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1 tion and the projected area of an individual adherent cell.
2 ack the masses of single suspended cells and adherent cells.
3 t the growth and behavior of delicate/scarce adherent cells.
4 says of small numbers of either suspended or adherent cells.
5 ion of high-affinity LFA-1 in focal zones of adherent cells.
6 nding site, and target to focal adhesions in adherent cells.
7 chemoattractant formyl-Met-Leu-Phe (fMLP) in adherent cells.
8 ar networks to stress fibers are observed in adherent cells.
9  we explored integrin regulation of Bit-1 in adherent cells.
10 lly more scalable platform system than using adherent cells.
11 to the control of protrusion and motility in adherent cells.
12  properties, mass, and growth rate of single adherent cells.
13 riched for stem-like cells) when compared to adherent cells.
14 t the metaphase mitotic spindle of mammalian adherent cells.
15 g membrane (ILM), providing polarity cues to adherent cells.
16 ry (DHC) permits label-free visualization of adherent cells.
17 ng technique for transient pore formation in adherent cells.
18 at cell borders and the formation of tightly adherent cells.
19 ring in the Dictyostelium cleavage furrow of adherent cells.
20 anical models and physiological behaviors of adherent cells.
21  cell spreading are fundamental processes of adherent cells.
22 bute when the pallet arrays are used to sort adherent cells.
23 ures from primary NSCLC through isolation of adherent cells.
24 fabrication of arrays of pallets for sorting adherent cells.
25 oth suspended immobilized cells and cultured adherent cells.
26 ly low throughput for the analysis of single adherent cells.
27 known to affect cytoskeletal organization in adherent cells.
28 cell, as a function of varying the number of adherent cells.
29  kinase that localizes to focal adhesions in adherent cells.
30 hat recognizes fibronectin assembly sites on adherent cells.
31 e time prevent nonspecific interactions with adherent cells.
32 inase blocked Rac GTP loading in fibronectin-adherent cells.
33 he LR5 cells compared with drug-sensitive or adherent cells.
34 ells treated in suspension, as compared with adherent cells.
35 ic protein Bim were significantly reduced in adherent cells.
36  microrheometry (MBM) measurements on living adherent cells.
37 the activity of Fyn, but not Lyn, in laminin-adherent cells.
38 ia enhanced tyrosine phosphatase activity in adherent cells.
39 with MEK1 but not with MEK2 in serum-starved adherent cells.
40 bers and focal adhesions in fibronectin (FN)-adherent cells.
41 hat formed naturally at the ruffled edges of adherent cells.
42 (397)) when adherent to CBD compared with FN-adherent cells.
43  of these molecules restore Rac signaling in adherent cells.
44 tion from rapid to slow, similar to those of adherent cells.
45 ducing signal complex after CD95 ligation in adherent cells.
46 ctively than into macrophages or transfected adherent cells.
47  the treatments reduced the number of firmly adherent cells.
48 itiated in rounded interphase cells, but not adherent cells.
49 activation were still impaired compared with adherent cells.
50 uclear cells, gave rise to clusters of small adherent cells.
51 ive retrovirus particles onto the surface of adherent cells.
52 ent of thymocytes or splenocytes depleted of adherent cells.
53 c the stiffness and topographical profile of adherent cells.
54 plexes were lower in FN-adherent than in PLL-adherent cells.
55 eleton impact basal membrane fluctuations in adherent cells.
56 e used to perform mechanical measurements on adherent cells.
57 n on the metabolic activity and viability of adherent cells.
58 a remains after Arp2/3 complex inhibition in adherent cells.
59 sequently resulted in an increased number of adherent cells.
60 y requirements differ between suspension and adherent cells.
61 contractility found at the interface between adherent cells.
62 d 141-fold more in CSC spheres than daughter adherent cells.
63 s localized near the plasma membrane of live adherent cells.
64 ted osteosarcoma stem cells and the daughter adherent cells.
65 although they were not similar when grown as adherent cells.
66  phase in adherent monolayers or even single adherent cells.
