Forensic epidemiology and impact of substandard and falsified antimicrobials on public health
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AI plain-English summaryCounterfeit and substandard antibiotics are flooding global supply chains, and researchers are now using forensic genomics and chemistry to track where they come from and how they move. This matters because poor-quality antimicrobials are a hidden driver of drug-resistant infections. When patients take weak or fake antibiotics, the drugs fail to clear the infection, allowing resistant bacteria to survive and spread. The scale of the problem is unknown, and current surveillance methods cannot reliably trace the origins or trade routes of these products. The research fills a critical gap by combining high-throughput DNA sequencing, chemical analysis, and social network mapping to characterise the “pharmabiome” of genuine versus falsified drugs and link them to their sources. If successful, this work could transform how regulators and international bodies monitor pharmaceutical supply chains. It would provide forensic tools to identify production hubs and trafficking networks, enabling targeted enforcement and policy changes. The project also models the public health impact of substandard antimicrobials—particularly their role in accelerating antimicrobial resistance—and identifies which pathogen-drug combinations are most at risk. This is not a laboratory curiosity; it directly addresses a systemic failure in global health infrastructure that quietly undermines treatment for millions of patients.
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