Generated by Rank Math SEO, this is an llms.txt file designed to help LLMs better understand and index this website. # SCIENION: Global Leader in Precision Dispensing ## Sitemaps [XML Sitemap](https://www.cellenion.com/sitemap_index.xml): Includes all crawlable and indexable pages. ## Posts - [Microliter, nanoliter or picoliter dispensing: small can be really BIG](https://www.cellenion.com/microliter-nanoliter-or-picoliter-dispensing-small-can-be-really-big/): Sure, microliters, nanoliters and picoliters all sound small. But just like an elephant, a koala, and a Etruscan shrew (the smallest mammal in the world), evolution has shown that even small ones can be giants, too! - [Miniaturizing ELISA: How Precision Microdispensing Enables High-Sensitivity, Low-Volume Assays](https://www.cellenion.com/miniaturizing-elisa-how-precision-microdispensing-enables-high-sensitivity-low-volume-assays/): Enzyme-linked Immunosorbent Assays (ELISAs) have long been the benchmark for detecting analytes in clinical and research settings. While effective, traditional ELISAs are resource-intensive, time-consuming to perform, and ill-suited for high-throughput, multiplex applications. As scientific workflows demand faster and more cost-efficient solutions, it is clear that the classic format needs a modern upgrade. Miniaturized ELISAs offer a powerful upgrade, leveraging picoliter dispensing to cut costs, accelerate timelines, and scale assays without sacrificing data quality. In this article, we discuss the shortcomings of traditional ELISA and how miniaturization paves the way for faster, scalable, and more efficient assays across diverse applications. - [Precision Liquid Dispensing: The Key to Faster, Scalable Diagnostic Development](https://www.cellenion.com/precision-liquid-dispensing-the-key-to-faster-scalable-diagnostic-development/): The need for rapid, reliable, and scalable diagnostic tests has never been greater, whether it’s for addressing challenges with SARS-CoV-2 infections or detecting sexually transmitted diseases like HIV and other pathogens. To meet these needs, manufacturers are turning to precision liquid microdispensing technology, which enables miniaturization of multiplex assays, exceptional accuracy, and scalable high-throughput production. This innovation is transforming diagnostic manufacturing by improving efficiency, reducing waste, and ensuring consistent test performance. In this article, we explore how precision microdispensing is shaping the future of diagnostics, making advanced healthcare solutions more accessible, cost-effective, and impactful worldwide. - [How Picoliter Dispensing is Transforming Scientific Research and Innovation](https://www.cellenion.com/how-picoliter-dispensing-is-transforming-scientific-research-and-innovation/): In modern research, precision is everything. As scientists push the boundaries of innovation, picoliter dispensing has become an important tool, enabling ultra-miniaturized assays, reducing reagent waste, and enhancing experimental accuracy. Whether in biotech, diagnostics, or materials science, this technology brings speed without compromising quality and savings without reducing research output. From high-density biochips to biosensors, Microdispensing is enhancing workflows and empowering researchers to make groundbreaking discoveries. - [Accelerating Progress in Breast Cancer Diagnostics using Precision Microdispensing](https://www.cellenion.com/accelerating-progress-in-breast-cancer-diagnostics-using-precision-microdispensing/): Breast cancer is one of the most prevalent and concerning diseases affecting women worldwide. A lot of ongoing research focuses on the development of breast cancer diagnostics to identify and characterize breast tumors, enabling healthcare professionals to determine the stage and type of cancer, as well as to guide treatment decisions. - [Microneedles – tiny devices with huge potential in drug delivery and POC diagnostics](https://www.cellenion.com/microneedles-tiny-devices-with-huge-potential-in-drug-delivery-and-poc-diagnostics/): Microneedles have the potential to revolutionize the healthcare industry in drug delivery and diagnostics. These microscopic needles, too small to be seen by the naked eye, have been designed to deliver drugs through the skin without causing pain. Compared to traditional methods like injections or oral medication, microneedles offer a range of benefits. They are minimally invasive, and can even be used to detect clinically significant substances through