Chen, Yun; Ning, Yi; Bai, Gang; Tong, Linjiang; Zhang, Tao; Zhou, Jinpei; Zhang, Huibin; Xie, Hua; Ding, Jian; Duan, Wenhu published an article in 2021. The article was titled 《Design, Synthesis, and Biological Evaluation of IRAK4-Targeting PROTACs》, and you may find the article in ACS Medicinal Chemistry Letters.Application In Synthesis of tert-Butyl (5-aminopentyl)carbamate The information in the text is summarized as follows:
Interleukin-1 receptor associated kinase 4 (IRAK4) is a promising therapeutic target for diffuse large B-cell lymphoma driven by MYD88 L265P mutant, acting both as a kinase and a scaffolding protein for downstream signaling mols. While previous efforts to modulate IRAK4 activity with kinase inhibitors alone displayed moderate efficacy, protein degradation may offer a solution to blocking both IRAK4 kinase activity and scaffolding capabilities. To this end, the potent IRAK4 degrader 9 was discovered, and it effectively inhibited the activation of downstream NF-κB signaling and outperformed the parent compound 1. In addition, compound 9 displayed a substantial advantage in reduction of the viability of OCI-LY10 and TMD8 cells over the parent compound 1. These results underline the potential that eliminating both the kinase and scaffolding functions of IRAK4 may result in superior and broader efficacy than inhibiting the kinase activity alone. The experimental process involved the reaction of tert-Butyl (5-aminopentyl)carbamate(cas: 51644-96-3Application In Synthesis of tert-Butyl (5-aminopentyl)carbamate)
Some of the reported applications of tert-Butyl (5-aminopentyl)carbamate(cas: 51644-96-3) include: synthesis of of a supermacrocycle that self-assemble to form organic nanotubes., preparation of water-soluble unsymmetrical sulforhodamine fluorophores from monobrominated sulfoxanthene dye, synthesis of functionalized porphyrins as biocompatible carrier system for photodynamic therapy (PDT).Application In Synthesis of tert-Butyl (5-aminopentyl)carbamate
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