67 ells/min, 2.07 +/- 0.04 versus 0.62 +/- 0.05 adherent cells/100 microm per minute; p < 0.001).
68  T cells, we examined WC1 endocytosis in the adherent cell 293T and Jurkat T cell lines using a fusio
69  selective isolation of single suspended and adherent cells according to the fluorescence imaging and
70 rk is used to model the deformability of the adherent cell actin cytoskeleton.
71              In contrast to the results with adherent cells, although MSP also prevented apoptosis of
72 ositioned perpendicular to the surface of an adherent cell and a constant-rate aspiration pressure is
73 important regulator of integrin signaling in adherent cells and accordingly its activity is significa
74 th delays and defective spindle formation in adherent cells and cell death in suspension.
75 ween paxillin and ILK occurs in vivo in both adherent cells and cells in suspension.
76 are underlain by different configurations of adherent cells and extracellular matrix (ECM).
77 utrophils with confocal microscopy of single adherent cells and flow cytometry of cell suspensions th
78 paxillin localizes to the focal adhesions of adherent cells and has been implicated in the regulation
79 e the low throughput of CE-based analysis of adherent cells and increase its utility in evaluating ce
80 , 0.1 and 1.0 microM was observed at 24 h in adherent cells and increased at 48 h.
81 ogy is appropriate for label-free imaging of adherent cells and is particularly suitable for reportin
82  the cyclin A promoter was seen in both ts13 adherent cells and Jurkat T lymphocytes.
83 -EPC solution density affected the number of adherent cells and larger cells preferentially adhered a
84 erized pulses and waves of Rho activation in adherent cells and proposed excitable Rho signaling netw
85 ngements of beta1-integrin subunits occur in adherent cells and that conversion from a bent to extend
86 activation in cells in suspension but not in adherent cells and the CRBP suppression of anchorage-ind
87 ith shear stress, with the maximum number of adherent cells and the shear stress at maximum adhesion
88           The mechanical interaction between adherent cells and their substrate relies on the formati
89 essed as a dephosphorylated protein in round adherent cells and was phosphorylated at the onset of ch
90  optimized it for fibroblasts (as a model of adherent cell) and rat basophilic leukemia cells (as a m
91 flow, vasoconstriction, vascular plugging by adherent cells, and hemorrhages.
92         This 1-2-d protocol is applicable to adherent cells, and it is adaptable for use with several
93  high resting Ca(2+) levels, rounded, poorly adherent cells, and loss of membrane integrity.
94 activity of Lyn, but not Fyn, in vitronectin-adherent cells, and the activity of Fyn, but not Lyn, in
95 umber of rolling cells, the number of firmly adherent cells, and the duration of both rolling and fir
96 cid transporter protein xCT for infection of adherent cells, and the xCT molecule is part of the cell
97 ned suspensions of cells or small numbers of adherent cells ( approximately 10).
98 ce when force-indentation curves obtained on adherent cells are analysed using our combined strategy,
99  density-dependent pathway control: when the adherent cells are at low density, the culture medium is
100 d mechanical interactions between matrix and adherent cells are important for cellular remodeling as
101 ndependent growth, and their growth rates as adherent cells are increased.
102       In this paper, the stiffness of single adherent cells are optomechanically characterized using
103 the RBR binding partner is internalized when adherent cells are placed in suspension.
104 lands acting as drug depots colocalized with adherent cells are surrounded by a nonfouling background
105 nduced stiffening over tens of minutes after adherent cells are suspended.
106                                              Adherent cells are synaptophysin-negative and express pR
107                                       Firmly adherent cells arresting for at least 0.2 s were well fi
108                      A physical model of the adherent cell as a contractile gel under a uniform bound
109 ys of micropallets have been used to pattern adherent cells as well to sort mixtures of cells.
110 acterize the mechanical properties of single adherent cells at multiple frequencies with high through
111                   Local signaling by implant-adherent cells at the implant-bone interface may indirec
112 tool, which enables the selection of certain adherent cells based on their fluorescence, and their sp
113 ely 1 nM when assayed as monolayers of 10(6) adherent cells bathed in 1 ml of medium.
