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1 on of cells expressing low levels of HER2 or epithelial cell adhesion molecule.
2 d also Ctr-induced proteolytic activation of epithelial cell adhesion molecule.
3 on (EMT) by reinduction of E-cadherin, a key epithelial cell adhesion molecule.
4 ration-related Ag 1 and lacked expression of epithelial cell adhesion molecule.
5 embryos and these cells ectopically express epithelial cell adhesion molecules.
6 Wnt-beta-catenin signaling, based on EpCAM (epithelial cell adhesion molecule, a hepatic stem cell m
7 tor 4alpha), progenitor/biliary (keratin 19, epithelial cell adhesion molecule, A6), and mesenchymal
8 ipids GM2, globo H and Lewis Y, protein KSA (epithelial cell adhesion molecule, also known as EpCAM)
9 (10 mg/kg body weight), caused low levels of epithelial cell adhesion molecule and cytokeratin 19 gen
10 ls (CTC) are based on the epithelial markers epithelial cell adhesion molecule and keratin; however,
11 iver, focusing our attention on two markers, epithelial cell adhesion molecule and leucine-rich repea
12 proliferation biomarkers olfactomedin 4 and epithelial cell adhesion molecule, and also Ctr-induced
13 y expressed class I human leukocyte antigen, epithelial cell adhesion molecule, and cytokeratin-19.
14 n, SRY (sex determining region Y)-box 9, and epithelial cell adhesion molecule; and enriched for tran
15 ceptors IL-22R1 and IL-10R2 were detected on epithelial cell adhesion molecule(+)CD45(-) LPCs isolate
17 or 2-, epidermal growth factor receptor-, or epithelial cell adhesion molecule-dependent manner with
19 bility of HOXA10 to induce expression of the epithelial cell adhesion molecule E-cadherin by down-reg
23 CD133(+)/CXCR4(+) with reduced expression of epithelial cell adhesion molecule (EpCAM(-)), which also
24 ibutable to CD11c(+) MHCII(hi) CD8alpha(neg) epithelial cell adhesion molecule (EpCAM(neg)) CD11b(+)
26 cell line, expressed cytokeratin-19 (CK-19), epithelial cell adhesion molecule (EPCAM) and cystic fib
27 enabled reexpression of PRC2-repressed genes epithelial cell adhesion molecule (EpCAM) and pluripoten
28 nal bispecific antibody directed against the epithelial cell adhesion molecule (EpCAM) and the T-cell
31 low doses of alpha-amanitin-conjugated anti-epithelial cell adhesion molecule (EpCAM) antibody lead
33 rochemical immunosensor for the detection of epithelial cell adhesion molecule (EpCAM) antigen, a com
40 tution at the donor splice site of exon 4 in epithelial cell adhesion molecule (EpCAM) of affected pa
42 -mediated cancer cell death by cross-linking epithelial cell adhesion molecule (EpCAM) on tumor cells
43 unctionalized with antibodies against either epithelial cell adhesion molecule (EpCAM) or epidermal g
45 that Oct-4, Nanog, Klf-4, beta-catenin, and epithelial cell adhesion molecule (EpCAM) were activated
46 have identified a subset of highly invasive epithelial cell adhesion molecule (EpCAM)(+) HCC cells f
47 x class II (MHC II)(hi), CD80(lo), CD86(lo), epithelial cell adhesion molecule (EpCAM)(hi), CD45(lo)
48 as restricted to a minority subpopulation of epithelial cell adhesion molecule (EpCAM)(high)/CD44+ ep
49 omas is associated with an overexpression of epithelial cell adhesion molecule (EpCAM), a 40-kDa type
50 ancer cell-specific surface markers, such as epithelial cell adhesion molecule (EpCAM), human epiderm
51 the pluripotency associated surface marker, epithelial cell adhesion molecule (EpCAM), is also expre
52 ction specimens were stained with trichrome, epithelial cell adhesion molecule (EpCAM), K19, CD34, gl
53 (HNF1a, HNF1beta, HNF3beta, HNF4alpha, HNF6, Epithelial cell adhesion molecule (EpCAM), Leucine-rich
54 identified that a hepatic stem cell marker, epithelial cell adhesion molecule (EpCAM), may serve as
55 em cells uniquely express the combination of epithelial cell adhesion molecule (EpCAM), neural cell a
57 s-linking of CD3 and a tumor antigen such as epithelial cell adhesion molecule (EpCAM), thereby recru
58 dic device, the CTC-Chip, in capturing these epithelial cell adhesion molecule (EpCAM)-expressing cel
59 alysis of fluorescence-activated cell-sorted epithelial cell adhesion molecule (EpCam)-positive cells
60 xpression was not present in newly generated epithelial cell adhesion molecule (EpCAM)-positive hepat
66 pture of nucleated cells or cells expressing epithelial cell adhesion molecules (EpCAM) was achieved
67 agnetic beads coated with antibodies against epithelial-cell adhesion molecule (EpCAM) via magnetic-a
68 g MP types: endothelial MPs, epithelial MPs (epithelial cell adhesion molecule [EpCAM](+)MPs, E-cadhe
69 n 19 [CK19]), identifying cancer stem cells (epithelial cell adhesion molecule [EpCAM], neural cell a
71 nsulin-like growth factor-binding protein 2, epithelial cell adhesion molecule/GA733-2, Kop protease
73 2 fusion protein, directed against the human epithelial cell adhesion molecule (huEpCAM) has been sho
74 ues displayed a strong surface expression of epithelial cell adhesion molecule, indicating that the e
76 ycoprotein designated lymphocyte endothelial-epithelial cell adhesion molecule (LEEP-CAM), that is di
77 d polymerization of actin and maintenance of epithelial cell adhesion molecule-mediated interactions
79 hat Sry HMG box protein 9-positive (Sox9(+)) epithelial cell adhesion molecule-negative (EpCAM(-)) he
80 that promoted the conversion of mesenchymal epithelial cell adhesion molecule-negative (EpCAM-) brea
81 e sorted magnetically based on expression of epithelial cell adhesion molecules; only those with a pr
82 s themselves such as surface antigens (e.g., epithelial cell adhesion molecule or EpCAM) or size to s
83 ), progenitor genes (Cd133, Cd24, Nanog, and epithelial cell adhesion molecule), PMN infiltration, an
84 hat allows highly specific capture of EpCAM (epithelial cell adhesion molecule) positive CTCs from bl
85 se livers, display a significant increase in epithelial cell adhesion molecule-positive (EpCAM(+)) ce
86 They can be isolated by immunoselection for epithelial cell adhesion molecule-positive (EpCAM+) cell
87 ssion of cancer cell surface biomarkers like epithelial cell adhesion molecules that brain tumors ten
88 and expression data suggest that KIM-1 is an epithelial cell adhesion molecule up-regulated in the ce
89 molecules junctional adhesion molecule-A and epithelial cell adhesion molecule were recruited to site
90 Their induced target genes encode diverse epithelial cell adhesion molecules, while mesenchymal ge
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