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Effect of diethylstilbestrol on Ca2+ handling and cell viability in human breast cancer cells.

In human breast cancer cells, the effect of the widely prescribed estrogen diethylstilbestrol (DES) on intracellular Ca2+ concentrations ([Ca2+]i) and cell viability was explored by using fura-2 and trypan blue exclusion, respectively. DES caused a rise in [Ca2+]i in a concentration-dependent manner (EC50 = 15 microM). DES-induced [Ca2+]i rise was reduced by 80 % by removal of extracellular Ca2+. DES-induced Mn(2+)-associated quench of intracellular fura-2 fluorescence also suggests that DES induced extracellular Ca2+ influx. In Ca(2+)-free medium, thapsigargin, an inhibitor of the endoplasmic reticulum Ca(2+)-ATPase, caused a monophasic [Ca2+]i rise, after which the increasing effect of DES on [Ca2+]i was greatly inhibited. Conversely, pretreatment with DES to deplete intracellular Ca2+ stores totally prevented thapsigargin from releasing more Ca2+, whereas ionomycin added afterward still released some Ca2+. These findings suggest that in human breast cancer cells, DES increases [Ca2+]i by stimulating extracellular Ca2+ influx and also by causing intracellular Ca2+ release from the endoplasmic reticulum. Acute trypan blue exclusion studies suggest that 10-20 NM DES killed cells in a time-dependent manner.

Antineoplastic Agents, Hormonal↗

Control of normal differentiation of myeloid leukemic cells. XI. Induction of a specific requirement for cell viability and growth during the differentiation of myeloid leukemic cells.

Normal hematopoetic cells require the presence of a protein (MGI) in the appropriate conditioned medium (CM) for cell viability and growth and for differentiation to mature macrophages and granulocytes. Clones of myeloid leukemic cells have been established in culture (D+ clones) which require CM with this protein for differentiation, but not for cell viability and growth. It has been shown that these leukemic cells can be induced by CM to again require, like normal cells, the presence of CM for cell viability and growth. Induction of this requirement, which will be referred to as RVG, occurred before the D+ cells differentiated to mature granulocytes. Clones of myeloid leukemic cells (D- clones) that could not be induced to differentiate to mature cells, did not show the induction of RVG. The steroid hormones prednisolone and dexamethasone can induce some, but not all the changes associated with differentiation of D+ cells, Incubation with these steroids did not result in the induction of a requirement for these steroids for cell growth and viability. Studies with CM from different sources have shown, that all batches that induced RVG also induced differentiation of D+ cells and that both activities were inhibited after treating the CM with trypsin. It is suggested that the same protein (MGI) may be involved in both activities. Incubation of D+ cells with CM resulted in an increase in agglutinability by concanavalin A and this increase was maintained even in the absence of CM. This suggests, that the induction of RVG in D+ myeloid leukemic cells is associated with a change in the cell surface membrane.

Agglutination↗

Argininosuccinate synthase expression is required to maintain nitric oxide production and cell viability in aortic endothelial cells.

Although cellular levels of arginine greatly exceed the apparent K(m) for endothelial nitric-oxide synthase, current evidence suggests that the bulk of this arginine may not be available for nitric oxide (NO) production. We propose that arginine regeneration, that is the recycling of citrulline back to arginine, defines the essential source of arginine for NO production. To support this proposal, RNA interference analysis was used to selectively reduce the expression of argininosuccinate synthase (AS), because the only known metabolic role for AS in endothelial cells is in the regeneration of l-arginine from l-citrulline. Western blot analysis demonstrated a significant and dose-dependent reduction of AS protein as a result of AS small interfering RNA treatment with a corresponding diminished capacity to produce basal or stimulated levels of NO, despite saturating levels of arginine in the medium. Unanticipated, however, was the finding that the viability of AS small interfering RNA-treated endothelial cells was significantly decreased when compared with control cells. Trypan blue exclusion analysis suggested that the loss of viability was not because of necrosis. Two indicators, reduced expression of Bcl-2 and an increase in caspase activity, which correlated directly with reduced expression of AS, suggested that the loss of viability was because of apoptosis. The exposure of cells to an NO donor prevented apoptosis associated with reduced AS expression. Overall, these results demonstrate the essential role of AS for endothelial NO production and cell viability.

