Microfluidics is celebrating 40 years of nanotechnology application success. Read our blog to learn about our journey as a leader in the design and production of laboratory and commercial processing equipment used in the production of micro- and nano-scale materials for pharmaceutical, biotech, chemical and numerous other industries. Starting in 1983, under the leadership of Irwin Gruverman, chairman and president of Biotechnology Development Corporation (BDC), Microfluidics Corporation was founded to “exploit a new fluid flow principle discovered by Arthur D. Little, Inc., (ADL) and licensed exclusively to BDC." Throughout Microfluidics’ dynamic history, it has been a part of extraordinary scientific breakthroughs and has partnered with its customers in making the impossible, possible. Microfluidics has contributed to bringing vaccines across the world which have helped eradicate some of the most harmful diseases. Read more about Microfluidics' success throughout the years: https://hubs.la/Q028wDFK0 #Microfluidics #Microfluidizertechnology #Microfluidizerprocessor #Biotechnologydevelopmentcorporation
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Cell disruption is a critical step in vaccine development and it’s important to select the right method. Using the correct method from the start will support your project’s viability and value through to production. Conventional methods such as bead milling, mortar and pestle, sonication, chemical lysis, and French press face drawbacks and leave product vulnerable to variable temperature and shear, protein loss through overheating or contamination, and uneven particle size distribution. In addition, many cell disruption techniques are simply not practical to transfer up from lab to production scale. How do the various methods compare and why is Microfluidizer® technology considered an industry leader in cell disruption? Read more to learn why top pharmaceutical companies trust Microfluidics for their cell disruption needs: https://hubs.la/Q02TcrXc0 #celldisruption #celllyse #cellrupture #Microfluidics #Microfluidizertechnology #celldisruptionmethods #scaleuptechnology #scalabilityproduction
Cell disruption methods: 6 studies with Microfluidizer technology
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Although fuel cells were first invented almost a century ago, manufacturing and production for commercial applications did not begin until early 2000s due to technological hurdles. Since then, the types and sizes of fuel cells have expanded considerably to meet industry demands. However, fuel cell catalyst manufacturing challenges exist and must be addressed among all sizes and types. These challenges include processing times, contaminations, efficiency and scalability to name a few. Read our latest blog on Microfluidics' Impact on Efficient Energy Sources to learn how Microfluidizer® technology is a superior technology for addressing these production challenges: https://hubs.la/Q02T1yLk0 #Microfluidics #Microfluidizertechnology #energyproduction #fuelcellproduction #technologicalchallengesforfuelcellproduction
Microfluidics Impact on Efficient Energy Sources
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Why do so many companies trust Microfluidics' electrically powered LM20 lab scale unit to deliver remarkably consistent R & D results? The LM20 offers a compact design, simple installation, convenience, ease of use, and easy maintenance. This benchtop high-pressure homogenizer ensures that 100% of your material undergoes exactly the same treatment, yielding consistently reliable results that include uniform particle and droplet size reduction, submicron emulsions and high-yield cell disruption. Microfluidizer® technology allows easy and linear scale up to achieve consistent, reliable results under the same operating conditions. Learn more about our LM20 and how Microfluidizer® technology results can go from investigatory R&D runs to small pilot trials to full production volumes. https://hubs.la/Q02SSjLK0 #Microfluidics #Microfluidizertechnology #Microfluidizerprocessors #Microfluidizerlaboratoryhomogenizers #laboratoryhomogenizersAsk us about our robust benchtop equipment.
