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Leonhard Möckl

@lmoeckl.bsky.social
273 followers 242 following 39 posts

Professor of Nanooptical Imaging at FAU Erlangen-Nuremberg/CITABLE, Associated Group Leader at the MPI for the Science of Light. Glycobiology, optics, philosophy, and music.

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Leonhard Möckl @lmoeckl.bsky.social · 16/05/2026
Glycan Atlassing is online at @natnano.nature.com! Thanks to everyone involved, especially to @dijo-mj.bsky.social and @nazlicanyurekli.bsky.social who spearheaded the work. Read the paper here: dlvr.it/TSXNDb #Glycotime
dlvr.it
Glycan atlassing enables functional tracing of cell state - Nature Nanotechnology
Multiplexed super-resolution microscopy of DNA-barcoded lectins and metabolically incorporated unnatural sugars quantitatively links the nanoscale spatial relationships of glycocalyx organization and ...
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Leonhard Möckl @lmoeckl.bsky.social · 23/04/2026
It’s a huge honor to be one of the recipients of this year’s EKFS publication award! Check out the manuscript that was awarded: www.nature.com/articles/s41...
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Leonhard Möckl @lmoeckl.bsky.social · 18/03/2026
🚨 PhD position 🚨 Fully funded PhD position at the intersection of super-resolution microscopy, glycobiology, and biomedicine! The position is part of a Doctoral Network. All information: www.glycocalyx.org Apply here: tinyurl.com/yc35dajz Spread the word!
glycocalyx.org
Home | GLYCOCALYX
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Leonhard Möckl @lmoeckl.bsky.social · 02/10/2025
NEW PREPRINT: Spatial mapping of cell-surface protein glycosylation at molecular resolution 🍭🍬🔬 For the first time, we can analyze the spatial architecture of the cell-surface glycoproteome at single-protein and single-sugar resolution. #glycotime www.biorxiv.org/content/10.1...
biorxiv.org
Spatial mapping of cell-surface protein glycosylation at molecular resolution
Cell-surface protein glycosylation is a fundamental post-translational modification that plays a crucial role in membrane protein function and cellular behavior. However, elucidating the molecular spa...
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dijo_mj @dijo-mj.bsky.social · 01/09/2025
Attended #SMLMS2025 last week in Bonn, Germany. Many thanks to the organizers @uendesfelder.bsky.social @heilemannlab.bsky.social and Prof. Kubitscheck for introducing #youngSMLMS. That was really mindful of the young researchers including me:). Had a great time in Bonn discussing science.
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Marius Trollmann @m-a-r-i-u-s.bsky.social · 28/08/2025
🔔 Excited to share our latest work on the dynamics of synthetic glycolipids in model membranes! 🤩 @biomemphys.bsky.social! Bottom-up Investigation of Spatiotemporal Glycocalyx Dynamics with Interferometric Scattering Microscopy | Journal of the American Chemical Society pubs.acs.org/doi/full/10....
pubs.acs.org
Bottom-up Investigation of Spatiotemporal Glycocalyx Dynamics with Interferometric Scattering Microscopy
Over recent decades, the glycocalyx, an extracellular organelle composed of a multitude of glycolipids, glycoproteins, proteoglycans, and glycoRNA, has gained considerable interest in cellular biology. While research in this field has revealed its tremendous importance in ever more aspects of physiological and pathological cellular processes, many of the principles that govern the role of the glycocalyx in these processes on a molecular level are still unknown. In order to unravel the fundamental laws underlying glycocalyx function, new technologies are required that enable the distinction between individual subprocesses within the intricate environment of the glycocalyx. Here, we establish an experimental platform to investigate the dynamics of the glycocalyx at the nanometer and microsecond length and time scales in a bottom-up fashion. We synthesized defined oligosaccharides and installed them on supported lipid bilayers. This way, synthetic glycolipids were assembled to glycocalyx model systems with tunable properties. By investigating these tunable model systems with interferometric scattering (iSCAT) microscopy, we gain access to the required spatiotemporal resolution. We found a strong correlation between the molecular structure of several investigated model glycans and global dynamics of the system. Our findings are corroborated by atomistic molecular dynamics simulations and coarse-grained Brownian dynamics simulations. Our results provide the first direct experimental evidence on the relationship between glycan structure, organization, and dynamics, offering a robust and versatile basis for a quantitative understanding of glycocalyx biology and physics at the molecular level.
