Published June 23, 2023
| Version v1
Poster
Open
Optimisation of encapsulation technique for confining microparticles in lipid membranes
Authors/Creators
- 1. Scuola Superiore Sant'Anna
- 2. Sapienza Università di Roma
Description
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.
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CELLOIDS_Diss_Poster_IC2023_ED.pdf
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(3.8 MB)
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Additional details
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– 13838 (2022)
- Vutukuri, H. R. et al. Active particles induce large shape deformations in giant lipid vesicles. Nature 586, 52–56 (2020)
- Bricard, A., Caussin, J.-B., Desreumaux, N., Dauchot, O. & Bartolo, D. Emergence of macroscopic directed motion in populations of motile colloids. Nature 503, 95–98 (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, 2870–2879 (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, 2674–2682 (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