Animals↗

Correlation of HSP70 expression and cell viability following thermal stimulation of bovine aortic endothelial cells.

Thermal preconditioning protocols for cardiac cells were identified which produce elevated HSP70 levels while maintaining high cell viability. Bovine aortic endothelial cells were heated with a water bath at temperatures ranging from 44 to 50 degrees C for periods of 1-30 min. Thermal stimulation protocols were determined which induce HSP70 expression levels ranging from 2.3 to 3.6 times the control while maintaining cell viabilities greater than 90%. An Arrhenius injury model fit to the cell damage data yielded values of A = 1.4 X 10(66) s(-1) and Ea = 4.1 X 10(5) J/mol. Knowledge of the injury parameters and HSP70 kinetics will enhance dosimetry guideline development for thermal stimulation of heat shock proteins expression in cardiac tissue.

Adaptation, Physiological↗

Influence of uremia on cell viability and cytokine release of human peritoneal mesothelial cells.

INTRODUCTION: There is still no evidence whether human peritoneal mesothelial cells (HPMC) from patients with end-stage renal failure are altered in cell viability or show a different pattern of the release of proinflammatory cytokines. Also the serum of patients with uremia may contain substances stimulating the cytokine release of HPMC. STUDY DESIGN: The IL-1beta-induced IL-6/IL-8 release of HPMC from healthy donors and from patients with end-stage renal disease (ESRD) were measured before the start of chronic peritoneal dialysis (PD) and during PD therapy. Additionally the influence of uremic and non-uremic serum on IL-6 and IL-8 release of normal HPMC was studied. Cell viability was assessed by MTT assay and by the measurement of intracellular ATP (chemoluminescence assay). HPMC were obtained from the following patient groups: (1) non-uremic control patients (n = 7); (2) patients with ESRD undergoing PD catheter implantation for the first time (n = 7), and (3) patients on PD undergoing catheter exchange for noninfectious reasons (n = 6). Pooled human serum from PD patients and normal controls were used for stimulation experiments. HPMC from different donors were grown to confluence (second passage) and then stimulated with IL-1beta (1,000 pg/ml in M199) for 24 h. IL-6 and IL-8 concentrations were measured in the supernatant by ELISA. Additionally uremic and non-uremic sera were incubated with HPMC from normal donors for 24 h with a subsequent 24-hour IL-1beta stimulation. Mesothelial cell protein mass was determined by the Bradford reagent. RESULTS: Non-uremic patients and ESRD patients did not differ with regard to the global cell viability of HPMC according to MTT assay activity or the intracellular ATP concentration. However, HPMC from uremic patients produced more IL-8 on IL-1beta stimulation than the non-uremic controls (group 2, 53.5 +/- 15.7 pg/microg; group 3, 70.5 +/- 27.3 pg/microg vs. group 1, 24.0 +/- 11.8 pg/microg). HPMC from patients on chronic PD additionally released significantly more IL-6 (30.5 +/- 13.8 pg/microg) on IL-1beta stimulation than uremic patients before the onset of PD (6.2 +/- 2.6 pg/microg; p < 0.01). Incubation of normal HPMC with the serum from uremic donors produced an enhanced stimulated IL-8 release compared to the exposition with normal control serum (50.6 +/- 6.1 vs. 20.8 +/- 2.9 pg/microg; p < 0.01). CONCLUSION: HPMC from uremic patients more readily release IL-8 on stimulation with IL-1beta. On chronic PD treatment IL-6 release was further enhanced. Not further classified serum components in uremia also enhance IL-6 and IL-8 release of HPMC.

Adenosine Triphosphate↗

Effect of apolipoprotein E on cell viability in a human neuroblastoma cell line: influence of oxidation and lipid-association.

Apolipoprotein E (apoE) whose polymorphic expression is widely associated with Alzheimer's disease (AD) is one of the most studied protein present in cerebral amyloid deposits. Native or fragments of apoE are known to exert neurotoxic effects. We evaluated the effects of apoE oxidation and lipid-association on the viability of human neuroblastoma IMR32 cells. We show that apoE affects cell viability only when it is lipid-associated and applied at a concentration near to that found in plasma, and this whatever the isoform. Oxidized phospholipid-associated apoE has a similar impact on cell viability. These findings show the necessity of including apoE into phospholipids when studying its effect on cell metabolism and underline the probable intervention of surface heparan sulfate proteoglycans (HSPG). It also warrants further studies in order to delineate the pathophysiological importance of apoE.

