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Forschungsdatenbank PMU-SQQUID

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Gewähltes Keyword: Mesenchymal stem cells


Aging restricts the ability of mesenchymal stem cells to promote the generation of oligodendrocytes during remyelination.
Rivera, FJ; de la Fuente, AG; Zhao, C; Silva, ME; Gonzalez, GA; Wodnar, R; Feichtner, M; Lange, S; Errea, O; Priglinger, E; OSullivan, A; Romanelli, P; Jadasz, JJ; Brachtl, G; Greil, R; Tempfer, H; Traweger, A; Bátiz, LF; Küry, P; Couillard-Despres, S; Franklin, RJM; Aigner, L;
Glia. 2019; 67(8):1510-1525
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MEsenchymal StEm cells for Multiple Sclerosis (MESEMS): a randomized, double blind, cross-over phase I/II clinical trial with autologous mesenchymal stem cells for the therapy of multiple sclerosis
Uccelli, A; Laroni, A; Brundin, L; Clanet, M; Fernandez, O; Nabavi, SM; Muraro, PA; Oliveri, RS; Radue, EW; Sellner, J; Sorensen, PS; Sormani, MP; Wuerfel, JT; Battaglia, MA; Freedman, MS
TRIALS. 2019; 20: 263
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A systematic review of the clinical applications and complications of bone marrow aspirate concentrate in management of bone defects and nonunions.
Imam, MA; Holton, J; Ernstbrunner, L; Pepke, W; Grubhofer, F; Narvani, A; Snow, M;
Int Orthop. 2017; 41(11):2213-2220
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Human platelet lysate: Replacing fetal bovine serum as a gold standard for human cell propagation?
Burnouf, T; Strunk, D; Koh, MB; Schallmoser, K;
Biomaterials. 2016; 76: 371-387.
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Characterization of a migrative subpopulation of adult human nasoseptal chondrocytes with progenitor cell features and their potential for in vivo cartilage regeneration strategies.
Elsaesser, AF; Schwarz, S; Joos, H; Koerber, L; Brenner, RE; Rotter, N;
Cell Biosci. 2016; 6: 11
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Mesenchymal Stem and Progenitor Cells in Normal and Dysplastic Hematopoiesis-Masters of Survival and Clonality?
Pleyer, L; Valent, P; Greil, R;
Int J Mol Sci. 2016; 17(7):
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Mechanical fibrinogen-depletion supports heparin-free mesenchymal stem cell propagation in human platelet lysate.
Laner-Plamberger, S; Lener, T; Schmid, D; Streif, DA; Salzer, T; Öller, M; Hauser-Kronberger, C; Fischer, T; Jacobs, VR; Schallmoser, K; Gimona, M; Rohde, E;
J Transl Med. 2015; 13(1): 354
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The Influence of Oxygen on the Proliferative Capacity and Differentiation Potential of Lacrimal Gland-Derived Mesenchymal Stem Cells.
Roth, M; Spaniol, K; Kordes, C; Schwarz, S; Mertsch, S; Häussinger, D; Rotter, N; Geerling, G; Schrader, S;
Invest Ophthalmol Vis Sci. 2015; 56(8): 4741-4752.
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Urine is a novel source of autologous mesenchymal stem cells for patients with epidermolysis bullosa.
Schosserer, M; Reynoso, R; Wally, V; Jug, B; Kantner, V; Weilner, S; Buric, I; Grillari, J; Bauer, JW; Grillari-Voglauer, R;
BMC Res Notes. 2015; 8(1): 767
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Immortalised human mesenchymal stem cells undergo chondrogenic differentiation in alginate and PGA/PLLA scaffolds.
Stölzel, K; Schulze-Tanzil, G; Olze, H; Schwarz, S; Feldmann, EM; Rotter, N;
Cell Tissue Bank. 2015; 16(1):159-170
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Allogenic mesenchymal stem cells as a treatment for equine degenerative joint disease: a pilot study.
