Folyóiratcikkek tallózása szerző szerint "Ligeti, Erzsébet"

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  • Yanez-Mo M; Siljander PR; Andreu Z; Zavec AB; Borras FE; Buzás, Edit Irén; Buzás, Krisztina; Casal E; Cappello F; Carvalho J; Colas E; Cordeiro-da Silva A; Fais S; Falcon-Perez JM; Ghobrial IM; Giebel B; Gimona M; Graner M; Gursel I; Gursel M; Heegaard NH; Hendrix A; Kierulf P; Kokubun K; Kosanovic M; Kralj-Iglic V; Kramer-Albers EM; Laitinen S; Lasser C; Lener T; Ligeti, Erzsébet; Line A; Lipps G; Llorente A; Lotvall J; Mancek-Keber M; Marcilla A; Mittelbrunn M; Nazarenko I; Nolte-'t Hoen EN; Nyman TA; O'Driscoll L; Olivan M; Oliveira C; Pállinger, Éva; Del Portillo HA; Reventos J; Rigau M; Rohde E; Sammar M; Sanchez-Madrid F; Santarem N; Schallmoser K; Ostenfeld MS; Stoorvogel W; Stukelj R; Van der Grein SG; Vasconcelos MH; Wauben MH; De Wever O (2015)
    In the past decade, extracellular vesicles (EVs) have been recognized as potent vehicles of intercellular communication, both in prokaryotes and eukaryotes. This is due to their capacity to transfer proteins, lipids and ...
  • Lőrincz, Márton Ákos; Szeifert, Viktória; Bartos, Balázs Ádám; Szombath, Dávid; Mócsai, Attila; Ligeti, Erzsébet (2019)
  • Csépányi-Kömi, Roland; Sáfár D; Grósz V; Tarján, Zoltán László; Ligeti, Erzsébet (2013)
  • Théry, C; Witwer, KW; Aikawa, E; Alcaraz, MJ; Anderson, JD; Andriantsitohaina, R; Antoniou, A; Arab, T; Archer, F; Atkin-Smith, GK; Ayre, DC; Bach, J-M; Bachurski, D; Baharvand, H; Balaj, L; Baldacchino, S; Bauer, NN; Baxter, AA; Bebawy, M; Beckham, C; Bedina Zavec, A.; Benmoussa, A.; Berardi, AC; Bergese, P; Bielska, E; Blenkiron, C; Bobis-Wozowicz, S; Boilard, E; Boireau, W; Bongiovanni, A; Borràs, FE; Bosch, S; Boulanger, CM; Breakefield, X; Breglio, AM; Brennan, MÁ; Brigstock, DR; Brisson, A; Broekman, MLD; Bromberg, JF; Bryl-Górecka, P; Buch, S; Buck, AH; Burger, D; Busatto, S; Buschmann D; Bussolati, B; Buzás, Edit Irén; Byrd, JB; Camussi, G; Carter, DRF; Caruso, S; Chamley, LW; Chang, Y-T; Chaudhuri, AD; Chen, C; Chen, S; Cheng, L; Chin, AR; Clayton, A; Clerici, SP; Cocks, A; Cocucci, E; Coffey, RJ; Cordeiro-da-Silva, A; Couch, Y; Coumans, FAW; Coyle, B; Crescitelli, R; Criado, MF; D’Souza-Schorey, C; Das, S; de Candia, P; De Santana, EF Jr.; De Wever, O; del Portillo, HA; Demaret, T; Deville, S; Devitt, A; Dhondt, B; Di Vizio, D; Dieterich, LC; Dolo, V; Dominguez Rubio, AP; Dominici, M; Dourado, MR; Driedonks, TAP; Duarte, FV; Duncan, HM; Eichenberge,r RM; Ekström, K; EL Andaloussi, S; Elie-Caille, C; Erdbrügger, U; Falcón-Pérez, JM; Fatima, F; Fish, JE; Flores-Bellver, M; Försönits, András; Frelet-Barrand, A; Fricke, F; Fuhrmann, G; Gabrielsson, S; Gámez-Valero, A; Gardiner, C; Gärtner