114 ided novel methods for biological studies of adherent cells because the small features of these new b
115 ls, cells arrested in mitosis, and naturally adherent cells brought into suspension, stiffen and beco
116  cell migration enabling rear de-adhesion of adherent cells by cleaving structural components of the
117    Cell binding was confirmed by visualizing adherent cells by fluorescence microscopy.
118        Thus Met promotes survival of laminin-adherent cells by maintaining integrin alpha3beta1 via a
119           Here we show that immobilizing non-adherent cells by optical tweezers is sufficient to achi
120  an important role in mechanotransduction in adherent cells by providing a means to sense the directi
121 ) cascade functions as a survival pathway in adherent cells by regulating c-Flip expression.
122                                  Imaging non-adherent cells by super-resolution far-field fluorescenc
123  select and 'paint' individual Pdot-labelled adherent cells by turning on their fluorescence, then pr
124 n seen in sickle cell disease as mediated by adherent cells can now be rationalized, and surprisingly
125 orted persistent rotational behavior between adherent cell-cell pairs cultured on micropatterned subs
126  tools for optimizing DHC for kinetic single adherent cell classification.
127 nd led to the formation of immobile, tightly adherent cell colonies.
128  compartment as they are isolated within the adherent cell component.
129           Eight hours following removal from adherent cell contact BLIN cells undergo a decrease in m
130                               As few as five adherent cells could be specifically selected for analys
131 in filament assembly in the lamellipodium in adherent cells crawling on planar 2-dimensional (2D) sub
132 es are fundamentally reliant on high-quality adherent cell culture, but current methods to cryopreser
133 -cooling cryomicroscopy, IIF was measured in adherent cells cultured in micropatterned linear constru
134 liably measuring kinase activities of single adherent cells cultured in nanoliter volume microwells.
135 second pulsed laser microbeam irradiation in adherent cell cultures.
136                       At the leading edge of adherent cells, curvature waves are associated with prot
137 e show that knockdown of endogenous Bit-1 in adherent cells decreased cell survival and re-expression
138  elevates RhoA-GTP levels in nonadherent and adherent cells, delays maximal RhoA activation upon cell
139              Human dental pulp cells (DPCs), adherent cells derived from dental pulp tissues, are pot
140 iation of lung fibroblasts is blocked in non-adherent cells despite the preservation of TGF-beta rece
141 ass spectrometry (MS) can be used to analyze adherent cells directly, while still attached to the cul
142                                      Because adherent cells do not have a simple and consistent shape
143 rom resting, nonadherent cells to activated, adherent cells during these cell-mediated responses.
144  and rear to enable productive locomotion of adherent cells during wound repair and tumor invasion.
145 hey derive from the original tumors; 0.5% of adherent cells express detectable levels of CD133.
146 ration, collection, and expansion of single, adherent cells from a heterogeneous cell population.
147 cells that can be isolated as proliferating, adherent cells from bones.
148                            Mononucleated and adherent cells from donor-matched rat dental pulp (denta
149 e process of isolating clonal populations of adherent cells from heterogeneous mixtures retaining the
150                                              Adherent cells from spleens of infected BR mice produced
151 esent a microfluidic probe that lyses single adherent cells from standard tissue culture and captures
152 ubtype of apoptosis induced by detachment of adherent cells from the extracellular matrix.
153                          IL-12 production by adherent cells from the spleens of burn or sham burn mic
154 sis, whereas wild-type survivin protects non-adherent cells from TNF-alpha-induced apoptosis.