the skin. This blog post will delve into the world of microneedles, exploring their potential, benefits, applications, and challenges, and how they are poised to revolutionize drug delivery and diagnostics. - [Parallel detection and differentiation of respiratory viruses](https://www.cellenion.com/parallel-detection-and-differentiation-of-respiratory-viruses/): The COVID-19 outbreak created urgency for innovative diagnostic technologies. The triple-demic of COVID-19, RSV and influenza brought new challenges. ## Pages - [spheroONE google ads landing page](https://www.cellenion.com/spheroone-3d-model-sorter/): The spheroONE platform combines image-based sorting with gentle dispensing to standardise 3D cellular model workflows. It selects spheroids, organoids, and tumoroids by size, morphology, or fluorescence, and dispenses them with controlled accuracy into assay-ready plates. The result is homogeneous, reproducible starting conditions for every experiment. - [Applications](https://www.cellenion.com/applications/): Cellenion is redefining the possibilities in modern biology by providing cutting-edge platforms tailored for single-cell omics, proteomics, and 3D model workflows. Our technologies enable precise, high-efficiency workflows across key applications such as drug discovery, personalized medicine, and disease modeling. Whether you're working with rare cells or complex biological models, Cellenion combines precision, flexibility, and scalability to meet the demands of today’s most advanced cell-based research. - [Contact Us](https://www.cellenion.com/contact-us/): Send us a message Contact Us Let us know how we can help Product Information ‎ ‎ ‎‎ ‎Customer Support‎ ‎ ‎ ‎ ‎ ‎ ‎ ‎General Inquiries‎ ‎ ‎ ‎ Single-cell and 3D Cell models Precision Microdispensing First Name Last Name Email Phone Company Name Job Title Country Afghanistan Albania Algeria Andorra Angola Antigua & Deps Argentina Armenia Australia Austria Azerbaijan Bahamas Bahrain Bangladesh Barbados Belarus Belgium Belize Benin Bhutan Bolivia Bosnia Herzegovina Botswana Brazil Brunei Bulgaria Burkina Burundi Cambodia Cameroon Canada Cape Verde Central African Rep Chad Chile China Colombia Comoros Congo Congo {Democratic Rep} Costa Rica Croatia Cuba Cyprus Czech Republic Denmark Djibouti Dominica Dominican Republic East Timor Ecuador Egypt El Salvador Equatorial Guinea Eritrea Estonia Ethiopia Fiji Finland France Gabon Gambia Georgia Germany Ghana Greece Grenada Guatemala Guinea Guinea-Bissau Guyana Haiti Honduras Hungary Iceland India Indonesia Iran Iraq Ireland {Republic} Israel Italy Ivory Coast Jamaica Japan Jordan Kazakhstan Kenya Kiribati Korea North Korea South Kosovo Kuwait Kyrgyzstan Laos Latvia Lebanon Lesotho Liberia Libya Liechtenstein Lithuania Luxembourg Macedonia Madagascar Malawi Malaysia Maldives Mali Malta Marshall Islands Mauritania Mauritius Mexico Micronesia Moldova Monaco Mongolia Montenegro Morocco Mozambique Myanmar, {Burma} Namibia Nauru Nepal Netherlands New Zealand Nicaragua Niger Nigeria Norway Oman Pakistan Palau Panama Papua New Guinea Paraguay Peru Philippines Poland Portugal Qatar Romania Russian Federation Rwanda St Kitts & Nevis St Lucia Saint Vincent & the Grenadines Samoa San Marino Sao Tome & Principe Saudi Arabia Senegal Serbia Seychelles Sierra Leone Singapore Slovakia Slovenia Solomon Islands Somalia South Africa South Sudan Spain Sri Lanka Sudan Suriname Swaziland Sweden Switzerland Syria Taiwan Tajikistan Tanzania Thailand Togo Tonga Trinidad & Tobago Tunisia Turkey Turkmenistan Tuvalu Uganda Ukraine United Arab Emirates United Kingdom United States Uruguay Uzbekistan Vanuatu Vatican City Venezuela Vietnam Yemen Zambia Zimbabwe Message BICO Group AB is the controller for processing your personal data. By submitting, you acknowledge that we process your data based on our legitimate interest in providing relevant content and updates from companies within the BICO Group. Your information may be shared within the group to ensure you receive materials and invitations aligned with your interests. For further details on how we process your data and your rights, please review our Privacy Policy. Submit Single-cell and 3D Cell models Precision Microdispensing - [Connect with an Expert](https://www.cellenion.com/connect-expert/): CONTACT US Connect with an Expert What are you interested in? Single-cell and 3D Cell models Precision Microdispensing - [Products](https://www.cellenion.com/products/): Cellenion’s instruments power cutting-edge research in single-cell