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1 D) in the cytosol and in the mitochondria of PC12 cells.
2  flippase activity, and neurite extension in PC12 cells.
3  well as after oxygen-glucose deprivation in PC12 cells.
4 els sharply decrease in fully differentiated PC12 cells.
5 E5 potently acidifies recycling endosomes in PC12 cells.
6 iR-29c resulted in a 46 +/- 5% cell death in PC12 cells.
7 participates in insulin signaling pathway in PC12 cells.
8 blocks Ras signaling in rat pheochromocytoma PC12 cells.
9 ation of dopamine to be 0.59 +/- 0.07 muM in PC12 cells.
10  monitoring of exocytotic events from single PC12 cells.
11  in adult rat dorsal root ganglion axons and PC12 cells.
12 teasome activity caused by mutant Twinkle in PC12 cells.
13 se was similarly mutant Twinkle-dependent in PC12 cells.
14 tine-stimulated catecholamine secretion from PC12 cells.
15 aling endosomes in rat embryonic neurons and PC12 cells.
16 aling specificity achieved by NGF and EGF in PC12 cells.
17 ]norepinephrine release from non-transfected PC12 cells.
18  its ability to support neurite outgrowth of PC12 cells.
19 motes H-Ras-dependent neurite outgrowth from PC12 cells.
20 ith intracellular membranes in nematodes and PC12 cells.
21 s were much less notable in undifferentiated PC12 cells.
22 nt with suppression of caspase 3 activity in PC12 cells.
23 ors Egr-1 and Sp1 in adrenal medulla-derived PC12 cells.
24 fission in control and syt IV overexpressing PC12 cells.
25 a cancer cells, and low adhesion neuron-like PC12 cells.
26 ks RhoA suppression of PPARgamma agonists in PC12 cells.
27 l ganglion cell model line RGC5 and neuronal PC12 cells.
28 tion of tyrosine hydroxylase in vitro and in PC12 cells.
29 P analogs may stimulate neurite outgrowth in PC12 cells.
30 th factor (NGF)-induced neurite outgrowth in PC12 cells.
31 phosphorylation of most B'beta substrates in PC12 cells.
32 ces neurite outgrowth and differentiation in PC12 cells.
33 t vesicle exocytosis in permeable and intact PC12 cells.
34 ase-activating polypeptide) elevates cAMP in PC12 cells.
35 han the wild type when each was expressed in PC12 cells.
36 romote neuritogenesis and differentiation of PC12 cells.
37 ranscription and alters TH mRNA stability in PC12 cells.
38 rns differentiation and neurite outgrowth in PC12 cells.
39 ion in undifferentiated rat pheochromocytoma PC12 cells.
40  Akt and ERK/MAP kinase in Schwann cells and PC12 cells.
41 s participates in sustained NGF signaling in PC12 cells.
42 proving neurite outgrowth in htt-transfected PC12 cells.
43 d secondary necrosis, respectively) in these PC12 cells.
44 s is the first description of AR function in PC12 cells.
45 n, proliferation and survival of SH-SY5Y and PC12 cells.
46 o known as CADPS) and ubiquitous Munc13-2 in PC12 cells.
47 nstream activation of PI3-K delta and Rac in PC12 cells.
48 e of the small dense core vesicle subpool in PC12 cells.
49 vation at the growth cone of differentiating PC12 cells.
50 bility to induce neuronal differentiation of PC12 cells.
51 iggered vesicle exocytosis in neuroendocrine PC12 cells.
52  distribution in unstimulated neuroendocrine PC12 cells.
53 ot two, of vesicles stored and released from PC12 cells.
54 s and endocytic structures in neuroendocrine PC12 cells.
55 measuring the Rexocytosis for populations of PC12 cells.
56 , were sufficient to induce EF2K turnover in PC12 cells.
57 elease under hypoxic stimulation from living PC12 cells.
58 y to reconstitute secretion in permeabilized PC12 cells.
