2009
DOI: 10.2478/s11658-009-0018-0
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Mechanisms for the formation of membranous nanostructures in cell-to-cell communication

Abstract: Cells interact by exchanging material and information. Two methods of cell-to-cell communication are by means of microvesicles and by means of nanotubes. Both microvesicles and nanotubes derive from the cell membrane and are able to transport the contents of the inner solution. In this review, we describe two physical mechanisms involved in the formation of microvesicles and nanotubes: curvature-mediated lateral redistribution of membrane components with the formation of membrane nanodomains; and plasmamediate… Show more

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Cited by 51 publications
(40 citation statements)
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“…The fact that there is an exchange of molecules between D. vulgaris and E. coli, but not between C. acetobutylicum and E. coli, is compatible with this hypothesis, because E. coli, like C. acetobutylicum, is able to ferment glucose, and is not suffering a nutrient stress condition in the GY medium. The communication between bacteria, which can take several forms [33][34][35][36][37][38] , is essential for coordinating the behaviour of the whole community. Thus, communication between cells in pure culture regulates the population density by emitting, receiving and responding to a chemical signal, that is, quorum sensing 39,40 .…”
Section: Discussionmentioning
confidence: 99%
“…The fact that there is an exchange of molecules between D. vulgaris and E. coli, but not between C. acetobutylicum and E. coli, is compatible with this hypothesis, because E. coli, like C. acetobutylicum, is able to ferment glucose, and is not suffering a nutrient stress condition in the GY medium. The communication between bacteria, which can take several forms [33][34][35][36][37][38] , is essential for coordinating the behaviour of the whole community. Thus, communication between cells in pure culture regulates the population density by emitting, receiving and responding to a chemical signal, that is, quorum sensing 39,40 .…”
Section: Discussionmentioning
confidence: 99%
“…Accordingly, it has been shown recently that the topography of a nanostructured implant surface is a decisive factor for surface cell adhesion and growth [33][34][35]. The models of the electric double layer presented may thus serve as a practical tool to find the nanostructured surface topography of implants with optimal electric field strength and electric potential distribution that would promote the protein and cation mediated adhesion of osteoblasts to the negatively charged implant surface [35] and also communication between cells [36].…”
Section: Langevin-bikerman Stern (Lbs) Model For Finite-sized Ionsmentioning
confidence: 99%
“…Expression (62) obtained by statistical mechanics recovers the Helfrich isotropic bending energy (63) if…”
Section: F M H Da M C C a Ktm D D Ktmentioning
confidence: 99%