Development of a Scalable Amidation-Dehydration Telescope Process for the Synthesis of Ibuzatrelvir

Abstract Ibuzatrelvir is a second-generation, orally administered inhibitor of the SARS-CoV-2 Mpro that has enhanced metabolic stability compared to nirmatrelvir. Although early manufacturing campaigns enabled rapid large-scale supply, the final amidation–dehydration sequence faced significant challenges in robustness, impurity control, and downstream processing. In this report, we detail a streamlined telescoped process comprising a robust and efficient 2-chloro-1-methylpyridinium p-toluenesulfonate (CMPT)-mediated amidation followed by a clean trifluoroacetic anhydride (TFAA)-driven dehydration to overcome existing limitations. Process refinements in distillation, solvent exchange, and crystallization delivered a reproducible, sustainable route that was demonstrated at multikilogram scale. The optimized process afforded ibuzatrelvir in high yield, purity, and potency while markedly reducing process mass intensity (PMI) and cycle time, establishing an efficient and industrially viable approach for long-term manufacturing.

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Publication Details

Journal
Organic Process Research & Development
Published
2026-09-11
DOI
https://doi.org/10.1021/acs.oprd.6c00095
Primary Topic
Chemical Synthesis and Analysis
Type
article
Field-Weighted Citation Impact
0.00

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article

Development of a Scalable Amidation-Dehydration Telescope Process for the Synthesis of Ibuzatrelvir

Truong N. Nguyen, Kaitlyn Gray, D.W. Place, Melissa Lee et al.
Organic Process Research & Development
Chemical Synthesis and Analysis
article

Development of a Scalable Amidation-Dehydration Telescope Process for the Synthesis of Ibuzatrelvir

Truong N. Nguyen, Kaitlyn Gray, D.W. Place, Melissa Lee, Michael Herr, R. Matthew Weekly, Gerald A. Weisenburger, Russell F. Algera, Rachel Ruest, Lesly Mejia, Doug Farrand, Cindy Duong, Courtney Talicska, Gary R Jolin
article en

Abstract

Abstract Ibuzatrelvir is a second-generation, orally administered inhibitor of the SARS-CoV-2 Mpro that has enhanced metabolic stability compared to nirmatrelvir. Although early manufacturing campaigns enabled rapid large-scale supply, the final amidation–dehydration sequence faced significant challenges in robustness, impurity control, and downstream processing. In this report, we detail a streamlined telescoped process comprising a robust and efficient 2-chloro-1-methylpyridinium p-toluenesulfonate (CMPT)-mediated amidation followed by a clean trifluoroacetic anhydride (TFAA)-driven dehydration to overcome existing limitations. Process refinements in distillation, solvent exchange, and crystallization delivered a reproducible, sustainable route that was demonstrated at multikilogram scale. The optimized process afforded ibuzatrelvir in high yield, purity, and potency while markedly reducing process mass intensity (PMI) and cycle time, establishing an efficient and industrially viable approach for long-term manufacturing.

Organic Process Research & Development
Pfizer (United States) (US)
Pfizer
Industry, innovation and infrastructure
Openalex Percentile: Top 18%
Chemical Synthesis and Analysis
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Development of a Scalable Amidation-Dehydration Telescope Process for the Synthesis of Ibuzatrelvir — Truong N. Nguyen, Kaitlyn Gray, et al. · Organic Process Research & Development (2026) | TGRS Research Map | TGRS