59  recorded single-vesicle release events from PC12 cells.
60 resumably other proteins) forms a complex in PC12 cells.
61 er release across a single pheochromocytoma (PC12) cell.
62  secretion from individual pheochromocytoma (PC12) cells.
63  secretion from individual pheochromocytoma (PC12) cells.
64 ta-treated, differentiated pheochromocytoma (PC12) cells.
65 mitter release from single pheochromocytoma (PC12) cells.
66 gle vesicles isolated from pheochromocytoma (PC12) cells.
67 has internalization in rat pheochromocytoma (PC12) cells.
68                  We conducted evaluations in PC12 cells, a model for neuronal development, with each
69                                              PC12 cells, a model neuroendocrine cell line, express mu
70                                           In PC12 cells, a small fraction of nitrated Hsp90 was locat
71                                           In PC12 cells, a well-established model for sympathetic neu
72 f Abeta(1-42) oligomers enter the nucleus of PC12 cells, accumulate as insoluble oligomeric species,
73                                 In wild-type PC12 cells, activation of this module by salubrinal amel
74 n the SN of 22-month-old mutant mice, and in PC12 cells after 48 h transfection of mutant Twinkle.
75 der high-K(+) buffer stimulation from living PC12 cells also demonstrates that SiNW-FETs can serve as
76 ffects on elevated K(+)-induced secretion in PC12 cells, although m-tomosyn-2 was novel in strongly a
77 phorylation by tetrabromo-2-benzotriazole in PC12 cells and by the identity of in vivo and in vitro p
78 es ("closed" vs. "open") of syntaxin-1 using PC12 cells and Caenorhabditis elegans.
79 bited a sialidase activity that desialylated PC12 cells and could be inhibited by Tamiflu, a neuramin
80 -29c down-regulation and DNMT3a induction in PC12 cells and curtailed ischemic cell death (by 64 +/-
81 in to small synaptic-like vesicles (SSLV) in PC12 cells and demonstrate that it can serve as a single
82 urs concomitant with evoked release, both in PC12 cells and hippocampal neurons and was abolished upo
83                         We show here that in PC12 cells and hippocampal neurons, cell stressors induc
84  expression of cathepsin V in neuroendocrine PC12 cells and human neuronal SK-N-MC cells results in p
85 tion-triggered neurotransmitter release from PC12 cells and in the brains of live animals.
86 sphorylate the neurotrophin receptor TrkA in PC12 cells and increase neurite outgrowth from developin
87 yt I-PS binding, we varied the PS content in PC12 cells and liposomes and studied the effects on the
88 nificant decrease in its level of binding to PC12 cells and mouse cortical/hippocampal neurons.
89 ed in synergistic increases in extensions of PC12 cells and neurite densities and protrusions in prim
90 ided by ropinirole, a D2 receptor agonist in PC12 cells and primary cultures of dopamine neurons.
91 eurite elongation and neurite number both in PC12 cells and primary hippocampal neurons.
92  IP(6) intracellular ratio in differentiated PC12 cells and primary neurons.
93  a protein of the predicted size of uORF5 in PC12 cells and rat brains.
94 in cellular models of PD, including neuronal PC12 cells and rat dopaminergic ventral midbrain neurons
95              Finally, proline uptake in both PC12 cells and Rxt1/NTT4-transfected CHO cells was depen
96          The sequence GVOGEA bound weakly to PC12 cells and strongly to activated Rugli cells or to a
97 expression suggests that both differentiated PC12 cells and sympathetic neurons require low levels of
98 assist in controlled degradation of both the PC12 cells and the device construct, small PCL capsules
99 es impaired secretion in syntaxin-1-depleted PC12 cells and the lethality and lethargy of unc-64 (C.
100 and PC12 surfaces, enabling Gal-3 binding to PC12 cells and their phagocytosis via MerTK.
