Sign in

Sebastian Kruss

@krusslab.bsky.social
45 followers 33 following 23 posts

Professor of physical chemistry and head of the Kruss lab working on photonics, novel materials, biosensors, biophysics.

PostsRepliesMedia
Sebastian Kruss @krusslab.bsky.social · 07/09/2026
Are you interested in detecting catecholamines ? Check out Julia's perspective in @jneurochem.bsky.social with Andreas Reiner. We compare fluorescent carbon nanotube-based and genetically encoded sensors and discuss their potential. @ruhr-uni-bochum.de @solvationsci.bsky.social tinyurl.com/593s8yum
tinyurl.com
Illuminating the Future of Catecholamine Detection
Catecholamines such as dopamine and norepinephrine are key signaling molecules in our body. We discuss how fluorescent sensors (carbon nanotube based and genetically encoded) for these molecules in c...
021
Sebastian Kruss @krusslab.bsky.social · 08/07/2026
Congrats to Juliana. She created a computational (stochastic kinetic) framework to predict how the image of sensors looks like in response to signalling molecules released by cells. Highly important to understand cell signalling. @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/yvs6e9n8
tinyurl.com
Simulation of Neurotransmitter Release and Its Imaging by Fluorescent Sensors
Cells release signaling molecules such as neurotransmitters that diffuse through the extracellular space and bind to receptors. These signaling molecules can be detected by fluorescent sensors and probes to provide images of the signaling process. Such images are not equivalent to a concentration because diffusion and sensor kinetics affect (convolute) them. Therefore, computational approaches are necessary to disentangle these contributions and allow the interpretation of fluorescent sensor-based images. Here, we present a kinetic Monte Carlo framework (fluorescent sensor imaging kinetic simulation, FLIKS) that simulates signaling molecules undergoing cellular release, stochastic diffusion, and reversible binding to sensors in realistic cellular (2D or 3D) geometries. We apply it to model neurotransmitter (dopamine) release in synaptic clefts and for paracrine signaling by immune cells. We also show how sensor location, sensor kinetics, and release location affect fluorescence images. For example, we show how sensor sensitivity depends on the distance from the synaptic cleft and changes when dopamine transporters (DATs) clear dopamine. The approach also allows us to compare the performance of membrane-bound (genetically encoded) sensors versus artificial sensors such as nanosensors placed outside under or around the cells. As an example, we also demonstrate how the images of catecholamine release by immune cells can be modeled and compared with experimental data to better understand the release pattern. This framework provides a quantitative basis for analyzing and interpreting the fluorescent sensor imaging data.
030
Sebastian Kruss @krusslab.bsky.social · 05/07/2026
Check out or joint work with the Erpenbeck lab on fluorescence lifetime imaging of membrane tension. Beautiful data that shows that mechanical properties and processes are highly important in biology. @solvationsci.bsky.social @uni-muenster.de @ruhr-uni-bochum.de tinyurl.com/yrntes73
tinyurl.com
Nanoscale Organization of Membrane Tension during Neutrophil Extracellular Trap Formation Revealed by Fluorescence Lifetime Imaging
Cells generate and respond to mechanical forces across compartments, with the plasma membrane acting as a nanoscale interface for sensing and transmitting tension. How intracellular forces translate i...
030
Sebastian Kruss @krusslab.bsky.social · 03/07/2026
One of our most important findings so far together with the Erpenbeck lab: We reveal that immune cells release and take up catecholamine neurotransmitters such as dopamine and respond to it, which has important implications for medicine. @ruhr-uni-bochum.de e @uni-muenster.de tinyurl.com/568y46ry
030
Reposted by Sebastian Kruss
Ruhr-Universität Bochum @ruhr-uni-bochum.de · 03/07/2026
Abwehrzellen kommunizieren mit denselben Botenstoffen wie Nervenzellen. Eine Überraschung für Forschende der Unis Bochum und Münster. Sie hoffen auf neue Einsichten in die Regulation des Immunsystems.
news.rub.de
Immunzellen sprechen die Sprache der Nervenzellen
Neue Bildgebungsverfahren machen Neurotransmitter-Kommunikation in Immunzellen erstmals direkt sichtbar.
