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{"references": ["Song, S., Llopis-Lorente, A., Mason, A. F., Abdelmohsen, L. K. E. A. & van Hest, J. C. M. Confined Motion: Motility of Active Microparticles in Cell-Sized Lipid Vesicles. J. Am. Chem. Soc. 144, 13831\u2013 13838 (2022)", "Vutukuri, H. R. et al. Active particles induce large shape deformations in giant lipid vesicles. Nature 586, 52\u201356 (2020)", "Bricard, A., Caussin, J.-B., Desreumaux, N., Dauchot, O. & Bartolo, D. Emergence of macroscopic directed motion in populations of motile colloids. Nature 503, 95\u201398 (2013)", "Buttinoni, I. et al. Dynamical Clustering and Phase Separation in Suspensions of Self-Propelled Colloidal Particles. Phys. Rev. Lett. 110, 238301 (2013)", "Pautot, S., Frisken, B. J. & Weitz, D. A. Production of Unilamellar Vesicles Using an Inverted Emulsion. Langmuir 19, 2870\u20132879 (2003)", "Moga, A., Yandrapalli, N., Dimova, R. & Robinson, T. Optimization of the Inverted Emulsion Method for High-Yield Production of Biomimetic Giant Unilamellar Vesicles. ChemBioChem 20, 2674\u20132682 (2019)", "Ghellab, S. E., Mu, W., Li, Q. & Han, X. Prediction of the size of electroformed giant unilamellar vesicle using response surface methodology. Biophys Chem 253, 106217 (2019)", "NIST/SEMATECH e-Handbook of Statistical Methods, http://www.itl.nist.gov/div898/handbook/, accessed April 11, 2023"]}
Poster presented by Eugenia De Remigis at the Interchall2023 - Interdisciplinary challenges: from non-equilibrium physics to life sciences conference, held in Rome, Italy, on April 17 - 21, 2023.
microparticles, active particles, liposome, encapsulation, GUV, microrobots, vesicle, inverted emulsion
microparticles, active particles, liposome, encapsulation, GUV, microrobots, vesicle, inverted emulsion
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