TY - JOUR
T1 - Motile behaviour of droplets in lipid systems
AU - Babu, Dhanya
AU - Katsonis, Nathalie
AU - Lancia, Federico
AU - Plamont, Remi
AU - Ryabchun, Alexander
N1 - Funding Information:
N.K. thanks the European Research Council for funding (Consolidator Grant 772564). This work was supported by the Dutch Ministry of Education, Culture and Science (Gravity Program FMS 024.001.035). The authors thank the Animation Studio of the Institute for Complex Molecular Systems and Koen Pieterse (University of Eindhoven) for help with the illustrations.
Funding Information:
N.K. thanks the European Research Council for funding (Consolidator Grant 772564). This work was supported by the Dutch Ministry of Education, Culture and Science (Gravity Program FMS 024.001.035). The authors thank the Animation Studio of the Institute for Complex Molecular Systems and Koen Pieterse (University of Eindhoven) for help with the illustrations.
Publisher Copyright:
© 2022, Springer Nature Limited.
PY - 2022/6
Y1 - 2022/6
N2 - Motility is the capacity for living organisms to move autonomously and with purpose, and is essential to life. The transition from abiotic chemistry into motile cellular compartments has yet to be understood, but motile behaviour likely followed chemical evolution because primeval cell survival depended on scouting for resources effectively. Minimalistic motile systems provide an experimental framework to delineate the emergence mechanisms of such an evolutionary asset. In this Review, we discuss frontier developments in controlling the movement of droplets in lipid systems, in particular, chemotactic behaviours driven by fluctuations in interfacial tension, because of its simple mechanism and prebiotic relevance. Although most efforts have focused on designing oil droplet motility in lipid-rich aqueous solutions, we highlight that water droplets can also move in lipid-enriched oils. First, we describe how droplets evolve chemotactic motility in lipid systems. Next, we review how these oil droplets can adapt their movement to illumination conditions. Finally, we discuss examples where chemical reactivity brings complexity to motility. This work contributes to systems chemistry, where chemical reactions combined with physicochemical phenomena can yield new functions, such that a limited set of molecules can promote complex movement at larger functional scales by following the rules of molecular chemistry.
AB - Motility is the capacity for living organisms to move autonomously and with purpose, and is essential to life. The transition from abiotic chemistry into motile cellular compartments has yet to be understood, but motile behaviour likely followed chemical evolution because primeval cell survival depended on scouting for resources effectively. Minimalistic motile systems provide an experimental framework to delineate the emergence mechanisms of such an evolutionary asset. In this Review, we discuss frontier developments in controlling the movement of droplets in lipid systems, in particular, chemotactic behaviours driven by fluctuations in interfacial tension, because of its simple mechanism and prebiotic relevance. Although most efforts have focused on designing oil droplet motility in lipid-rich aqueous solutions, we highlight that water droplets can also move in lipid-enriched oils. First, we describe how droplets evolve chemotactic motility in lipid systems. Next, we review how these oil droplets can adapt their movement to illumination conditions. Finally, we discuss examples where chemical reactivity brings complexity to motility. This work contributes to systems chemistry, where chemical reactions combined with physicochemical phenomena can yield new functions, such that a limited set of molecules can promote complex movement at larger functional scales by following the rules of molecular chemistry.
UR - https://www.scopus.com/pages/publications/85130725849
U2 - 10.1038/s41570-022-00392-8
DO - 10.1038/s41570-022-00392-8
M3 - Review article
AN - SCOPUS:85130725849
SN - 2397-3358
VL - 6
SP - 377
EP - 388
JO - Nature reviews chemistry
JF - Nature reviews chemistry
IS - 6
ER -