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1 f bacteria or bacterial products through the small intestinal epithelium.
2 e fashion, initiating with attachment to the small intestinal epithelium.
3 e Gata4 gene was specifically deleted in the small intestinal epithelium.
4 adhesins to promote their attachment to the small intestinal epithelium.
5 rect interactions between Salmonella and the small intestinal epithelium.
6 d CXCR4, is abundant at the basal surface of small intestinal epithelium.
7 nly colonic apoptosis, plays a major role in small intestinal epithelium.
8 enterocytes, the principal cell type of the small intestinal epithelium.
9 ocarcinoma and have similar functions to the small intestinal epithelium.
10 ty acid binding protein (IFABP), a marker of small intestinal epithelium.
11 ly increased towards the apical villi in the small intestinal epithelium.
12 cohabitate in the crypts and rejuvenate the small intestinal epithelium.
13 reased via suppressed Notch signaling in the small intestinal epithelium.
14 absorptive enterocyte gene expression in the small intestinal epithelium.
15 mice that overexpress Bcl-2 throughout their small intestinal epithelium, and septic p53-/- mice.
16 These filtrates caused no damage to mouse small intestinal epithelium, as determined by electron m
18 neth cells mediate immunity and maintain the small intestinal epithelium; defects in activities of th
19 plain why Giardia trophozoites adhere to the small intestinal epithelium during human and animal infe
20 lar progenitor-specific role of SRSF1 in the small intestinal epithelium, indicating a conserved func
21 isclosed that the stem cell hierarchy in the small intestinal epithelium is established during format
26 c mice that overexpress Bcl-2 throughout the small intestinal epithelium (n = 23) and littermate cont
29 human Rac1 (Rac1Leu61) in the 129/Sv-derived small intestinal epithelium of C57Bl/6-ROSA26<-->129/Sv
30 , we identified several abnormalities in the small-intestinal epithelium of Nod2(-/-) mice including
32 1, 2-fucosyltransferase messenger RNA in the small-intestinal epithelium requires the normal microflo
33 s of the control chimeras indicated that the small intestinal epithelium supports a complex pattern o
34 features of diverse tissue types such as the small intestinal epithelium, terminal respiratory tract,
35 d in the myocardium, stomach epithelium, and small intestinal epithelium throughout mouse development
36 te that activates protective pathways in the small intestinal epithelium to regulate intestinal lipid
39 the cholix (Chx) exotoxin can rapidly cross small intestinal epithelium using a vesicular apical to