omics and drug discovery. From the highly customizable cellenONE platform to the new spheroONE for 3D cell model isolation, our technologies enable ultra-precise dispensing, assay scalability, and seamless workflow integration. Built for both flexibility and reliability, our systems support breakthroughs in personalized medicine, cancer research, and therapeutic development. - [Get a Quote](https://www.cellenion.com/get-a-quote/): CONTACT US Get a Quote What are you interested in? Single-cell and 3D Cell models Precision Microdispensing - [Home](https://www.cellenion.com/): GO - [Privacy Policy](https://www.cellenion.com/privacy-policy/): Cellenion is pleased that you have decided to visit our website and are interested in our company and products. We treat the protection of your personal data seriously and strive to ensure that you feel secure and comfortable when visiting our Internet pages. ## Application Technical Notes - [Single Pancreatic Organoid Proteomics Study](https://www.cellenion.com/application-notes/single-pancreatic-organoid-proteomics-study/) - [Automated single cell isolation from multiple samples](https://www.cellenion.com/application-notes/automated-single-cell-isolation-from-multiple-samples/) - [Cardiomyocyte Isolation Using Cellenion’s cellenONE® Instrument](https://www.cellenion.com/application-notes/cardiomyocyte-isolation-using-cellenions-cellenone-instrument/) - [Pushing the boundaries for robust and high-throughput single cell analysis](https://www.cellenion.com/application-notes/pushing-the-boundaries-for-robust-and-high-throughput-single-cell-analysis/) - [Combining cellenONE® and timsTOF SCP for easy and sensitive, end-to-end label-free single cell proteomics workflows](https://www.cellenion.com/application-notes/combining-cellenone-and-timstof-scp-for-easy-and-sensitive-end-to-end-label-free-single-cell-proteomics-workflows/) - [Combining GrowDex® and spheroONE for automated and highly reproducible 3D cell culture workflows](https://www.cellenion.com/application-notes/combining-growdex-and-spheroone-for-automated-and-highly-reproducible-3d-cell-culture-workflows/) - [Preparation of HepaRGTM spheroid assay-ready plates using spheroONE](https://www.cellenion.com/application-notes/preparation-of-hepargtm-spheroid-assay-ready-plates-using-spheroone/) - [cellenONE®: Unparalleled clonal outgrowth achieved in 96, 384 and 1536 Microtiter Plates](https://www.cellenion.com/application-notes/cellenone-unparalleled-clonal-outgrowth-achieved-in-96-384-and-1536-microtiter-plates/) - [cellenONE® Sterile Condition Operation](https://www.cellenion.com/application-notes/cellenone-sterile-condition-operation/) - [sciPULSE ULTRA LOW VOLUME – Dispensing of small droplets in the range of 18 – 180 pL](https://www.cellenion.com/application-notes/scipulse-ultra-low-volume-dispensing-of-small-droplets-in-the-range-of-18-180-pl/) - [Making spatial transcriptomics accessible: Cost-effective manufacturing of DNA arrays using double-barcoded probes and the sciFLEXARRAYER S3 precision microdispenser](https://www.cellenion.com/application-notes/making-spatial-transcriptomics-accessible-cost-effective-manufacturing-of-dna-arrays-using-double-barcoded-probes-and-the-sciflexarrayer-s3-precision-microdispenser/) - [Surface functionalization of Evonetix’s microchip platform for DNA synthesis](https://www.cellenion.com/application-notes/surface-functionalization-of-evonetixs-microchip-platform-for-dna-synthesis/) - [The next generation of LFA – Multiplexing on Unisart StructSure® membranes](https://www.cellenion.com/application-notes/the-next-generation-of-lfa-multiplexing-on-unisart-structsure-membranes/) - [Rapid and multi-analyte diagnostic microarrays](https://www.cellenion.com/application-notes/rapid-and-multi-analyte-diagnostic-microarrays/) - [Development of a new and sensitive multi-analyte lateral flow immunoassay for the verification of three inflammation markers](https://www.cellenion.com/application-notes/development-of-a-new-and-sensitive-multi-analyte-lateral-flow-immunoassay-for-the-verification-of-three-inflammation-markers/) - [RAPCARL: A rapid Carbohydrate Array Lateral Flow Test Technology for simultaneous detection of thirteen different species from S. pneumoniae, N. meningitides and H. influenzae](https://www.cellenion.com/application-notes/rapcarl-a-rapid-carbohydrate-array-lateral-flow-test-technology-for-simultaneous-detection-of-thirteen-different-species-from-s-pneumoniae-n-meningitides-and-h-influenzae/) - [Multiplexed ELISA of