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1 ecially at the apical junctional belt of the sustentacular cells.
2 dicarbonyl/L-xylulose reductase, relative to sustentacular cells.
3 spite apparently normal functional cilia and sustentacular cells.
4 , knobs, and plasma membranes of OSNs and in sustentacular cells.
5 thelium, Cbr2 is a new anatomical marker for sustentacular cells.
6 mina, shift apically, and differentiate into sustentacular cells.
7 he epithelium containing nuclei belonging to sustentacular cells.
8 s contain gland cells, and some also include sustentacular cells.
9 2,100 genes that are upregulated compared to sustentacular cells.
10 tion of HBCs observed after tissue injury or sustentacular cell ablation is caused by the reduction/e
11 n of globose basal cells committed to making sustentacular cells after methyl bromide lesion.
12 ST biotransformation enzymes in basal cells, sustentacular cells and Bowman's glands of the olfactory
13 cifically upregulated in GBCs as compared to sustentacular cells and differentiated neurons.
14       Many of the GBC-related clones contain sustentacular cells and horizontal basal cells as well.
15 tic chemical transformation enzyme Cyp2a5 in sustentacular cells, and both naris occlusion and methim
16 r horizontal basal cells, Bowman's gland and sustentacular cells, and neurons.
17 , give rise to globose basal cells, neurons, sustentacular cells, and several other kinds of non-neur
18 tivated to multipotency and proliferate when sustentacular cells are killed, but not when only OSNs d
19  in cells of non-neuronal lineage, including sustentacular cells, basal cells, and Bowman's glands.
20 y restricted expression patterns in OSNs and sustentacular cells but not in Bowman's glands, suggesti
21 ssessed HBC activation after neuron-only and sustentacular cell death.
22 that RALDH-1, -2, and -3 are enriched in the sustentacular cells, deep fibroblasts of the lamina prop
23 n apical orientation in direct apposition to sustentacular cell end feet.
24 del where Notch2 is required for maintaining sustentacular cell function.
25 nds of cells in normal epithelium, including sustentacular cells, horizontal basal cells, and some gl
26    RALDH 1 immunoreactivity was localized to sustentacular cells in the OE and to Bowman's gland cell
27 lutathione S-transferase (GST) expression by sustentacular cells is reduced.
28                    We found that ablation of sustentacular cells is sufficient for HBC activation to
29 on HBCs; elimination of Jagged1 expressed by sustentacular cells may be the ligand responsible.
30 oth the lumen microvilli and end feet of the sustentacular cells of the olfactory epithelium.
31 antineurogenic factor Hes1 is limited to the sustentacular cells of the unlesioned olfactory epitheli
32 an's glands, and clones that are composed of sustentacular cells only.
33 ained by GBC-3, and colabeled with GBC-3 and sustentacular cell or HBC markers.
34 xenobiotic metabolizing enzymes expressed by sustentacular cells or Bowman's glands, reinforcing the
35 the GBC population and does not stain either sustentacular cells or horizontal basal cells (HBCs) in
36 zed in the postnatal olfactory epithelium by sustentacular cells, previously proposed to function onl
37 ogenitor that gives rise to duct, gland, and sustentacular cells resides within the ducts, based on t
38                 The electrical properties of sustentacular cells (SCs) in the olfactory epithelium (O
39 ctory sensory neurons (OSNs) and surrounding sustentacular cells (SCs) with apical microvilli.
40 Environmental stressors also affect both the sustentacular cells that support the neurons and the res

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