Page 43 - Read Online
P. 43

Chakraborty et al. Extracell Vesicles Circ Nucleic Acids 2023;4:27-43  https://dx.doi.org/10.20517/evcna.2023.05  Page 43

                    2016;132:577-92.  DOI  PubMed  PMC
               111.      Will RG, Ironside JW, Zeidler M, et al. A new variant of Creutzfeldt-Jakob disease in the UK. Lancet 1996;347:921-5.  DOI
               112.      Langevin C, Gousset K, Costanzo M, Richard-Le Goff O, Zurzolo C. Characterization of the role of dendritic cells in prion transfer to
                    primary neurons. Biochem J 2010;431:189-98.  DOI  PubMed
               113.      Zhu S, Victoria GS, Marzo L, Ghosh R, Zurzolo C. Prion aggregates transfer through tunneling nanotubes in endocytic vesicles.
                    Prion 2015;9:125-35.  DOI  PubMed  PMC
               114.      Victoria GS, Arkhipenko A, Zhu S, Syan S, Zurzolo C. Astrocyte-to-neuron intercellular prion transfer is mediated by cell-cell
                    contact. Sci Rep 2016;6:20762.  DOI  PubMed  PMC
               115.      Wang Y, Cui J, Sun X, Zhang Y. Tunneling-nanotube development in astrocytes depends on p53 activation. Cell Death Differ
                    2011;18:732-42.  DOI  PubMed  PMC
               116.      Dilna A, Deepak KV, Damodaran N, et al. Amyloid-β induced membrane damage instigates tunneling nanotube-like conduits by p21-
                    activated kinase dependent actin remodulation. Biochim Biophys Acta Mol Basis Dis 2021;1867:166246.  DOI  PubMed
               117.      Abounit S, Wu JW, Duff K, Victoria GS, Zurzolo C. Tunneling nanotubes: a possible highway in the spreading of tau and other
                    prion-like proteins in neurodegenerative diseases. Prion 2016;10:344-51.  DOI  PubMed  PMC
               118.      Tardivel M, Bégard S, Bousset L, et al. Tunneling nanotube (TNT)-mediated neuron-to neuron transfer of pathological Tau protein
                    assemblies. Acta Neuropathol Commun 2016;4:117.  DOI  PubMed  PMC
               119.      Scheiblich H, Dansokho C, Mercan D, et al. Microglia jointly degrade fibrillar alpha-synuclein cargo by distribution through
                    tunneling nanotubes. Cell 2021;184:5089-5106.e21.  DOI  PubMed  PMC
               120.      Abounit S, Bousset L, Loria F, et al. Tunneling nanotubes spread fibrillar α-synuclein by intercellular trafficking of lysosomes.
                    EMBO J 2016;35:2120-38.  DOI  PubMed  PMC
               121.      Grudina C, Kouroupi G, Nonaka T, Hasegawa M, Matsas R, Zurzolo C. Human NPCs can degrade α-syn fibrils and transfer them
                    preferentially in a cell contact-dependent manner possibly through TNT-like structures. Neurobiol Dis 2019;132:104609.  DOI
                    PubMed
               122.      Dieriks BV, Park TI, Fourie C, Faull RL, Dragunow M, Curtis MA. α-synuclein transfer through tunneling nanotubes occurs in SH-
                    SY5Y cells and primary brain pericytes from Parkinson's disease patients. Sci Rep 2017;7:42984.  DOI  PubMed  PMC
               123.      Costanzo M, Abounit S, Marzo L, et al. Transfer of polyglutamine aggregates in neuronal cells occurs in tunneling nanotubes. J Cell
                    Sci 2013;126:3678-85.  DOI  PubMed
               124.      Sharma M, Subramaniam S. Rhes travels from cell to cell and transports Huntington disease protein via TNT-like protrusion. J Cell
                    Biol 2019;218:1972-93.  DOI  PubMed  PMC
               125.      Ramírez-Jarquín UN, Sharma M, Shahani N, Li Y, Boregowda S, Subramaniam S. Rhes protein transits from neuron to neuron and
                    facilitates mutant huntingtin spreading in the brain. Sci Adv 2022;8:eabm3877.  DOI  PubMed  PMC
               126.      Li A, Han X, Deng L, Wang X. Mechanical properties of tunneling nanotube and its mechanical stability in human embryonic kidney
                    cells. Front Cell Dev Biol 2022;10:955676.  DOI  PubMed  PMC
               127.      Abounit S, Delage E, Zurzolo C. Identification and characterization of tunneling nanotubes for intercellular trafficking. Curr Protoc
                    Cell Biol 2015;67:12.10.1-12.10.21.  DOI  PubMed
               128.      Jacquemet G, Stubb A, Saup R, et al. Filopodome mapping identifies p130Cas as a mechanosensitive regulator of filopodia stability.
                    Curr Biol 2019;29:202-216.e7.  DOI  PubMed  PMC
               129.      Austefjord MW, Gerdes HH, Wang X. Tunneling nanotubes: diversity in morphology and structure. Commun Integr Biol
                    2014;7:e27934.  DOI  PubMed  PMC
               130.      Tarasiuk O, Ballarini E, Donzelli E, et al. Making connections: mesenchymal stem cells manifold ways to interact with neurons. Int J
                    Mol Sci 2022;23:5791.  DOI  PubMed  PMC
   38   39   40   41   42   43   44   45   46   47   48