cardiovascular disease biomarkers in 96 well plate](https://www.cellenion.com/application-notes/multiplexed-elisa-of-cardiovascular-disease-biomarkers-in-96-well-plate/) - [Miniaturization and multiplexing of a lateral flow immunoassay for the detection of Rotavirus, Coronavirus, Escherichia coli F5 (K99) and Cryptosporidium in calf faeces](https://www.cellenion.com/application-notes/miniaturization-and-multiplexing-of-a-lateral-flow-immunoassay-for-the-detection-of-rotavirus-coronavirus-escherichia-coli-f5-k99-and-cryptosporidium-in-calf-faeces/) - [Protein microarrays on unmodified polymer supports using sciPOLY3D](https://www.cellenion.com/application-notes/protein-microarrays-on-unmodified-polymer-supports-using-scipoly3d/) - [DNA microarrays using sciPOLY3D – Comparison of sciCHIP COP and epoxy-functionalized supports](https://www.cellenion.com/application-notes/dna-microarrays-using-scipoly3d-comparison-of-scichip-cop-and-epoxy-functionalized-supports/) ## Applications - [Cell Line Engineering](https://www.cellenion.com/applications/cell-line/engineering/): Cell line engineering is transforming the way researchers design, study, and harness living cells. By introducing precise genetic modifications, scientists can reprogram cellular behavior to create models of disease, enhance therapeutic production, or unlock entirely new biological functions. From CRISPR-mediated knock-ins to multi-marker reprogramming, CLE offers unparalleled opportunities to tailor cell lines to specific research or industrial goals. - [Cell Line Development](https://www.cellenion.com/applications/cell-line/development/): Cell line development (CLD) is the foundation of modern biopharmaceutical manufacturing. To produce monoclonal antibodies, recombinant proteins, or viral vectors at scale, regulatory authorities require therapeutic cell lines to be derived from a single progenitor cell. This ensures product consistency, genetic stability, and full traceability. - [Cell Line Applications](https://www.cellenion.com/applications/cell-line/): Cell line applications are at the heart of biotechnology and biopharmaceutical research. While Cell Line Development (CLD) focuses on generating stable, scalable, and regulatory-compliant production systems, essential for monoclonal antibody manufacturing, vaccines, and recombinant proteins, Cell Line Engineering (CLE) explores the genetic modification and reprogramming of cells to unlock new functions, model diseases, or produce therapeutic vectors.Though distinct in scope and timelines, both workflows converge on critical steps such as single-cell cloning, which ensures monoclonality, genetic stability, and reproducibility. Advances in imaging, fluorescence, and automated isolation have transformed these processes, enabling higher confidence and efficiency. - [Spheroid and Organoid Sorting and Isolation](https://www.cellenion.com/applications/spheroids-organoids/): Spheroids and organoids, collectively referred to as 3D cellular models, are rapidly transforming the landscape of preclinical drug development. Unlike traditional 2D cell cultures, these 3D systems more accurately mimic the structural complexity, microenvironment, and functional responses of human and animal tissues. This makes them far more predictive of clinical outcomes, and increasingly attractive for pharmaceutical research. Regulatory agencies such as the FDA and NIH are actively encouraging the adoption of these models, acknowledging the poor predictability of animal testing in assessing drug efficacy and toxicity. - [Single Microbial Cell Isolation](https://www.cellenion.com/applications/single-microbial-cell-isolation/): Microorganisms shape our world, from environmental ecosystems to human health and industrial biotechnology. Yet, the vast majority of microbial species remain poorly characterized. Single-cell isolation technologies open new possibilities to study individual microbes, enabling discoveries in microbiome research, infectious disease, and beyond.In synthetic biology and biomanufacturing, microbial strains are engineered to produce high-value biomolecules such as DNA, proteins, or metabolites. Here, single-cell isolation plays a critical role: ensuring monoclonality and establishing pure, stable cultures that can be scaled for reliable, reproducible mass production. - [Single Cell Omics](https://www.cellenion.com/applications/single-cell-omics/): Single cell omics applications have revolutionized biomedical research by enabling scientists to explore cellular