101 endogenous torsinA on dense core granules in PC12 cells and was recruited to perinuclear inclusions c
102 e RhoA-inhibiting properties of ibuprofen in PC12 cells and, like ibuprofen, promotes neurite elongat
103 ssion of neuronal differentiation markers in PC12 cells, and Ras-induced focus formation in NIH 3T3 c
104  (alpha3* nAChRs) expressed in HEK293 cells, PC12 cells, and rat cortical neurons.
105 ons, native Ric-3 levels were higher than in PC12 cells, and Ric-3 and alpha7 subunits were found in
106 d contributor to polyQ toxicity in yeast, in PC12 cells, and, importantly, in striatal cells expressi
107 ve oxygen species formation and apoptosis in PC12 cells; and (3) that acetazolamide, chlorthalidone,
108 GF-1-mediated reductions of EF2K activity in PC12 cells are due to decreased EF2K protein levels, and
109                                              PC12 cells are frequently used as a model secretory cell
110 AP-driven survival and neuritic extension in PC12 cells are inhibited following NF-kappaB pathway blo
111                            METHODS AND Using PC12 cells as a model of catecholamine synthesizing neur
112                                      We used PC12 cells as ATP biosensors by loading them with Fluo-4
113 end of the neurites in differentiated living PC12 cells as well as in cultured hippocampal neurons.
114 onversely, Trib3 knockdown protects neuronal PC12 cells as well as ventral midbrain dopaminergic neur
115 oCl(2) and X/XO induced neurite outgrowth in PC12 cells, as determined by an overexpression of neuron
116 l (Ni(2+)) for their effects on neuronotypic PC12 cells, assessing gene transcription involved in the
117    Biological duplicates were generated from PC12 cells at days 0, 3, 7, and 12 following treatment w
118 ffects against H2O2-induced neurotoxicity in PC12 cells at the concentration of 10 muM, with an incre
119                Ectopic expression of Prx1 in PC12 cells attenuated mutant Htt-induced toxicity.
120 ic nerve endings (cardiac synaptosomes), and PC12 cells bearing a sympathetic neuron phenotype.
121 d-type primary cultured cortical neurons and PC12 cells but failed to reach neurites in cells lacking
122 or control (p < 0.029) in neural MES23.5 and PC12 cells, but without altering GCase activity.
123 promotes both survival and neuritogenesis in PC12 cells by activating NF-kappaB pathway, most likely
124 es neurotrophin-induced neurite outgrowth in PC12 cells by altering TrkA endocytic traffic, inhibitin
125 ent neurite outgrowth and gene expression in PC12 cells by sorting NGF and the activated/phosphorylat
126 g, and after single-vesicle fusion events in PC12 cells by TIRF micro-scopy.
127 icantly curtailed the post-OGD cell death in PC12 cells (by 54 +/- 6%; p<0.05) and decreased the post
128 kt with specific short hairpin RNA in normal PC12 cells caused cell death, which was associated with
129              Silencing of lncRNA BC088414 in PC12 cells caused reduced mRNA level of Casp6 and Adrb2,
130 -expressed dopaminergic neuronal SH-SY5Y and PC12 cells, cellular models of PD, than that in non-alph
131  imaging demonstrate that the drug effect on PC12 cell clusters is consistent with previous single-ce
132 aging single vesicle exocytotic release from PC12 cell clusters is presented at cell clusters incubat
133  and beta-amyloid each have toxic effects on PC12 cells, comparable to hydrogen peroxide(.) However o
134                     Overexpressing md130A in PC12 cells completely eliminated the reduction in neurot
135               Mouse fibroblasts and neuronal PC12 cells cultured in standard microplates were stained
136 ntly applied to trace dopamine exocytosis in PC12 cells cultured on such mMEA chip.
