⚡️ Ardena Receives GMP Approval fo Netherlands Nanomedicine Facility 💊 Ardena, a specialist pharmaceutical Contract Development and Manufacturing Organisation (CDMO) with GMP facilities in Belgium, Spain, the Netherlands, and Sweden,… ➡️ Read more: https://lnkd.in/eD_xXCkc 🌐 Register for free focused news service covering the latest developments in relation to pharmaceutical supply: https://lnkd.in/eitNb3gD #pharma #pharmanews #APIupdates #offpatent #data #analysis #investments
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Ardena’s expanded nanomedicine facility granted full GMP approval: The Netherlands facility is designed to handle a wide range of nanomedicines, including lipid-based nanoparticles #News #Ardena #CDMO
Ardena’s expanded nanomedicine facility granted full GMP approval - PharmaTimes
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Selecting the appropriate housings for your analytical pH sensors plays a critical role in extending pH sensor lifetime. With the right sensor housing, it is possible to quadruple pH sensor lifetime in challenging conditions. This white paper focuses on how advances in retractable housings for analytical sensors help pharmaceutical companies to reduce their pH sensor turnover by extending sensor lifespan. #pH #housings #lifetime #mt #pro Learn more: https://okt.to/PYJ1ae
pH Sensor Lifetime Quadrupled
mt.com
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With Microfluidics, once suitable pilot batches are confirmed, scale-up to production manufacturing is seamless for all applications. Our M700 Series Microfluidizer® processors deliver the finest and most uniform distribution of submicron particle size at the highest shear rates available. Emulsions and suspensions are more stable, creating superior final products. Offering scalable, repeatable results, our M700 series is the proven, cost-effective choice that stands up to your high-demand production environment in the pharmaceutical, biotech, chemical, food or cosmetic sectors. Learn more about seamless scale up with Microfluidizer® production scale processors: https://hubs.la/Q02JWx930 #productionscaleprocessing #Microfluidics #Microfluidizertechnology #Microfluidizerprocessor #pharmaceuticalproduction #highshearfluidprocessing
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Device Having Multiple Sterile Fluid Paths Integrated Onto a Disposable Container A U.S. Patent for a "Device Having Multiple Sterile Fluid Paths Integrated onto a Disposable Container" was awarded to Sartorius on June 25th, 2024. The present invention are systems and a method for transferring chemical, pharmaceutical, and/or biological material into or out of a container. One system comprises a disposable container having at least one port for accessing the interior of the container, the port comprising at least one connecting protrusion extending parallel to the container. https://lnkd.in/g6UgwKCS #aspenalert #biotech #bioprocess
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Microfluidizer® technology is differentiated from other technologies in that not only are results repeatable from batch to batch, but also from lab environments to pilot and production volumes. The process of transferring the results of lab-scale R&D to the production scale is a critical link in the pharmaceutical production chain. All Microfluidizer® processors contain the same fixed geometry Interaction Chamber™ design. This is what produces the linearly scalable capability. Whatever the volume, the same results can be achieved from lab to manufacturing in batches from just 1mL to thousands of liters. Discover how Microfluidizer® processor technology provides repeatable results batch after batch, with seamless scale up from the lab to pilot or production scale. https://hubs.la/Q02rfNNP0 #scaleableproduction #Microfluidics #Microfluidizertechnology #Microfluidizerprocessors #pharmaceuticalproduction #pharmaceuticalprocessors #highshearprocessors
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In both the Pharmaceutical and Materials industries, Physical characterization through techniques like X-ray Diffraction (XRD), Differential Scanning Calorimetry (DSC), and Thermogravimetric Analysis (TGA) plays a crucial role in understanding the properties and behavior of substances. Integration in Industries: #Pharmaceutical Industry: Ensures quality and stability of drug products, assesses polymorphic forms, and monitors formulation stability. #Materials Industry: Guides material synthesis, quality control, and optimization of processing conditions. Using #XRD alongside #DSC can correlate crystalline structure with thermal behavior, aiding in understanding stability and processing. #TGA complements DSC by providing information on decomposition and mass loss during thermal events. In conclusion, XRD, DSC, and TGA are indispensable tools in both pharmaceutical and materials industries for comprehensive physical characterization, ensuring product quality, stability, and performance optimization.
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🔬 Exciting News! Shiva Analyticals now offers comprehensive XRD analysis services! Enhance your material characterization with our state-of-the-art XRD capabilities. Contact us to learn more about how we can support your analytical needs. #XRD #MaterialTesting #AnalyticalServices #ShivaAnalyticals Feel free to reach out for more information or to schedule your analysis! 🚀
In both the Pharmaceutical and Materials industries, Physical characterization through techniques like X-ray Diffraction (XRD), Differential Scanning Calorimetry (DSC), and Thermogravimetric Analysis (TGA) plays a crucial role in understanding the properties and behavior of substances. Integration in Industries: #Pharmaceutical Industry: Ensures quality and stability of drug products, assesses polymorphic forms, and monitors formulation stability. #Materials Industry: Guides material synthesis, quality control, and optimization of processing conditions. Using #XRD alongside #DSC can correlate crystalline structure with thermal behavior, aiding in understanding stability and processing. #TGA complements DSC by providing information on decomposition and mass loss during thermal events. In conclusion, XRD, DSC, and TGA are indispensable tools in both pharmaceutical and materials industries for comprehensive physical characterization, ensuring product quality, stability, and performance optimization.
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Did you know that Anton Paar’s high precision instruments are used throughout the pharmaceutical industry for raw material quality control, final goods assay/checks, as well as for research and development? ⭕ Assess incoming goods and control final product quality with our Density Meters, Refractometers and Polarimeters. ⭕ Characterise and identify compounds with our FTIR and Raman spectrometers ⭕ Characterise nano- and microparticles in dispersions and solutions using light-scattering techniques with our Particle Analysers. ⭕ Investigate the flow behaviour and properties of your product with our innovative range of Rheometers, Viscometers, Penetration Testers and Zeta Potential Analysers. ⭕ Examine crystal structures with our X- Ray diffraction and small angle X-ray scattering systems ⭕ Use our Microwave Synthesis solutions that enable true scale-up from initial research to full production or Microwave sample preparation systems for AA & ICP analysis. Find out more: https://loom.ly/CfbauIM #pharmaceutical #pharma #pharmaindustry #measurementinstruments
Pharmaceuticals | Anton Paar
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🔬💊 Enhance pharmaceutical process design with simulation! 🔬💊 Pharmaceutical process design and scale-up is inherently riddled with complex physicochemical processes influenced by boundary, material, design & operating parameters. Add to this, the varying length and time scales in scale-up from the lab to production, and the level of complexity rises even further. Read this blog and learn how simulation plays a vital role in the industry, with capabilities providing unique and detailed information for operations across fluids, particles and solid mechanics. 👉https://sie.ag/6xSpxr We can help finance your lab: https://sie.ag/63Ldwc
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Particle analysis improves outcomes in pharmaceutical and crystalline materials design
Particle analysis improves outcomes in pharmaceutical and crystalline
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