We're thrilled to share the results of our recent collaboration with the University of Zaragoza! Together, we explored innovative devices inspired by our Be-Transflow system. This study focused on reducing inert materials in microfluidic chips while preserving optimal cellular distribution and improving cell-cell contact—paving the way for more efficient and advanced research tools in the biotech industry. You can check the full post at https://lnkd.in/dAAB8QiH. At Beonchip, we’re committed to driving technological advancements that accelerate scientific discovery. Stay tuned for more updates on how we’re shaping the future of biotech! #BiotechInnovation #Microfluidics #ResearchCollaboration #CellularDistribution #Beonchip #BeTransflow #Mesh #Macropore #Cellcontact
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HP Inc., a cornerstone of Oregon’s tech landscape for over 40 years, is taking on a transformative project to revolutionize microfluidics technology. Backed by $9.5 million from the Oregon CHIPS fund and $50 million from the Federal CHIPS Act, this “lab-to-fab” initiative in Corvallis is advancing microfluidic applications in artificial intelligence, bioscience, and sustainability. More: https://lnkd.in/gBR56zth
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I'm thrilled to share my microfluidic design inspired by the elegance and efficiency of mammalian circulatory systems. This biomimetic microfluidic chip takes cues from the arterial and venous branching networks, optimized for fluid redistribution, mixing, and controlled flow dynamics. The dual-loop structure mimics the oxygen exchange in alveolar capillaries, ensuring symmetrical flow paths and minimal resistance – a design that combines the genius of nature with modern engineering. By leveraging these principles, this chip has potential applications in chemical gradient generation, droplet-based diagnostics, and other advanced microfluidic technologies. Participating in this challenge has been a fantastic opportunity to push creative boundaries, merging biomimicry with cutting-edge innovation. I’m incredibly excited about the limitless potential this field holds and look forward to seeing how these designs shape the future of lab-on-a-chip technologies! A huge thank you to the organizers of FLUI'DEVICE for this platform 🙌 💡 Have insights or thoughts on this design? I’d love to hear them! Let’s connect and discuss how biomimetic microfluidics can revolutionize diagnostics and fluid dynamics. Eden Materials Eden Tech #FLUIDEVICE #Challenge #Biomimicry #Microfluidics #Innovation #Engineering #ResearchAndDevelopment
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𝐀𝐝𝐯𝐚𝐧𝐜𝐞𝐦𝐞𝐧𝐭𝐬 𝐢𝐧 𝐃𝐍𝐀 𝐍𝐚𝐧𝐨𝐭𝐞𝐜𝐡𝐧𝐨𝐥𝐨𝐠𝐲 ➡ 𝐃𝐨𝐰𝐧𝐥𝐨𝐚𝐝 𝐅𝐫𝐞𝐞 𝐒𝐚𝐦𝐩𝐥𝐞 𝐏𝐃𝐅: https://lnkd.in/gfXUKDWq DNA nanotechnology is a potent tool in computing, electronics, medicine, and materials science because of its unique programmability, accuracy, and biocompatibility. The field's ongoing study and development are bringing up new opportunities to use life's molecular machinery to tackle difficult issues in science and engineering. This technique takes advantage of DNA's unique base-pairing characteristics to construct intricate molecular shapes and patterns. Rising R&D spending, expanding medical and biotech applications, and improved nanofabrication methods are the main forces propelling the DNA nanotechnology industry worldwide. ▪ 𝐒𝐨𝐦𝐞 𝐌𝐚𝐣𝐨𝐫 𝐊𝐞𝐲 𝐏𝐥𝐚𝐲𝐞𝐫𝐬 𝐈𝐧 𝐓𝐡𝐞 𝐃𝐍𝐀 𝐍𝐚𝐧𝐨𝐭𝐞𝐜𝐡𝐧𝐨𝐥𝐨𝐠𝐲 𝐌𝐚𝐫𝐤𝐞𝐭: ▪ Genisphere ▪ INOVIO Pharmaceuticals, Inc. ▪ tilibit nanosystems ▪ Aummune ▪ NANOVERY ▪ Esya Labs ▪ Nomic Bio ▪ Torus Biosystems ▪ Parabon ▪ NanoApps Medical, Inc. ▪ FOx Biosystems ▪ Nanion Technologies ▪ Mehr Mabna Darou, Inc. ▪ Nanowerk ▪ NuProbe ▪ Twist Bioscience ▪ NanoInk Imaging ▪ Oxford Nanopore Technologies ▪ Illumina ▪ Agilent Technologies. ▪ Thermo Fisher Scientific. ▪ Bio-Rad Laboratories. ▪ Danaher Corporation ▪ Bruker ▪ New England Biolabs. #DNANanotechnology #MolecularEngineering #Nanotechnology #BiotechInnovation #DNAResearch #Nanofabrication #MedicalNanotechnology #Biocompatibility #DNAApplications #NanotechResearch