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Microfluidics is excited to share their expertise about the NEW AWARD-WINNING MP350 Microlyser™ Processor! This innovative technology is an impressive solution for production scale cell disruption manufacturing. The MP350 Enhanced Biopharma Grade Microlyser™ processor is uniquely designed to overcome some of cell disruption's most complex production scale manufacturing issues. This remarkable production scale processor employs Microfluidics' proprietary Interaction Chamber™ technology with a patented sanitary electric pumping system, to deliver industry-leading production scale cell disruption yields. Reach out to our team to learn more about this incredible processor: https://hubs.la/Q02SJh7W0 #celldisruption #celllyse #cellrupture #celldisruptionproduction #Microfluidics #Microlyserprocessor #Microlysertechnology #productionscalecelldisruption
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Are you heading to AAPS PharmSci 360 this year? Are you interested in learning about the latest advances in global health improvements? Join us Oct. 20-23 at stand 2239 - AAPS PharmSci 360 in Salt Lake City, UT. We have an applications, sales, innovation and technology team of experts coming to answer all of your questions to help you achieve your nanotechnology goals. Come meet our team - they would love to talk with you! Contact us today: https://hubs.la/Q02SqtwQ0 #Microfluidics #Microfluidizertechnology #Microfluidizerprocessors #vaccineproduction #nanotechnologymanufacturing #AAPS2024 #AAPSPharmSci360 #AAPSPharmScie3602024
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The M110EH Microfluidizer® processor - an ideal choice for continuous, high shear fluid processing. With the same fixed-geometry Interaction Chamber™ technology as all Microfluidics models, the M110EH produces repeatable results to those achieved in the lab. It is ideally positioned for pilot scale volumes and handles sample sizes as small as 120 ml up to batches as large as 100 liters. By maximizing energy-per-unit fluid volume, this machine produces uniform submicron particle and droplet sizes. Learn more about this powerful processor which bridges the gap between lab-scale and production scale volumes: https://hubs.la/Q02ShZnN0 #Microfluidizertechnology #Microfluidics #Microfluidizerprocessor #productionvolumes #pilotscalevolumes #highshearprocessors #highshearcommercialprocessing #highshearpharmaceuticalprocessing #pharmaceuticalprocessing
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Why is the LM10 benchtop Microfluidizer® processor so popular? This digitally controlled lab unit is designed for the budget-conscious researcher working with small sample material processing. Microfluidizer® technology is the industry leader in high pressure processing by efficiently converting fluid pressure into shear forces. This unique solution of maintaining consistent process pressure ensures 100% of your material gets exactly the same treatment. This Microfluidizer® processor is unmatched in submicron particle/droplet size reduction, cell disruption, product yield, and guaranteed process scale-up. Learn more: https://hubs.la/Q02S6Pyz0 #Microfluidizertechnology #Microfluidizerprocessor #Microfluidics #benchtopprocessor #highpressureprocessing #particlesizereduction
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Dr. Yang Su, Microfluidics' resident subject matter expert, offered an insightful webinar focused on cosmetic manufacturing and methods of gaining competitive advantages through stable nanoemulsions, liposome formations, and other applications. Covering a broad scope of cosmetic manufacturing issues, this webinar not only explored achieving contamination-free, small formulations but it also examined duplicating these high-caliber results to large-scale commercialization. This webinar explored pressure profile impact, uniform treatments and the differences between constant pressure versus constant volume. All these factors contribute significantly to creating an efficient process for a constant and repeatable solution. Learn more about scalable cosmetic manufacturing: https://hubs.ly/Q02RYHPK0 #Microfluidics #Microfluidizertechnology #Microfluidizerprocessors #cosmeticmanufacturing #cosmeticformulationprocessing #nanoemulsions #particlesizeprocessing
Scalable Technology for Cosmetic Manufacturing
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Why do top pharmaceutical companies trust Microfluidics with their nanotechnology challenges? Our technology leads the industry with higher yields of active ingredients and greater control over process repeatability. Our Microfluidizer® processors are the gold standard in the industry for applications that require high shear. The combination of the constant pressure pumping system and exclusive fixed-geometry Interaction Chamber™ are what makes our Microfluidizer® technology superior and enables our customers to achieve unparalleled success. Learn more about how Microfluidics designs, develops and builds to the highest standard. https://hubs.la/Q02RNRPv0 #InteractionChamber #highshearprocessors #Microfluidics #Microfluidizertechnolgoy #Microfluidizerprocessor
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Today’s cosmetic consumers demand high-performing products. Therefore, cosmetic companies must deliver superior products since consumers heavily rely on recommendations from their peers. For lotions & creams, Microfluidics helps customers attain their target particle sizes to achieve their desired texture and feel of the lotion & cream. Not only does Microfluidizer® technology help process the ideal particle size for improved product delivery, but our team works to ensure our customers select the right model to develop their unique products. Learn more about Microfluidics role in cosmetic production: https://hubs.la/Q02RBG2b0 Also to learn more about particle size, read our blog: https://hubs.la/Q02RBHwK0 #particlesizereduction #cosmeticmanufacturing #Microfluidizertechnology #Microfluidizerprocessors
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