K.; Gaudin, R; Gho, YS; Giebel, B; Gilbert, C; Gimona, M; Giusti, I; Goberdhan, DCI; Görgens, A; Gorski, SM; Greening, DW; Gross, JC; Gualerzi, A; Gupta, GN; Gustafson, D; Handberg, A; Haraszti, RA; Harrison, P; Hegyesi, Hargita; Hendrix, A; Hill, AF; Hochberg, FH; Hoffmann, KF; Holder, B; Holthofer, H; Hosseinkhani, B; Hu, G; Huang, Y; Huber, V; Hunt, S; Ibrahim, AG-E; Ikezu, T; Inal, JM; Isin, M; Ivanova, A; Jackson, HK; Jacobsen, S; Jay, SM; Jayachandran, M; Jenster, G; Jiang, L; Johnson, SM; Jones, JC; Jong, A; Jovanovic-Talisman, T; Jung, S; Kalluri, R; Kano, S-I; Kaur, S; Kawamura, Y; Keller, ET; Khamari, Delaram; Khomyakova, E; Khvorova, A; Kierulf, P; Kim, KP; Kislinger, T; Klingeborn, M; Klinke, DJ II; Kornek, M; Kosanović, MM; Kovács, Árpád.Ferenc; Krämer-Albers, E-M; Krasemann, S; Krause, M; Kurochkin, IV; Kusuma, GD; Kuypers, S; Laitinen, S; Langevin, SM; Languino, LR; Lannigan, J; Lässer, C; Laurent, LC; Lavieu, G; Lázaro-Ibáñez, E; Le Lay, S; Lee, M-S; Lee, YXF; Lemos, DS; Lenassi, M; Leszczynska, A; Li, ITS; Liao, K; Libregts, SF; Ligeti, Erzsébet; Lim, R; Lim, SK; Linē, A; Linnemannstöns, K; Llorente, A; Lombard, CA; Lorenowicz, MJ; Lőrincz, Ádám Márton; Lötvall, J; Lovett, J; Lowry, MC; Loyer, X; Lu, Q; Lukomska, B; Lunavat, TR; Maas, SLN; Malhi, H; Marcilla, A; Mariani, J; Mariscal, J; Martens-Uzunova, ES; Martin-Jaular, L; Martinez, MC; Martins, VR; Mathieu, M; Mathivanan, S; Maugeri, M; McGinnis, LK; McVey, MJ; Meckes, DG Jr; Meehan, KL; Mertens, I; Minciacchi, VR; Möller, A; Møller Jørgensen, M; Morales-Kastresana, A; Morhayim, J; Mullier, F; Muraca, M; Musante, L; Mussack, V; Muth, DC; Myburgh, KH; Najrana, T; Nawaz, M; Nazarenko, I; Nejsum, P; Neri, C; Neri, T; Nieuwland, R; Nimrichter, L; Nolan, JP; Nolte-’t Hoen, ENM; Hooten, NN; O’Driscoll, L; O’Grady, T; O’Loghlen, A; Ochiya, T; Olivier, M; Ortiz, A; Ortiz, LA; Osteikoetxea, Xabier; Ostegaard, O; Ostrowski, M; Park, J; Pegtel, DM; Peinado, H; Perut, F; Pfaffl, MW; Phinney, DG; Pieters, BCH; Pink, RC; Pisetsky, DS; Pogge von Strandmann, E; Polakovicova, I; Poon, IKH; Powell, BH; Prada, I; Pulliam, L; Quesenberry, P; Radeghieri, A; Raffai, RL; Raimondo, S; Rak, J; Ramirez, MI; Raposo, G; Rayyan, MS; Regev-Rudzki, N; Ricklefs, FL; Robbins, PD; Roberts, DD; Rodrigues, SC; Rohde, E; Rome, S; Rouschop, KMA; Rughetti, A; Russell, AE; Saá, P; Sahoo, S; Salas-Huenuleo, E; Sánchez, C; Saugstad, JA; Saul, MJ; Schiffelers, RM; Schneider, R; Schøyen, TH; Scott, A; Shahaj, E; Sharma, S; Shatnyeva, O; Shekari, F; Shelke, GV; Shetty, AK; Shiba, K; Siljander, PR-M; Silva, AM; Skowronek, A; Snyder, OL II; Soares, RP; Sódar, Barbara; Soekmadji, C; Sotillo, J; Stah, lPD; Stoorvogel, W; Stott, SL; Strasser, EF; Swift, S; Tahara, H; Tewari, M; Timms, K; Tiwari, S; Tixeira, R; Tkach, M; Toh, WS; Tomasini, R; Torrecilhas, AC; Tosar, JP; Toxavidis, V; Urbanelli, L; Vader, P; van