Discovery of Broad‐Spectrum Repurposed Drug Combinations Against Carbapenem‐Resistant Enterobacteriaceae (CRE) Through Artificial Intelligence (AI)‐Driven Platform

Author:

Li Ming12,You Kui345,Wang Peter345,Hooi Lissa6,Chen Yahua12,Siah Anqi12,Tan Shi‐Bei345,Teo Jeanette7,Ng Oon‐Tek8,Marimuthu Kalisvar8910,Venkatachalam Indumathi11,Blasiak Agata34512,Chow Edward Kai‐Hua3451213,Ho Dean3451214ORCID,Gan Yunn‐Hwen12ORCID

Affiliation:

1. Department of Biochemistry Yong Loo Lin School of Medicine National University of Singapore Singapore 117596 Singapore

2. Infectious Diseases Translational Research Programme Yong Loo Lin School of Medicine National University of Singapore Singapore 117549 Singapore

3. The Institute for Digital Medicine (WisDM) Yong Loo Lin School of Medicine National University of Singapore Singapore 117456 Singapore

4. The N.1 Institute for Health (N.1) National University of Singapore Singapore 117456 Singapore

5. Department of Biomedical Engineering College of Design and Engineering National University of Singapore Singapore 117583 Singapore

6. Cancer Science Institute of Singapore National University of Singapore Singapore 117599 Singapore

7. National University Hospital Singapore 169857 Singapore

8. National Centre for Infectious Diseases Singapore 308442 Singapore

9. Tan Tock Seng Hospital Singapore 308433 Singapore

10. Lee Kong Chian School of Medicine Nanyang Technological University Singapore 636921 Singapore

11. Department of Infectious Diseases Singapore General Hospital Singapore 169608 Singapore

12. Department of Pharmacology Yong Loo Lin School of Medicine National University of Singapore Singapore 117600 Singapore

13. NUS Centre for Cancer Research (N2CR) Yong Loo Lin School of Medicine National University of Singapore Singapore 117599 Singapore

14. Bia‐Echo Asia Centre for Reproductive Longevity and Equality (ACRLE) Yong Loo Lin School of Medicine National University of Singapore Singapore 117456 Singapore

Abstract

AbstractAntimicrobial resistance challenges the sustainability of healthcare systems and results in substantial economic losses worldwide. This issue is further aggravated by paucity of new drugs and treatment options. In this study, an artificial intelligence (AI)‐derived platform termed IDentif.AI is utilized to accelerate the development of effective therapeutic options for carbapenem‐resistant Enterobacteriaceae (CRE). Twelve Food and Drug Administration‐approved drugs are selected and the in vitro inhibitory efficacy of 155 combinations consisting of various drugs is determined at different concentrations against both Klebsiella pneumoniae and Escherichia coli. Correlating these experimental data via an AI‐derived relationship, IDentif.AI rapidly determines a ranked list of drug combinations in the search space of over half a million possible combinations. Meropenem is found to strongly synergize with low doses of the anticancer drug bleomycin, showing broad‐spectrum, bactericidal activity against nine isolates across three CRE species in rich and minimal media with no synergistic cytotoxicity on mammalian cells. Synergy is also detected between bleomycin and other key carbapenems in clinical use (imipenem, ertapenem). Bleomycin/carbapenem appears to be a promising combination therapy for treating various CRE infections. IDentif.AI shows profound capability of identifying pan‐active drug combinations against a family of bacteria through surveying strains from different species in parallel.

Funder

Ministry of Education

National Medical Research Council

Publisher

Wiley

Subject

Pharmacology (medical),Biochemistry (medical),Genetics (clinical),Pharmaceutical Science,Pharmacology,Medicine (miscellaneous)

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