Metal complexes as a promising source for new antibiotics

Author:

Frei Angelo12345ORCID,Zuegg Johannes12345ORCID,Elliott Alysha G.12345ORCID,Baker Murray6785ORCID,Braese Stefan910111213ORCID,Brown Christopher14155,Chen Feng16171819ORCID,G. Dowson Christopher2021171819ORCID,Dujardin Gilles22232425ORCID,Jung Nicole910111213,King A. Paden26272829,Mansour Ahmed M.30313233ORCID,Massi Massimiliano34355ORCID,Moat John2021171819,Mohamed Heba A.36373819,Renfrew Anna K.3639405ORCID,Rutledge Peter J.14155ORCID,Sadler Peter J.16171819ORCID,Todd Matthew H.363940541ORCID,Willans Charlotte E.36373819ORCID,Wilson Justin J.26272829ORCID,Cooper Matthew A.12345ORCID,Blaskovich Mark A. T.12345ORCID

Affiliation:

1. Centre for Superbug Solutions

2. Institute for Molecular Bioscience

3. The University of Queensland

4. St. Lucia

5. Australia

6. School of Molecular Sciences

7. The University of Western Australia

8. 6009 Perth

9. Institute of Organic Chemistry

10. Karlsruhe Institute of Technology (KIT)

11. 76131 Karlsruhe

12. Germany

13. Institute of Biological and Chemical Systems – Functional Molecular Systems (IBCS-FMS)

14. School of Medical Sciences (Discipline of Pharmacology)

15. University of Sydney

16. Department of Chemistry

17. University of Warwick

18. Coventry CV4 7AL

19. UK

20. Antimicrobial Screening Facility

21. School of Life Sciences

22. Institute of Molecules and Matter of Le Mans (IMMM)

23. UMR 6283 CNRS

24. Le Mans Université

25. France

26. Department of Chemistry and Chemical Biology

27. Cornell University

28. Ithaca

29. USA

30. Chemistry Department

31. Faculty of Science

32. Cairo University

33. Egypt

34. School of Molecular and Life Sciences – Curtin Institute for Functional Materials and Interfaces

35. Curtin University

36. School of Chemistry

37. University of Leeds

38. Leeds LS2 9JT

39. The University of Sydney

40. Sydney

41. School of Pharmacy

Abstract

There is a dire need for new compounds to combat antibiotic resistance: metal complexes might provide the solution. 906 metal complexes were evaluated against dangerous ESKAPE pathogens and found to have a higher hit-rate than organic molecules.

Funder

China Scholarship Council

National Health and Medical Research Council

Engineering and Physical Sciences Research Council

National Institute of General Medical Sciences

Helmholtz Association

Swiss National Science Foundation

Deutsche Forschungsgemeinschaft

University of Queensland

Wellcome Trust

Publisher

Royal Society of Chemistry (RSC)

Subject

General Chemistry

Reference83 articles.

1. https://www.pewtrusts.org/en/research-and-analysis/data-visualizations/2014/antibiotics-currently-in-clinical-development , accessed 09.10.2019

2. The challenge of antimicrobial resistance: What economics can contribute

3. Nat. Biotechnol. 2018 , 36 , 555 , https://www.nature.com/articles/nbt.4193#citeas

4. Experimental and computational approaches to estimate solubility and permeability in drug discovery and development settings

5. A community-based approach to new antibiotic discovery

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