Title of article
Advances in simultaneous DSC–FTIR microspectroscopy for rapid solid-state chemical stability studies: Some dipeptide drugs as examples
Author/Authors
Lin، نويسنده , , Shan-Yang and Wang، نويسنده , , Shun-Li، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2012
Pages
18
From page
461
To page
478
Abstract
The solid-state chemistry of drugs has seen growing importance in the pharmaceutical industry for the development of useful API (active pharmaceutical ingredients) of drugs and stable dosage forms. The stability of drugs in various solid dosage forms is an important issue because solid dosage forms are the most common pharmaceutical formulation in clinical use. In solid-state stability studies of drugs, an ideal accelerated method must not only be selected by different complicated methods, but must also detect the formation of degraded product. In this review article, an analytical technique combining differential scanning calorimetry and Fourier-transform infrared (DSC–FTIR) microspectroscopy simulates the accelerated stability test, and simultaneously detects the decomposed products in real time. The pharmaceutical dipeptides aspartame hemihydrate, lisinopril dihydrate, and enalapril maleate either with or without Eudragit E were used as testing examples. This one-step simultaneous DSC–FTIR technique for real-time detection of diketopiperazine (DKP) directly evidenced the dehydration process and DKP formation as an impurity common in pharmaceutical dipeptides. DKP formation in various dipeptides determined by different analytical methods had been collected and compiled. Although many analytical methods have been applied, the combined DSC–FTIR technique is an easy and fast analytical method which not only can simulate the accelerated drug stability testing but also at the same time enable to explore phase transformation as well as degradation due to thermal-related reactions.
echnique offers quick and proper interpretations.
Keywords
Solid-state chemistry , Dipeptides , stability , DSC , DSC–FTIR , dehydration , Intramolecular cyclization , diketopiperazines
Journal title
Advanced Drug Delivery Reviews
Serial Year
2012
Journal title
Advanced Drug Delivery Reviews
Record number
1763330
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