-
1
-
-
58149170643
-
Mesenchymal stem cells from different organs are characterized by distinct topographic Hox codes
-
Ackema KB, Charite J. 2008; Mesenchymal stem cells from different organs are characterized by distinct topographic Hox codes. Stem Cells Dev 17: 979–991.
-
(2008)
Stem Cells Dev
, vol.17
, pp. 979-991
-
-
Ackema, K.B.1
Charite, J.2
-
2
-
-
84928879644
-
The role of reactive oxygen species in mesenchymal stem cell adipogenic and osteogenic differentiation: a review
-
Atashi F, Modarressi A, Pepper MS. 2015; The role of reactive oxygen species in mesenchymal stem cell adipogenic and osteogenic differentiation: a review. Stem Cells Dev 24(10): 1150–1163.
-
(2015)
Stem Cells Dev
, vol.24
, Issue.10
, pp. 1150-1163
-
-
Atashi, F.1
Modarressi, A.2
Pepper, M.S.3
-
3
-
-
0038305579
-
Phenotype discovery by gene expression profiling: mapping of biological processes linked to BMP-2-mediated osteoblast differentiation
-
Balint E, Lapointe D, Drissi H, et al. 2003; Phenotype discovery by gene expression profiling: mapping of biological processes linked to BMP-2-mediated osteoblast differentiation. J Cell Biochem 89: 401–426.
-
(2003)
J Cell Biochem
, vol.89
, pp. 401-426
-
-
Balint, E.1
Lapointe, D.2
Drissi, H.3
-
4
-
-
77957853504
-
‘Mesenchymal’ stem cells in human bone marrow (skeletal stem cells): a critical discussion of their nature, identity, and significance in incurable skeletal disease
-
Bianco P, Robey PG, Saggio I, et al. 2010; ‘Mesenchymal’ stem cells in human bone marrow (skeletal stem cells): a critical discussion of their nature, identity, and significance in incurable skeletal disease. Hum Gene Ther 21: 1057–1066.
-
(2010)
Hum Gene Ther
, vol.21
, pp. 1057-1066
-
-
Bianco, P.1
Robey, P.G.2
Saggio, I.3
-
5
-
-
41549139755
-
Mesenchymal stem cells: revisiting history, concepts, and assays
-
Bianco P, Robey PG, Simmons PJ. 2008; Mesenchymal stem cells: revisiting history, concepts, and assays. Cell Stem Cell 2: 313–319.
-
(2008)
Cell Stem Cell
, vol.2
, pp. 313-319
-
-
Bianco, P.1
Robey, P.G.2
Simmons, P.J.3
-
6
-
-
0042659529
-
von Kossa staining alone is not sufficient to confirm that mineralization in vitro represents bone formation
-
Bonewald LF, Harris SE, Rosser J, et al. 2003; von Kossa staining alone is not sufficient to confirm that mineralization in vitro represents bone formation. Calcif Tissue Int. 72: 537–547.
-
(2003)
Calcif Tissue Int
, vol.72
, pp. 537-547
-
-
Bonewald, L.F.1
Harris, S.E.2
Rosser, J.3
-
7
-
-
84885666186
-
Comparing the gene expression profile of stromal cells from human cord blood and bone marrow: lack of the typical ‘bone’ signature in cord blood cells
-
Bosch J, Houben AP, Hennicke T, et al. 2013; Comparing the gene expression profile of stromal cells from human cord blood and bone marrow: lack of the typical ‘bone’ signature in cord blood cells. Stem Cells Int 2013: 631984.
-
(2013)
Stem Cells Int
, vol.2013
, pp. 631984
-
-
Bosch, J.1
Houben, A.P.2
Hennicke, T.3
-
8
-
-
84859393648
-
Distinct differentiation potential of ‘MSC’ derived from cord blood and umbilical cord: are cord-derived cells true mesenchymal stromal cells?
-
Bosch J, Houben AP, Radke TF, et al. 2012; Distinct differentiation potential of ‘MSC’ derived from cord blood and umbilical cord: are cord-derived cells true mesenchymal stromal cells? Stem Cells Dev 21: 1977–1988.
-
(2012)
Stem Cells Dev
, vol.21
, pp. 1977-1988
-
-
Bosch, J.1
Houben, A.P.2
Radke, T.F.3
-
9
-
-
84865789056
-
Oxygen tension modifies the ‘stemness’ of human cord blood-derived stem cells
-
Buchheiser A, Houben AP, Bosch J, et al. 2012; Oxygen tension modifies the ‘stemness’ of human cord blood-derived stem cells. Cytotherapy 14(8): 967–982.