Balkom, BWM; van der Grein, SG; Van Deun, J; van Herwijnen, MJC; Van Keuren-Jensen, K; van Niel, G; van Royen, ME; van Wijnen, AJ; Vasconcelos, MH; Vechetti, IJ Jr; Veit, TD; Vella, LJ; Velot, É; Verweij, FJ; Vestad, B; Viñas, JL; Visnovitz, Tamás; Visnovitzné Dr Vukman, Krisztina; Wahlgren, J; Watson, DC; Wauben, MHM; Weaver, A; Webber, JP; Weber, V; Wehman, AM; Weiss, DJ; Welsh, JA; Wendt, S; Wheelock, AM; Wiener, Zoltán; Witte, L; Wolfram, J; Xagorari, A; Xander, P; Xu, J; Yan, X; Yáñez-Mó, M; Yin, H; Yuana, Y; Zappulli, V; Zarubova, J; Žėkas, V; Zhang, J-Y; Zhao, Z; Zheng, L; Zheutlin, AR; Zickler, AM; Zimmermann, P; Zivkovic, AM; Zocco, D; Zuba-Surma, EK (2018)
  • Lőrincz, Márton Ákos; Szeifert, Viktória; Bartos, Balázs Ádám; Ligeti, Erzsébet (2018)
    Techniques currently used for assessment of bacterial count or growth are time-consuming, offer low throughput, or they are complicated or expensive. The aim of the present work was to elaborate a new method that is able ...
  • Lévay, Magdolna; Bartos, Balázs Ádám; Ligeti, Erzsébet (2013)
    p190RhoGAP is a GTPase-activating protein (GAP) known to regulate actin cytoskeleton dynamics by decreasing RhoGTP levels through activation of the intrinsic GTPase activity of Rho. Although the GAP domain of p190RhoGAP ...
  • Csépányi-Kömi, Roland; Wisniewski, Éva; Bartos, Balázs Ádám; Levai P; Németh, Tamás; Balázs, Bernadett; Kurz AR; Bierschenk S; Sperandio M; Ligeti, Erzsébet (2016)
    ARHGAP25 is a Rac-specific GTPase-activating protein that is expressed primarily in hematopoietic cells. The involvement of ARHGAP25 in regulating the recruitment of leukocytes to inflammatory sites was investigated in ...
  • Lőrincz, Márton Ákos; Bartos, Balázs Ádám; Szombath, Dávid; Szeifert, Viktória; Timár, Csaba; Turiák, Lilla; Drahos, László; Kittel, Ágnes; Veres, Dániel; Kolonics, Ferenc; Mócsai, Attila; Ligeti, Erzsébet (2020)
  • Lőrincz, Márton Ákos; Szarvas G; Smith SME; Ligeti, Erzsébet (2014)
    Precise spatiotemporal regulation of O2 --generating NADPH oxidases (Nox) is a vital requirement. In the case of Nox1-3, which depend on the small GTPase Rac, acceleration of GTP hydrolysis by GTPase activating protein ...
  • Seifert EL; Ligeti, Erzsébet; Mayr JA; Sondheimer N; Hajnóczky, György (2015)
    The mitochondrial phosphate carrier (PiC) is a mitochondrial solute carrier protein, which is encoded by SLC25A3 in humans. PiC delivers phosphate, a key substrate of oxidative phosphorylation, across the inner mitochondrial ...
  • Csépányi-Kömi, Roland; Pásztor M; Bartos, Balázs Ádám; Ligeti, Erzsébet (2018)
    Background: GTPase-activating proteins (GAPs) accelerate the rate of hydrolysis of GTP bound to small GTPases, thereby limiting the prevalence and concentration of the active, GTP-bound form of these proteins. The large ...