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Pralsetinib: Synthesis and Introduction

Jan 2,2024

Synthesis of Pralsetinib

Pralsetinib (BLU-667) is synthesised using bromopyridine as a raw material by chemical reaction. The specific synthesis steps are as follows:

Pralsetinib synthesis

Commercial bromopyridine 291 was subjected to boronate 292 under Suzuki conditions to generate acetonide 293, which was converted to ketone 294 upon acidification. Takenori homologation conditions then established the quaternary carbon within 295, and this was followed by amide coupling with amine 296 to give pralsetinib. The authors indicated that the mild reaction conditions, high product purity, and concise route makes this approach particularly attractive for large scale manufacture.

Introduction of Pralsetinib

Pralsetinib is a tyrosine kinase inhibitor that selectively inhibits "rearranged during transfection" (RET) fusions present in various solid tumors. Blueprint Medicines developed the compound as a treatment for metastatic RET fusion-positive NSCLC. A Phase 1/2 study showed that pralsetinib was safe and efficacious toward RET fusion-positive NSCLC. In September 2020, pralsetinib was approved by the USFDA for lung cancer with RET gene fusions.

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Pralsetinib

2097132-94-8

Pralsetinib manufacturers

  • Pralsetinib Monohydrate
  • 2097132-94-8 Pralsetinib Monohydrate
  • $0.00 / 1g
  • 2025-01-13
  • CAS:2097132-94-8
  • Min. Order: 1g
  • Purity: More Than 99%
  • Supply Ability: 100kg/Month
  • Pralsetinib Blu-667
  • 2097132-94-8 Pralsetinib Blu-667
  • $0.00 / 1g
  • 2025-01-13
  • CAS:2097132-94-8
  • Min. Order: 1g
  • Purity: More Than 99%
  • Supply Ability: 100kg/Month
  • Pralsetinib
  • 2097132-94-8 Pralsetinib
  • $0.00/ kg
  • 2024-11-26
  • CAS:2097132-94-8
  • Min. Order: 1kg
  • Purity: 99%, Single impurity<0.1
  • Supply Ability: 1 ton