137 own of Sh3rf2 promotes apoptosis of neuronal PC12 cells, cultured cortical neurons, and C6 glioma cel
138 nd its various products were investigated in PC12 cells, cultured rat basal forebrain cholinergic neu
139           We conclude that Nur77 exacerbates PC12 cell death at least partially by aggravating the mi
140 GD-PLL microcapsule degradation and eventual PC12 cell death following a pre-specified period of time
141                                           In PC12 cells, deletion of endogenous Rhes decreases autoph
142                      Previous experiments in PC12 cells demonstrated that the transcription factor zi
143                       ES partially inhibited PC12 cell differentiation and cerebellar granule cell mi
144 ain induced robust ERK activation leading to PC12 cell differentiation by targeting specifically to K
145 sory neurons deprived of NGF and compromises PC12 cell differentiation in response to NGF.
146 ing RNA has an effect on the early stages of PC12 cell differentiation, whereas fully differentiated
147 /2 signaling critical for cell migration and PC12 cell differentiation.
148  reduces ERK1/2 activation, thereby blocking PC12 cell differentiation.
149  TrkA activation and signaling that augments PC12 cell differentiation.
150 tutive Ser(779) phosphorylation and enhanced PC12 cell differentiation.
151    Overexpression of UBXD4 in differentiated PC12 cells (dPC12) increased nAChR cell surface expressi
152 dia-like structures in bovine chromaffin and PC12 cells driving the footprint expansion, suggesting t
153                       Sialidase treatment of PC12 cells enabled Gal-3 to bind and opsonize the live c
154  utilizing alpha7 nAChR-selective ligands in PC12 cells endogenously expressing alpha7 nAChRs.
155 inant FKBP chimeric clathrin polypeptides in PC12-cell endosomes.
156 in 3a hinge-loop (Munc18-1(Delta317-333)) in PC12 cells engineered to knockdown Munc18-1/2 markedly p
157 thrin-coated vesicle fractions isolated from PC12 cells even after clathrin function is acutely inhib
158                                              PC12 cells exhibit precise temporal control of growth fa
159                                              PC12 cells express five adenylate cyclase (AC) isoforms,
160 ain reaction approaches, we demonstrate that PC12 cells express the Rxt1/NTT4 gene and protein.
161 apidly stretch-injured rat pheochromocytoma (PC12) cells express cellular zinc ion fluctuations that
162  Furthermore, the release of FM1-43 dye from PC12 cells expressing either human full-length alpha-syn
163 yclase activating peptide-27) stimulation of PC12 cells expressing Galphas and XLalphas endogenously
164  was tested in three different models of HD: PC12 cells expressing mutant Httex1 under the control of
165  compounds for potent rescue of viability of PC12 cells expressing mutant huntingtin protein, followe
166                                We found that PC12 cells expressing partial loss-of-function Syt-1 mut
167   We report that yeast cells and neuron-like PC12 cells expressing polyQ-expanded huntingtin (htt) fr
168 metric analysis to determine:1) viability of PC12 cells following knock-down with MyD88 siRNA compare
169                                           In PC12 cells, FP6 promoted neurite outgrowth and expressio
170 lar Abeta, and protects rat pheochromocytoma PC12 cells from Abeta toxicity, without inducing any tox
171 , which inhibits chloride transport, protect PC12 cells from apoptosis.
172 isolated from Echinophora cinerea to protect PC12 cells from H2O2-induced cytotoxicity.
173 wed that during exocytosis in chromaffin and PC12 cells, fusion pores formed by smaller vesicles dila
174    When these constructs were coexpressed in PC12 cells, glutamate application induced a conformation
175 and co-expression of RGS14 and Galpha(i1) in PC12 cells greatly enhances H-Ras(G/V) stimulatory effec
176 pendent, as we observed better inhibition on PC12 cells grown on collagen compared to laminin matrice
177                                   To enhance PC12 cell growth and to assist in controlled degradation
178        In contrast, overexpressing md130A in PC12 cells had little or no effect on the response to et
179                                 We show that PC12 cells harbor endogenous androgen receptor (AR), who
180 ion of exocytosis at the surface of a single PC12 cell has also been demonstrated with this system.