171
Sebastian Kruss @krusslab.bsky.social · 10/06/2026
1/4 Check out our work with the Sulpizi and Havenith labs @nature.com. We show that light can slow down diffusion of small objects (carbon nanotubes), find a THz signature for it in the water and support it by simulations. @ruhr-uni-bochum.de @solvationsci.bsky.social www.nature.com/articles/s41...
120
Reposted by Sebastian Kruss
Laurent Cognet @laurentcognetbx.bsky.social · 10/05/2026
A milestone I had been chasing for a long time. The key idea: using carbon nanotubes as perfect tunable 1D dipoles at the single-particle level, together with a dipole spread function engineering approach. Great collaboration with Jana Zaumseil, Ben Flavel, Sophie Brasselet, and Laurent Groc
031
Sebastian Kruss @krusslab.bsky.social · 22/04/2026
If you are interested in near infrared (NIR) absorption and fluorescence spectroscopy: Here is a a simple, low cost instruction. tinyurl.com/44k6xj53 You can also equip It with a xy stage controller for high throughput screenings. Congrats to Krisko. @ruhr-uni-bochum.de @solvationsci.bsky.social
021
Sebastian Kruss @krusslab.bsky.social · 10/02/2026
Great collaboration with @philiptinnefeld.bsky.social and Lela Vukovic. Special congrats to Izabela and Justus. We show in @angewandtechemie.bsky.social that carbon nanotubes quench dyes with a beautiful d^-5 scaling law. Interesting perspectives for nano engineering... tinyurl.com/8dj3en47
021
Sebastian Kruss @krusslab.bsky.social · 08/02/2026
Congrats to Christina on her work in ACS Sensors. She developed a new biofunctionalization strategy for biosensors to detect CRP in human serum, which is an important biomarker for inflammation. @ruhr-uni-bochum.de @solvationsci.bsky.social pubs.acs.org/doi/10.1021/...
pubs.acs.org
Detection of C-Reactive Protein in Serum with Near-Infrared Fluorescent Sensors
The human immune system is central in the defense against pathogens but is also involved in autoimmune diseases. Inflammatory processes are orchestrated by biomolecules, including the inflammation mar...
041
Sebastian Kruss @krusslab.bsky.social · 26/12/2025
Congrats to Juliana! She measures in ACS Nano the rate constants of nanosensors on the single molecule level. She found two kinetic pathways and one can use this knowledge for Kinetically Improved Sensor Selectivity (KISS). @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/738ypxf9
tinyurl.com
Kinetic Insights Into Carbon Nanotube-Based Neurotransmitter Sensors by Single Molecule Experiments
Single-walled carbon nanotubes (SWCNTs) are powerful building blocks for near-infrared (NIR) fluorescent biosensors. They can be chemically tailored to detect specific biomolecules. Their performance ...
042
Sebastian Kruss @krusslab.bsky.social · 24/12/2025
Check out Valeriia's elegant photochemistry approach in @angewandtechemie.bsky.social to incorporate quantum defects in nanomaterials without compromising quantum yield or making later biofunctionalization more challenging. Congrats! lnkd.in/eaxaECt6 @solvationsci.bsky.social @ruhr-uni-bochum.de
061
Sebastian Kruss @krusslab.bsky.social · 24/11/2025
Check out Björn's cool insights into near infrared signals from photosensitizers. It is correlated but does not origin from singlet oxygen. The signal is present in all samples we looked at (labeled vesicles, plants,...). @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/5dvsrnde
041
Reposted by Sebastian Kruss
Ruhr-Universität Bochum @ruhr-uni-bochum.de · 21/10/2025
Kohlenstoff-Nanoröhren sind nicht nur hübsch anzuschauen. @krusslab.bsky.social entwickelt aus ihnen Sensoren für die personalisierte Medizin – und verfolgt zudem die Vision von smarten Pflanzen. 🌿
news.rub.de
Die Regenbogenfarben des Kohlenstoffs
Im Labor von Sebastian Kruss überrascht Kohlenstoff mit verschiedenen Farben. Die Bochumer Forschenden experimentieren mit den bunten Winzlingen für biomedizinische Anwendungen.
