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1 ssues of the extraocular muscle cones in the normal mouse.
3 tudied in detail striatal GDNF production in normal mouse and after damage of DA neurons with MPTP.
4 Upon the basis of its rapid clearance from normal mouse and baboon brain tissues, [N-methyl-(11)C]2
8 Similarly, insulin secretion was impaired in normal mouse and human islets that were cultured with di
16 bit TF-positive endothelium in the wild-type normal mouse and the normal human hemoglobin (HbA)-expre
20 RT-PCR showed cftr mRNA expression in the normal mouse apical incisor tissue but not in the CFTR k
22 a gene expression pattern common to PAs and normal mouse astrocytes and neural stem cells from these
24 2 augments the proliferation and survival of normal mouse B cells and dramatically accelerates lympho
25 no clear evidence for SHC has been found in normal mouse B cells, transgenic mice carrying high-copy
31 n accelerate granulocytic differentiation of normal mouse bone marrow cells induced by G-CSF and GM-C
32 ak3 accelerates monocytic differentiation of normal mouse bone marrow cells stimulated with cytokines
35 ominant-negative activity (RARalpha403) into normal mouse bone marrow generates hematopoietic growth
36 ficantly increase colony-forming capacity of normal mouse bone marrow progenitor cells alone and, par
40 on protein (PrP(C)) substrate molecules from normal mouse brain by treatment with PNGase F and used r
43 the somatosensory cortex on one side of the normal mouse brain resulted in mirror infection restrict
46 tal enrichment alters gene expression in the normal mouse brain, and modulates the course of several
50 he registration quality was evaluated on two normal mouse brains using the Dice coefficient for the r
51 ion was not detectable in the luminal ECs of normal mouse carotid arteries but was rapidly induced af
52 eptin receptor (ObR) is expressed on resting normal mouse CD4(+), CD8(+), B cells, and monocyte/macro
57 ition, serum from a GABHS mouse reacted with normal mouse cerebellum in nondenaturing Western blots a
60 ypical values of (18)F-FDG rate constants of normal mouse cerebral cortex were estimated and used for
61 pression of GnRH receptors was assessed in a normal mouse cholangiocyte cell line (NMC), sham, and BD
63 ltiprotein complex at the apical membrane of normal mouse cholangiocytes, with proteins that negative
68 lagen probably exists near the limbus of the normal mouse cornea that may help promote biomechanical
71 strate that Gadd45gamma is not essential for normal mouse development and hematopoiesis, possibly due
72 inase activity of Raf-1 is not essential for normal mouse development and that Raf-1 plays a key role
74 (hESCs) have the capacity to participate in normal mouse development when transplanted into gastrula
75 as 4A, like H- and N-Ras, is dispensable for normal mouse development, at least in the presence of fu
76 ab3 does not result in detectable defects in normal mouse development, hematopoiesis, or immune syste
77 Thus, although LPA(2) is not essential for normal mouse development, it does act redundantly with L
78 t XLF functionally overlaps with DNA-PKcs in normal mouse development, promotion of genomic stability
84 cation of beta-catenin and transformation of normal mouse embryo fibroblasts (colony formation in sof
85 ction of S phase after growth stimulation of normal mouse embryo fibroblasts, inhibition of cyclin E/
94 purinoceptors on neuronal differentiation of normal mouse embryonic stem cells (ESCs), with outcomes
98 tures containing CRES are a component of the normal mouse epididymal lumen without any apparent cytot
102 of orthotopic corneal allografts placed into normal mouse eyes correlates directly with the generatio
103 sisted for 7 weeks, although the mean IOP in normal mouse eyes treated with 2 or 4.0 mg/kg verteporfi
105 oth in a human colon cancer cell line and in normal mouse fibroblast cells; the inhibition of cellula
107 bacterial pathogen Listeria monocytogenes in normal mouse fibroblasts and in fibroblasts lacking inte
108 ie3 deletion mutants failed to replicate on normal mouse fibroblasts even when a high multiplicity o