181  inhibited FeSO4-induced oxidative stress in PC12 cells (IC50 of 80-200 nM).
182 mine from nerve growth factor-differentiated PC12 cells in a concentration-dependent manner.
183                  Neuronal differentiation of PC12 cells in response to NGF is a prototypical model in
184 nd mode of toxicity on rat pheochromocytoma (PC12) cells in both differentiated and undifferentiated
185 myotoxic (to C2C12 cells) and neurotoxic (to PC12 cells) in a concentration- and time-dependent manne
186 (from processes of neuronally differentiated PC12 cells) in light of the heterogeneous formalism yiel
187 porine-induced apoptosis in undifferentiated PC12 cells, in an endocytosis-dependent manner.
188 zo[a]pyrene (BaP) on neurodifferentiation in PC12 cells, in combination with a glucocorticoid (dexame
189  nAChR agonist-triggered Ca(2+) transient in PC12 cells induces activation of CaMKII, leading to sequ
190                                           In PC12 cells, inhibition of phosphoinositide-3 kinase (PI3
191 cilium formation, whereas USP21 knockdown in PC12 cells inhibits nerve growth factor-induced neurite
192                                              PC12 cells lacking PKA or PLCgamma-1 show significant re
193  did not inhibit T. cruzi invasion of mutant PC12 cells lacking TrkA or of normal cells lacking Trk r
194              Depletion of SgII expression in PC12 cells leads to a decrease in both the number and si
195 ction of PIMT activity in mouse brain or rat PC12 cells leads to a dramatic and selective accumulatio
196  an established cell-based assay employing a PC12 cell line overexpressing truncated exon 1 of Htt wi
197 ression reduced Htt-N63 toxicity in a stable PC12 cell line.
198 e capacity against Abeta-induced toxicity on PC12 cell lines (viability assessed by MTT assay and int
199 eta and alphaS fibril formation and protects PC12 cell lines against Abeta-induced toxicity.
200 nd have used COS-7 cells, stably transfected PC12 cell lines and transgenic Drosophila melanogaster t
201 ire of docking sites and the availability of PC12 cell lines stably transfected with chimeric recepto
202                                              PC12 cells loaded with Fura-2AM show a rapid increase in
203 cell fluorescence microscopy in dopaminergic PC12 cells loaded with the calcium-sensitive dye Fura-2.
204    However, the active form of CAPS bound to PC12 cell membranes or to liposomes containing PI(4,5)P2
205 iles by short oligo array using an inducible PC12 cell model expressing an N-terminal huntingtin frag
206 nt TBP-mediated down-regulation of TrkA in a PC12 cell model of SCA17.
207              In this study, we have used the PC12 cell model to elucidate the mechanisms by which sub
208  and isoliquiritigenin increased MMP in both PC12 cell models in a similar range as the positive cont
209                                           In PC12 cells, native BgtRs trafficked to the cell surface
210                                        In DA PC12 cells, neither vector decreased expression of rat S
211 proteins remain bioactive as demonstrated by PC12 cell neurite extension in response to released nerv
212                                    In living PC12 cell neurites, GFP-dynein puncta travel in both the
213 tly blocked invasion of Trk-bearing neuronal PC12 cells, neuroglial astrocytes, enteroglial cells, an
214 tudy used nerve growth factor differentiated PC12 cells (NGFDPC12 cells) and found that lysosomal mem
215 factor decoys oligodeoxyribonucleotides into PC12 cells, nicotine induces its neuroprotection in PC12
216                                    Culturing PC12 cells on top of the MEAs has been achieved by modif
217 n response to mutant Htt expressed in either PC12 cells or immortalized striatal cells exposed to 3-n
218  and it increased microglial phagocytosis of PC12 cells or primary neurons, which was blocked by inhi
219                        Protein extracts from PC12 cells overexpressing the amino-terminal fragment of
220                      In rat pheochromocytoma PC12 cells overexpressing Trk (PCtrk cells), Neurotropin
221 s of cellular injury toward undifferentiated PC12 cells (PC12(undiff)).