155                                              Adherent cells generate forces through acto-myosin contr
156                                          The adherent cells generated contractile forces that deform
157 ight-sheet fluorescence microscopy (LSFM) of adherent cells, glass substrates are advantageously rota
158 rian cancer cells decreased adherent and non-adherent cell growth and induced phenotypic changes incl
159      We found that: (i) CRBP did not inhibit adherent cell growth but suppressed foci formation in po
160                  Single-cell transfection of adherent cells has been accomplished using single-cell e
161 bstrate, is reverse-transfected locally into adherent cells, has become a standard tool for parallel
162  for KSHV are widely distributed on cultured adherent cells, (ii) that latency is the default pathway
163 easures the total mass of single or multiple adherent cells in culture conditions over days with mill
164 it has not been possible to track individual adherent cells in physiological conditions at the mass a
165 the reorganization of actin stress fibers in adherent cells in response to diverse patterns of mechan
166 than fluorescence or cell sorting to analyze adherent cells in situ.
167  stable maintenance of a small population of adherent cells in spite of HMW adhesin specific antibody
168 measure the cell dry mass of many individual adherent cells in various conditions, over spatial scale
169 r encapsulating, manipulating, and observing adherent cells in vitro.
170 eas integrin antagonists induce apoptosis of adherent cells in vivo.
171  uncharacterised mixed population of plastic-adherent cells) in the treatment of neural injury.
172 %, 42%, and 44%, respectively, compared with adherent cells, in vitro.
173 n glass slides, overlaid with a monolayer of adherent cells, incubated to allow reverse transfection,
174             Ectopic expression of KSHV TK in adherent cells induced striking morphological changes an
175                  Restoration of c-Myc in non-adherent cells induces the expression of E2F-1, and hype
176            Furthermore, when cocultured with adherent cells infected with the LA vector, the human T-
177               These biofilm colonies release adherent cells into the medium, and the released cells c
178      The proliferation of all nontransformed adherent cells is dependent upon the development of mech
179 d elasticity on collective cell migration by adherent cells is highly physiologically relevant, but r
180                 Although mitotic rounding of adherent cells is necessary for proper cell division, ou
181 chanical cues affect collective migration of adherent cells is not well understood.
182 (n = 6; 50 to 60 kg), selected culture-flask adherent cells, labeled them with the gene for green flu
183                                              Adherent cells lacking alpha6beta4 require an inducer, s
184 stems which enable impedance measurements on adherent cell layers under label-free conditions are con
185 d virus replication in a panel of T-cell and adherent cell lines and in primary lymphocytes and monoc
186  and SFV-pseudotyped lentivirus vectors into adherent cell lines can be significantly increased by us
187 ort that the binding of MYXV or VACV to some adherent cell lines could be partially inhibited by hepa
188                                Studies using adherent cell lines have shown that glucose transporter-
189  S-transferase (GST) isozyme, hGSTA4-4, into adherent cell lines HLE B-3 and CCL-75, by either cDNA t
190 transduction of reporter genes is reduced in adherent cell lines that are deficient in cellular DNA-r
191  KSHV can establish latent infection in many adherent cell lines, including human and nonhuman cells
192 hat it enhances the DMSO cryopreservation of adherent cell lines.
193 trate that FADD is mainly nuclear in several adherent cell lines.
194 or technology is deemed only compatible with adherent cell lines.
195 method for normalizing metabolomic data from adherent cell lines.
196 special mode of apoptosis induction in which adherent cells lose contact with the extracellular matri
197  for the first time, was readily apparent in adherent cells, lost following cellular detachment, and
198                           In the vitronectin-adherent cells, Lyn was associated preferentially with a
199                                        3) An adherent cell may influence the flow streams in its vici
200 7 adherent cells/min, with NMA vs. 4.3+/-0.7 adherent cells/min, after L-arginine; n = 5; p < .05).
201 leukocyte adhesion in septic rats (5.4+/-0.7 adherent cells/min, with NMA vs. 4.3+/-0.7 adherent cell
202 this phenotype could proliferate and produce adherent cell monolayers capable of chondrogenic, osteog
203 ed cell adhesion to extracellular matrix and adherent cell monolayers plays a key role in many physio
204 alpha-tubulin modifications are critical for adherent cell motility and implicated in numerous pathol
205                              However, in non-adherent cells no molecular mechanism has yet been propo
206 hin mesenchymal stem cells-as a prototypical adherent cell-nonmuscle myosin IIA and vimentin are just
207  proviral genomes from single-round-infected adherent cells of lymphocytes by using a lambda phage li
208 ogy to measure the growth rate of individual adherent cells of various sizes has been lacking.
