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通过引入氢键相互作用来稳定喹那普利。

Stabilization of quinapril by incorporating hydrogen bonding interactions.

作者信息

Roy B N, Singh G P, Godbole H M, Nehate S P

机构信息

Lupin Ltd. (Research Park), 46A, 47A - Nande Village, Mulshi Taluka, Pune-411 042, India.

出版信息

Indian J Pharm Sci. 2009 Jul;71(4):395-405. doi: 10.4103/0250-474X.57288.

Abstract

In the present study stability of various known solvates of quinapril hydrochloride has been compared with nitromethane solvate. Nitromethane solvate was found to be more stable compared to other known solvates. Single crystal X-ray diffraction analysis of quinapril nitromethane solvate shows intermolecular hydrogen bonding between quinapril molecule and nitromethane. Stabilization of quinapril by forming strong hydrogen bonding network as in case of co-crystals was further studied by forming co-crystal with tris(hydroxymethyl)amino methane. Quinapril free base forms a stable salt with tris(hydroxymethyl)amino methane not reported earlier. Quinapril tris(hydroxymethyl)amino methane salt found to be stable even at 80 degrees for 72 h i.e. hardly any formation of diketopiperazine and diacid impurity. As expected single crystal X-ray diffraction analysis reveals tris(hydroxymethyl)amino methane salt of quinapril shows complex hydrogen bonding network between the two entities along with ionic bond. The properties of this stable salt - stable in solid as well as solution phase, might lead to an alternate highly stable formulation.

摘要

在本研究中,已将盐酸喹那普利各种已知溶剂化物的稳定性与硝基甲烷溶剂化物进行了比较。结果发现,与其他已知溶剂化物相比,硝基甲烷溶剂化物更稳定。喹那普利硝基甲烷溶剂化物的单晶X射线衍射分析表明,喹那普利分子与硝基甲烷之间存在分子间氢键。通过与三(羟甲基)氨基甲烷形成共晶体,进一步研究了如在共晶体情况下通过形成强氢键网络来稳定喹那普利的方法。喹那普利游离碱与三(羟甲基)氨基甲烷形成了一种以前未报道过的稳定盐。喹那普利三(羟甲基)氨基甲烷盐即使在80摄氏度下放置72小时也很稳定,即几乎没有二酮哌嗪和二酸杂质的形成。正如预期的那样,单晶X射线衍射分析表明,喹那普利的三(羟甲基)氨基甲烷盐在两个实体之间显示出复杂的氢键网络以及离子键。这种稳定盐在固相和溶液相中均稳定的性质,可能会导致一种替代的高稳定性制剂。

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