280 search results for “a quest cell with” in the Student website
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Micha DrukkerFaculty of Science
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The quest for the magic angle
Stack two layers of graphene, twisted at slightly different angles to each other, and the material spontaneously becomes a superconductor. Science still can't explain how something so magical can happen, but physicists use special equipment to reveal what is taking place under the surface.
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Willem FibbeFaculteit Geneeskunde
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Dennis ClaessenFaculty of Science
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Frank SchaftenaarFaculty of Science
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Ewa Snaar-JagalskaFaculty of Science
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Douwe AtsmaFaculteit Geneeskunde
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Noortje DannenbergFaculty of Science
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Erik DanenFaculty of Science
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Joost BeltmanFaculty of Science
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Got a question about science? Ask Leiden!
Due to its success, the Leiden2022 Q&A has been extended and is looking for even more thought-provoking, interesting or unusual questions.
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Looking for atmospheres in the ultimate quest for extraterrestrial life
To look for atmospheres around planets outside our solar system is to look for extraterrestrial life. Astronomist Sebastian Zieba used data from the James Webb Space Telescope to study small rocky exoplanets but found no aliens yet. However, his findings are still very interesting for future observations.…
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Marjolein CrooijmansFaculty of Science
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Tessa VergroesenFaculty of Science
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Luuk ReinaldaFaculty of Science
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Saloni SaxenaFaculty of Science
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Arthur RamFaculty of Science
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Serkan AslanFaculty of Science
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Christine MummeryFaculteit Geneeskunde
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How cells talk by pulling on a fibre network
Mechanics play a larger role in blood vessel formation, and other developmental biology, than previously thought. Cells appear to respond to mechanical signals, such as pressure. Through the extracellular matrix, a network of fibrous proteins, cells can supposedly exchange those mechanical signals over…
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Bacteria without cell wall gobble up DNA from environment
A bacterium hiding from the immune system and picking up bits of DNA from its environment. The result: gaining new traits, such as better protection against antibiotics. Fortunately, we have not found such a damning scenario yet. However, PhD student Renée Kapteijn did find the first clues, which…
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Greater understanding of specialised cell could prevent strokes
Ilze Bot wants to reduce the prevalence of cardiovascular diseases. Her research focuses on mast cells, which protect us from infections but can also make us ill.
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‘Listen carefully when students ask a question, to hear the question behind the question’
‘Rudy van Vliet is always willing to go that extra mile to help us,’ is what students say about him. The lecturer in the Computer Science bachelor’s programme not only teaches his regular courses but also offers additional classes to prepare students for programming competitions. His dedication to students…
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forming embryo to cancer metastasis: the significance of collective cell movement
Luca Giomi has the first results of his ERC consolidator grant. He discovered that epithelial cells move collectively but in different ways, depending on the scale you look at. It is hexatic at small scales, and becomes nematic at larger scales: it is a multiscale order. This collective movement of…
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Joey ZuijderveltFaculty of Science
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Stiffness and viscosity of cells differ in cancer and other diseases
During illness, the stiffness or viscosity of cells can change. Tom Evers demonstrated this by measuring such properties of human immune cells for the first time. ‘The stiffness of certain cells could be a way to make a diagnosis,’ Evers said. He defended his thesis on March 26th.
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First patient in the Netherlands successfully treated with stem cell gene therapy
Researchers from the Leiden University Medical Center (LUMC) have successfully used stem cell gene therapy to treat a baby with the severe congenital immune disorder SCID. An important milestone: it is the first time stem cell gene therapy of Dutch origin has been administered to a patient, and also…
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How cells determine the fate of proteins (and can we do it too?)
Cells in our bodies are often threatened by errors in our own proteins. The FLOW consortium, comprising scientists from various institutions including Leiden, is poised to meticulously map out for the first time how cells control proteins, correcting or removing faulty ones. This endeavour holds promise…
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collagen to canvas: interactive artwork brings the world between our cells to life
What’s really happening in the space between the cells in your body? With the Collagen Canvas project, students from Leiden University invite you to explore this question by blending science with art. This interactive artwork immerses you in the dynamics of the extracellular matrix—the invisible structure…
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How to hijack natural destruction in cells: ‘We need to understand it through and through’
Destroying proteins from the Golgi apparatus of the cell in a controlled manner. That is the focus of chemist Marta Artola’s pioneering research. By developing a groundbreaking technology to target specific proteins in the Golgi, Artola aims to unlock new ways for drug development. For this ambitious…
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Leiden chemists discover new ways in which single-celled organisms organise their DNA
It has only recently been discovered that single-celled organisms (bacteria and archaea) also have histones—proteins that structure DNA. Now, Leiden PhD candidate Samuel Schwab has found that the histones in these organisms are much more diverse than previously thought. Schwab and his colleagues describe…
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Bas ter BraakFaculty of Science
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technique uncovers disease-related changes in tiny droplets within our cells
Understanding the behaviour of tiny droplets in our cells could aid the search for new treatments. A team of Leiden researchers has developed a groundbreaking method to study how these droplets transition from liquid to solid. This change plays a role in various diseases, including neurodegenerative…
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Peter BouwmanFaculty of Science
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Bart KramerFaculty of Science
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Joost WillemseFaculty of Science
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Sylvia Le DévédecFaculty of Science
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Remko OffringaFaculty of Science
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Bob van de WaterFaculty of Science
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Alireza Mashaghi TabariFaculty of Science
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A tail with a twist: how the tokay gecko grows a completely new body part
When the tokay gecko loses its tail, a new one grows from resident stem cells at the stump. Each tissue type - muscle, bone, blood vessels and skin - develops from specific stem cells. This discovery by Luthfi Nurhidayat holds potential implications for advancing regenerative medicine in humans. Nurhidayat…
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Herman SpainkFaculty of Science
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Cecile HerbermannFaculty of Science
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Nina SchultenFaculty of Science
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Ferdinand TeichertFaculty of Science
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Rafaella BuzatuFaculty of Science
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Yuting WangFaculty of Science
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