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Novel Achievement in Nanofilm Science! 🔬 Congratulations to the exceptional team from Osaka University for their research paper, "Fabrication of Fully Positively Charged Layer-by-Layer Polyelectrolyte Nanofilms with pH-Dependent Swelling Properties." 🔍 Summary & Key Findings Layer-by-layer (LbL) assembled nanofilms often face challenges with retaining charge density. This study successfully fabricated fully positively charged (FPC) LbL nanofilms by using poly-l-lysine modified with azide and alkyne groups, forming stable covalent bonds through a CuAAC click reaction. These nanofilms exhibit high charge density and unique pH-dependent swelling properties, enhancing their ability to adsorb negatively charged molecules. The robust structure and responsiveness to pH changes make these FPC nanofilms highly promising for applications in sensors, diagnostics, and filters. 📚 For the full research paper, please follow this link: https://lnkd.in/gJz4X8-E Propargyl-PEG2-acid, offered by BroadPharm played a crucial role in the fabrication of these nanofilms, enabling the research as a whole. Check out Propargyl-PEG2-acid and other PEG linkers offered by BroadPharm for your advanced research needs: 🔗 Propargyl-PEG2-acid —> https://lnkd.in/gXu4ETHW 🔗 PEG linker solutions —> https://lnkd.in/gVK9jp3S #Nanotechnology #Nanofilms #Polyelectrolytes #Conjugation #PEG #PEGylation #PEGLinker #PEGreagent #BioConjugationLinker #PROTACLinker #MaleimideLinker #ClickChemistryLinker
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This is cornerstone document for #organonachip technologies, the kind that makes history pages! OOC companies are proliferating following the hype driven by some market players, but were not able to agree on standards so far. This document is changing it! We are still mainly talking about technical parameters rather than validation strategies, but it's without any doubt a step forward! I'm looking forward to a follow-on document where animal/human comparison data are shown, to really bring arguments for the reduction of animals in human health research! ————————— I am Davide - Founder & CEO of Lab4Paws . With my life science company I help #AnimalHealth scientists develop therapeutic & diagnostic solutions for companion animals and work to reduce animal testing for human drug development. Like my content? Click my name + follow + 🔔
co-founder of animal free innovations and scientist | PhD in organ-on-chip technologies | MBA candidate UMIO
Together with a group of enthusiastic scientists, researchers, academics, regulatory and industrial partners (e.g. chiron) we have established the FIRST Roadmap on organ-on-chip devices! 📄 📄 More than 120 European experts worked on this exhaustive document for 2 years with the support of NEN! 🎉 This is not only a document helping people working in the field or simply interested in the subject navigating the complexity of organ-on-chip models but also the first step towards an ISO standardization of these models! 📝 We all know how these technologies are revolutionizing the way we address scientific questions. 👨🔬 👩🔬 Now we are looking at making them a standard that can be used in research setting with rules allowing increase user-friendliness and reproducibility. Thank you Andries van der Meer for being one of the main initiator of this major milestone in organ-on-chip technologies and Suzie Noten for supporting together with the rest of NEN! You can find more information here: https://lnkd.in/d7WRHk4E #technology #standsrdization #innovation #organonchip #advanced #invitro #technology #unite #milestone
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𝐔𝐧𝐥𝐨𝐜𝐤𝐢𝐧𝐠 𝐍𝐞𝐰 𝐅𝐫𝐨𝐧𝐭𝐢𝐞𝐫𝐬 𝐰𝐢𝐭𝐡 𝐃𝐍𝐀 𝐍𝐚𝐧𝐨𝐭𝐞𝐜𝐡𝐧𝐨𝐥𝐨𝐠𝐲 ▶ 𝐆𝐞𝐭 𝐅𝐫𝐞𝐞 𝐀𝐜𝐜𝐞𝐬𝐬 𝐭𝐨 𝐃𝐞𝐦𝐨 𝐑𝐞𝐩𝐨𝐫𝐭, 𝐄𝐱𝐜𝐞𝐥 𝐏𝐢𝐯𝐨𝐭 𝐚𝐧𝐝 𝐓𝐨𝐂: https://lnkd.in/gfXUKDWq DNA nanotechnology is a potent tool in computing, electronics, medicine, and materials science because of its unique programmability, accuracy, and biocompatibility. The field's ongoing study and development are bringing up new opportunities to use life's molecular machinery to tackle difficult issues in science and engineering. This technique takes advantage of DNA's unique base-pairing characteristics to construct intricate molecular shapes and patterns. ▪ 𝐌𝐚𝐣𝐨𝐫 𝐊𝐞𝐲 𝐏𝐥𝐚𝐲𝐞𝐫𝐬 𝐈𝐧 𝐓𝐡𝐞 𝐃𝐍𝐀 𝐍𝐚𝐧𝐨𝐭𝐞𝐜𝐡𝐧𝐨𝐥𝐨𝐠𝐲: ▪ Genisphere ▪ INOVIO Pharmaceuticals, Inc. ▪ tilibit nanosystems ▪ Aummune ▪ NANOVERY ▪ Esya Labs ▪ Nomic Bio ▪ Torus Biosystems ▪ Parabon ▪ NanoApps Medical, Inc.. ▪ FOx Biosystems ▪ Nanion Technologies ▪ Mehr Mabna Darou. ▪ Nanowerk ▪ NuProbe ▪ Twist Bioscience ▪ NanoInk Imaging ▪ Oxford Nanopore Technologies. ▪ Illumina. ▪ Agilent Technologies. ▪ Thermo Fisher Scientific. ▪ Bio-Rad Laboratories. ▪ Danaher Corporation ▪ Bruker ▪ New England Biolabs. #DNANanotechnology #Biotechnology #MolecularEngineering #ProgrammableDNA #Genisphere #INOVIOPharmaceuticals #tilibitnanosystems #Aummune #Nanovery