Apolipoprotein E2↗

Interactions of bioactive glasses with osteoblasts in vitro: effects of 45S5 Bioglass, and 58S and 77S bioactive glasses on metabolism, intracellular ion concentrations and cell viability.

In a cell culture model of murine osteoblasts three particulate bioactive glasses were evaluated and compared to glass (either borosilicate or soda-lime-silica) particles with respect to their effect on metabolic activity, cell viability, changes in intracellular ion concentrations, proliferation and differentiation. 45S5 Bioglass caused extra- and intracellular alkalinization, a rise in [Ca2+]i and [K+]i, a small plasma membrane hyperpolarization, and an increase in lactate production. Glycolytic activity was also stimulated when cells were not in direct contact with 45S5 Bioglass particles but communicated with them only through the medium. Similarly, raising the pH of culture medium enhanced lactate synthesis. 45S5 Bioglass had no effect on osteoblast viability and, under most conditions, did not affect either proliferation or differentiation. Bioactive glasses 58S and 77S altered neither the ion levels nor enhanced metabolic activity. It is concluded that: (1) some bioactive glasses exhibit well-defined effects in osteoblasts in culture which are accessible to experimentation; (2) 45S5 Bioglass causes marked external and internal alkalinization which is, most likely, responsible for enhanced glycolysis and, hence, cellular ATP production; (3) changes in [H+] could contribute to alternations in concentrations of other intracellular ions; and (4) the rise in [Ca2+]i may influence activities of a number of intracellular enzymes and pathways. It is postulated that the beneficial effect of 45S5 on in vivo bone growth and repair may be due to some extent to alkalinization, which in turn increases collagen synthesis and crosslinking, and hydroxyapatite formation.

Animals↗

Effects of estriol on cell viability and 1,25-dihydroxyvitamin D3 receptor mRNA expression in cultured human osteoblast-like cells.

It is clinically evident that administration of estriol (E3) increases the bone mass density of the lumbar vertebrae in postmenopausal women, and that combined treatment with estrogen and 1,25-dihydroxyvitamin D3 (VD3) increases femoral neck bone mass density compared with treatment with estrogen alone in postmenopausal osteoporotic women. However, the molecular mechanism whereby treatment with E3 affects osteoblast cell function is still unknown. This study was conducted first to examine the comparative effects of E3 and VD3 on the cell viability of cultured human osteoblast-like cells (HOS) and second to determine whether E3 affects VD3 receptor mRNA expression in HOS. The cell viability and VD3 receptor mRNA expression of cultured HOS were assessed by MTT assay and semi-quantitative reverse transcriptase-polymerase chain reaction with Southern blot analysis, respectively. The treatment with E3 increased the cell viability of cultured HOS compared with untreated control cultures. The increase in cell viability caused by the treatment with E3 was further augmented by the combined treatment with VD3. The addition of either E3 (3.52 x 10(-8) mol/l) or E3 (3.52 x 10(-7) mol/l) to cultured HOS for 24 h resulted in a fourfold and eightfold increase, respectively, in VD3 receptor mRNA expression in HOS, compared with that in untreated control cultures. These results suggest that E3 may up-regulate the cell viability of osteoblast cells, and that the concomitant treatment with E3 and VD3 further augments the cell viability being associated with an E3-induced increase in VD3 receptor mRNA expression in those cells.

Calcitriol↗

Synergistic effects of hydrogen peroxide and ethanol on cell viability loss in PC12 cells by increase in mitochondrial permeability transition.