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Leonhard Möckl @lmoeckl.bsky.social · 28/08/2025
Excited to see this one out in JACS! We analyzed how molecular interactions lead to self-organization of glycolipids down to microseconds and nanometer spatiotemporal scales. Amazing collaboration with the Sandoghdar lab, @biomemphys.bsky.social, and Thisbe Lindhorst! pubs.acs.org/doi/abs/10.1...
pubs.acs.org
Bottom-up Investigation of Spatiotemporal Glycocalyx Dynamics with Interferometric Scattering Microscopy
Over recent decades, the glycocalyx, an extracellular organelle composed of a multitude of glycolipids, glycoproteins, proteoglycans, and glycoRNA, has gained considerable interest in cellular biology...
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Ryan Flynn @raflynn5.bsky.social · 06/08/2025
RNA N-glycosylation enables immune evasion and homeostatic efferocytosis by chemically caging acp3U. Excited to report this work lead by Vinnie @vinnieviruses.bsky.social and in collaboration with @vijayrathinam.bsky.social in @nature.com www.nature.com/articles/s41...
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Leonhard Möckl @lmoeckl.bsky.social · 06/08/2025
A more personal impression on our recent work on molecular resolution microscopy of the glycocalyx - check it out! #glycotime
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Nature @nature.com · 30/07/2025
Scientists have mapped individual sugar molecules on the surface of cells at a resolution once thought to be impossible for light microscopes go.nature.com/4l2wVjS
go.nature.com
Cell's sugar coating mapped at below-nanometre resolution
Super-resolution technique works with off-the-shelf optical microscopes.
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Leonhard Möckl @lmoeckl.bsky.social · 28/07/2025
Very happy to see this one out - the first molecular-resolution imaging of glycocalyx components in their native environment! Great collaboration with @jungmannlab.bsky.social - congrats to first authors @karimalmahayni.bsky.social and @lumasullo.bsky.social and to the whole team!
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Biophysical Society @biophysicalsoc.bsky.social · 21/05/2025
BPS member Pernilla Wittung-Stafshede shares on the BPS blog about her decision to move from Sweden to the United States this year www.biophysics.org/blog/going-a...
biophysics.org
Going Against the Tide – I Am Moving to the USA
For over 75 years, the United States has been viewed as a global leader in research and higher education. Today, that role is facing new challenges. Changes in funding structures, shifting priorities…
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 02/05/2025
Check out this latest #glycotime achievement from Leonhard Moeckl’s lab: single sugar superresolution imaging to create a high res glycan atlas of cell surfaces! www.biorxiv.org/content/10.1...
biorxiv.org
Glycan Atlassing: Nanoscale analysis of glycocalyx architecture enables functional tracing of cell state
The glycocalyx is a complex layer of glycosylated biomolecules surrounding all cells in the human body. It is involved in the regulation of critical cellular processes such as immune response modulation, cell adhesion, and host-pathogen interactions. Despite these insights, the functional relationship between glycocalyx architecture and cellular state has remained elusive so far, mainly attributable to the structural diversity of glycocalyx constituents and their nanoscale organization. Here, we show that DNA-tagged lectin labeling and metabolic oligosaccharide engineering enables multiplexed super-resolution microscopy of glycocalyx constituents, yielding an atlas of glycocalyx architecture with nanometer resolution. Quantitative analysis of the obtained nanoscale map of glycocalyx constituents facilitates the extraction of characteristic spatial relationships that accurately report on cellular state. We demonstrate the capacity of our approach, which we term Glycan Atlassing, across cell and tissue types, ranging from cultured cell lines to primary immune cells, neurons, and primary patient tissue. Glycan Atlassing establishes a powerful strategy for investigating glycocalyx remodeling in development and disease, potentially enabling the development of new glycocalyx-centered targets in diagnosis and therapy. ### Competing Interest Statement The authors have declared no competing interest. Else Kröner-Fresenius-StiftungElse Kröner-Fresenius-Stiftung, https://ror.org/03zcxha54, 2020_EKEA.91 Deutsche ForschungsgemeinschaftDeutsche Forschungsgemeinschaft, https://ror.org/018mejw64, 529257351, 460333672, 270949263 Wilhelm Sander StiftungWilhelm Sander Stiftung, https://ror.org/02q83sc19, 2023.025.1 European Research CouncilEuropean Research Council, , 101118729 Alexander von Humboldt FoundationAlexander von Humboldt Foundation, https://ror.org/012kf4317,
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Leonhard Möckl @lmoeckl.bsky.social · 02/05/2025
GLYCAN ATLASSING: NANOSCALE ANALYSIS OF GLYCOCALYX ARCHITECTURE ENABLES FUNCTIONAL TRACING OF CELL STATE 🍭🔬🧬 Don’t judge a book by its cover - judge a cell by its cover! We can now trace how cell state is encoded in glycocalyx state. #glycotime #microscopy www.biorxiv.org/content/10.1...