diversity at unprecedented depth, reshaping our understanding of genomics, transcriptomics, and epigenomics. Researchers use these approaches to unravel disease mechanisms, track developmental trajectories, and uncover the origins of complex conditions like cancer, immune disorders, and neurodegenerative diseases. By isolating and profiling individual cells, these methods reveal critical patterns in gene expression, genetic mutations, and epigenetic regulation that are often obscured in bulk analyses. - [Single Cell Proteomics](https://www.cellenion.com/applications/single-cell-proteomics/): Single-cell proteomics (SCP) is an emerging field that uses mass spectrometry to measure thousands of proteins in individual cells. Unlike single-cell transcriptomics, which reflects potential activity, SCP reveals the actual molecules driving cell function, signalling, and disease mechanisms. This makes it a powerful complement for precision medicine, helping researchers identify rare pathogenic cells, track drug responses at single-cell resolution, and uncover new therapeutic targets. ## Customer Spotlights - [SCIFLEXARRAYER](https://www.cellenion.com/customer-spotlights/sciflexarrayer-3/) - [SCIFLEXARRAYER](https://www.cellenion.com/customer-spotlights/sciflexarrayer-2/) - [SCIFLEXARRAYER](https://www.cellenion.com/customer-spotlights/sciflexarrayer/) ## Jobs - [Customer Success Manager](https://www.cellenion.com/jobs/customer-success-manager/) - [Team Lead](https://www.cellenion.com/jobs/team-lead/) - [Product Manager](https://www.cellenion.com/jobs/product-manager/) - [Full Stack Developer](https://www.cellenion.com/jobs/full-stack-developer/) - [Applications Scientist](https://www.cellenion.com/jobs/applications-scientist/) ## Products - [proteoCHIP Product Range](https://www.cellenion.com/products/proteochip/): PRODUCTS - CONSUMABLES - [proteoCHIP EVO 96](https://www.cellenion.com/products/proteochip/evo-96/): PRODUCTS - CONSUMABLES - [proteoCHIP 12*16](https://www.cellenion.com/products/proteochip/12-16/): PRODUCTS - CONSUMABLES - [spheroONE](https://www.cellenion.com/products/spheroone/): spheroONE is redefining how 3D cellular models are prepared and used in drug discovery. Its gentle sorting reduces manual handling and ensures every assay starts with homogenous spheroids or organoids. By transforming variability into consistency, spheroONE enhances data quality, accelerates timelines, and de-risks critical preclinical decisions. - [cellenONE BSC](https://www.cellenion.com/products/cellenone/bsc/): cellenONE® X1 BSC is designed to avoid contamination of samples and to protect the environment, product, and personnel while maintaining its native precision. Its design enables easy cleaning under the grids and maintains laminar flows. For fluorescence-based single cell sorting, cellenONE® X1 BSC can be equipped with 4 fluorescent light sources. - [cellenONE HT](https://www.cellenion.com/products/cellenone/ht/): cellenONE HT allows to scale up single cell assays in fully integrated workcells. It features automated sample management and cleaning, plate shuttle and API integration, fast startup, with still gentle image‑based dispensing for monoclonality assurance and up to 100% single cell accuracy like all cellenONE single cell dispensers. - [cellenONE X1 Neo](https://www.cellenion.com/products/cellenone/x1-neo/): NEO is the optimal tool for the preparation of single cell omics samples, thanks to end-to-end automated workflows and optimized environmental controls allowing on-deck incubations. And because it shares the core technologies of all cellenONE single cell dispensers, it is virtually compatible with any other single cell applications. - [cellenONE Single Cell Dispensers](https://www.cellenion.com/products/cellenone/): Combining ultra-precise image-based single‑cell isolation with gentle droplet dispensing, the cellenONE single cell dispensers deliver 100% accuracy, exceptional viability, and compatibility with cells sized 0.5–80 µm. They empower breakthroughs in various cutting-edge applications, such as single cell omics, spatial proteomics, cell engineering and high-throughput bioprocessing. Available in multiple versions to fit diverse application needs, from R&D to GMP environments. - [proteoCHIP LF 48](https://www.cellenion.com/products/proteochip/lf-48/): PRODUCTS - CONSUMABLES ## Videos - [sciFLEXARRAYER S100 High-throughput microarray printer](https://www.cellenion.com/videos/sciflexarrayer-s100-high-throughput-microarray-printer/) - [Mbio