Broeckx, S; Suls, M; Beerts, C; Vandenberghe, A; Seys, B; Wuertz-Kozak, K; Duchateau, L; Spaas, JH;
Curr Stem Cell Res Ther. 2014; 9(6):497-503
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Adipose Tissue-Derived Stem Cell Secreted IGF-1 Protects Myoblasts from the Negative Effect of Myostatin
Gehmert, S; Wenzel, C; Loibl, M; Brockhoff, G; Huber, M; Krutsch, W; Nerlich, M; Gosau, M; Klein, S; Schreml, S; Prantl, L; Gehmert, S
BIOMED RES INT. 2014; 2014: 129048
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ACL injuries and stem cell therapy.
Hirzinger, C; Tauber, M; Korntner, S; Quirchmayr, M; Bauer, HC; Traweger, A; Tempfer, H;
Arch Orthop Trauma Surg. 2014; 134(11):1573-1578
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Bone marrow-derived mesenchymal stem cells migrate to healthy and damaged salivary glands following stem cell infusion
Schwarz, S; Huss, R; Schulz-Siegmund, M; Vogel, B; Brandan, S; Lang, S; Rotter, N
INT J ORAL SCI. 2014; 6(3): 154-161.
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Impact of autogenous concentrated bone marrow aspirate on bone regeneration after sinus floor augmentation with a bovine bone substitute--a split-mouth pilot study.
Wildburger, A; Payer, M; Jakse, N; Strunk, D; Etchard-Liechtenstein, N; Sauerbier, S
Clin Oral Implants Res. 2014; 25(10):1175-1181
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Mesenchymal stem cell conditioning promotes rat oligodendroglial cell maturation.
Jadasz, JJ; Kremer, D; Göttle, P; Tzekova, N; Domke, J; Rivera, FJ; Adjaye, J; Hartung, HP; Aigner, L; Küry, P;
PLoS One. 2013; 8(8):e71814
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A clinically-feasible protocol for using human platelet lysate and mesenchymal stem cells in regenerative therapies.
Warnke, PH; Humpe, A; Strunk, D; Stephens, S; Warnke, F; Wiltfang, J; Schallmoser, K; Alamein, M; Bourke, R; Heiner, P; Liu, Q;
J Craniomaxillofac Surg. 2013; 41(2):153-161
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Adult mesenchymal stem cell therapy for myelin repair in multiple sclerosis.
Rivera, FJ; Aigner, L;
Biol Res. 2012; 45(3):257-268
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Mesenchymal stem cells prime proliferating adult neural progenitors toward an oligodendrocyte fate.
Steffenhagen, C; Dechant, FX; Oberbauer, E; Furtner, T; Weidner, N; Küry, P; Aigner, L; Rivera, FJ;
Stem Cells Dev. 2012; 21(11):1838-1851
Originalarbeiten (Zeitschrift)
Mesenchymal stem cells restore lung function by recruiting resident and nonresident proteins.
Jungebluth, P; Luedde, M; Ferrer, E; Luedde, T; Vucur, M; Peinado, VI; Go, T; Schreiber, C; von Richthofen, M; Bader, A; Haag, J; Darsow, KH; Bartel, SJ; Lange, HA; Furlani, D; Steinhoff, G; Macchiarini, P;
Cell Transplant. 2011; 20(10): 1561-1574.
Originalarbeiten (Zeitschrift)
miR-17, miR-19b, miR-20a, and miR-106a are down-regulated in human aging.
Hackl, M; Brunner, S; Fortschegger, K; Schreiner, C; Micutkova, L; Mück, C; Laschober, GT; Lepperdinger, G; Sampson, N; Berger, P; Herndler-Brandstetter, D; Wieser, M; Kühnel, H; Strasser, A; Rinnerthaler, M; Breitenbach, M; Mildner, M; Eckhart, L; Tschachler, E; Trost, A; Bauer, JW; Papak, C; Trajanoski, Z; Scheideler, M; Grillari-Voglauer, R; Grubeck-Loebenstein, B; Jansen-Dürr, P; Grillari, J;
Aging Cell. 2010; 9(2):291-296
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Novel markers of mesenchymal stem cells defined by genome-wide gene expression analysis of stromal cells from different sources.
Kaltz, N; Ringe, J; Holzwarth, C; Charbord, P; Niemeyer, M; Jacobs, VR; Peschel, C; Häupl, T; Oostendorp, RA;
Exp Cell Res. 2010; 316(16): 2609-2617.