222  cholera toxin in protein kinase A-deficient PC12 cells promoted neurite outgrowth in a cAMP-independ
223       Interfering with myosin VI function in PC12 cells reduced the density of SGs near the plasma me
224     The effects of syt IV on fusion pores in PC12 cells resembled the effects on fusion pores in pept
225 uced expression of the mutant AR in MN-1 and PC12 cells, respectively, are associated with depolariza
226 ifying potassium (GIRK) channels in neuronal PC12 cells, resulting in loss of function.
227 PC/C(Cdh1) by mutant but not wild-type AR in PC12 cells results in enhanced neurite outgrowth which i
228 ng the transcriptome of PACAP-differentiated PC12 cells revealed an increase in the expression of nuc
229  fraction from wild-type and siRNA-Rxt1/NTT4 PC12 cells revealed that proline, glycine, leucine, and
230 trically analyzed catecholamine release from PC12 cells, revealing that charge neutralization of 5RK
231                              Furthermore, in PC12 cells selected for resistance against Abeta, increa
232                                              PC12 cells showed a similar profile.
233 -mum-wide ultramicroelectrodes from a single PC12 cell showing that the subcellular heterogeneity in
234 scued the inhibition of neurite outgrowth in PC12 cells silenced for RSK2, revealing that PLD1 is a m
235                                  In neuronal PC12 cells, silencing of ATF4 enhanced cell death in res
236 ay, differentiation and neurite extension of PC12 cells, spine morphogenesis in primary neuronal cult
237  was also observed in extracts prepared from PC12 cells stably expressing PC1/3 or PC2.
238                                              PC12 cells stably overexpressing Numb isoforms lacking t
239 phorylation is AR-dependent, as it occurs in PC12 cells stably transfected with AR but in neither wil
240                                        Using PC12 cells stably transfected with short-hairpin RNA tar
241                                 We show that PC12 cells stimulated with nerve growth factor (NGF) exh
242 thermore, CaBP5 expression in NGF-stimulated PC12 cells stimulates neurite outgrowth and dopamine exo
243 harmacological inhibition of PLD1 or RSK2 in PC12 cells strongly impaired neuronal growth factor (NGF
244                        Here, we show that in PC12 cells sublethal concentrations of aggregated Abeta(
245 on, and antibody blockade of non-transfected PC12 cells suppressed plasminogen activation.
246 or in Ca(2+)-dependent membrane insertion in PC12 cells that lack vesicle Syts.
247               Moreover, it has been shown in PC12 cells that the localization of the major splice for
248                  In untransfected SK-N-SH or PC12 cells, the introduction of siRNA(GAPDH) [small inte
249  neurite outgrowth and vesicle exocytosis in PC12 cells, these results suggest that CaBP5 plays a rol
250                         With 100 mV steps in PC12 cells, this probe produced DeltaF/F = 26% (4 muM di
251                                           In PC12 cells, this system significantly improves light-ind
252                               Co-exposure of PC12 cells to a mixture of dieldrin and lindane revealed
253                                   We exposed PC12 cells to chlorpyrifos, diazinon or parathion in the
254 oarray expression profiles after exposure of PC12 cells to either forskolin, dibutyryl cAMP, or PACAP
255 us neurotransmitters and circuits, employing PC12 cells to explore the targeting of neuroactive pepti
256 questions we used amperometry recording from PC12 cells to investigate the kinetics of exocytosis.
257 ted in the 6-hydroxydopamine (OHDA)-lesioned PC12 cells to investigate the mechanisms underlying Nur7
258 ibody blockade, we confirmed that binding of PC12 cells to peptide III-7 was mediated by integrin alp
259    We transiently transfected this vector in PC12 cells to test the effect of several cytokines on p3
260 pecific genes, plays a key role in switching PC12 cells to their differentiated state.