209 ve measurement of the dynamic fluctuation of adherent cells, often referred to as the cellular microm
210  which determines traction forces exerted by adherent cells on a thin, elastic polyacrylamide gel emb
211 n on a density gradient and then cultured as adherent cells on plastic that proliferated in culture t
212  hours showed a significant reduction of the adherent cells on the microslides.
213                   Traction forces exerted by adherent cells on their microenvironment can mediate man
214                                           In adherent cells only, mDia1 and VASP also contribute to f
215 ized either by decreasing the density of the adherent cells or by bringing the cells into suspension,
216 ediated apoptosis was abolished by depleting adherent cells or Mac-1(+) spleen cells or by inhibiting
217            Furthermore, incubation of marrow adherent cells or mesenchymal stem cells with LCN2 incre
218 ed alveolar macrophages and peripheral blood adherent cells (PBAC).
219 ours after intracardiac injection, and a few adherent cells persisted until colonization occurred.
220 eflected by decreased gene expression in the adherent cell population.
221                       Examination of plastic-adherent cell populations in bronchoalveolar lavage samp
222 or the nontargeted in situ analysis of small adherent cell populations.
223                               Unlike primary adherent cells, primary and secondary tumors heterogeneo
224                       IL-1beta decreases the adherent cells, produces DNA ladders, but fails to cleav
225 F stimulation (83 pm, 10 min) of vitronectin-adherent cells promoted the specific recruitment of inte
226 so demonstrate that the on-chip assay, using adherent cells, provides the possibility of faster scree
227                                              Adherent cells remodel their cytoskeleton, including its
228 take by 4.4 and 9.9 fold in non-adherent and adherent cells, respectively.
229 o visualize the freezing process in pairs of adherent cells, revealing that the initial IIF event in
230 re captured from flow, a small proportion of adherent cells rolled, and the majority transmigrated th
231 The computational model is assessed using an adherent cell, rolling and deforming along the vessel wa
232           Ectopic expression of FOXD3 in non-adherent cells significantly reduced cell death in respo
233        However, this effect of adaphostin in adherent cells/solid tumor models has not been examined.
234 including cells embedded inside a 3D matrix, adherent cells subjected to shear flows, and cells insid
235                                 In migrating adherent cells such as fibroblasts and endothelial cells
236  We and others previously reprogrammed human adherent cells, such as postnatal fibroblasts to iPS cel
237  concentrated in clusters in the rear of the adherent cells, suggesting that [Ca(++)](i) transients a
238            Epithelia are polarized layers of adherent cells that are the building blocks for organ an
239 eet-like, leading edge protrusions in firmly adherent cells that contain Arp2/3-generated dendritic a
240 ax5(-/-) spleen cells yields a population of adherent cells that grow spontaneously in culture withou
241 growth factor-beta were localized to implant-adherent cells that included macrophages and foreign bod
242  surfaces of cells that are normally tightly adherent, cells that ingress during gastrulation failed
243 all-less plate produced similar results with adherent cells, the advantage of the DropArray technolog
244                                  In isolated adherent cells, the orientation of mitotic spindles is s
245 uations are affected by cellular activity in adherent cells, their spatial regulation and the corresp
246  determined leader-trailer polarized pair of adherent cells, they are capable of migrating individual
247     Since cell shape is maintained in weakly adherent cells, this state might induce survival signals
248 ates the formation of actin stress fibers in adherent cells through activation of its effector protei
249                       This transformation of adherent cells to a motile phenotype has been associated
250              The pallet array system permits adherent cells to be inspected using conventional micros
251 ries, or micropipets positioned near single, adherent cells to increase transiently the membrane perm
252                               The ability of adherent cells to later detach and again become prolifer
253  assays are based on the inherent ability of adherent cells to move into adjacent cell-free areas, th
254 onal motion seen in systems ranging from two adherent cells to multicellular assemblies.
