Good morning Tampere! Meet us at the Finnish Organ-on-Chip meeting 2024 today! Tampere University , Arvo Building, -1 floor, Yellow Hall. Immuno Diagnostic Oy Leica Microsystems, Leica Biosystems, Idylle , TheWell Bioscience
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Crémant and smiles to farewell my PhD student Candy L. Steffen Steffen! Good luck and all the best for your future. This event also marked the acceptance of our STAR Protocol paper of applying BRET to measure protein interactions in cells, with lead authors Carla J. Duval and Candy L. Steffen. Here is the link to "Protocol to measure and analyze protein interactions in mammalian cells using bioluminescence resonance energy transfer": https://lnkd.in/eskypw8q hashtag #cancerresearch, hashtag #Luxembourg
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Excited to share that our study on the cell origin of IPMN is now published! This work would not have been possible without the dedications of my postdoc, Dr. Kiyoshi Saeki, and my collaborator, Dr. Janel Kopp. In our studies, we found that Acvr1b loss, likely through abrogation of Activin signaling, is one of the few pathways identified to date that promotes precancerous lesion formation from both acinar and ductal cells expressing Kras G12D. https://lnkd.in/ei6HcgF5
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Join us for the first SACCMA Virtual Workshop Series 2024 event presented by ZEISS Microscopy!!! Come and learn more about your microscopy options when using Advanced Cell Modelling in your research. #organoid #3Dcellculture #bioimaging #spheroid #iPSC #cellmodelling
We proudly share the upcoming event hosted by SACCMA Society for Advanced Cell Culture Modelling for Africa Symposium where Chris Power and Marguerite Blignaut will be sharing their expertise in Microscopy Technologies and Advanced Cell Modelling. October 15, 2024 at 12:30 - 13:30pm Online
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#ESCCA 2024 in Palma de Mallorca is going to start tomorrow! Please feel free to connect with the Beckman Coulter Life Sciences team, it will be our pleasure to discuss recent developments and to learn from you about your needs. Also, please don’t miss the scientific poster session, where our colleagues from R&D and Marketing will present the following topics (abstract numbers in parentheses): · A new automated flow cytometry method for #CD34+ hematopoietic stem and progenitor cell enumeration and analysis (HEM-18), · New anti-#TRBC2 (TCR Cβ2) antibody conjugates to simplify T-cell clonality research and assessment (HEM-44), · Method Agreement Performance Study of the #DxFLEX ClearLLab 10C Application System (HEM-57), · Precision performance of the DxFLEX ClearLLab 10C Application System (HEM-65), · Standardization of the #ClearLLab 10C Panel on a DxFLEX Flow Cytometer: A Comprehensive Study (HEM-66), · Toward Standardized AML-MRD Assessment In Clinical Research Studies And Trials Using Dry Antibody Panels (#DURA Innovations) (IMM-07), · Easy-to-use functional Natural Killer (NK) cells assay and associated stimulation reagent (IMM-08), · Development of new single-color reagents for flow cytometry fulfilling requirements from the In Vitro Diagnostic Device Regulation (#IVDR) (OTH-09), · New #supervised automatic analysis faithfully replicates expert manual gating for flow cytometric immune cell subset identification (OTH-10), · A fully automated, walkaway flow cytometry #workflow for immune cell subsets identification (OTH-11), · #CellMek SPS Instrument Performance: Gated populations with automated vs. manual sample prep using a 10-color antibody panel (OTH-16). I also would like to highlight the posters by Rarity Bioscience : · Ultra-sensitive molecular MRD by flow cytometry using superRCA mutation assay for NPM1 positive AML patients (HEM-46), · NRAS, WT1, NPM1 and IDH mutation detection for molecular MRD-assessment using Flow Cytometry in pediatric AML (HEM-51), · Use of the new superRCA mutation assay for molecular MRD monitoring using flow cytometry in pediatric AML (HEM-71). I look forward to seeing you!