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Nature Biotechnology @natbiotech.nature.com · 23/04/2025
Treatment of acute myeloid leukemia models by targeting a cell surface RNA-binding protein - @raflynn5.bsky.social go.nature.com/3YbT1In
go.nature.com
Treatment of acute myeloid leukemia models by targeting a cell surface RNA-binding protein - Nature Biotechnology
An RNA-binding protein on leukemia cells provides an effective target in mouse models.
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Leonhard Möckl @lmoeckl.bsky.social · 23/04/2025
A wonderful study, published today in Nature Biotech.: NPM1 is a marker of AML and can be targeted for efficient therapy! @karimalmahayni.bsky.social created the first SR reconstructions of NPM1 on the cell surface. Great collaborative work, spearheaded by @raflynn5.bsky.social and Kostas Tzelepis!
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Leonhard Möckl @lmoeckl.bsky.social · 10/04/2025
Awesome study! 🙌
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Monique Honsa @moniquehonsa.bsky.social · 10/04/2025
IMAGING LIGAND-RECEPTOR INTERACTIONS AT SINGLE-PROTEIN RESOLUTION WITH DNA-PAINT🔬 Ever wonder how cells "talk"? It starts when ligands bind to receptors on cell surfaces. We have cracked the challenge of imaging small ligands on cell surfaces. #DNAPAINT #celltalk 💬 doi.org/10.1002/smtd...
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Leonhard Möckl @lmoeckl.bsky.social · 09/04/2025
Happy and honored to be among the 2024 Rising Stars in Biological, Medicinal, and Pharmaceutical Chemistry - thanks to everyone who made it possible! tinyurl.com/fa3vyh5e We wrote a perspective on this occasion, discussing how to bring Physics and the Clinic closer together: tinyurl.com/mv7w2d74
tinyurl.com
ACS Bio & Med Chem Au: Introducing the 2024 Rising Stars in Biological, Medicinal, and Pharmaceutical Chemistry
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Ryan Flynn @raflynn5.bsky.social · 26/03/2025
A nearly 9 year effort to design and implement new CLIP-based technologies to define multimeric protein assemblies on RNA. Enables ‘watching’ of RNP assemblies inside living cells Special congrats to Luca Ducoli, Brian Zarnegar, and Paul Khavari @nature.com www.nature.com/articles/s41...
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Max Planck Institute for the Science of Light (MPL) @mpi-scienceoflight.bsky.social · 05/03/2025
The #MPL takes a big step for #science & networking! With today’s founding of our support association, we create a platform for dialogue & exchange. The association will: ✅ Strengthen #research collaboration ✅ Organize networking events ✅ Inspire the public with science 👉 mpl.mpg.de/news/article...
Dr. Dorothe Burggraf, Head of Administration at the MPL and a founding member of the new association, smiles as she shows the articles of association.
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 05/03/2025
Learn more about #glycotime in this response led by Ratmir Derda and many other leading glycoscientists
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Sarafan ChEM-H @stanford-chemh.bsky.social · 04/03/2025
New findings from team led by Sophia Shi, @carolynbertozzi.bskyverified.social & Tony Wyss-Coray suggest that changes in the sugar coating on the blood-brain barrier may contribute to age-related cognitive decline and brain disease:
buff.ly
Changes in brain’s ‘sugar shield’ could be key to understanding effects of aging
New findings about the sugary armor on the brain’s frontline cells could shed light on cognitive decline and diseases like Alzheimer’s – and open new avenues for treatment.
