Pharmaceutical Cocrystals and Their Physicochemical Properties.

Pharmaceutical Cocrystals and Their Physicochemical Properties.
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DOI:
10.1021/cg900129f
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发表时间:
2009-06-03
影响因子:
3.8
通讯作者:
Newman, Ann
Newman, Ann
中科院分区:
化学2区
文献类型:
--
作者:
Schultheiss, Nate;Newman, Ann

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在过去的20年里,在晶体工程领域内,概述共晶的设计策略、生长技术和表征方面的进展的出版物数量持续显著增加。然而,仅在最近十年内,共晶才在药物中找到它们的位置,主要是由于它们能够改变物理化学性质而不损害活性药物成分(API)的结构完整性,因此可能不损害生物活性。这篇综述文章将突出和讨论在过去10年中所取得的进展有关的物理和化学性质的改善,通过药物共晶材料,并希望,拉近晶体工程和制药科学领域。这篇综述文章将突出和讨论在过去10年中所取得的进展有关的物理和化学性质的改善,通过药物共晶体,并希望,拉近晶体工程和制药科学领域。
Over the last 20 years, the number of publications outlining the advances in design strategies, growing techniques, and characterization of cocrystals has continued to increase significantly within the crystal engineering field. However, only within the last decade have cocrystals found their place in pharmaceuticals, primarily due to their ability to alter physicochemical properties without compromising the structural integrity of the active pharmaceutical ingredient (API) and thus, possibly, the bioactivity. This review article will highlight and discuss the advances made over the last 10 years pertaining to physical and chemical property improvements through pharmaceutical cocrystalline materials and, hopefully, draw closer the fields of crystal engineering and pharmaceutical sciences. This review article will highlight and discuss the advances made over the last 10 years pertaining to physical and chemical property improvements through pharmaceutical cocrystals and, hopefully, draw closer the fields of crystal engineering and pharmaceutical sciences.
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