The effect of disorder on the chemical reactivity of an organic solid, tetraglycine methyl ester: change of the reaction mechanism
Many drugs undergo chemical changes in the solid state, and understanding chemical reactivity of organic crystals is a critical factor in the drug development process. In this report, the impact of milling on the thermal chemical reactivity of an organic solid, tetraglycine methyl ester, was studied...
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Published in: | Journal of pharmaceutical sciences Vol. 91; no. 2; p. 584 |
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01-02-2002
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Abstract | Many drugs undergo chemical changes in the solid state, and understanding chemical reactivity of organic crystals is a critical factor in the drug development process. In this report, the impact of milling on the thermal chemical reactivity of an organic solid, tetraglycine methyl ester, was studied using DSC, isothermal calorimetry, chemical analysis (HPLC and insoluble residue determination), and powder X-ray diffraction. Significant changes in both X-ray diffraction patterns and DSC curves were detected after very brief milling (5 s). The changes were interpreted as the formation of a disordered phase. The disordered phase was tentatively identified as a crystal mesophase that combines properties of both crystalline (i.e., long-range order) and amorphous (i.e., glass transition) states. In the disordered material, the reaction mechanism changed from the methyl transfer reaction, which was observed in the intact crystal, to a polycondensation reaction when the reaction was performed at 165 degrees C. Such changes in the reaction mechanism occurred in materials milled for > 30 s. |
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AbstractList | Many drugs undergo chemical changes in the solid state, and understanding chemical reactivity of organic crystals is a critical factor in the drug development process. In this report, the impact of milling on the thermal chemical reactivity of an organic solid, tetraglycine methyl ester, was studied using DSC, isothermal calorimetry, chemical analysis (HPLC and insoluble residue determination), and powder X-ray diffraction. Significant changes in both X-ray diffraction patterns and DSC curves were detected after very brief milling (5 s). The changes were interpreted as the formation of a disordered phase. The disordered phase was tentatively identified as a crystal mesophase that combines properties of both crystalline (i.e., long-range order) and amorphous (i.e., glass transition) states. In the disordered material, the reaction mechanism changed from the methyl transfer reaction, which was observed in the intact crystal, to a polycondensation reaction when the reaction was performed at 165 degrees C. Such changes in the reaction mechanism occurred in materials milled for > 30 s. |
Author | Shalaeva, Marina Shalaev, Evgenyi Zografi, George |
Author_xml | – sequence: 1 givenname: Evgenyi surname: Shalaev fullname: Shalaev, Evgenyi email: evgeni_y_shalaev@groton.pfizer.com organization: School of Pharmacy, University of Wisconsin-Madison, 425 N. Charter St., Madison, Wisconsin 53706, USA. evgeni_y_shalaev@groton.pfizer.com – sequence: 2 givenname: Marina surname: Shalaeva fullname: Shalaeva, Marina – sequence: 3 givenname: George surname: Zografi fullname: Zografi, George |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/11835215$$D View this record in MEDLINE/PubMed |
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Copyright | Copyright 2002 Wiley-Liss, Inc. and the American Pharmaceutical Association J Pharm Sci 91:584-593, 2002 |
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SubjectTerms | Calorimetry - methods Chemistry, Pharmaceutical Chromatography, High Pressure Liquid Crystallization Differential Thermal Analysis - methods Esters Oligopeptides - chemistry Organic Chemicals - chemistry X-Ray Diffraction |
Title | The effect of disorder on the chemical reactivity of an organic solid, tetraglycine methyl ester: change of the reaction mechanism |
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