255 erms of their cytotoxicity on suspension and adherent cells to prove their applicability as cancer na
256  beta1A integrin is necessary to protect non-adherent cells transduced with survivin from TNF-alpha-i
257 revent apoptosis induced by TNF-alpha in non-adherent cells transduced with survivin.
258 ize ERK to the nucleus in suspended cells or adherent cells treated with CCD.
259 otein apparatus, applicable as well to other adherent cell types and amyloid compounds.
260 an cell lines demonstrated that a variety of adherent cell types could be cultured and effectively sp
261 ion methods and overcomes the need for flat, adherent cell types that are required for immunofluoresc
262        Ebola virus infects a wide variety of adherent cell types, while nonadherent cells are found t
263   These studies demonstrate that biomaterial-adherent cells undergo material-dependent apoptosis in v
264                Conversely, the proportion of adherent cells undergoing apoptosis was increased signif
265                                              Adherent cells use forces at the cell-substrate interfac
266  we developed a method to displace nuclei in adherent cells using centrifugal force.
267 s of localized O(2) gradients in cultures of adherent cells, using three phosphorescent Pt-porphyrin
268 s with an emphasis on in vitro delivery into adherent cells utilizing mechanical penetration or elect
269                                The number of adherent cells varied with shear stress, with the maximu
270  the stiffness optima for different kinds of adherent cells vary widely, it is generally true that ce
271 e adenylate energy charge (0.90 +/- 0.09 for adherent cells vs 0.09 +/- 0.03 for suspended cells).
272            The effect of shear forces on the adherent cells was evaluated in a flow chamber.
273            Second, whereas HIV-1 fusion with adherent cells was insensitive to actin inhibitors, post
274 s load of RV-B (RV-B52, RV-B72, or RV-B6) in adherent cells was lower than that of RV-A or RV-C.
275 s approach, the metabolic activity of single adherent cells was monitored continuously over time, and
276 electin was unaltered although the number of adherent cells was reduced by 60%.
277 en chromatin landscapes with a low number of adherent cells, we demonstrate that the BAF complex is e
278   To test the applicability of this model in adherent cells, we used a fluorescent resonance energy t
279                               With this aim, adherent cells were analyzed in the SECM feedback mode i
280 choalveolar lavage was performed and plastic-adherent cells were cultured, characterized and then del
281          Rapidly growing cell suspension and adherent cells were effectively labeled by means of endo
282 t or nonadherent cultures, and in both cases adherent cells were found to be significantly more susce
283                                              Adherent cells were grown in either 96- or 384-well plat
284 locity was markedly decreased and numbers of adherent cells were increased in the mutant mice.
285 te rolling velocity (Vwbc) and the number of adherent cells were not altered with normal ventilation
286 ripheral blood mononuclear cells (PBMCs) and adherent cells were obtained from 27 patients with major
287                                              Adherent cells were quantified using crystal violet.
288 ty of the first group was observable only in adherent cells when confluence was approximately 100%.
289 Furthermore, they were more tumorigenic than adherent cells when grafted to mice.
290 s exhibit extensive MCSP-rich microspikes on adherent cells, where it also colocalizes with alpha4 in
291 ized enzymes and reversible encapsulation of adherent cells--which offer promise for incorporation wi
292 fore, present the same topographical cues to adherent cells while varying substrate rigidity only thr
293                             Treatment of ECM-adherent cells with EGF, or overexpression of EGFR or My
294  probes (TPs) that report traction forces of adherent cells with high spatial resolution, can in prin
295 r could do so less efficiently in lysates of adherent cells with increased ERK activity.
296 cell interactions via direct manipulation of adherent cells with micrometer-scale precision.
297 er liquid, and/or inability to select single adherent cells with specific phenotypes.
298  to screen and then isolate adherent and non-adherent cells with very high efficiency and excellent v
299 es that recognize markers expressed on live, adherent cells within a microfluidic channel.
300 optosis and differentiation of the remaining adherent cells without affecting their cell cycle progre

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