2025/03/12 by Sarfraz Ahmad, Ming Pan, John J. Hayward +3 · 1 voice
Chemistry · Materials Science · Medicine · #Boron Compounds in Chemistry #Boron and Carbon Nanomaterials Research #Organoboron and organosilicon chemistry
paper · pdf · doi:10.1002/cmdc.202500059
openalex publication_date 2025/03/12 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/17
Boron neutron capture therapy leverages the nuclear reaction between boron‐10 and thermal neutrons to selectively destroy cancer cells while minimizing damage to surrounding healthy tissues. This therapy finds use in treating glioblastoma, which, as a brain cancer, is difficult to treat using conventional radiotherapy, surgery, and chemotherapy due to location and the risk of brain damage. However, to work, the cells must contain 10 B. 4‐Borono‐ l ‐phenylalanine ( l ‐BPA) is the most frequently used boron delivery agent in this therapy. Surprisingly, despite its seemingly simple structure, there is no consensus approach to making it—the synthesis of l ‐BPA has been approached through multiple routes, reflecting the challenges in producing high‐purity, isotopically enriched material. When a new site is looking to make this essential material, it can be challenging to determine the best route for the situation as there is no critical analysis comparing and discussing the relative merits of the approaches. Herein, the reported methods, from both the academic and patent literature, used to synthesize l ‐BPA, are comprehensively and critically examined and compared. The review also highlights the limitations of each method regarding scalability, cost‐effectiveness, and safety, especially considering the high cost of isotopically enriched 10 B.