A novel PLpro inhibitor improves outcomes in a pre-clinical model of long COVID.

一种新型PLpro抑制剂改善了新冠肺炎长期症状的临床前模型的结果

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作者:M Bader Stefanie, Calleja Dale J, Devine Shane M, Kuchel Nathan W, Lu Bernadine G C, Wu Xinyu, Birkinshaw Richard W, Bhandari Reet, Loi Katie, Volpe Rohan, Khakham Yelena, Au Amanda E, Blackmore Timothy R, Mackiewicz Liana, Dayton Merle, Schaefer Jan, Scherer Lena, Stock Angus T, Cooney James P, Schoffer Kael, Maluenda Ana, Kleeman Elizabeth A, Davidson Kathryn C, Allison Cody C, Ebert Gregor, Chen Gong, Katneni Kasiram, Klemm Theresa A, Nachbur Ueli, Georgy Smitha Rose, Czabotar Peter E, Hannan Anthony J, Putoczki Tracy L, Tanzer Maria, Pellegrini Marc, Lechtenberg Bernhard C, Charman Susan A, Call Melissa J, Mitchell Jeffrey P, Lowes Kym N, Lessene Guillaume, Doerflinger Marcel, Komander David
The COVID-19 pandemic caused by the coronavirus SARS-CoV-2 has highlighted the vulnerability of a globally connected population to zoonotic viruses. The FDA-approved coronavirus antiviral Paxlovid targets the essential SARS-CoV-2 main protease, Mpro. Whilst effective in the acute phase of a COVID infection, Paxlovid cannot be used by all patients, can lead to viral recurrence, and does not protect against post-acute sequelae of COVID-19 (PASC), commonly known as long COVID, an emerging significant health burden that remains poorly understood and untreated. Alternative antivirals that are addressing broader patient needs are urgently required. We here report our drug discovery efforts to target PLpro, a further essential coronaviral protease, for which we report a novel chemical scaffold that targets SARS-CoV-2 PLpro with low nanomolar activity, and which exhibits activity against PLpro of other pathogenic coronaviruses. Our lead compound shows excellent in vivo efficacy in a mouse model of severe acute disease. Importantly, our mouse model recapitulates long-term pathologies matching closely those seen in PASC patients. Our lead compound offers protection against a range of PASC symptoms in this model, prevents lung pathology and reduces brain dysfunction. This provides proof-of-principle that PLpro inhibition may have clinical relevance for PASC prevention and treatment going forward.

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