-
(2012)
Cytotherapy
, vol.14
, Issue.8
, pp. 967-982
-
-
Buchheiser, A.1
Houben, A.P.2
Bosch, J.3
-
10
-
-
84940945829
-
Isolation and Characterization of Human Mesenchymal Stromal Cell Subpopulations: Comparison of Bone Marrow and Adipose Tissue
-
Busser H, Najar M, Raicevic G, et al. 2015; Isolation and Characterization of Human Mesenchymal Stromal Cell Subpopulations: Comparison of Bone Marrow and Adipose Tissue. Stem Cells Dev 24(18): 2142–2457.
-
(2015)
Stem Cells Dev
, vol.24
, Issue.18
, pp. 2142-2457
-
-
Busser, H.1
Najar, M.2
Raicevic, G.3
-
11
-
-
0036790977
-
Diversity, topographic differentiation, and positional memory in human fibroblasts
-
Chang HY, Chi JT, Dudoit S, et al. 2002; Diversity, topographic differentiation, and positional memory in human fibroblasts. Proc Natl Acad Sci U S A 99: 12877–12882.
-
(2002)
Proc Natl Acad Sci U S A
, vol.99
, pp. 12877-12882
-
-
Chang, H.Y.1
Chi, J.T.2
Dudoit, S.3
-
14
-
-
84928017050
-
Identification and characterization of the novel Col10a1 regulatory mechanism during chondrocyte hypertrophic differentiation
-
Gu J, Lu Y, Li F, et al. 2014; Identification and characterization of the novel Col10a1 regulatory mechanism during chondrocyte hypertrophic differentiation. Cell Death Dis 5: e1469.
-
(2014)
Cell Death Dis
, vol.5
-
-
Gu, J.1
Lu, Y.2
Li, F.3
-
15
-
-
77956010764
-
Comparison of ectopic bone formation of embryonic stem cells and cord blood stem cells in vivo
-
Handschel J, Naujoks C, Langenbach F, et al. 2010; Comparison of ectopic bone formation of embryonic stem cells and cord blood stem cells in vivo. Tissue Eng A 16: 2475–2483.
-
(2010)
Tissue Eng A
, vol.16
, pp. 2475-2483
-
-
Handschel, J.1
Naujoks, C.2
Langenbach, F.3
-
16
-
-
84906686435
-
Quantification of clonal heterogeneity of mesenchymal progenitor cells in dental pulp and bone marrow
-
Harrington J, Sloan AJ, Waddington RJ. 2014; Quantification of clonal heterogeneity of mesenchymal progenitor cells in dental pulp and bone marrow. Connect Tissue Res 55(suppl 1): 62–67.
-
(2014)
Connect Tissue Res
, vol.55
, pp. 62-67
-
-
Harrington, J.1
Sloan, A.J.2
Waddington, R.J.3
-
17
-
-
34247608645
-
HOXA10 controls osteoblastogenesis by directly activating bone regulatory and phenotypic genes
-
Hassan MQ, Tare R, Lee SH, et al. 2007; HOXA10 controls osteoblastogenesis by directly activating bone regulatory and phenotypic genes. Mol Cell Biol 27: 3337–3352.
-
(2007)
Mol Cell Biol
, vol.27
, pp. 3337-3352
-
-
Hassan, M.Q.1
Tare, R.2
Lee, S.H.3
-
18
-
-
33846027131
-
BMP2 commitment to the osteogenic lineage involves activation of Runx2 by DLX3 and a homeodomain transcriptional network
-
Hassan MQ, Tare RS, Lee SH, et al. 2006; BMP2 commitment to the osteogenic lineage involves activation of Runx2 by DLX3 and a homeodomain transcriptional network. J Biol Chem 281: 40515–40526.
-
(2006)
J Biol Chem
, vol.281
, pp. 40515-40526
-
-
Hassan, M.Q.1
Tare, R.S.2
Lee, S.H.3
-
19
-
-
70249090782
-
Axial and appendicular skeletal transformations, ligament alterations, and motor neuron loss in Hoxc10 mutants
-
Hostikka SL, Gong J, Carpenter EM. 2009; Axial and appendicular skeletal transformations, ligament alterations, and motor neuron loss in Hoxc10 mutants. Int J Biol Sci 5: 397–410.
-
(2009)
Int J Biol Sci
, vol.5
, pp. 397-410
-
-
Hostikka, S.L.1
Gong, J.2
Carpenter, E.M.3
-
20
-
-
0026753812
-
Homeobox genes and pattern formation in the vertebrate limb
-
Izpisua-Belmonte JC, Duboule D. 1992; Homeobox genes and pattern formation in the vertebrate limb. Dev Biol 152: 26–36.
