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Restrepo Sierra, A.M. (author)
Life, the most complex and admirable machine that one could think of has evolved over billions of years to display a beautiful variety of mechanisms that keep cells adapting, self-maintaining, reproducing, and evolving. If we think about it, what is this magic? What are the mechanisms behind life’s origins and wonderful coordination? Attracted...
doctoral thesis 2024
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Van de Cauter, L. (author), van Buren, L. (author), Koenderink, G.H. (author), Ganzinger, Kristina A. (author)
Creating an artificial cell from the bottom up is a long-standing challenge and, while significant progress has been made, the full realization of this goal remains elusive. Arguably, one of the biggest hurdles that researchers are facing now is the assembly of different modules of cell function inside a single container. Giant unilamellar...
review 2023
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Godino, E. (author)
The Christophe Danelon lab is involved in the long-term effort to construct an autonomous minimal cell using a bottom-up approach. Our goal is to achieve self-maintenance, selfreproduction, and evolution of a liposome compartment containing a minimal genome and a cell-free gene expression system. Self-reproduction requires splitting of the...
doctoral thesis 2022
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Blanken, D.M. (author)
Cells, the building blocks of life, are vastly complex. This complexity confers to every living organism the ability to maintain oneself, reproduce oneself, and evolve. Creating a minimal system from nonliving components that is capable of self-maintenance, self-reproduction, and evolvability, will greatly increase our understanding of life....
doctoral thesis 2021
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Fragasso, A. (author), De Franceschi, N. (author), Stömmer, Pierre (author), van der Sluis, E.O. (author), Dietz, Hendrik (author), Dekker, C. (author)
Molecular traffic across lipid membranes is a vital process in cell biology that involves specialized biological pores with a great variety of pore diameters, from fractions of a nanometer to >30 nm. Creating artificial membrane pores covering similar size and complexity will aid the understanding of transmembrane molecular transport in...
journal article 2021
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Kattan, J.M. (author)
Humanity has achieved to decipher the most fundamental mechanics of cellular life. Nevertheless, despite intense efforts there are still considerable gaps in our understanding of cellular processes. Traditionally, biologists investigate life by observation of existing lifeforms. In order to assign functions to biological components, it is common...
doctoral thesis 2020
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Last, M.G.F. (author), Deshpande, S.R. (author), Dekker, C. (author)
Membraneless organelles formed by liquid-liquid phase separation are dynamic structures that are employed by cells to spatiotemporally regulate their interior. Indeed, complex coacervation-based phase separation is involved in a multitude of biological tasks ranging from photosynthesis to cell division to chromatin organization, and more....
journal article 2020
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Soler Canton, A. (author)
Synthetic biology is an emerging and rapidly expanding field of research focused on the assembly of novel biological systems with new functionalities tailored for different applications. Genetic circuits have been re-wired or constructed with elements from different organisms, and metabolic pathways have been engineered to endow cells with non...
doctoral thesis 2019
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Fanalista, F. (author), Birnie, A.T.F. (author), Maan, R. (author), Burla, Federica (author), Charles usagé Charles-Carty, K.V. (author), Pawlik, G. (author), Deshpande, S.R. (author), Koenderink, Gijsje H. (author), Dogterom, A.M. (author), Dekker, C. (author)
Bottom-up biology is an expanding research field that aims to understand the mechanisms underlying biological processes via in vitro assembly of their essential components in synthetic cells. As encapsulation and controlled manipulation of these elements is a crucial step in the recreation of such cell-like objects, microfluidics is...
journal article 2019
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Schaich, Michael (author), Cama, Jehangir (author), Al Nahas, Kareem (author), Sobota, Diana (author), Sleath, Hannah (author), Jahnke, Kevin (author), Deshpande, S.R. (author), Dekker, C. (author), Keyser, Ulrich F. (author)
The low membrane permeability of candidate drug molecules is a major challenge in drug development, and insufficient permeability is one reason for the failure of antibiotic treatment against bacteria. Quantifying drug transport across specific pathways in living systems is challenging because one typically lacks knowledge of the exact...
journal article 2019
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Deshpande, S.R. (author), Wunnava Venkata, S.S. (author), Hueting, D.A. (author), Dekker, C. (author)
Recent years have seen a tremendous interest in the bottom-up reconstitution of minimal biomolecular systems, with the ultimate aim of creating an autonomous synthetic cell. One of the universal features of living systems is cell growth, where the cell membrane expands through the incorporation of newly synthesized lipid molecules. Here, the...
journal article 2019
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Deshpande, S.R. (author), Spoelstra, W.K. (author), van Doorn, M.C. (author), Kerssemakers, J.W.J. (author), Dekker, C. (author)
Liposomes, self-assembled vesicles with a lipid-bilayer boundary similar to cell membranes, are extensively used in both fundamental and applied sciences. Manipulation of their physical properties, such as growth and division, may significantly expand their use as model systems in cellular and synthetic biology. Several approaches have been...
journal article 2018
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van Nies, P.Y.B. (author)
doctoral thesis 2017
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Van Heijkamp, L.F. (author)
In this study non-invasive neutron scattering techniques are used on soft condensed matter, probing colloidal length scales. Neutrons penetrate deeply into matter and have a different interaction with hydrogen and deuterium, allowing for tunable contrast using light and heavy water as solvents. The mesoscopic structure of materials is determined...
doctoral thesis 2011
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Fretz, M.M. (author), Hogset, A. (author), Koning, G.A. (author), Jiskoot, W. (author), Storm, G. (author)
journal article 2007
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Zielhuis, S.W. (author), Seppenwoolde, J.H. (author), Mateus, V.A.P. (author), Bakker, C.J.G. (author), Krijger, G.C. (author), Storm, G. (author), Zonnenberg, B.A. (author), Van het Schip, A.D. (author), Koning, G.A. (author), Nijsen, J.F.W. (author)
Many advanced molecular imaging agents are currently being investigated preclinically. Especially, liposomes, have proven to be very promising carrier systems for diagnostic agents for use in single-photon emission computed tomography (SPECT) or magnetic resonance imaging (MRI), as well as for therapeutic agents to treat diseases such as cancer....
journal article 2006
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