scholarly journals Solid-State Characterization of Different Crystalline Forms of Sitagliptin

Materials ◽  
2019 ◽  
Vol 12 (15) ◽  
pp. 2351 ◽  
Author(s):  
Nayana C. F. Stofella ◽  
Andressa Veiga ◽  
Laiane J. Oliveira ◽  
Elisa F. Montin ◽  
Itamar F. Andreazza ◽  
...  

Sitagliptin is an inhibitor of the enzyme dipeptidyl peptidase-4, used for the treatment of type 2 diabetes mellitus. The crystal structure of active pharmaceutical solids determines their physical and chemical properties. The polymorphism, solvates and hydrates can influence the free energy, thermodynamic parameters, solubility, solid-state stability, processability and dissolution rate, besides directly affecting the bioavailability. Thus, the physicochemical characterization of an active pharmaceutical ingredient is required to guarantee the rational development of new dosage forms. In this context, we describe herein the solid-state characterization of three crystalline forms of sitagliptin: sitagliptin phosphate monohydrate, sitagliptin phosphate anhydrous and sitagliptin base form. The investigation was carried out using differential scanning calorimetry (DSC), thermogravimetry (TG)/derivative thermogravimetry (DTG), spectroscopic techniques, X-ray powder diffraction (XRPD) and morphological analysis by scanning electron microscopy. The thermal analysis revealed that during the dehydration of sitagliptin phosphate monohydrate (Tpeak = 134.43 °C, ΔH = −1.15 J g−1) there is a characteristic crystalline transition event, which alters the physicochemical parameters of the drug, such as the melting point and solubility. The crystalline behavior of sitagliptin base form differs from that of sitagliptin phosphate monohydrate and sitagliptin phosphate anhydrous, mainly with regard to the lower temperature of the fusion event. The melting point (Tpeak) values obtained were 120.29 °C for sitagliptin base form, 206.37 °C for sitagliptin phosphate monohydrate and 214.92 °C for sitagliptin phosphate anhydrous. In relation to the thermal stability, sitagliptin phosphate monohydrate and sitagliptin phosphate anhydrous showed a slight difference; however, both are more thermostable than the base molecule. Therefore, through this study it was possible to establish the most suitable crystalline form of sitagliptin for the development of a safe, effective and appropriate pharmaceutical dosage form.

2010 ◽  
Vol 99 (9) ◽  
pp. 3684-3697 ◽  
Author(s):  
Faraj Atassi ◽  
Chen Mao ◽  
Ahmad S. Masadeh ◽  
Stephen R. Byrn

Steroids ◽  
2011 ◽  
Vol 76 (3) ◽  
pp. 261-268 ◽  
Author(s):  
Kari V. Ahonen ◽  
Manu K. Lahtinen ◽  
Arto M. Valkonen ◽  
Martin Dračínský ◽  
Erkki T. Kolehmainen

2017 ◽  
Vol 41 (19) ◽  
pp. 11361-11371 ◽  
Author(s):  
Clodoaldo Valverde ◽  
Wesley F. Vaz ◽  
Jean M. F. Custodio ◽  
Vitor S. Duarte ◽  
Paulo S. Carvalho-Jr ◽  
...  

Extensive solid state characterization of a novel asymmetric azine and its environmental polarization effect is reported.


1997 ◽  
Vol 86 (12) ◽  
pp. 1458-1463 ◽  
Author(s):  
Richard T. Liggins ◽  
W.L. Hunter ◽  
Helen M. Burt

2021 ◽  
Vol 23 (1) ◽  
pp. 16
Author(s):  
Vienna Saraswaty ◽  
Rossy Choerun Nissa ◽  
Bonita Firdiana ◽  
Akbar Hanif Dawam Abdullah

THE PHYSICOCHEMICAL CHARACTERISTICS OF RECYCLED-PLASTIC PELLETS OBTAINED FROM DISPOSABLE FACE MASK WASTES. The government policy to wear a face mask during the COVID-19 pandemic has increased disposable face mask wastes. Thus, to reduce such wastes, it is necessary to evaluate the physicochemical characteristics of disposable face masks wastes before the recycling process and the recycled products. In this study, physicochemical characterization of the 3-ply disposable face masks and the recycled plastic pellets after disinfection using 0.5% v/v sodium hypochlorite were evaluated. A set of parameters including the characterization of surface morphology by a scanning electron microscope (SEM), functional groups properties by a fourier transform infra-red spectroscopy (FT-IR), thermal behavior by a differential scanning calorimetry (DSC), tensile strength and elongation at break were evaluated. The surface morphological of each layer 3-ply disposable face mask showed that the layers were composed of non-woven fibers. The FT-IR evaluation revealed that 3-ply disposable face mask was made from a polypropylene. At the same time, the DSC analysis found that the polypropylene was in the form of homopolymer. The SEM analysis showed that the recycled plastic pellets showed a rough and uneven surface. The FT-IR, tensile strength and elongation at break of the recycled plastic pellets showed similarity with a virgin PP type CP442XP and a recycled PP from secondary recycling PP (COPLAST COMPANY). In summary, recycling 3-ply disposable face mask wastes to become plastic pellets is recommended for handling disposable face mask wastes problem.


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