The promoting effect of ethanol against the cytotoxicity of hydrogen peroxide (H2O2) in differentiated PC12 cells was assessed by measuring the effect on the mitochondrial membrane permeability. Treatment of PC12 cells with H2O2 resulted in the nuclear damage, decrease in the mitochondrial transmembrane potential, cytosolic accumulation of cytochrome c, activation of caspase-3, increase in the formation of reactive oxygen species (ROS) and depletion of GSH. In PC12 cells and dopaminergic neuroblastoma SH-SY5Y cells, the promoting effect of ethanol on the H2O2-induced cell death was increased with exposure time. Ethanol promoted the nuclear damage, change in the mitochondrial membrane permeability, ROS formation and decrease in GSH contents due to H2O2 in PC12 cells. Catalase, carboxy-PTIO, Mn-TBAP, N-acetylcysteine, cyclosporin A and trifluoperazine inhibited the H2O2 and ethanol-induced mitochondrial dysfunction and cell injury. The results show that the ethanol treatment promotes the cytotoxicity of H2O2 against PC12 cells. Ethanol may enhance the H2O2-induced viability loss in PC12 cells by promoting the mitochondrial membrane permeability change, release of cytochrome c and subsequent activation of caspase-3, which is associated with the increased formation of ROS and depletion of GSH. The findings suggest that ethanol as a promoting agent for the formation of mitochondrial permeability transition may enhance the neuronal cell injury caused by oxidants.

Animals↗

Increase of cell viability and P-glycoprotein expression in Chinese hamster ovary cells after 24 hours' exposure to vincristine.

Cell viability and P-glycoprotein expression in Chinese hamster ovary cells have been measured following incubation in a range of vincristine concentrations for 24 h. An increase of 12% in cell viability was observed with increasing drug concentrations in a drug-sensitive cell line (E29) and a lesser increase of 5% in a multidrug-resistant cell line (VRA15). The increased cell viability corresponded to a rise of P-glycoprotein level. Slot blots showed that there was an increase in P-glycoprotein mRNA with all drug concentrations tested in E29, although there was only partial correlation of mRNA levels with P-glycoprotein levels viability.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Relationship between aberrant DNA replication and loss of cell viability in Chinese hamster ovary CHO-K1 cells.

We have previously presented evidence that a transient block to DNA replication induces an aberrant form of DNA synthesis. The most feasible explanation for this data is that the block to DNA replication results in some segments of the chromosomal DNA being replicated more than once in a single cell cycle. This form of aberrant DNA synthesis was demonstrated to occur following direct inhibition of DNA replication by 1-beta-D-arabinofuranosylcytosine or 9-beta-D-arabinofuranosyladenine or after indirect inhibition with cycloheximide. We have proposed mechanisms whereby this phenomenon could induce chromosome damage and cell death. In this paper, we present data on the relationship between this aberrant form of DNA replication and the loss of cell viability. Using Chinese hamster ovary CHO-K1 cells growing as monolayer cultures, we have simultaneously monitored the loss of cell viability as measured by colony formation and the relative extent of this aberrant DNA replication induced by 2-hr pulses of a series of concentrations of inhibitors of DNA replication. We have found that, with either direct inhibition of DNA replication with 1 beta-D-arabinofuranosylcytosine or with indirect inhibition, with cycloheximide, pulses of inhibitor administered to Chinese hamster ovary cells at increasing of this aberrant DNA replication which paralleled the increase in cell killing.

Animals↗

Relationship between mTHPC fluorescence photobleaching and cell viability during in vitro photodynamic treatment of DP16 cells.

An implicit dosimetric model has been proposed in which biological damage caused by photodynamic therapy (PDT) is monitored through the decrease in sensitizer fluorescence during treatment. To investigate this, in vitro experiments were performed in which DP16 cells were incubated in meta-tetra(hydroxyphenyl)chlorin (mTHPC) and then irradiated with 514 nm light. Photosensitizer concentration, fluence rate and oxygenation were independently controlled and monitored during the treatment. Fluorescence of mTHPC was continuously monitored via a charge-coupled device-coupled spectrometer during treatment and, at selected fluence levels, cell viability was determined using a trypan blue exclusion assay. The relationship of cell viability to normalized fluorescence was obtained for the different treatment conditions. The relationship was independent of cell medium oxygenation, treatment fluence rate and sensitizer incubation concentration except at a high mTHPC concentration (4 microg/mL). This relationship suggests that fluorescence bleaching may be used to predict mTHPC PDT damage in vitro.

Animals↗

Photometric recording of cell viability using trypan blue in perfused cell cultures.

A perfusion system was developed to increase the reliability of cell viability estimations by continuous measurement of the uptake of trypan blue dye. Monolayer cell cultures were perfused with buffer containing toxic substances and trypan blue, and the staining of cells was continuously recorded at 591 nm in a spectrophotometer. Using mercuric chloride and methylmercuric chloride as test substances with C6 rat glioma cells, time- and dose-dependent increases in light absorbance were obtained over a 12h recording period. Methylmercuric chloride at 10(-6) M caused a half-maximal increase in relative absorbance in 4.5 h, whereas the corresponding time for mercuric chloride was 10.5 h.