-
(1992)
Dev Biol
, vol.152
, pp. 26-36
-
-
Izpisua-Belmonte, J.C.1
Duboule, D.2
-
21
-
-
55049085582
-
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, et al. 2008; In vivo osteoprogenitor potency of human stromal cells from different tissues does not correlate with expression of POU5F1 or its pseudogenes. Stem Cells 26: 2419–2424.
-
(2008)
Stem Cells
, vol.26
, pp. 2419-2424
-
-
Kaltz, N.1
Funari, A.2
Hippauf, S.3
-
22
-
-
0031858666
-
Hoxa-2 restricts the chondrogenic domain and inhibits bone formation during development of the branchial area
-
Kanzler B, Kuschert SJ, Liu YH, et al. 1998; Hoxa-2 restricts the chondrogenic domain and inhibits bone formation during development of the branchial area. Development 125: 2587–2597.
-
(1998)
Development
, vol.125
, pp. 2587-2597
-
-
Kanzler, B.1
Kuschert, S.J.2
Liu, Y.H.3
-
23
-
-
52949136599
-
Transcriptional control of skeletogenesis
-
Karsenty G. 2008; Transcriptional control of skeletogenesis. Annu Rev Genom Hum Genet 9: 183–196.
-
(2008)
Annu Rev Genom Hum Genet
, vol.9
, pp. 183-196
-
-
Karsenty, G.1
-
24
-
-
84946490814
-
Bone and cartilage regeneration with the use of umbilical cord mesenchymal stem cells
-
Klontzas ME, Kenanidis EI, Heliotis M, et al. 2015; Bone and cartilage regeneration with the use of umbilical cord mesenchymal stem cells. Expert Opin Biol Ther 15: 1541–1552. ISSN:1471–2598.
-
(2015)
Expert Opin Biol Ther
, vol.15
, pp. 1541-1552
-
-
Klontzas, M.E.1
Kenanidis, E.I.2
Heliotis, M.3
-
25
-
-
77956512282
-
DLK-1 as a marker to distinguish unrestricted somatic stem cells and mesenchymal stromal cells in cord blood
-
Kluth SM, Buchheiser A, Houben AP, et al. 2010; DLK-1 as a marker to distinguish unrestricted somatic stem cells and mesenchymal stromal cells in cord blood. Stem Cells Dev 19: 1471–1483.
-
(2010)
Stem Cells Dev
, vol.19
, pp. 1471-1483
-
-
Kluth, S.M.1
Buchheiser, A.2
Houben, A.P.3
-
26
-
-
84885844845
-
Potential application of cord blood-derived stromal cells in cellular therapy and regenerative medicine
-
Kluth SM, Radke TF, Kogler G. 2012; Potential application of cord blood-derived stromal cells in cellular therapy and regenerative medicine. J Blood Transfus 2012: 365182.
-
(2012)
J Blood Transfus
, vol.2012
, pp. 365182
-
-
Kluth, S.M.1
Radke, T.F.2
Kogler, G.3
-
27
-
-
21344455343
-
Early developmental arrest of mammalian limbs lacking HoxA/HoxD gene function
-
Kmita M, Tarchini B, Zakany J, et al. 2005; Early developmental arrest of mammalian limbs lacking HoxA/HoxD gene function. Nature 435: 1113–1116.
-
(2005)
Nature
, vol.435
, pp. 1113-1116
-
-
Kmita, M.1
Tarchini, B.2
Zakany, J.3
-
28
-
-
3242755834
-
A new human somatic stem cell from placental cord blood with intrinsic pluripotent differentiation potential
-
Kogler G, Sensken S, Airey JA, et al. 2004; A new human somatic stem cell from placental cord blood with intrinsic pluripotent differentiation potential. J Exp Med.200: 123–135.
-
(2004)
J Exp Med
, vol.200
, pp. 123-135
-
-
Kogler, G.1
Sensken, S.2
Airey, J.A.3
-
29
-
-
0030934605
-
Bone formation in vivo: comparison of osteogenesis by transplanted mouse and human marrow stromal fibroblasts
-
Krebsbach PH, Kuznetsov SA, Satomura K, et al. 1997; Bone formation in vivo: comparison of osteogenesis by transplanted mouse and human marrow stromal fibroblasts. Transplantation 63(8): 1059–1069.