Diagnostics and its LightDeck technology, using sciFLEXARRAYER](https://www.cellenion.com/videos/mbio-diagnostics-and-its-lightdeck-technology-using-sciflexarrayer/) - [Multiplex Assay Development Services. Multiplexing in planar and suspension format](https://www.cellenion.com/videos/multiplex-assay-development-services-multiplexing-in-planar-and-suspension-format/) - [Microarray spotter. Picoliter and nanoliter dispensing. Animation](https://www.cellenion.com/videos/microarray-spotter-picoliter-and-nanoliter-dispensing-animation/) - [Picoliter and nanoliter dispenser. Drop-on-demand dispensing](https://www.cellenion.com/videos/picoliter-and-nanoliter-dispenser-drop-on-demand-dispensing/) - [Tuomas Tenkanen, CEO MOBIDIAG, talking about SCIENION](https://www.cellenion.com/videos/tuomas-tenkanen-ceo-mobidiag-talking-about-scienion/) - [Dr. Marquette, at CNRS and 3d.FAB platform, talks about SCIENION](https://www.cellenion.com/videos/dr-marquette-at-cnrs-and-3d-fab-platform-talks-about-scienion/) - [Automated manufacturing of multiplex diagnostic devices](https://www.cellenion.com/videos/automated-manufacturing-of-multiplex-diagnostic-devices/) - [Manufacturing of innovative diagnostics – MEDICA 2022 highlights](https://www.cellenion.com/videos/manufacturing-of-innovative-diagnostics-medica-2022-highlights/) - [N-ABLE: a new standard for liquid handling laboratory automation / SLAS 2023](https://www.cellenion.com/videos/n-able-a-new-standard-for-liquid-handling-laboratory-automation-slas-2023/) - [IVD contract development and manufacturing](https://www.cellenion.com/videos/ivd-contract-development-and-manufacturing/) - [SCIENION sciDROP PICO technology in images](https://www.cellenion.com/videos/scienion-scidrop-pico-technology-in-images/) - [SCIENION sciFLEXARRAYER NANO A/D](https://www.cellenion.com/videos/scienion-sciflexarrayer-nano-a-d/) - [Multiplexing with Unisart StructSure Membranes – Sartorius & SCIENION joint Webinar](https://www.cellenion.com/videos/multiplexing-with-unisart-structsure-membranes-sartorius-scienion-joint-webinar/) - [Roll-to-roll nanoimprinting. SCIENION’s precision dispensing](https://www.cellenion.com/videos/roll-to-roll-nanoimprinting-scienions-precision-dispensing/) - [Swing high-throughput microarray spotter. Picoliter and nanoliter dispensing](https://www.cellenion.com/videos/swing-high-throughput-microarray-spotter-picoliter-and-nanoliter-dispensing/) - [Dr. Nikolas Daskalakis (BioNano Consulting) to develop medical diagnostic devices with SCIENION](https://www.cellenion.com/videos/dr-nikolas-daskalakis-bionano-consulting-to-develop-medical-diagnostic-devices-with-scienion/) - [Prof. Cass talks about his research and how they use SCIENION technology to develop new biosensors](https://www.cellenion.com/videos/prof-cass-talks-about-his-research-and-how-they-use-scienion-technology-to-develop-new-biosensors/) - [Precision dispensing of picoliters and nanoliters with sciFLEXARRAYER product line](https://www.cellenion.com/videos/precision-dispensing-of-picoliters-and-nanoliters-with-sciflexarrayer-product-line/) - [Microneedle coating. Drop coating of microneedles. Drug delivery with microneedles.](https://www.cellenion.com/videos/microneedle-coating-drop-coating-of-microneedles-drug-delivery-with-microneedles/) - [Orphidia enable large sets of human biomarkers to be monitored simultaneously thanks to SCIENION technology](https://www.cellenion.com/videos/orphidia-enable-large-sets-of-human-biomarkers-to-be-monitored-simultaneously-thanks-to-scienion-technology/) - [Wageningen University: SCIENION-enabled Lateral Flow diagnostics](https://www.cellenion.com/videos/wageningen-university-scienion-enabled-lateral-flow-diagnostics/) - [Microarray spotting onto membranes. Multiplex lateral flow. Picoliter and nanoliter dispensing](https://www.cellenion.com/videos/microarray-spotting-onto-membranes-multiplex-lateral-flow-picoliter-and-nanoliter-dispensing/) - [Biosensor printing by sciFLEXARRAYER](https://www.cellenion.com/videos/biosensor-printing-by-sciflexarrayer/) - [MicroAQUA: Innovative Aquatic Biosensors, printed with SCIENION systems](https://www.cellenion.com/videos/microaqua-innovative-aquatic-biosensors-printed-with-scienion-systems/) - [Unisensor manufactures biosticks using sciFLEXARRAYER technology](https://www.cellenion.com/videos/unisensor-manufactures-biosticks-using-sciflexarrayer-technology/) - [Mecwins sandwich immunoassays, powered by SCIENION](https://www.cellenion.com/videos/mecwins-sandwich-immunoassays-powered-by-scienion/) - [Genalyte