Bitesize Bio helps bioscience researchers to grow by collating personal experience, advice, practical tools, and wisdom from experienced mentors.

Edinburgh, UK
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See how versatile confocal microscopy can tackle autofluorescence, overlapping signals, and large differences in sample brightness across parasite, coral, and plant samples. Register now → buff.ly/YooZbJQ
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How does multiple myeloma behave differently once it spreads beyond the bone marrow? High-dimensional spatial profiling is helping explore the answer. Join our free webinar to find out more. Register now → buff.ly/tDRsuhB #MultipleMyeloma #SpatialProfiling
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What is your A260/A280 ratio actually telling you? Learn how to interpret A260/A280 and A260/A230 ratios, recognize common contamination patterns, and make better-informed sample QC decisions. Download Now → buff.ly/tR8ud6x
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Different samples demand different milling strategies. Watch on demand to see how multi-ion plasma FIB can help tailor volume EM and cryo workflows across cells, tissues, organoids and cryo-preserved material. Watch now → buff.ly/GxKXCbx
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How can you measure molecular organization without losing spatial context? Explore DNA-based tools for multiplexed imaging, sequencing, and molecular recording. Register Now → buff.ly/fwmYC18
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Data review is a critical step in GMP compliance. Learn how to structure Empower™ CDS review workflows to reduce gaps, improve consistency, and support data integrity. Watch On Demand → buff.ly/pRGyARy
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See how versatile confocal microscopy can tackle autofluorescence, overlapping signals, and large differences in sample brightness across parasite, coral, and plant samples. Register now → buff.ly/YooZbJQ
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Come and talk organoids with people who actually work with them. Hear three bench-level research perspectives, then join an open panel to ask questions, compare methods, and discuss the challenges you’re facing. Register now → buff.ly/g6bmnOv
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Thinking about your next career move? Learn how to turn your experience, expertise, and network into new opportunities while navigating the risks of change. In partnership with HERizon Leadership. Register now → buff.ly/usaWu87 #CareerChange #STEMCareers
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Move beyond the limits of chemical DNA synthesis. Learn how enzymatic methods can support longer oligos, fewer assembly steps, and more complex DNA designs. Download Now → buff.ly/GBRxBIJ
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From wanting to become a schoolteacher to finding a lifelong place in flow cytometry. Andreas Spittler and Derek Davies reflect on career turning points, core facilities, and the value of finding your niche. Listen Now → buff.ly/2PIKbbz With @YorkBioimaging
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Prof Elizabeth Hillman, inventor of SCAPE, and Dr. Sarah Untucht from Leica Microsystems present the technology fundamentals and a live Viventis SCAPE demonstration in one session. Register Now → buff.ly/JJtnaCh
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Flow cytometry has changed enormously, but the value of curiosity, community, and sharing what you know has stayed the same. Andreas Spittler and Derek Davies join Peter O’Toole to reflect on decades in flow cytometry. Listen Now → buff.ly/2PIKbbz With @YorkBioimaging
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AI can design longer, more complex DNA. Enzymatic synthesis can help you build it. Discover how enzymes are expanding sequence length, accuracy, and assembly reliability. Download Now → buff.ly/GBRxBIJ
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Where is your lab wasting energy? And how much could you save? Learn how to identify energy waste, quantify potential savings, and build the case for practical change. Register Now → buff.ly/1Qfzmyp
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How do you build a meeting that brings hundreds of flow cytometrists together? Charlotte Christie Petersen, Désirée Kunkel, and Marjolijn Hameetman share the story behind the European Flow Core Meeting. Listen Now → buff.ly/qjFdFyC With @YorkBioimaging
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Learn how oblique plane microscopy (OPM) and SCAPE support gentle volumetric imaging of live samples using standard sample carriers. The webinar includes principles, platform introduction, and a 3D organoid workflow example. Register now: buff.ly/wDFTr6i
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Which compartment is driving the cytokine response? Learn how simultaneous human and mouse cytokine profiling can separate human immune activity from mouse host biology in humanized mouse models. Register now → buff.ly/ISYPIeb
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Most microscopy platforms can't capture fast 3D biological dynamics without sample restrictions or phototoxic trade-offs. SCAPE was designed to change that. Catch this webinar for a demo. Register Now → buff.ly/JJtnaCh
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How can you image live samples in 3D, in real time, and with low phototoxicity? Explore the principles of SCAPE microscopy and their use in gentle, high-speed live imaging. Register now: buff.ly/wDFTr6i
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