Avoidance of food effect on oral absorption profile of itraconazole by self-micellizing solid dispersion approach

2017 ◽  
Vol 32 (5) ◽  
pp. 273-276 ◽  
Author(s):  
Yoshiki Kojo ◽  
Kanako Kobayashi ◽  
Saori Matsunaga ◽  
Hiroki Suzuki ◽  
Yoshiki Seto ◽  
...  
2017 ◽  
Vol 97 ◽  
pp. 55-61 ◽  
Author(s):  
Yoshiki Kojo ◽  
Saori Matsunaga ◽  
Hiroki Suzuki ◽  
Hideyuki Sato ◽  
Yoshiki Seto ◽  
...  

2015 ◽  
Vol 51 (1) ◽  
pp. 101-109 ◽  
Author(s):  
Josimar Oliveira Eloy ◽  
Juliana Saraiva ◽  
Sérgio de Albuquerque ◽  
Juliana Maldonado Marchetti

Ursolic acid is a promising candidate for treatment of Chagas disease; however it has low aqueous solubility and intestinal absorption, which are both limiting factors for bioavailability. Among the strategies to enhance the solubility and dissolution of lipophilic drugs, solid dispersions are growing in popularity. In this study, we employed a mixture of the surfactants poloxamer 407 with sodium caprate to produce a solid dispersion containing ursolic acid aimed at enhancing both drug dissolution and in vivo trypanocidal activity. Compared to the physical mixture, the solid dispersion presented higher bulk density and smaller particle size. Fourier Transform Infrared Spectroscopy results showed hydrogen bonding intermolecular interactions between drug and poloxamer 407. X-ray diffractometry experiments revealed the conversion of the drug from its crystalline form to a more soluble amorphous structure. Consequently, the solubility of ursolic acid in the solid dispersion was increased and the drug dissolved in a fast and complete manner. Taken together with the oral absorption-enhancing property of sodium caprate, these results explained the increase of the in vivo trypanocidal activity of ursolic acid in solid dispersion, which also proved to be safe by cytotoxicity evaluation using the LLC-MK2 cell line.


2017 ◽  
Vol 19 (4) ◽  
pp. 1084-1090 ◽  
Author(s):  
Steven C Sutton ◽  
Richard Nause ◽  
Kuan Gandelman

2021 ◽  
Author(s):  
◽  
Rafael Leal Monteiro Paraiso

Computational oral absorption models, in particular PBBM models, provide a powerful tool for researchers and pharmaceutical scientists in drug discovery and formulation development, as they mimic and can describe the physiologically processes relevant to the oral absorption. PBBM models provide in vivo context to in vitro data experiments and allow for a dynamic understanding of in vivo drug disposition that is not typically provided by data from standard in vitro assays. Investigations using these models permit informed decision-making, especially regarding to formulation strategies in drug development. PBBM models, but can also be used to investigate and provide insight into mechanisms responsible for complex phenomena such as food effect in drug absorption. Although there are obviously still some gaps regarding the in silico construction of the gastrointestinal environment, ongoing research in the area of oral drug absorption (e.g. the UNGAP, AGE-POP and InPharma projects) will increase knowledge and enable improvement of these models. PBBM can nowadays provide an alternative approach to the development of in vitro–in vivo correlations. The case studies presented in this thesis demonstrate how PBBM can address a mechanistic understanding of the negative food effect and be used to set clinically relevant dissolution specification for zolpidem immediate release tablets. In both cases, we demonstrated the importance of integrating drug properties with physiological variables to mechanistically understand and observe the impact of these parameters on oral drug absorption. Various complex physiological processes are initiated upon food consumption, which can enhance or reduce a drug’s dissolution, solubility, and permeability and thus lead to changes in drug absorption. With improvements in modeling and simulation software and design of in vitro studies, PBBM modeling of food effects may eventually serve as a surrogate for clinical food effect studies for new doses and formulations or drugs. Furthermore, the application of these models may be even more critical in case of compounds where execution of clinical studies in healthy volunteers would be difficult (e.g., oncology drugs). In the fourth chapter we have demonstrated the establishment of the link between biopredictive in vitro dissolution testing (QC or biorelevant method) PBBM coupled with PD modeling opens the opportunity to set truly clinically relevant specifications for drug release. This approach can be extended to other drugs regardless of its classification according to the BCS. With the increased adoption of PBBM, we expect that best practices in development and verification of these models will be established that can eventually inform a regulatory guidance. Therefore, the application of Physiologically Based Biopharmaceutical Modelling is an area with great potential to streamline late-stage drug development and impact on regulatory approval procedures. Freie Schlagwörter / Tags


Author(s):  
Hayder Hussein Abduljabbar ◽  
Shaimaa Nazar Abd Alhammid

Objective: The aim of the present study was the enhancement in the solubility of tamoxifen citrate using solid dispersion which is considered as a great solution to overcome the poor water solubility behavior of tamoxifen citrate (TMX) by solvent evaporation technique using Soluplus® as a novel carrier then formulate it as an orodispersible tablet.Method: A total of 24 formulas were prepared as a solid dispersion by solvent evaporation method using Soluplus® as a polymeric solubilizer in the ratio of 1:1, 1:3, 1:5, 1:7, and 1:10 then formulated as orodispersible tablets by incorporating three types of superdisintegrants; croscarmellose, crospovidone, and sodium starch glycolate (SSG) with the solid dispersion. Characterization of the formulation was done using differential scanning colorimetry, Fourier transforms infrared spectroscopy, X-ray diffraction, and scanning electron microscope and the best formula was selected according to the disintegration and dissolution tests.Results and Discussion: Formula 22 were selected as the best formula which contains mixed types of superdisintegrants; croscarmellose and SSG with the fastest complete disintegration of 6.5 s and complete dissolution with <2 min.Conclusion: Accordingly, TMX was successfully enhanced its water solubility by converting its crystalline structure into the amorphous state through solid dispersion with Soluplus® and formulated as an orodispersible tablet to improve its oral absorption.


2013 ◽  
Vol 450 (1-2) ◽  
pp. 123-128 ◽  
Author(s):  
Kohsaku Kawakami ◽  
Shaoling Zhang ◽  
Rohit Singh Chauhan ◽  
Narimoto Ishizuka ◽  
Marina Yamamoto ◽  
...  

2018 ◽  
Vol 107 (1) ◽  
pp. 446-452 ◽  
Author(s):  
Hiroki Suzuki ◽  
Keisuke Yakushiji ◽  
Saori Matsunaga ◽  
Yukinori Yamauchi ◽  
Yoshiki Seto ◽  
...  

2016 ◽  
Vol 83 ◽  
pp. 282-287 ◽  
Author(s):  
Hyuck Jun Jung ◽  
Hye In Ahn ◽  
Ji Yeon Park ◽  
Myoung Jin Ho ◽  
Dae Ro Lee ◽  
...  

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