261  of wtPC12 cells rich in TrkA with high REST PC12 cells transfected with L1CAM documented the transac
262 o differences in either percent viability of PC12 cells transfected with MyD88 compared to negative c
263                                              PC12 cells transfected with pEGFP-N1 produced, as antici
264 ting XBP1s neuroprotection, we found that in PC12 cells treated with Abeta oligomers, XBP1s prevents
265 microtubule network and neurite outgrowth in PC12 cells treated with nerve growth factor.
266 ly described a reduction of EF2K activity in PC12 cells treated with NGF or forskolin.
267 ATF4 levels are also upregulated in neuronal PC12 cells treated with the dopaminergic neuronal toxins
268                                           In PC12 cells, treatment with premiR-29c prevented OGD-indu
269                                           In PC12 cells, tyrosine phosphorylation of INSR and IRS-1 i
270 monitoring and screening of NA released from PC12 cells under K(+) ion-extracellular stimulation proc
271 poral chemical changes in living colonies of PC12 cells under nerve growth factor (NGF) stimulation f
272                 7A reduced ROS production in PC12 cells under oxidizing conditions, IC50 of 0.08 vs 2
273 red from seven different locations on single PC12 cells using alternately constant-potential amperome
274 released from vesicles in NGF-differentiated PC12 cells using carbon-fiber amperometry, and relative
275 of large dense-core vesicles (LDCVs) in live PC12 cells using total internal reflection fluorescence
276 we identified approximately 1200 proteins in PC12 cell vesicle-enriched fractions, with DCV-associate
277                                           In PC12 cells, vesicles that harbor these different synapto
278 lls, nicotine induces its neuroprotection in PC12 cells via activation of the alpha7 nAChR-JAK2-(NF-k
279 on dopamine release and neurite outgrowth of PC12 cells was analyzed using ELISA and fluorescent labe
280 to trigger LRP-1-dependent cell signaling in PC12 cells was reproduced by the 18-kDa RBD, isolated fr
281  in both naive and terminally differentiated PC12 cells was shown to be intermediate between NGF and
282 tracellular Ca(2+) rise by these peptides in PC12 cells was: CST-WT > CST-Ser-364 > CST-Val-367.
283                 Using exocytosis-incompetent PC12 cells, we demonstrate that footprint enlargement is
284                    Using primary neurons and PC12 cells, we demonstrate that miR-132/212 controls cel
285 ysis of nerve growth factor (NGF)-stimulated PC12 cells, we identified a two-dimensional phospho-ERK
286 privation and reoxygenation (OGD/R) model in PC12 cells, we show that 2-day pretreatment with green t
287        First, using dynamic FRET analysis in PC12 cells, we show that CDO occurs following assembly o
288                           Dopamine-secreting PC12 cells were housed within newly formulated alginate-
289 mine beta-hydroxylase (DBH) gene expression, PC12 cells were transfected with expression vector for f
290 ously modified by Cys(85) S-nitrosylation in PC12 cells, which are a well established model system fo
291 hanced surface expression of the receptor in PC12 cells, which endogenously express the A2A receptor.
292       When treated with nerve growth factor, PC12 cells will differentiate over the course of several
293             Depolarization of neuroendocrine PC12 cells with 56 or 95 mm KCl buffers increased peak C
294 H) gene promoter, we transiently transfected PC12 cells with a 9-kilobase (kb) TH promoter-luciferase
295 wo exocytotic peak populations obtained from PC12 cells with a disk carbon fiber microelectrode and w
296 hrin in DCV biogenesis, we stably transduced PC12 cells with an inducible short hairpin RNA targeting
297     Modulation of PAI-1 levels by incubating PC12 cells with anti-PAI-1 IgG caused a marked decrease
298 nd nonclustered molecules at the membrane of PC12 cells with single-molecule precision.
299                                We challenged PC12 cells with small amyloid fibrils composed of either
300 luorescence) imaging of fluorescently marked PC12 cells with sustained protein phosphorylation activi

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