Chemistry

Scientists use relay synthesis to create key building blocks of reserve antibiotic to combat resistance

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Researchers at Otto von Guericke University Magdeburg have successfully synthesized key building blocks of Neosorangicin A, a naturally occurring compound, using relay synthesis techniques in the laboratory. This achievement marks the first time these essential components have been artificially produced. The breakthrough enables targeted development of Neosorangicin A as a potential reserve antibiotic.


This development provides a pathway to create new antibiotics for treating drug-resistant bacterial infections, addressing one of the most pressing global health challenges. Reserve antibiotics are critical last-line treatments when conventional antibiotics fail against resistant pathogens.


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Chemists from Otto von Guericke University Magdeburg have achieved an important research success in the fight against resistant bacteria. The team led by scientist Professor Dr. Dieter Schinzer from the Institute of Chemistry has succeeded in producing key building blocks of the naturally occurring substance Neosorangicin A in the laboratory for the first time. This means it is now possible to develop Neosorangicin A in a targeted manner as a promising reserve antibiotic candidate to combat antibiotic resistance in the future.

Source: Scientists use relay synthesis to create key building blocks of reserve antibiotic to combat resistance