Animals↗

Peroxisome proliferator-activated receptors (PPAR) agonists affect cell viability, apoptosis and expression of cell cycle related proteins in cell lines of glial brain tumors.

The nuclear receptors PPARs (peroxisome proliferator-activated receptors) are transcription factors activated by specific ligands. PPARs play an important role in carcinogenesis, inflammation, atherosclerosis, lipid metabolism and diabetes. There is evidence that activation of PPARs by specific ligands is able to suppress the growth of different types of human cancer by mechanisms including the growth arrest, apoptosis and induction of differentiation, although the detailed signalling pathways have not been completely elucidated to date. The aim of our study was to determine whether synthetic ligands of PPARalpha and PPARgamma could affect the viability, proliferation, differentiation, apoptosis and expression of some cell cycle related proteins in glial tumor cell lines. The study was performed on human glioblastoma cell lines U-87 MG, T98G, A172 and U-118 MG. Cell lines were treated by ligands of PPARalpha (bezafibrate, gemfibrozil) and PPARgamma (ciglitazone). MTT, flow cytometry, TUNEL assay and immunoblotting were used for detection of changes in cell viability, proliferation, differentiation and apoptosis. Bezafibrate, ciglitazone and gemfibrozil inhibited viability of glioblastoma cell lines. The synthetic ligands significantly reduced or induced the expression of cyclins, p27Kip1, p21Waf1/Cip1, MDM-2, Bcl-2, Bax, PARP, Caspase 3, androgen receptors, etc. and did not affect the expression of the differentiation marker GFAP. Flow cytometry confirmed arrest of the cell cycle although the detection of apoptosis was controversial. Apart from hypolipidemic and hypoglycaemic effects, PPAR ligands may also have significant cytostatic effects of potential use in anticancer treatment.

Apoptosis↗

Forskolin-stimulated adenylylcyclase activity: a marker to assess islet cell viability following cold storage in different solutions and to predict islet cell function following transplantation.

For clinical islet cell transplantation, short-term storage of islet cells is likely to be necessary, and it is imperative that the islet cells be kept as viable as possible during the period. However, there are little data on which preservative solutions are most suitable for the storage of islet cells after isolations or before transplantation. To estimate islet cell viability and transplantation success rate in the present study, adenylylcyclase activity was measured with a rapid new fluorometric assay in rat islet cells prior to transplantation, because cAMP plays an essential role in determining islet beta-cell viability and responsiveness to various hormonal stimuli. Adenylylcyclase activity was measured in islet cells stored for different periods of time 0, 3, 16, 24, 48, 96 h) and in different preservative solutions. Approximately 1,000 islet cells from each preservation group using University of Wisconsin (UW) solution were transplanted to streptozotocin-induced diabetes mellitus (DM) rats. Transplant success was evaluated by measuring blood glucose levels. Preoperative adenylylcyclase activity was compared with posttransplant islet cell function. The adenylylcyclase activity of UW solution was significantly higher than that of Euro-Collins solution and lactate-Ringer's solution through the different preservation time periods. Preoperative adenylylcyclase activity correlated well with posttransplant islet cell function in a rat model of DM. We conclude that adenylylcyclase activity can be used as a marker to assess islet cell viability as well as differences in preservation media and may predict islet cell transplant success.

Adenylyl Cyclases↗

Ureaplasma diversum infection in vitro alters prostaglandin E2 and prostaglandin F2a production by bovine endometrial cells without affecting cell viability.