109 can occur in the cytosol and is observed in normal mouse fibroblasts, as well as a variety of human
110 able to replicate with wild-type kinetics in normal mouse fibroblasts, providing evidence that the de
111 athematical modeling, we demonstrate that in normal mouse footpad epidermis, transition of KCs from b
112 n, while minimally affecting normal cell and normal mouse functions, markedly sensitized mouse skin a
117 st demonstrated that in competition with the normal mouse gut flora, an EHEC O157:H7 strain with a no
119 Although widely expressed in the developing normal mouse head, Opa3 expression was restricted after
120 sed very rapidly (at rates comparable to the normal mouse heart and to human atrial fibrillation), th
121 nstrated that focal ectopies require, in the normal mouse heart, the simultaneous depolarization of a
122 ces myocardial contraction and relaxation in normal mouse hearts during inotropic stimulation with is
123 NA and protein were present at low levels in normal mouse hearts, but were upregulated after cardiac
125 to chronic myelogenous leukemia (CML) caused normal mouse hematopoietic progenitor cells to divide mo
127 f PHB1 in murine nontransformed AML12 cells (normal mouse hepatocyte cell line) raised cyclin D1 expr
133 tes (PMNs), (111)In-aICAM-1, (111)In-labeled normal mouse IgG (nmIgG), and (111)In-labeled rat serum
138 lyzed, including nontransformed human cells, normal mouse intestinal epithelia and adenomas, human ca
139 Uptake of D-FAC is a prominent trait of normal mouse intestinal epithelial cells, which is usefu
142 ts indicate that induced otitis media in the normal mouse is in most respects comparable to that obse
143 cate that class-selective DIs interfere with normal mouse ischemic hindlimb regeneration and suggest
144 nedione activation (72 h) of this pathway in normal mouse islets caused a threefold increase of GIP-R
145 nsulin granule dynamics in insulinoma cells, normal mouse islets, and primary pancreatic beta cells.
148 ow cytometry to analyze MPCs residing in the normal mouse kidney, and identified five discrete subpop
152 pathway is active specifically in the SZ in normal mouse knee joints and colocalizes with HMGB2.
154 level of ICSBP expression is very low in the normal mouse lens, in transgenic mice with constitutive
158 n of mGSTA4-4 was examined in hepatocytes of normal mouse liver and in transfected HepG2 cells by flu
159 with deletions in env were nearly silent in normal mouse liver and showed substantial derepression i
166 -1 RNA was detected at significant levels in normal mouse lung, intestinal epithelium, liver and thym
169 ant enzyme that biosynthesizes PGE(2) in the normal mouse lung; (b) PGHS-1 and PGHS-2 products limit
170 A-1 in retention of activated CD8 T cells in normal mouse lungs and in the progression of lethal inju
172 ce and bronchiolar Clara cells isolated from normal mouse lungs, but was undetectable in whole lung e
174 r findings show that the ObR is expressed on normal mouse lymphocyte subsets, that leptin plays a rol
175 tively for human CD45RO surface receptor and normal mouse lymphocytes stained negatively confirming t
177 cal have distinct effects on the proteome of normal mouse mammary cultures, some estrogen-like but mo
179 stimulated beta-casein promoter activity in normal mouse mammary epithelial cells and also cooperate
180 of 157 metabolites during the progression of normal mouse mammary epithelial cells to an isogenic ser
181 ssing mouse mammary carcinoma cells (but not normal mouse mammary epithelial cells) undergo apoptosis
183 rmine the function of ErbB2 signaling during normal mouse mammary gland development, we expressed a c
184 To investigate the functions of ErbB2 during normal mouse mammary gland development, we transplanted
185 ithelial, and ductal epithelial cells in the normal mouse mammary gland, and becomes progressively re
187 rmine the function of ErbB4 signaling in the normal mouse mammary gland, we inactivated ErbB4 signali
189 dem mass spectrometry (LC-MS/MS) analyses of normal mouse mammary glands or mammary tumors derived fr
