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Optimization of a lyophilized fast-disintegrating tablet (LFDT) formulation containing naratriptan hydrochloride, an antimigraine drug, was the foremost objective of the study, aiming in achieving fast headache pain relief. The Design-Expert® v10 software was used to generate formulations using D-optimal mixture design with four components: gelatin (X), hydrolyzed gelatin (X), glycine (X), and mannitol (X) of total solid material (TSM) w/w. The effect of the relative proportion of each component was determined on friability (Y), hardness (Y), and in vitro disintegration time (Y), which was then applied for formulation optimization. In addition, their effect on tablet porosity was determined via scanning electron microscopy (SEM). Drug-excipient interaction was evaluated using differential scanning calorimetry (DSC). A comparative dissolution study against the conventional tablets was studied. Accelerated stability study was carried out in (Al/Al) and (Al/PVC) blister packs. An in vivo pharmacokinetic study was carried out to compare the optimized formulation and the conventional tablets. The optimized formulation's responses were 0.30%, 3.4 kg, and 6.12 s for Y, Y, and Y, respectively. No drug-excipient interaction was specified via DSC. The optimized formulation exhibited porous structure as determined via SEM. Dissolution study demonstrated complete dissolution within 1.5 min. Study indicated stability for 78 months in (Al/Al) blister packs. In vivo pharmacokinetic study demonstrated that C, AUC, and AUC were significantly higher for the developed formulation. As well, the T was 1 h earlier than that of convenient tablet. An LFDT would achieve a faster onset of action for naratriptan compared to other formulations.
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http://dx.doi.org/10.1208/s12249-018-1061-9 | DOI Listing |
Pharmaceutics
August 2025
Department of Pharmacy and Biotechnology, Alma Mater Studiorum, University of Bologna, 40127 Bologna, Italy.
: Early gut colonization by bifidobacteria, occurring more favorably in vaginally born infants than in those delivered via C-section, is crucial for maintaining overall health. The study investigated the health-promoting properties of BC17 both as viable cells and as postbiotics (i.e.
View Article and Find Full Text PDFSci Rep
August 2025
Department of Pharmaceutics, College of Pharmacy, King Khalid University, Al Faraa, Abha, 62223, Saudi Arabia.
We evaluated the properties of tablets by artificial intelligence and machine learning computational approach with integration of optimizer. A large dataset on formulations properties and corresponding tablet disintegration time was collected and the models were used to fit the dataset. Utilizing a dataset of approximately 2,000 entries encompassing molecular properties, physical properties, excipient composition, and formulation characteristics, three ML models were evaluated: TabNet, Radial Basis Function Support Vector Regression (RBF-SVR), and Neural Oblivious Decision Ensembles (NODE).
View Article and Find Full Text PDFPharmaceutics
May 2025
Imaginot Pty Ltd., Yeerongpilly Corporate Park, 44 Station Street, Yeerongpilly, Brisbane, QLD 4105, Australia.
This paper describes the use of physiologically based biopharmaceutics modelling (PBBM) to predict the effect of food on diclofenac and ibuprofen absorption from ultra-rapid-release Surge Dose tablets. Fasted-state diclofenac pharmacokinetics (PK) were used with published IV data and biorelevant dissolution data for the diclofenac tablets to develop a mechanistic PBBM model which could be used to predict absorption. The resultant model that best fitted the PK data showed that, in vivo, the ultra-rapid-release tablets behaved like a solution with a median time to peak plasma concentration (T) of 20 min.
View Article and Find Full Text PDFCurr Pharm Des
June 2025
Pharmaceutical Sciences Department, College of Pharmacy, Dubai Medical University, Dubai, United Arab Emirates.
Introduction: This study aimed to formulate and evaluate dimenhydrinate (DMH) as fastdisintegrating tablets (FDTs) complexed with β-cyclodextrin (β-CD) to enhance its solubility, dissolution profile, and pharmacological performance.
Methods: A DMH:β-CD inclusion complex was prepared at a 1:1 molar ratio using the kneading method. Characterization was performed through phase solubility studies, FTIR analysis, molecular docking, and in vitro dissolution testing.
Eur J Pharm Sci
September 2025
University of Helsinki, Faculty of Pharmacy, Viikinkaari 5 E, Helsinki, 00014, Finland. Electronic address:
Pharmaceutical manufacturing has surged in drug development with the rise of Pharma 4.0, leveraging artificial intelligence (AI) to improve efficiency, optimize resource use, and reduce production times. Direct Tablet Compression (DTC), a key manufacturing technique, depends on the physicochemical properties of active pharmaceutical ingredients (API), excipients, and process parameters.
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