and its silicon photonic chip produced with SCIENION technology](https://www.cellenion.com/videos/genalyte-and-its-silicon-photonic-chip-produced-with-scienion-technology/) - [How ImmunArray use sciFLEXARRAYER technology to print their multiplexed Lupus diagnostic tests](https://www.cellenion.com/videos/how-immunarray-use-sciflexarrayer-technology-to-print-their-multiplexed-lupus-diagnostic-tests/) - [Stanford University Prints Sensitive Chip to Detect Cancer Proteins Using sciFLEXARRAYER](https://www.cellenion.com/videos/stanford-university-prints-sensitive-chip-to-detect-cancer-proteins-using-sciflexarrayer/) - [Intuitive Biosciences and its AIM offering multiplex immunoassay solutions](https://www.cellenion.com/videos/intuitive-biosciences-and-its-aim-offering-multiplex-immunoassay-solutions/) - [QuantuMDx & SCIENION partner to develop highly multiplexed nanowire array](https://www.cellenion.com/videos/quantumdx-scienion-partner-to-develop-highly-multiplexed-nanowire-array/) - [GENOMICA & SCIENION, pioneering in vitro molecular diagnostics](https://www.cellenion.com/videos/genomica-scienion-pioneering-in-vitr-molecular-diagnostics/) - [microLIFE & cellenONE – Launch Video](https://www.cellenion.com/videos/microlife-cellenone-launch-video/) - [microLIFE Teaser](https://www.cellenion.com/videos/microlife-teaser/) - [proteoCHIP LF-48 – Workflow](https://www.cellenion.com/videos/proteochip-lf-48-workflow/) - [cellenONEHT](https://www.cellenion.com/videos/cellenoneht/) - [spheroONE: Automated sorting and isolation of single spheroids and organoids](https://www.cellenion.com/videos/spheroone-automated-sorting-and-isolation-of-single-spheroids-and-organoids/) - [proteoCHIP: Automated & miniaturized single cell proteomics sample preparation](https://www.cellenion.com/videos/proteochip-automated-miniaturized-single-cell-proteomics-sample-preparation/) - [cellenONE: Single Cell Isolation & Nanoliter Dispenser for Single Cell Proteomics Sample Preparation](https://www.cellenion.com/videos/cellenone-single-cell-isolation-nanoliter-dispenser-for-single-cell-proteomics-sample-preparation/) - [cellenONE Single Cell Isolation & Dispensing Technology from Cellenion](https://www.cellenion.com/videos/cellenone-single-cell-isolation-dispensing-technology-from-cellenion/) - [cellenONE X1 dispensing in 96 well plate](https://www.cellenion.com/videos/cellenone-x1-dispensing-in-96-well-plate/) - [cellenONE X1 featured at SLAS 2018](https://www.cellenion.com/videos/cellenone-x1-featured-at-slas-2018/) - [PC3 cells isolated with cellenONE X1](https://www.cellenion.com/videos/pc3-cells-isolated-with-cellenone-x1/) - [Isolating beads with fluorescence mode. cellenion F1.4 at QDJ](https://www.cellenion.com/videos/isolating-beads-with-fluorescence-mode-cellenion-f1-4-at-qdj/) - [cellenONE Software and Deck view](https://www.cellenion.com/videos/cellenone-software-and-deck-view/) - [cellenONE Workshop Interview Series – Dr. Zilu Ye](https://www.cellenion.com/videos/cellenone-workshop-interview-series-dr-zilu-ye/) - [cellenONE Workshop Interview Series – Dr. Ljiljana Paša-Tolić](https://www.cellenion.com/videos/cellenone-workshop-interview-series-dr-ljiljana-pasa-tolic/) - [cellenONE Workshop Interview Series – Dr. Maximilian Mossner](https://www.cellenion.com/videos/cellenone-workshop-interview-series-dr-maximilian-mossner/) - [cellenONE Workshop Interview Series – Dr. Manuel Matzinger](https://www.cellenion.com/videos/cellenone-workshop-interview-series-dr-manuel-matzinger/) ## Webinars - [FACS OFF! Autonomous and high-throughput Single Cell Cloning](https://www.cellenion.com/webinars/webinar-facs-off-cellenion-biosero/): B-cell cloning is an industry standard method for reliable and reproducible production of monoclonal antibodies (mAb). A typical journey in mAb development involves B cells isolation prior to screening. For years, FACS has been the method of choice for semi-automated seeding of single cells into microwell plates. However, this method suffers from low throughput due to inherent difficulties to automate start up, calibration, sample/target exchange processes. Furthermore, FACS is labour-intensive as it requires continuous presence of skilled operator to monitor and troubleshoot the process. Hence, the need of an alternative approach that addresses the aforementioned shortcomings that are: throughput, clonability, and high operating costs. In this webinar, we present how cellenONE HT, an image-based single cell isolation platform, is fully