Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research (NIPER), Sector 67, S.A.S. Nagar 160 062, Punjab, India.
Department of Pharmacy, Birla Institute of Technology & Science - Pilani, Hyderabad Campus, Jawahar Nagar, Hyderabad 500 078, India.
Bioorg Chem. 2019 Feb;82:246-252. doi: 10.1016/j.bioorg.2018.09.023. Epub 2018 Sep 19.
Tuberculosis (TB) is the leading cause of death worldwide due to bacterial infection. The scarcity of effective drugs to treat the disease and the compounded problems due to the development of resistance to the available therapeutics and TB-HIV synergism drive medicinal chemists to search for new anti-Mtb chemotypes. Towards this endeavor, the α-sulfonamidophosphonate moiety has been identified as new anti-Mtb chemotype through the scaffold hopping as the design strategy, development of an effective synthetic methodology using green chemistry tools, and evaluation of anti-TB activity of the synthesized compounds against Mtb (Mycobacterium tuberculosis) H37Rv. Out of the sixteen compounds, five have been found to have MIC values of 1.56 μg/mL and one 3.125 μg/mL. The five most active compounds are non-cytotoxic to RAW 264.7 (mouse leukemic monocyte macrophage) cell lines. The compounds are found to possess acceptable values of the various parameters for drug likeness in accordance with the Lipinski rule with the topological surface area (tPSA) of >70 that suggest eligibility of these new molecular entities for further consideration as potential drug candidates.
结核病(TB)是全球因细菌感染导致死亡的主要原因。治疗该疾病的有效药物稀缺,加上现有疗法耐药性的加剧以及 TB-HIV 的协同作用,促使药物化学家寻找新的抗结核化学型。为此,研究人员通过支架跳跃作为设计策略,利用绿色化学工具开发出有效的合成方法,并对合成化合物的抗结核活性进行评估,发现α-磺酰胺膦酸酯部分是新的抗结核化学型。在 16 种化合物中,有 5 种化合物的 MIC 值为 1.56μg/mL,有 1 种化合物的 MIC 值为 3.125μg/mL。其中 5 种最活跃的化合物对 RAW 264.7(鼠白血病单核巨噬细胞)细胞系无细胞毒性。这些化合物具有可接受的药物相似性参数值,符合 Lipinski 规则,拓扑表面积(tPSA)>70,这表明这些新的分子实体有资格进一步考虑作为潜在的药物候选物。