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Leonhard Möckl @lmoeckl.bsky.social · 02/03/2025
It was wonderful to contribute to this amazing study! Congrats to @raflynn5.bsky.social and team - and congrats to @karimalmahayni.bsky.social for achieving the first SR reconstructions of csRBPs!:)
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 26/02/2025
Happy to share this new #glycotime work with collaborator Tony Wyss-Coray, led by grad student Sophia Shi, mucin loss at the BBB is associated with aging and cognitive decline, can be reversed by restoration with with gene therapy. Aging is a mucinopathy! www.nature.com/articles/s41...
nature.com
Glycocalyx dysregulation impairs blood–brain barrier in ageing and disease - Nature
Disruption of mucin-domain glycoprotein expression and function in the endothelial glycocalyx are associated with ageing and Alzheimer’s disease, leading to dysregulated blood–brain barrier function.
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Yohann Boutté @yohannboutte.bsky.social · 25/02/2025
Exited to announce our study on ER-Golgi Intermediate Compartment (ERGIC) in plants!! www.nature.com/articles/s41... Amazing and innovative work from @louisefougere.bsky.social and Magali Grison from @lbm-bordeaux.bsky.social, #SuperResolution, @naturecellbiology.bsky.social
nature.com
ER-to-Golgi trafficking through a dynamic intermediate cis-Golgi tubular network in Arabidopsis - Nature Cell Biology
Fougère, Grison et al. show that the ER–Golgi intermediate compartment (ERGIC) in plants is a tubulo-vesicular network marked by MEMBRIN proteins that is largely Golgi-independent. The plant ERGIC mat...
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Alfred Millett-Sikking @amsikking.bsky.social · 25/02/2025
Microscope objectives can be confusing, and detailed specs (or even basic properties) are often hard to find. Here's an introductory resource to help new builders and instrument designers with the basics. It's a work in progress so feedback is appreciated: amsikking.github.io/microscope_o...
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Erdinc Sezgin @sciezgin.bsky.social · 19/02/2025
New paper out 🎇 It has been 13 years since @owenlabuob.bsky.social and co. published a stellar protocol on how to measure membrane order with smart probes! Since then, there has been new dyes, imaging modes and biology! We wrote a protocol for Nature Protocols: www.nature.com/articles/s41...
nature.com
Measuring plasma membrane fluidity using confocal microscopy - Nature Protocols
Membrane fluidity is a crucial feature in understanding cellular physiology. This protocol describes a robust pipeline for measuring plasma membrane fluidity using confocal imaging and new environment...
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Carolyn Bertozzi @carolynbertozzi.bskyverified.social · 21/02/2025
Check out our web tool for searching for interactors of your favorite cell surface protein, developed by undergrad Pinyu Liao and postdoc postdoc Brendan Floyd @stanford-chemh.bsky.social cellsurfacemap.org
cellsurfacemap.org
Cell Surface Map
Cell Surface Map - Distribution and organization data on immune cell surface proteins
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Jörg Enderlein @joergenderlein.bsky.social · 18/02/2025
I'm thrilled to share that our review article, "Molecular Level Super-Resolution Fluorescence Imaging," has now been published online (www.annualreviews.org/content/jour...)! We provide a comprehensive overview of fluorescence super-res methods that push the limits towards molecular-scale imaging.
annualreviews.org
Molecular Level Super-Resolution Fluorescence Imaging | Annual Reviews
Over the last 30 years, fluorescence microscopy, renowned for its sensitivity and specificity, has undergone a revolution in resolving ever-smaller details. This advancement began with stimulated emis...
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Ryan Flynn @raflynn5.bsky.social · 18/02/2025
congrats to Brendan Floyd, postdoc in @carolynbertozzi.bskyverified.social lab on his exciting work "mapping the nanoscale organization of the human cell surface proteome" High resolution, High Effort, and Creative Analytics produce new views of the cell surface www.biorxiv.org/content/10.1...
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Leonhard Möckl @lmoeckl.bsky.social · 11/02/2025
Check out the beautiful transition!🤩
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Leonhard Möckl @lmoeckl.bsky.social · 10/02/2025
ÅNGSTRÖM-RESOLUTION IMAGING OF CELL-SURFACE GLYCANS🍬🍬🍬 For the first time, we are able to image the molecular architecture of the glycocalyx at Ångström resolution. A dream come true! Read the preprint: biorxiv.org/content/10.110… And find our tweetorial below! #glycotime
biorxiv.org
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