Binders play an important role in the tableting process of pharmaceuticals. They are used to improve the cohesion and plasticity of the powder mixture, which enhances the processability of the tablet and reduces the risk of tablet breakage during manufacture.
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Binder
Comparison of properties on Orally Disintegrating Tablets (ODTs) produced by direct compression or…
Abstract
Orally disintegrating tablets (ODTs) is a popular drug delivery system as they dissolve in the mouth, usually within seconds which enables easy medication for patients with problem swallowing. In this thesis properties of ODTs were compared when produced with direct compression of the…
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One Step In Situ Co-Crystallization of Dapsone and Polyethylene Glycols during Fluidized Bed…
Abstract
Several studies have demonstrated the feasibility of in situ co-crystallization in different pharmaceutical processes such as spray drying, hot melt extrusion, and fluidized bed granulation (FBG) to produce co-crystal-in-excipient formulations. However, no previous studies have examined…
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The effect of excipients on oral lyophilizates quality attributes
Pharmaceutical industry is constantly focused on researching patient-centered dosage forms that can maximize the therapeutic potential of an active pharmaceutical ingredient, as for example orodispersible form. The main advantage of orodispersible dosage forms is that they are suitable for patients…
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A technical note: Characterization and evaluation of novel, ready to use coprocessed excipient in…
Abstract
A tablet is composed of different excipients and drug. All excipients have different properties with applications. Excipients are used to provide bulk and help to bind API into a dosage form, excipient should be inert in nature with respectable physical properties. Because the physical…
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Comparing the Performance of Raman and Near-Infrared Imaging in the Prediction of the In Vitro…
In this work, the performance of two fast chemical imaging techniques, Raman and near-infrared (NIR) imaging is compared by utilizing these methods to predict the rate of drug release from sustained-release tablets. Sustained release is provided by adding hydroxypropyl methylcellulose (HPMC), as its…
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In-line particle size measurement during granule fluidization using convolutional neural…
This paper presents a machine learning-based image analysis method to monitor the particle size distribution of fluidized granules. The key components of the direct imaging system are a rigid fiber-optic endoscope, a light source and a high-speed camera, which allow for real-time monitoring of the…
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A tabletability change classification system in supporting the tablet formulation design via the…
In this paper, the material library approach was used to uncover the pattern of tabletability change and related risk for tablet formulation design under the roll compaction and dry granulation (RCDG) process. 31 materials were fully characterized using 18 physical parameters and 9 compression…
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Effect of process parameters in high shear granulation on characteristics of a novel co-processed…
In this study, insights into the development and optimization of a co-processed excipient based on mesoporous silica are presented. The main advantage of such a material is that it is appropriate for direct tablet compression and has a sufficiently large specific surface area to be suitable for…
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The impact of common pharmaceutical excipients on the gut microbiota
ABSTRACT
Introduction
Increasing attention is being afforded to understanding the bidirectional relationships that exist between oral medications and the gut microbiota, in an attempt to optimize pharmacokinetic performance and mitigate unwanted side effects. While a wealth of research has…
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AVICEL® PH LN – A Low Nitrite Microcrystalline Cellulose
Pharma Solutions at IFF provides you access to one of the broadest microcrystalline cellulose (MCC) portfolios in the industry. Backed by decades of innovation, and expertise, Avicel® PH offers a long history of manufacturing the highest-quality pharmaceutical grade MCC.
Our deep polymer…
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