-
(1997)
Transplantation
, vol.63
, Issue.8
, pp. 1059-1069
-
-
Krebsbach, P.H.1
Kuznetsov, S.A.2
Satomura, K.3
-
30
-
-
0027953771
-
Hox genes in vertebrate development
-
Krumlauf R. 1994; Hox genes in vertebrate development. Cell 78: 191–201.
-
(1994)
Cell
, vol.78
, pp. 191-201
-
-
Krumlauf, R.1
-
31
-
-
85032468091
-
The effects of culture conditions on the generation and functionality of the mesenchymal stromal cells from cord blood
-
Laitinen A, Lampinen M, Liedtke S, et al. 2015; The effects of culture conditions on the generation and functionality of the mesenchymal stromal cells from cord blood. Cytotherapy 2016: 423–437.
-
(2015)
Cytotherapy
, vol.2016
, pp. 423-437
-
-
Laitinen, A.1
Lampinen, M.2
Liedtke, S.3
-
32
-
-
79959784533
-
The isolation and culture of human cord blood-derived mesenchymal stem cells under low oxygen conditions
-
Laitinen A, Nystedt J, Laitinen S. 2011; The isolation and culture of human cord blood-derived mesenchymal stem cells under low oxygen conditions. Methods Mol Biol 698: 63–73. DOI: 10.1007/978-1-60761-999-4_6.
-
(2011)
Methods Mol Biol
, vol.698
, pp. 63-73
-
-
Laitinen, A.1
Nystedt, J.2
Laitinen, S.3
-
33
-
-
80054801465
-
Generation and differentiation of microtissues from multipotent precursor cells for use in tissue engineering
-
Langenbach F, Berr K, Naujoks C, et al. 2011; Generation and differentiation of microtissues from multipotent precursor cells for use in tissue engineering. Nat Protoc 6: 1726–1735.
-
(2011)
Nat Protoc
, vol.6
, pp. 1726-1735
-
-
Langenbach, F.1
Berr, K.2
Naujoks, C.3
-
34
-
-
53349096948
-
Embryonic origin and Hox status determine progenitor cell fate during adult bone regeneration
-
Leucht P, Kim JB, Amasha R, et al. 2008; Embryonic origin and Hox status determine progenitor cell fate during adult bone regeneration. Development 135: 2845–2854.
-
(2008)
Development
, vol.135
, pp. 2845-2854
-
-
Leucht, P.1
Kim, J.B.2
Amasha, R.3
-
35
-
-
0033673531
-
Fgf8 signalling from the AER is essential for normal limb development
-
Lewandoski M, Sun X, Martin GR. 2000; Fgf8 signalling from the AER is essential for normal limb development. Nat Genet 26: 460–463.
-
(2000)
Nat Genet
, vol.26
, pp. 460-463
-
-
Lewandoski, M.1
Sun, X.2
Martin, G.R.3
-
36
-
-
81855224896
-
Runx2 contributes to murine Col10a1 gene regulation through direct interaction with its cis-enhancer
-
Li F, Lu Y, Ding M, et al. 2011; Runx2 contributes to murine Col10a1 gene regulation through direct interaction with its cis-enhancer. J Bone Miner Res 26: 2899–2910.
-
(2011)
J Bone Miner Res
, vol.26
, pp. 2899-2910
-
-
Li, F.1
Lu, Y.2
Ding, M.3
-
37
-
-
77953293421
-
The HOX code as a ‘biological fingerprint’ to distinguish functionally distinct stem cell populations derived from cord blood
-
Liedtke S, Buchheiser A, Bosch J, et al. 2010; The HOX code as a ‘biological fingerprint’ to distinguish functionally distinct stem cell populations derived from cord blood. Stem Cell Res 5: 40–50.
-
(2010)
Stem Cell Res
, vol.5
, pp. 40-50
-
-
Liedtke, S.1
Buchheiser, A.2
Bosch, J.3
-
38
-
-
84877329670
-
Neonatal mesenchymal-like cells adapt to surrounding cells
-
Liedtke S, Freytag EM, Bosch J, et al. 2013; Neonatal mesenchymal-like cells adapt to surrounding cells. Stem Cell Res 11: 634–646.
-
(2013)
Stem Cell Res
, vol.11
, pp. 634-646
-
-
Liedtke, S.1
Freytag, E.M.2
Bosch, J.3
-
39
-
-
70349190302
-
mir-210: a sensor for hypoxic stress during tumorigenesis
-
Mathew LK, Simon MC. 2009; mir-210: a sensor for hypoxic stress during tumorigenesis. Mol Cell 35: 737–738.
