Die filling is a critical process step during tablet production as it defines the tablet weight. Achieving die fill consistency during production of mini-tablets, tablets with diameters ≤6 mm, is considerably more challenging. Although die filling in rotary presses had been studied in relation to the feed paddle design, paddle speed, and turret speed, it is unclear how these process variables could impact mini-tablet production and product properties. In this study, 1.8 and 3 mm mini-tablets were prepared using a rotary press with multiple-tip tooling using different process configurations. Mini-tablet weight variation within and across compaction cycles were determined using data from compression roller displacement and mini-tablet weight. Higher die fill densities were achieved with a flat feed wheel paddle and high paddle speed. This was attributed to better granule fluidization in the feed frame, which also increased the intercycle weight variation and reduced tensile strength. The turret speed did not impact mini-tablet properties significantly. Granule overlubrication in the feed frame potentially reduced mini-tablet tensile strength during compaction. The number of paddle passes in the die fill region was correlated to mini-tablet die fill performance. Findings from this study could provide better insights into the relationship between process variables and mini-tablet product quality.
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http://dx.doi.org/10.1016/j.xphs.2018.09.005 | DOI Listing |
Pathologie (Heidelb)
December 2024
Institut für Pathologie, Uniklinik RWTH Aachen, Pauwelsstraße 30, 52074, Aachen, Deutschland.
Background: The structured recording of data from histopathological findings and their interoperability is critical for quality assurance in pathology.
Materials And Methods: To harmonize the content of the reports, the International Collaboration on Cancer Reporting (ICCR) has defined standardized datasets. These datasets are not yet available in German nationwide.
Materials (Basel)
November 2024
Institute of Electrical Engineering and Advanced Electromagnetic Drive Technology, Qilu Zhongke, Jinan 250013, China.
Powder molding technology is a versatile process widely used in the pharmaceutical, ceramic, chemical, food, and powder metallurgy industries. The powder-filling mold process is a key link in powder compression molding, and the uniformity and consistency of powder filling directly affect the final quality of powder products. Powder filling of molds is a more complex flow process.
View Article and Find Full Text PDFNervenarzt
December 2024
Ambulanz für ALS und andere Motoneuronerkrankungen, Charité - Universitätsmedizin Berlin, Augustenburger Platz 1, 13353, Berlin, Deutschland.
Background: Amyotrophic lateral sclerosis (ALS) is a disease that still has to be primarily treated symptomatically or palliatively. It is therefore all the more important, in addition to initiating treatment, such as percutaneous endoscopic gastrostomy (PEG), noninvasive ventilation therapy (NIVT) and invasive ventilation therapy via tracheotomy (IVT), to discuss the possible termination of these measures early on.
Question: What is the importance of advance directives for those affected and where are possible deficits in therapy planning for the end of life?
Material And Method: Between March 2017 and January 2019 patients with a clinically confirmed diagnosis of ALS at six treatment centers were asked to fill out a questionnaire.
Klin Monbl Augenheilkd
November 2024
Zentrum für Optische Technologien, Hochschule Aalen, Deutschland.
Background: The increasing use of electronic documentation extends to consultation for the visually impaired. The aim of this project was to develop a set of forms and electronic patient records specifically for low vision care, giving equal consideration to ophthalmological, orthoptic, and optometric specialities, as well as teaching aspects.
Patients And Methods: FIDUS software (FIDUS Arztservice Wente GmbH, Darmstadt, Germany) is a well-established tool in ophthalmology practices and clinics.
Adv Healthc Mater
January 2025
Department of Pharmaceutical Sciences, Div. Pharmacology, Utrecht University, Utrecht, 13102, The Netherlands.
A novel approach merging melt electrowriting (MEW) with matched die thermoforming to achieve scaffolds with micron-sized curvatures (200 - 800 µm versus 1000 µm of mandrel printing) for in vitro modeling of the kidney proximal tubule (PT) is proposed. Recent advances in this field emphasize the relevance of accurately replicating the intricate tissue microenvironment, particularly the curvature of the nephrons' tubular segments. While MEW offers promising capabilities for fabricating highly and porous precise 3D structures mimicking the PT, challenges persist in approximating the diameter of tubular scaffolds to match the actual PT.
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