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Polymeric Membranes for Chiral Separation of Pharmaceuticals and Chemicals

期刊

POLYMER REVIEWS
卷 50, 期 2, 页码 113-143

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/15583721003698853

关键词

chiral separation; optical resolution; polymeric membranes; pharmaceutical; dialysis

资金

  1. National Science Council of Taiwan [97-2221-E-008-011-MY3, NSC97-2120-M-008-002]
  2. VGHUST Joint Research Program, Tsou's Foundation [98DFA0700006]
  3. Cathay General Hospital Project [98CGH-NCU-B1]
  4. Ministry of Education, Culture, Sports, Science, and Technology of Japan [21500436]

向作者/读者索取更多资源

The optical resolution or chiral separation of one specific enantiomer from others is in demand for the production of pharmaceuticals because many pharmaceuticals exist as stereoisomers, with each enantiomer having different biological activity. There is considerable demand for separation techniques appropriate for the large-scale resolution of chiral molecules. Chiral separation of racemic mixtures of pharmaceuticals through chiral or achiral polymeric membranes with or without a chiral selector represents a promising system for future commercial application. This article reviews several polymeric materials for the chiral separation of pharmaceuticals. Several chiral separation membranes were prepared from chiral polymers where enantioselectivity was generated from chiral carbons in the main chain. However, it is rather difficult to generate excellent chiral separation membranes from chiral polymers alone, because racemic penetrants mainly encounter the flexible side chains of the membrane polymers. Therefore, chiral separation membranes were also prepared using polymers with a chiral branch. Furthermore, several molecules have been used for specific interactions between the molecules and specific pharmaceuticals or drugs in chiral separation membranes. Cyclodextrins, crown ether derivatives, albumin, and DNA are commonly used as stereoselective ligands in chiral separation membranes. Finally, this article discusses future trends in polymeric materials for chiral separation membranes.

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