-
(2009)
Mol Cell
, vol.35
, pp. 737-738
-
-
Mathew, L.K.1
Simon, M.C.2
-
40
-
-
84904622537
-
Correspondence to: Soliciting strategies for developing cell-based reference materials to advance mesenchymal stem/stromal cell research and clinical translation
-
McKenna D, Matthay MA, Pati S. 2015; Correspondence to: Soliciting strategies for developing cell-based reference materials to advance mesenchymal stem/stromal cell research and clinical translation. Stem Cells Dev 23: 1717–1718.
-
(2015)
Stem Cells Dev
, vol.23
, pp. 1717-1718
-
-
McKenna, D.1
Matthay, M.A.2
Pati, S.3
-
41
-
-
84885101813
-
HIF-1α is upregulated in human mesenchymal stem cells
-
Palomaki S, Pietila M, Laitinen S, et al. 2013; HIF-1α is upregulated in human mesenchymal stem cells. Stem Cells 31: 1902–1909.
-
(2013)
Stem Cells
, vol.31
, pp. 1902-1909
-
-
Palomaki, S.1
Pietila, M.2
Laitinen, S.3
-
42
-
-
84885113328
-
Constitutive stabilization of hypoxia-inducible factor-α selectively promotes the self-renewal of mesenchymal progenitors and maintains mesenchymal stromal cells in an undifferentiated state
-
Park IH, Kim KH, Choi HK, et al. 2013; Constitutive stabilization of hypoxia-inducible factor-α selectively promotes the self-renewal of mesenchymal progenitors and maintains mesenchymal stromal cells in an undifferentiated state. Exp Mol Med 45: e44.
-
(2013)
Exp Mol Med
, vol.45
-
-
Park, I.H.1
Kim, K.H.2
Choi, H.K.3
-
43
-
-
84920973388
-
Epigenetic and in vivo comparison of diverse MSC sources reveals an endochondral signature for human hematopoietic niche formation
-
Reinisch A, Etchart N, Thomas D, et al. 2015; Epigenetic and in vivo comparison of diverse MSC sources reveals an endochondral signature for human hematopoietic niche formation. Blood 125: 249–260.
-
(2015)
Blood
, vol.125
, pp. 249-260
-
-
Reinisch, A.1
Etchart, N.2
Thomas, D.3
-
44
-
-
35348921682
-
Self-renewing osteoprogenitors in bone marrow sinusoids can organize a hematopoietic microenvironment
-
Sacchetti B, Funari A, Michienzi S, et al. 2007; Self-renewing osteoprogenitors in bone marrow sinusoids can organize a hematopoietic microenvironment. Cell 131: 324–336.
-
(2007)
Cell
, vol.131
, pp. 324-336
-
-
Sacchetti, B.1
Funari, A.2
Michienzi, S.3
-
46
-
-
44949231424
-
Analyzing real-time PCR data by the comparative Ct method
-
Schmittgen TD, Livak KJ. 2008; Analyzing real-time PCR data by the comparative Ct method. Nat Protoc 3: 1101–1108.
-
(2008)
Nat Protoc
, vol.3
, pp. 1101-1108
-
-
Schmittgen, T.D.1
Livak, K.J.2
-
47
-
-
84901368359
-
Soliciting strategies for developing cell-based reference materials to advance mesenchymal stromal cell research and clinical translation
-
Viswanathan S, Keating A, Deans R, et al. 2015; Soliciting strategies for developing cell-based reference materials to advance mesenchymal stromal cell research and clinical translation. Stem Cells Dev 23: 1157–1167.
-
(2015)
Stem Cells Dev
, vol.23
, pp. 1157-1167
-
-
Viswanathan, S.1
Keating, A.2
Deans, R.3
-
48
-
-
84884539106
-
Mesenchymal stromal cell characteristics vary depending on their origin
-
Wegmeyer H, Broske AM, Leddin M, et al. 2013; Mesenchymal stromal cell characteristics vary depending on their origin. Stem Cells Dev 22: 2606–2618.
-
(2013)
Stem Cells Dev
, vol.22
, pp. 2606-2618
-
-
Wegmeyer, H.1
Broske, A.M.2
Leddin, M.3
-
49
-
-
0042887424
-
Type X collagen gene regulation by Runx2 contributes directly to its hypertrophic chondrocyte-specific expression in vivo
-
Zheng Q, Zhou G, Morello R, et al. 2003; Type X collagen gene regulation by Runx2 contributes directly to its hypertrophic chondrocyte-specific expression in vivo. J Cell Biol 162: 833–842.
-
(2003)
J Cell Biol
, vol.162
, pp. 833-842
-
-
Zheng, Q.1
Zhou, G.2
Morello, R.3
|