Electric Literature of C9H19NO4In 2019 ,《Structure-activity relationship studies on Bax activator SMBA1 for the treatment of ER-positive and triple-negative breast cancer》 was published in European Journal of Medicinal Chemistry. The article was written by Liu, Gang; Yin, Tao; Kim, Hyejin; Ding, Chunyong; Yu, Zhuo; Wang, Hong; Chen, Haiying; Yan, Ruping; Wold, Eric A.; Zou, Hao; Liu, Xi; Ding, Ye; Shen, Qiang; Zhou, Jia. The article contains the following contents:
In an effort to develop novel Bax activators for breast cancer treatment, a series of diverse analogs have been designed and synthesized based on lead compound SMBA1 through several strategies, including introducing various alkylamino side chains to have a deeper access to S184 pocket, replacing carbon atoms with nitrogen, and reducing the nitro group of 9H-fluorene scaffold. Compounds 14 (CYD-2-11, I) and 49 (CYD-4-61, II) have been identified to exhibit significantly improved antiproliferative activity compared to SMBA1, with IC50 values of 3.22 μM and 0.07 μM against triple-neg. breast cancer MDA-MB-231 and 3.81 μM and 0.06 μM against ER-pos. breast cancer MCF-7 cell lines, resp. Mechanism of action studies of II indicated that it can activate Bax protein to induce cytochrome c release and regulate apoptotic biomarkers, leading to cancer cell apoptosis. Further in vivo efficacy studies of I and II in nude mice bearing MDA-MB-231 tumor xenografts demonstrated that these drug candidates can significantly suppress tumor growth, indicating their therapeutic potential for the treatment of breast cancer. In addition to this study using tert-Butyl (2-(2-hydroxyethoxy)ethyl)carbamate, there are many other studies that have used tert-Butyl (2-(2-hydroxyethoxy)ethyl)carbamate(cas: 139115-91-6Electric Literature of C9H19NO4) was used in this study.
tert-Butyl (2-(2-hydroxyethoxy)ethyl)carbamate(cas: 139115-91-6) belongs to ethers.The C-O bonds that comprise simple ethers are strong. Electric Literature of C9H19NO4 They are unreactive toward all but the strongest bases. Although generally of low chemical reactivity, they are more reactive than alkanes.
Referemce:
Ether – Wikipedia,
Ether | (C2H5)2O – PubChem