Want quick and accurate #cellcounting? Try the LUNA-II Automated #CellCounter! 👨🔬 "Great results!" ⭐⭐⭐⭐⭐ 🔬 Application Area: Analyze metabolites in tissue samples 💬 "LUNA-II™ Automated Cell Counter is very easy to use. I am very satisfied with this product." https://ow.ly/LSTJ50RsEWn #cellcount #cellcounting #lab #labequipment
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Medical technology company Biolinq is developing a new type of glucose sensor that doesn’t go deeper than the dermis, the middle layer of skin that sits above the subcutaneous tissue. The company’s “intradermal” biosensors take advantage of metabolic activity in shallower layers of skin, using an array of electrochemical microsensors to measure glucose—and other chemicals in the body—just beneath the skin’s surface. Learn more at: https://lnkd.in/d8rPyd-K #biomedicalengineering #bioengineering #clinicalengineeringََ #medicalengineering #biologicalengineering
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So many reasons to love the 🌜 LUNA-II Automated #CellCounter — here are some good ones from a happy customer's #review! 🥰 👩🔬 "Simple, fast, accurate and highly reproducible result!" ⭐⭐⭐⭐⭐ 🦠 Application Area: #Intestinal cell lines for #microbiome research 💬 "Very easy to use, one click and cell numbers are there, every time! Highly reproducible, I have compared it to other equipment and methods, and the same results are achieved in a fraction of the time. My work has been simplified and is more accurate thanks to Luna! Will never work without it." https://ow.ly/Wagf50RlYo7 #cellcount #cellcounting #cellculture #intestine #cellline #lab
LUNA-II™ Automated Cell Counter from Logos Biosystems | SelectScience
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Looking to streamline your DNA/RNA extraction process? 🧬 Automate your workflow with NAP™ 16 by MagBio Genomics: A compact, fully automated magnetic bead-based extraction system! 🚀 Why NAP™ 16? • Compact design (8 x 10 inches) – minimal footprint, fits anywhere! • Cost-effective & user-friendly • Ready to use verified pre-programmed protocols available- saves protocol optimization time • Flexible modification of protocols is easy, and customers can create their own protocols • Process up to 16 samples in as little as 20-60 minutes depending on the sample type • Higher yields and reproducibility vs. manual methods • Fully automates mixing, heating, bead transfer, washing, and elution Transform your lab workflow with the NAP™ 16! 🌟 Learn more and request a quote at: https://lnkd.in/eWMC9kVg #MagBioGenomics #Biotech #LabAutomation #DNAExtraction #RNAExtraction #DNANormalization
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I've been hearing about microfluidics shifting the way of the electronics industry and making plug and play components that can emulate a resistor/capacitor/transistor etc. The issue is that fluidic connections and fabrication costs amongst other aspects just don't provide the same opportunities for simplicity that electronics does. How often does an electronic component still work despite not being soldered properly or you can achieve the right electronic requirements by combining multiple components even though the exact resistor, etc is not available. Even a slight misalignment or over/under tightening on a fluidic connection can affect fluid resistance or cause a leak and the more components, if plugging them on to the equivalent of a breadboard, the more likely this is to happen. The Microfluidics Association is trying to address the issue of standardisation to get some way to making it easier and Flow Circuits is a fantastic development, but will we ever get to the fluidic equivalent of the electronics industry? I'm sceptical. This does not mean we should stop. As I dive back into developing another complex system at GenomeKey I'm loving revisiting all the bookmarked suppliers I haven't used in a few years, but experience teaches me that there are always going to be connection, fabrication, unexpected fluidic behaviour issues to making something novel and complex truly user friendly.
Biologists in the life sciences spend 50% of their time in a lab manually moving fluids. But microfluidics has been around since the 1980s - why isn't it being leveraged to automate more of this work away? What if a complex procedural microfluidic device could be designed, tested, and fabricated in weeks instead of years? I believe these devices would become much more commonplace inside the lab as well as out in the field, where many life science protocols (like IVD) are needed. Flow Circuits is working every day to make this vision a reality! #microfluidics
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💡 Dr. Simona Felletti and co-authors explore the advantages of integrated multidimensional chromatography for the preparative purification of #oligonucleotides. Using the multi-column functionality of the Contichrom CUBE system, two orthogonal purification steps were combined on one platform. "This proof-of-concept study illustrates how this technique can considerably reduce overall production time and how it allows to increase the robustness and reproducibility of the method, since the process is highly automated" Moreover, this concept is easily applied to the manufacturing of other APIs and biomolecules for improving process efficiency and sustainability. The open access article can be downloaded below 👇
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Biologists in the life sciences spend 50% of their time in a lab manually moving fluids. But microfluidics has been around since the 1980s - why isn't it being leveraged to automate more of this work away? What if a complex procedural microfluidic device could be designed, tested, and fabricated in weeks instead of years? I believe these devices would become much more commonplace inside the lab as well as out in the field, where many life science protocols (like IVD) are needed. Flow Circuits is working every day to make this vision a reality! #microfluidics
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Have you seen our "One Minute In Lab Series" highlighting the Autofil? - Gamma sterilized 10-6 SAL - Lower Center of Gravity - Less Instability when handling media - 0.1, 0.22,0.45μm Pore Size availability - Increased Throughput with Higher Flow Rate - Patented No Drop Design Best Used for: - Filtration of Cell Cultures & Media for Preparation & Sterilization - Thick or Viscous Time Sensitive Media (FBS) - Preparation of buffers, tissue culture media, microbiological media, and other biological fluids. Any Questions? Let us know! https://lnkd.in/gSAp_NAs #FoxxLifeSciences #VacuumFiltration #SterileFiltration #CellCultureMedia #Filtration #LifeSciences
One Minute In Lab Series - Autofil Vacuum Filtration
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Say hello to Bioer's Automated cell counter: your ultimate solution for achieving a fast and efficient automated counting experience. ✨ Features: 1. Two models to meet different customers’needs in BF&FL cell counting and analysis. 2. To identify both live and dead cells with High Resolution Imaging. 3. To counts cells but also presents cell morphology. 4. Pre-set protocol enables one-click initiation for capturing, identifying, and analyzing six samples. 5. Achieving cell counting in 8 seconds with Trypan Blue, and 35 seconds with AO/PI staining. 6. Storing up to 90,000 sets of data, facilitating easy access to past experimental results for reference. Contact us for more information:overseas@bioer.com #cellcounter #cellculture #Bioer
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📖Find out what manufacturing and high-throughput screening have in common: https://lnkd.in/gbEF3yax This article discusses applying revolutionary 20th-century management principles of continuous improvement to 21st-century flow cytometry to enhance workflow efficiency. #FlowCytometry #LabAutomation #HighThroughputScreening #LifeSciences
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🧪This #paper review discusses the use of microfluidic technology in drug delivery. Take a look at the article. 💉 📝 https://swki.me/YRtJiJX9 #fundedbyCDTI
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