041
Sebastian Kruss @krusslab.bsky.social · 20/06/2025
Check out Jan's paper @acs.org Anal. Chem. We developed a simulation to quantify advantages of the near infrared and use the insights to create a diagnostic test/device for levodopa in blood serum for better Parkinson's treatment. @ruhr-uni-bochum.de @solvationsci.bsky.social tinyurl.com/2zvhtxcr
021
Sebastian Kruss @krusslab.bsky.social · 28/05/2025
We are looking for a motivated postdoc to join our lab as Humboldt fellow via the Henriette Herz scouting program as soon as possible. If you are interested in optical spectroscopy/microscopy, biosensing or nanomaterials please contact me. Please RT! @solvationsci.bsky.social @ruhr-uni-bochum.de
042
Reposted by Sebastian Kruss
Ruhr-Universität Bochum @ruhr-uni-bochum.de · 22/05/2025
Millionenförderung für unsere Exzellenzcluster! 🎉 Wir gratulieren den Forschenden der Cluster CASA und @solvationsci.bsky.social zu ihrem verdienten Erfolg.
Weiße Schrift auf rosa Hintergrund: "Millionenförderung für unsere Exzellenzcluster!"
23810
Reposted by Sebastian Kruss
Cluster of Excellence RESOLV @solvationsci.bsky.social · 27/05/2025
Despite its abundance, there are still many unanswered questions about water's behaviour. RESOLV doctoral researcher Adrian Buchmann explains in his Science Slam how science is trying to unravel the mystery of water. Watch the full video! www.youtube.com/watch?v=R0FJ...
031
Reposted by Sebastian Kruss
Biointegrated Photonics Lab @schubertlab.bsky.social · 09/05/2025
Very happy to contribute to #BIOspektrum! My short (3 pages) take on the applications and potential of #microlasers for #biosensing and #singlecell tracking. Open access👉 rdcu.be/elhkx (in German) Thanks @gbmev.bsky.social, @gesvirologie.bsky.social and @riemerlab.bsky.social 😉 for the invitation!
An image of the title page of an article titled "Biologische und biomedizinische Anwendungen intrazellularer Laserpartikel".
083
Sebastian Kruss @krusslab.bsky.social · 26/03/2025
Juliana's workflow to 3D print carbon nanomaterials is now published online in CARBON Trends. Very cool to illustrate their properties, biosensing as well as teaching basic concepts in physics/chemistry. @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/9fuxe5f2
091
Reposted by Sebastian Kruss
Ruhr-Universität Bochum @ruhr-uni-bochum.de · 21/03/2025
Kunststoff ist nicht gleich Kunststoff. Für das Recycling ist es wichtig zu wissen, mit welchem Material genau man es zu tun hat. Eine von @krusslab.bsky.social entwickelte Methode könnte dabei helfen – und sie kann noch viel mehr.
news.rub.de
Neue Echtzeit-Methode für die Umweltüberwachung
Mikroplastik detektieren oder Pflanzenschädlinge frühzeitig erkennen – das und noch viel mehr ermöglicht ein neues Verfahren, welches auf Nahinfrarot-Licht-Messungen basiert. Es ist günstig und funkti...
071
Reposted by Sebastian Kruss
Jörg Enderlein @joergenderlein.bsky.social · 18/03/2025
There is a fantastic workshop coming up on single-molecule spectorscopy and super-resolution microscopy in Berlin (September 23 - 26, 2025) - an outstanding row of keynote and invited speakers!