Bovine epithelial and stromal cells of the endometrium were inoculated with Ureaplasma diversum, pathogenic strain 2312, at 10(6) or 10(3) color-changing units (ccu)/ml in the presence of 1% fetal bovine serum (depleted of steroids by dextran-charcoal treatment) to assess the effect of infection on prostaglandin biosynthesis. When the inoculum of U. diversum was 10(6) ccu/ml, the concentration of U. diversum in the culture medium decreased with time. U. diversum was found on the epithelial and stromal cell monolayers, increasing in titer 100-fold, indicating that attachment and eventually growth occurred. When the inoculum was 10(3) ccu/ml, the titer of U. diversum remained the same or increased in the supernatant and increased on epithelial and stromal cells. The effect of infection was evaluated by measurement of the primary prostaglandin produced by each cell type, prostaglandin F2a for epithelial cells and prostaglandin E2 for stromal cells. Infection with U. diversum significantly decreased prostaglandin F2a accumulation, by 44.7% +/- 6.0% at 10(6) ccu/ml (P < or = 0.005) and 15.8% +/- 5.3% at 10(3) ccu/ml (P < or = 0.05) in epithelial cells. Prostaglandin E2 accumulation by stromal cells was decreased by 34.0% +/- 4.0% at 10(6) ccu/ml (P < or = 0.001) and by 13.5% +/- 2.7% at 10(3) ccu/ml (P < or = 0.005). Infection with 10(6) ccu/ml did not alter endometrial cell viability, as shown by protein measurement, trypan blue dye exclusion, and cell plating efficiency tests. Thus, alterations in prostaglandin production were not due to cell deterioration. These observations suggest that U. diversum can alter prostaglandin E2 and prostaglandin F2a patterns in primary cultures of bovine endometrial cells without affecting cell viability.

Animals↗

Determination of cell viability after laparoscopic tissue stapling in a porcine model.

BACKGROUND AND PURPOSE: Surgical stapling devices are often used to secure the distal ureter along with a cuff of bladder during laparoscopic nephroureterectomy. As the viability of cells within the stapled tissue would be important in patients with upper urinary-tract transitional-cell carcinoma, we determined the viability of cells within the lines of various commercially available staplers in a porcine model. MATERIALS AND METHODS: Four laparoscopic stapling devices were used: two vascular and two tissue designs (US Surgical, Norwalk, CT, and Ethicon, Cincinnati, OH). The devices were deployed across a portion of the bladder, much as they would be during a nephroureterectomy to create a bladder cuff while excising the distal ureter. The animals were sacrificed 6 weeks later, and the stapled sites were harvested for histopathologic examination by an experienced genitourinary pathologist (PH). RESULTS: Grossly, there were no visible staples at harvest of the stapled bladder and the ureterovesical junction, with a completely healed bladder being seen in all four animals. On histologic examination with hematoxylin and eosin staining, there were distinctly viable cells within the staple lines of the ureterovesical junction and the bladder wall, similar to the unstapled control tissue. There were viable cells in all samples of tissues stapled by either vascular or tissue staplers. CONCLUSIONS: Deployment of both vascular and tissue staplers resulted in viable cells within the staple lines at the ureterovesical junction and bladder wall in this porcine model. There is a potential risk of tumor recurrence at the stapled site in patients who have the ureter and bladder cuff secured with these devices during laparoscopic nephroureterectomy for upper-tract transitional-cell carcinoma. Despite this concern, to date, over a period of 13 years, clinical experience has not revealed a single case of tumor recurrence within the stapled cuff of bladder. Careful endoscopic evaluation of the stapled bladder-cuff site after laparoscopic nephroureterectomy should minimize the potential for local tumor recurrence.

Animals↗

Altered cell adhesion and cell viability in a p38alpha mitogen-activated protein kinase-deficient mouse embryonic stem cell line.

p38 mitogen-activated protein (MAP) kinase alpha (p38alpha) is a broadly expressed protein kinase that regulates growth and development. Most studies of p38alpha have been in somatic cells. Little is known about its function in embryonic stem (ES) cells. Using a ES cell line isolated from p38alpha knockout mouse embryos (p38alpha (-/-) ES cells), we investigated roles of p38alpha in the regulation of ES cell activities. p38alpha (-/-) ES cells displayed several altered features different from wild-type cells. The major findings are that p38alpha (-/-) ES cells have significantly increased cell adhesion to several extracelluar matrix proteins, correlating with elevated phosphorylation of focal adhesion kinase and paxillin. p38alpha (-/-) ES cells also showed increased cell viability, correlating with increased expression of survivin and activation of AKT (protein kinase B), two molecules that are known to improve cell viability. p38alpha (-/-) ES cells reach confluence faster than wild-type cells in routine cell culture. However, this is not due to a higher cell proliferation rate in p38alpha (-/-) ES cells, but rather is likely a result of improved cell adhesion and/or cell viability. Together our results indicated that p38alpha may negatively regulate mouse ES cell adhesion and viability.

Animals↗