The #ESCCA annual conference has grown to become a prominent event where scientists and researchers from around the world gather to exchange insights about translational and clinical flow cytometry applications and advancements. ESCCA 2024 takes place September 25 – 28 in Palma de Mallorca. We are looking forward to chatting with you about the power of lean workflows and how to win the #IVDR marathon. See you in beautiful Mallorca! https://becls.co/47jH5aC
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👩🏻🔬 New study alert! We presented at #TAGC24 novel data produced by our laboratory system SydLab™ One in a new collaborative study with EPFL (École polytechnique fédérale de Lausanne) and Amsterdam UMC. Some insights: 🔬 High-content phenotypic analysis of a #Celegans recombinant inbred population identifies genetic and molecular regulators of lifespan 📊 Among the top candidates obtained from multi-omics data integration and QTL mapping, novel longevity modulators were identified and validated. 🚀 SydLab™ One was able to facilitate and speed-up the research via full automation of C. elegans developmental and #lifespan assay. #inwormwetrust Missed our presentation? Download the poster here 🔗👉🏼 https://lnkd.in/e2srcs9h #newpaper #aging #Celegans #labtechnology #microfluidics #OoC #HCS #labautomation #AIanalysis
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Check our latest publication and learn how immuno-affinity chromatography can be used to isolate extracellular vesicles
Happy to share our latest publication entitled "Targeted Isolation of Extracellular Vesicles from Cell Culture Supernatant Using Immuno-Affinity Chromatography." We successfully demonstrated the isolation of exosomes from cell culture supernatants in a single-step purification process. Using a comprehensive panel of characterization tools, we confirmed the purity, integrity, and functionality of the isolated exosomes, highlighting the effectiveness and scalability of this approach for EV purification. Special thanks to Afonso Ruiz, Cristina Peixoto and our collaboration partners Sandra Bezemer Pim Hermans and Frank Detmers at Thermo Fisher Scientific. https://lnkd.in/dKtspw84
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If you work with #exosomes or #downstream processing of complex molecules and #biologics check the article below from #ibet.
Happy to share our latest publication entitled "Targeted Isolation of Extracellular Vesicles from Cell Culture Supernatant Using Immuno-Affinity Chromatography." We successfully demonstrated the isolation of exosomes from cell culture supernatants in a single-step purification process. Using a comprehensive panel of characterization tools, we confirmed the purity, integrity, and functionality of the isolated exosomes, highlighting the effectiveness and scalability of this approach for EV purification. Special thanks to Afonso Ruiz, Cristina Peixoto and our collaboration partners Sandra Bezemer Pim Hermans and Frank Detmers at Thermo Fisher Scientific. https://lnkd.in/dKtspw84
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Webinar alert: I'll be speaking tomorrow, Thu Oct. 10, on the challenges in detecting biological #nanoparticles (such as #exosomes), which have been implicated in everything from #Alzheimer's to many kinds of #cancer — but also hold much promise for both early detection and treatment of same. It's a very exciting field, really exploding now. Hope to see you there!
Tomorrow morning, October 10th, Dr. Giacomo Vacca will be virtually presenting a talk for PATCA - Professional and Technical Consultants Association, about the main technologies used for analysis of extracellular vesicles, be sure to tune in! The talk is entitled: "Extremely Small & Incredibly Dim: The Quest to Catch the Nanoparticles Responsible for Everything", and will be held at 11 AM PDT through Zoom. Access the zoom link here: https://lnkd.in/gFVV-mAN For more information click here: https://lnkd.in/gRHWChr7
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This past weekend I had the privilege to present a poster at the annual Biophysical Society meeting in Philadelphia. The poster, which you can view below, summarized work I did this summer under the guidance of Pablo Iglesias. Using the Virtual Cell program, we were able to simulate a biochemical network that models mechanosensation in Dictyostelium cells. Based on experiments conducted by our wonderful collaborator Douglas Robinson, we expected myosin II to accumulate at the site of external stress, together with cortexillin I and IQGAP2. Additionally, we expected IQGAP1 and MHCKc to inhibit this accumulation. Our model was built and verified using experimental data in wild type cells, as well as null cells. In addition to our null models, we were also able to simulate cells with overexpressed proteins, such as IQGAP1/2 or MHCKc. This work could not have been done without the help of Alma Plaza-Rodriguez and David Dolgitzer. Poster: https://lnkd.in/eVa2eNpC
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📽 Unlike other cellular target engagement assays, NanoBRET® TE assays are quantitative for intracellular compound affinity (or apparent Ki), not just potency. Learn more from Senior Research Scientist, Matt Robers about how NanoBRET® TE stands apart from other methods in the video and link here 📝 https://bit.ly/3LYE6ug
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