Process Development of a Macrocyclic Peptide Inhibitor of PD-L1.


Journal

The Journal of organic chemistry
ISSN: 1520-6904
Titre abrégé: J Org Chem
Pays: United States
ID NLM: 2985193R

Informations de publication

Date de publication:
25 Apr 2024
Historique:
medline: 25 4 2024
pubmed: 25 4 2024
entrez: 25 4 2024
Statut: aheadofprint

Résumé

This article outlines the process development leading to the manufacture of 800 g of BMS-986189, a macrocyclic peptide active pharmaceutical ingredient. Multiple N-methylated unnatural amino acids posed challenges to manufacturing due to the lability of the peptide to cleavage during global side chain deprotection and precipitation steps. These issues were exacerbated upon scale-up, resulting in severe yield loss and necessitating careful impurity identification, understanding the root cause of impurity formation, and process optimization to deliver a scalable synthesis. A systematic study of macrocyclization with its dependence on concentration and pH is presented. In addition, a side chain protected peptide synthesis is discussed where the macrocyclic protected peptide is extremely labile to hydrolysis. A computational study explains the root cause of the increased lability of macrocyclic peptide over linear peptide to hydrolysis. A process solution involving the use of labile protecting groups is discussed. Overall, the article highlights the advancements achieved to enable scalable synthesis of an unusually labile macrocyclic peptide by solid-phase peptide synthesis. The sustainability metric indicates the final preparative chromatography drives a significant fraction of a high process mass intensity (PMI).

Identifiants

pubmed: 38663026
doi: 10.1021/acs.joc.4c00430
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Subha Mukherjee (S)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Amanda Rogers (A)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Gardner Creech (G)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Chao Hang (C)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Antonio Ramirez (A)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Michael Dummeldinger (M)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Shawn Brueggemeier (S)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Claudio Mapelli (C)

Discovery Chemistry, Bristol Myers Squibb, Princeton, New Jersey 08540, United States.

Serge Zaretsky (S)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Masano Huang (M)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Regina Black (R)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Michael B Peddicord (MB)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Nicolas Cuniere (N)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

James Kempson (J)

Discovery Chemistry, Bristol Myers Squibb, Princeton, New Jersey 08540, United States.

Joseph Pawluczyk (J)

Discovery Chemistry, Bristol Myers Squibb, Princeton, New Jersey 08540, United States.

Martin Allen (M)

Discovery Chemistry, Bristol Myers Squibb, Princeton, New Jersey 08540, United States.

Rodney Parsons (R)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Chris Sfouggatakis (C)

Chemical Process Development, Bristol Myers Squibb, New Brunswick, New Jersey 08903, United States.

Classifications MeSH