Awesome Chemistry Experiments For 120099-61-8

This literature about this compound(120099-61-8)Product Details of 120099-61-8has given us a lot of inspiration, and I hope that the research on this compound((S)-3-Methoxypyrrolidine) can be further advanced. Maybe we can get more compounds in a similar way.

Product Details of 120099-61-8. The reaction of aromatic heterocyclic molecules with protons is called protonation. Aromatic heterocycles are more basic than benzene due to the participation of heteroatoms. Compound: (S)-3-Methoxypyrrolidine, is researched, Molecular C5H11NO, CAS is 120099-61-8, about Identification of a New Series of Potent Adenosine A2A Receptor Antagonists Based on 4-Amino-5-carbonitrile Pyrimidine Template for the Treatment of Parkinson’s Disease. Author is Yang, Zhaohui; Li, Linlang; Zheng, Jiyue; Ma, Haikuo; Tian, Sheng; Li, Jiajun; Zhang, Hongjian; Zhen, Xuechu; Zhang, Xiaohu.

Adenosine receptor A2A antagonists have emerged as potential treatment for Parkinson’s disease in the past decade. The authors have recently reported a series of adenosine receptor antagonists using heterocycles as bioisosteres for a potentially unstable acetamide. These compounds, while showing excellent potency and ligand efficiency, suffered from moderate cytochrome P 450 inhibition and high clearance. Here the authors report a new series of adenosine receptor A2A antagonists based on a 4-amino-5-carbonitrile pyrimidine template. Compounds from this new template exhibit excellent potency and ligand efficiency with low cytochrome P 450 inhibition. Although the clearance remains moderate to high, the leading compound, when dosed orally as low as 3 mg/kg, demonstrated excellent efficacy in the haloperidol induced catalepsy rat model for Parkinson’s disease.

This literature about this compound(120099-61-8)Product Details of 120099-61-8has given us a lot of inspiration, and I hope that the research on this compound((S)-3-Methoxypyrrolidine) can be further advanced. Maybe we can get more compounds in a similar way.

Reference:
Pyrimidine | C4H4N2 – PubChem,
Pyrimidine – Wikipedia