082
Sebastian Kruss @krusslab.bsky.social · 05/03/2025
Jan's work on a spectral phasor approach for very fast and simple hyperspectral imaging (HyperNIR) is online in Advanced Science. It is a beautiful and astonishing method for label-free imaging of different types of plastics and plant health as well as fluorescence signals. tinyurl.com/4epsba8e
000
Reposted by Sebastian Kruss
Laurent Cognet @laurentcognetbx.bsky.social · 06/02/2025
Happy to share our latest preprint rb.gy/py8q7a in which we demonstrate that ultrashort carbon nanotubes have astonishing brightness in the SWIR which propels them as amazing probes for bio-imaging in brain tissue (here in 3D SPT experiments). Yes, brighter than quantum dots and in the SWIR!
doi.org
Ultrashort Carbon Nanotubes with Luminescent Color Centers are Ultrabright NIR-II Nano-Emitters
Combining brightness and nanoscale size of short-wave infrared (SWIR) emitters is equally essential in the fields of bioimaging, photonics, and quantum science, but such nano-emitters are still lackin...
041
Sebastian Kruss @krusslab.bsky.social · 05/02/2025
Congrats to Alex. He shows in J. Phys. Chem. C how to incorporate two different types of quantum defects in fluorescent carbon nanotubes. It opens new dimensions to tailor photophysics and surface chemistry. @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/4ruw3wc3
041
Sebastian Kruss @krusslab.bsky.social · 23/01/2025
Great collaboration with the Borchardt group. It is possible to incorporate tiny numbers of quantum defects in nanotubes using mechanochemistry and tune their fluorescence. Congrats Miriam and Justus. @solvationsci.bsky.social @ruhr-uni-bochum.de @angewandtechemie.bsky.social tinyurl.com/4dws5c7c
031
Sebastian Kruss @krusslab.bsky.social · 14/01/2025
Congratulations to Chen. She shows in JPC C that solvatochromic dyes on carbon nanotubes modulate/improve their biosensing performance. For example for pH sensing or detection of lipids, which is often a challenge. @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/3kyy3zu6
031
Reposted by Sebastian Kruss
Julius-Maximilians-Universität Würzburg @uni-wuerzburg.de · 10/01/2025
Delighted to launch our activities on Bluesky with this great news: Our researchers @sauer-lab.bsky.social show in @science.org, how therapeutic #antibodies interact with B cells – thanks to an innovative method of super-resolution microscopy. Congratulations! ➡️ www.uni-wuerzburg.de/en/news-and-...
Mode of action of the new microscopy method LLS-TDI-DNA-PAINT. On the top right, the RTX antibody was visualised on a Raij-B cell: it is easy to see how it links the CD20 molecules in the membrane. Bottom right: the hedgehog-shaped appearance of a living Raji B cell after the antibody has bound. The surface protein CD45, which is homogeneously distributed on the cell surface, is also labelled in green. (Image: Arindam Ghosh / University of Würzburg)
37517
Sebastian Kruss @krusslab.bsky.social · 02/01/2025
Congrats to Christina! She reviewed novel strategies and challenges to diagnose sepsis. We hope it helps the field to join forces and develop better optical tools for early and fast diagnostics. @solvationsci.bsky.social @ruhr-uni-bochum.de tinyurl.com/mrsufmau
tinyurl.com
Optical Bionanosensors for Sepsis Diagnostics
Sepsis is a global health issue triggered by an uncontrolled immune response to infections, causing organ failure and high mortality. Despite advances in medical care, traditional diagnostic methods ...
131
Sebastian Kruss @krusslab.bsky.social · 14/12/2024
Check out our collaborative work with the @kargesgroup.bsky.social. We found that reactive oxygen species trigger either apoptosis or NETosis in human immune cells in a concentration/distance dependent manner. @solvationsci.bsky.social tinyurl.com/49twx79a
tinyurl.com
Shift of cell-death mechanisms in primary human neutrophils with a ruthenium photosensitizer - JBIC Journal of Biological Inorganic Chemistry
Abstract Primary human neutrophils are the most abundant human white blood cells and are central for innate immunity. They act as early responders at inflammation sites, guided by chemotactic gradient...
031
Reposted by Sebastian Kruss
Danielle Beckman @daniellebeckman.bsky.social · 12/11/2024
I'm trying to find all the cool people sharing microscopy here. Help me 🤓🔬 go.bsky.app/Aaf8sKT
6214671