis in an in Vivo Mouse Model. , 2019, Journal of medicinal chemistry.
[12] D. Horn,et al. Insights into antitrypanosomal drug mode-of-action from cytology-based profiling , 2018, PLoS neglected tropical diseases.
[13] D. Ghosh,et al. Quantifying the infectiousness of post-kala-azar dermal leishmaniasis towards sandflies , 2019 .
[14] Fraser J. Scott,et al. Evaluation of minor groove binders (MGBs) as novel anti-mycobacterial agents and the effect of using non-ionic surfactant vesicles as a delivery system to improve their efficacy , 2017, The Journal of antimicrobial chemotherapy.
[15] M. Barrett,et al. An evaluation of Minor Groove Binders as anti-fungal and anti-mycobacterial therapeutics. , 2017, European journal of medicinal chemistry.
[16] V. Avery,et al. Selective anti-malarial minor groove binders. , 2016, Bioorganic & medicinal chemistry letters.
[17] M. Barrett,et al. An evaluation of Minor Groove Binders as anti-Trypanosoma brucei brucei therapeutics , 2016, European journal of medicinal chemistry.
[18] G. H. Coombs,et al. In vitro selection of miltefosine resistance in promastigotes of Leishmania donovani from Nepal: genomic and metabolomic characterization , 2016, Molecular microbiology.
[19] C. Clements,et al. Design, synthesis and antibacterial activity of minor groove binders: the role of non-cationic tail groups. , 2012, European journal of medicinal chemistry.
[20] G. H. Coombs,et al. The efficacy of aerosol treatment with non-ionic surfactant vesicles containing amphotericin B in rodent models of leishmaniasis and pulmonary aspergillosis infection. , 2012, Journal of controlled release : official journal of the Controlled Release Society.
[21] S. Mackay,et al. Amide isosteres in structure-activity studies of antibacterial minor groove binders. , 2011, European journal of medicinal chemistry.
[22] L. Azeez,et al. Available Online at www , 2010 .
[23] Jean-Jacques Helesbeux,et al. Antimicrobial lexitropsins containing amide, amidine, and alkene linking groups. , 2007, Journal of medicinal chemistry.
[24] D. Sur,et al. Elimination of leishmaniasis (kala-azar) from the Indian subcontinent is technically feasible & operationally achievable. , 2006, The Indian journal of medical research.
[25] S. Mackay,et al. Short lexitropsin that recognizes the DNA minor groove at 5'-ACTAGT-3': understanding the role of isopropyl-thiazole. , 2004, Journal of the American Chemical Society.
[26] M. Barrett,et al. Resistance to Pentamidine in Leishmania mexicana Involves Exclusion of the Drug from the Mitochondrion , 2002, Antimicrobial Agents and Chemotherapy.