automated using Green Button Go Scheduler so that it operates continuously without the need for an operator, effectively enabling 24/7 unattended single cell plating from one or multiple samples. - [Multiplexing with Unisart StructSure®️ Membranes Webinar](https://www.cellenion.com/webinars/multiplexing-with-unisart-structsure%ef%b8%8f-membranes-webinar/): In recent years, multiplex lateral flow assays have become increasingly popular in disease management because they can rapidly analyze multiple parameters or biomarkers simultaneously. In this webinar, a complete solution including assay development with structured membranes, cassette use, and advanced LFA readout is showcased in a multiplex lateral flow test. The miniaturization of lines to spots using the dot-based dispensing technology from SCIENION GmbH in combination with the separation on the unique structured Unisart StructSure® membrane from Sartorius results in improved assay performance and reliability compared to the use of conventional lateral flow tests in line. - [NextGen Omics UK 2022 – Recorded Presentation](https://www.cellenion.com/webinars/francois-monjaret-phd-nextgen-omics-uk-2022-recorded-presentation/): Our former CSO presented in 2022 how cellenONE and its accessories can be used in single cell omics, from single cell genomics and transcriptomics, to single cell proteomics and multiomics. - [Single Cell Proteomics Day of the Italian Mass Spectrometry Society: cellenONE and proteoCHIP for robust single cell proteomics](https://www.cellenion.com/webinars/david-hartlmayr-single-cell-proteomics-day-italian-mass-spectrometry-society/): Discover cellenONE, for end-to-end sample preparation for single cell proteomics, from single cell isolation to autosampling, for seamless, low-loss and robust SCP workflows. - [Cellenion product overview](https://www.cellenion.com/webinars/single-cell-isolation-and-applications-spheroid-and-organoid-isolation-and-workflows/): In this Webinar performed in collaboration with Accela, our Scientist Steffen Cosson gave an overview of our products and technology, from cellenONE for single cell isolation and single cell omics sample preparation, to its younger sibling spheroONE, for the sorting and isolation of spheroids and organoids. - [Building Biology 3D Hybrid Symposium – spheroONE](https://www.cellenion.com/webinars/bb3d-presentation-by-steffen-cosson-phd-spheroone/): Four years ago, our scientist Steffen Cosson presented the first results of what would become the spheroONE, our solution for 3D cell models sorting isolation. The spheroONE enables standardization of spheroids and organoids for drug testing, based on size, morphology and fluorescence. - [proteoCHIP Launch Dinner Presentation – ASMS 2021](https://www.cellenion.com/webinars/proteochip-launch-dinner-presentation-by-anjali-seth-phd-claudia-ctortecka-asms-2021/): In 2021, we launched our very first single cell proteomcis consumable, the proteoCHIP. This session was recorded during the launch dinner at ASMS 2021: since then, tens of labs have adopted cellenONE and proteoCHIPs, for seamless and robust SCP workflows. - [ESCP2021 Recording – Introduction by Karl Mechtler](https://www.cellenion.com/webinars/escp2021-recording-introduction-by-karl-mechtler/): This year’s ESCP2021 virtual event focused on recent advances in sample preparation to overcome limitations and push the boundaries in single-cell proteomics workflows. - [Single Cell Transcriptome Analyses of HepaRG™ Cells using cellenONE Technology](https://www.cellenion.com/webinars/single-cell-transcriptome-analyses-of-heparg-cells-using-cellenone-technology/): Cellenion present here solutions for single-cell analyses of 3D cellular models. Cellenion has developed cellenONE, a unique system able to both isolate single-cell with high accuracy and dispense nanoliters of reagents allowing miniaturization of sample preparation for OMICs studies. The emergence of single-cell analyses has revolutionized Biology most notably in the field of Oncology. Making single-cell analyses affordable is critical to the deployment of these methods to other research fields. - [cellenONE, an open platform for Single Cell Isolation & Miniaturizing Library Preparation](https://www.cellenion.com/webinars/webinar-cellenion-cellenone-for-single-cell-isolation-miniaturizing-library-preparation/): Dr Guilhem Tourniaire, managing director of Cellenion Lyon, offered in 2020 this overview of cellenONE usage for single cell isolation and single cell omics sample preparation.