190 J3Z cells also increase the proliferation of normal mouse mammary luminal cells adjacent to tumors.
191 Enforced expression of miR-142 or miR-150 in normal mouse mammary stem cells resulted in the regenera
192 a p53 null genotype on the transcriptome of 'normal' mouse mammary epithelium using a unique in vivo
193 Although we did not detect its expression in normal mouse melanocytes, Grm1 was ectopically expressed
195 ody-mediated effect required exposure to the normal mouse microbial flora, since mice raised under ge
197 . faecalis Ag in cultures of I-MLNM, whereas normal mouse MLNM were converted to M1M in response to t
203 embryonic stem cells, human fibroblasts, and normal mouse neural differentiation and, using proteomic
204 tinct concentration optima for chemotaxis of normal mouse neutrophils, but only the high concentratio
206 her control cortical wounds nor transplanted normal mouse or human cells were targeted, indicating vi
207 in g/mL. min) for (18)F-FTT was assessed in normal mouse organs before and after treatment with olap
213 characterized transgenic line expressing the normal mouse peripherin/Rds (NMP) was crossed with a hig
214 Remnant lipoproteins (d < 1.019 g/ml) from normal mouse plasma were iodinated and injected into nor
216 gical and phenotypic features of ERG gain in normal mouse prostate cells, including expansion of the
217 PDGF ligand switch from PDGF B to PDGF D in normal mouse prostate epithelial cells, further demonstr
235 ansport of folate, has been characterized in normal mouse retinal pigment epithelium (RPE) and in cul
240 observed in the presence of purified IgM and normal mouse serum (NMS), but not serum from Rag-2(-/-)
241 t Helicobacter felis activates complement in normal mouse serum but not in serum from Rag2(-/-) mice,
242 in down-regulation of ospA, but transfer of normal mouse serum depleted of immunoglobulin did not in
243 nimals given specific antiviral pIgA but not normal mouse serum eliminated virus from the airway and
244 nto the PspA(-) pneumococcus when exposed to normal mouse serum from wild-type mice as compared with
245 M (IgM) from normal mouse serum, or IgG from normal mouse serum into infected C3H-scid mice resulted
246 ys, parenterally fed animals received either normal mouse serum or antiviral pIgA before viral challe
247 ncubated isolated neutrophils for 3 hours in normal mouse serum or minimum essential medium buffer.
248 to that of controls with passive transfer of normal mouse serum or polyclonal immunoglobulin M (IgM),
249 Treatment of infected muMT(-CD4) mice with normal mouse serum spiked with hemagglutinin-specific Ig
251 required the presence of Mg(2+), whereas in normal mouse serum the presence of divalent cations was
252 resence of C1q-deficient serum compared with normal mouse serum, and the addition of purified C1q rec
253 gs identify not only the presence of FAAH in normal mouse serum, but also its critical role in the tu
254 n wt mice and in Rag1(-/-) mice administered normal mouse serum, demonstrating that a single Ab react
255 -specific PTEC that had been pretreated with normal mouse serum, heat-inactivated mouse serum, or com
256 nnii resistance to killing by NHS but not by normal mouse serum, highlighting the human species speci
259 mal mouse serum, immunoglobulin M (IgM) from normal mouse serum, or IgG from normal mouse serum into
260 lations of myogenic cells were isolated from normal mouse skeletal muscle based on their adhesion cha
261 enhanced permeability barrier homeostasis in normal mouse skin by the following mechanisms: (i) stimu
263 ed mitogen-induced cellular proliferation in normal mouse skin primary keratinocytes and in the C50 k
268 and hypomethylation as a function of age in normal mouse small intestine tissues and a strong tissue
271 They are present at a high frequency in normal mouse spleen and bone marrow, are Ag dependent, a
272 y, we used the WEHI-231 mouse B lymphoma and normal mouse spleen B lymphocytes to elucidate the mecha
273 pts to identify their histologic location in normal mouse spleen have proven difficult due to both th
274 ulting in elevation of MK expression in both normal mouse splenic B and chronic lymphocytic leukemia
275 mulus of this phenotypic shift is culture of normal mouse splenic B lymphocytes with splenic fibrobla
277 p upregulation was detected in the reference normal mouse strain (C57BL/6), which can develop signifi
280 athology, hyperphosphorylated and aggregated normal mouse tau, significant neuron loss, and cognitive
281 ered laminin alpha5 chain showed that in the normal mouse, the protein had a restricted distribution
282 ymphoma lines S49.A2 and WEHI7.2 but also in normal mouse thymocytes following dexamethasone treatmen
285 nal cord, and immunohistochemical studies of normal mouse tissue detected strong staining primarily i
287 s with microinsertions) have been studied in normal mouse tissues using the Big Blue lacI transgenic
297 we present a long-term culture system of the normal mouse urothelium and an efficient culture system
299 ximal in the UV spectrum, in contrast to the normal mouse, which is most sensitive in the green regio
300 emoval of the gene trap cassette to obtain a normal mouse with a floxed 6th HGD exon, a double transg