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How to track cellular aging of mesenchymal stromal cells?
Wagner, W; Bork, S; Lepperdinger, G; Joussen, S; Ma, N; Strunk, D; Koch, C
AGING-US. 2010; 2(4): 224-230.
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A nuclear magnetic resonance biomarker for neural progenitor cells: is it all neurogenesis?
Ramm, P; Couillard-Despres, S; Plötz, S; Rivera, FJ; Krampert, M; Lehner, B; Kremer, W; Bogdahn, U; Kalbitzer, HR; Aigner, L;
Stem Cells. 2009; 27(2):420-423
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Isolation and animal serum free expansion of human umbilical cord derived mesenchymal stromal cells (MSCs) and endothelial colony forming progenitor cells (ECFCs).
Reinisch, A; Strunk, D;
J Vis Exp. 2009; (32):
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Mesenchymal stem cells promote oligodendroglial differentiation in hippocampal slice cultures.
Rivera, FJ; Siebzehnrubl, FA; Kandasamy, M; Couillard-Despres, S; Caioni, M; Poehler, AM; Berninger, B; Sandner, B; Bogdahn, U; Goetz, M; Bluemcke, I; Weidner, N; Aigner, L;
Cell Physiol Biochem. 2009; 24(3-4):317-324
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Perivascular cells of the supraspinatus tendon express both tendon- and stem cell-related markers.
Tempfer, H; Wagner, A; Gehwolf, R; Lehner, C; Tauber, M; Resch, H; Bauer, HC;
HISTOCHEM CELL BIOL. 2009; 131(6): 733-741.
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MSC response to pH levels found in degenerating intervertebral discs.
Wuertz, K; Godburn, K; Iatridis, JC;
Biochem Biophys Res Commun. 2009; 379(4):824-829
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In vivo osteoprogenitor potency of human stromal cells from different tissues does not correlate with expression of POU5F1 or its pseudogenes.
Kaltz, N; Funari, A; Hippauf, S; Delorme, B; Noël, D; Riminucci, M; Jacobs, VR; Häupl, T; Jorgensen, C; Charbord, P; Peschel, C; Bianco, P; Oostendorp, RA;
Stem Cells. 2008; 26(9): 2419-2424.
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Oligodendrogenesis of adult neural progenitors: differential effects of ciliary neurotrophic factor and mesenchymal stem cell derived factors.
Rivera, FJ; Kandasamy, M; Couillard-Despres, S; Caioni, M; Sanchez, R; Huber, C; Weidner, N; Bogdahn, U; Aigner, L;
J NEUROCHEM. 2008; 107(3): 832-843.
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Behavior of mesenchymal stem cells in the chemical microenvironment of the intervertebral disc.
Wuertz, K; Godburn, K; Neidlinger-Wilke, C; Urban, J; Iatridis, JC;
Spine (Phila Pa 1976). 2008; 33(17):1843-1849
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CD45-positive cells of haematopoietic origin enhance chondrogenic marker gene expression in rat marrow stromal cells.
Ahmed, N; Vogel, B; Rohde, E; Strunk, D; Grifka, J; Schulz, MB; Grassel, S
Int J Mol Med. 2006; 18(2):233-240
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Adult hippocampus derived soluble factors induce a neuronal-like phenotype in mesenchymal stem cells.
Rivera, FJ; Sierralta, WD; Minguell, JJ; Aigner, L;
Neurosci Lett. 2006; 406(1-2):49-54
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Dynamic of distribution of human bone marrow-derived mesenchymal stem cells after transplantation into adult unconditioned mice.
Allers, C; Sierralta, WD; Neubauer, S; Rivera, F; Minguell, JJ; Conget, PA;
Transplantation. 2004; 78(4): 503-508.
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Mesenchymal stem cells - A new pathway for tissue engineering in reconstructive surgery
Naumann, A; Dennis, J; Staudenmaier, R; Rotter, N; Aigner, J; Ziegelaar, B; Happ, T; Rasp, G; Caplan, AI
LARYNGO RHINO OTOL. 2002; 81(7): 521-527.
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