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Together with a group of enthusiastic scientists, researchers, academics, regulatory and industrial partners (e.g. chiron) we have established the FIRST Roadmap on organ-on-chip devices! 📄 📄 More than 120 European experts worked on this exhaustive document for 2 years with the support of NEN! 🎉 This is not only a document helping people working in the field or simply interested in the subject navigating the complexity of organ-on-chip models but also the first step towards an ISO standardization of these models! 📝 We all know how these technologies are revolutionizing the way we address scientific questions. 👨🔬 👩🔬 Now we are looking at making them a standard that can be used in research setting with rules allowing increase user-friendliness and reproducibility. Thank you Andries van der Meer for being one of the main initiator of this major milestone in organ-on-chip technologies and Suzie Noten for supporting together with the rest of NEN! You can find more information here: https://lnkd.in/d7WRHk4E #technology #standsrdization #innovation #organonchip #advanced #invitro #technology #unite #milestone
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How has VSParticle's technology helped scientists to make real advancements in material discoveries in the last ten years❓ During our journey, we have introduced powerful tools with unique technology: the VSP-G1 Nanoparticle generator, which allows researchers to create nanoparticles at the push of a button, and the VSP-P1 Nanoprinter, which prints nanoporous #thinfilms that are essential for many technologies we rely on. Now, with over 5️⃣ 0️⃣ VSParticle devices integrated in top research #labs and #universities, we are proud to say that we are making a global impact by enabling scientists to make breakthroughs in #material development for fields like energy storage, catalysis, electronics and medical devices. 🎞️ Watch the video below as we share key achievements and stay until the end to learn where we will focus on for the next ten years. Aaike van Vugt, Katharina Weber, Tomas Storck ----- Are you curious about VSParticle’s technology? Then click here to learn more 👇 https://lnkd.in/ejGckhvJ
10 years of innovation | VSParticle's impact on material discovery
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💡 Microfluidics is reshaping the landscape of bio research, offering a new level of precision and efficiency. However, navigating the terminology can be overwhelming. 📚 That's why ALine is excited to announce our Microfluidics Glossary, a one-stop resource for all the terms and acronyms you need to know in this cutting-edge field. 🔬 From droplet-based microfluidics to lab-on-a-chip technology, our glossary covers it all in a user-friendly format. Don't let confusing jargon hold you back from exploring the possibilities of microfluidics! 🌐 Learn more: https://lnkd.in/gGkbPTA9 #BioResearch #Innovation #Glossary #Microfluidics #LabOnAChip #BiomoleculeAnalysis #ALineInc #ALine #MicrofluidicTechnology #MicrofluidicDevices
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💡 Microfluidics is reshaping the landscape of bio research, offering a new level of precision and efficiency. However, navigating the terminology can be overwhelming. 📚 That's why ALine is excited to announce our Microfluidics Glossary, a one-stop resource for all the terms and acronyms you need to know in this cutting-edge field. 🔬 From droplet-based microfluidics to lab-on-a-chip technology, our glossary covers it all in a user-friendly format. Don't let confusing jargon hold you back from exploring the possibilities of microfluidics! 🌐 Learn more: https://lnkd.in/gT-CwPTR #BioResearch #Innovation #Glossary #Microfluidics #LabOnAChip #BiomoleculeAnalysis #ALineInc #ALine #MicrofluidicTechnology #MicrofluidicDevices
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Profesor titular de Histología en Universidad de Zaragoza
5moAnother great collaboration among our TMElab and Beonchip !!!!! Congrats to Rosa Monge Prieto, PhD, MBA and Sara Oliván García for leading this project !!! Kudos also to Claudia O. for her hard work and also all the other coauthors Hector Castro-Abril, Ismael Perisé Badía and Lara Pancorbo for their support and teamwork Well done, everyone! 👏