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Repeated-batch cultures of baby hamster kidney cell aggregates in stirred vessels.

Natural aggregates of Baby Hamster Kidney cells were grown in stirred vessels operated as repeated-batch cultures during more than 600 hours. Different protocols were applied to passaging different fractions of the initial culture: single cells, large size distributed aggregates and large aggregates. When single cells or aggregates with the same size distribution found in culture are used as inoculum, it is possible to maintain semi-continuous cultures during more than 600 hours while keeping cell growth and viability. These results suggest that aggregate culture in large scale might be feasible, since a small scale culture can easily be used as inoculum for larger vessels without noticeable modification of the aggregate characteristics. However, when only the large aggregates are used as inoculum, it was shown that much lower cell concentrations are obtained, cell viability in aggregates dropping to less than 60%. Under this 'selection' procedure, aggregates maintain a constant size, larger than under batch experiments, up to approximately 400 hours; after this time, aggregate size increases to almost twice the size expected from batch cultures.

Alkaline Phosphatase↗

Cross-linking of a sequential epitope within the beta-chain of HLA-DR/DP molecules suppressing B lymphocyte growth and inducing homotypic cell aggregation.

A monoclonal antibody (SU2) directed against HLA class II antigens has been produced by immunizing BALB/c mice with a lymphoblastoid cell line, RPMI-8866 cells. The specificity of this mAb has been determined using a panel of HLA class II transfectants. SU2 stained all HLA-DR and HLA-DP transfectants tested, but reacted with only one HLA-DQ (HLA-DQw2). From comparison of the available data sequences of known HLA class II molecules, it appeared that the epitope recognized by the SU2 mAb contains a sequence of 6 amino acids (DSDVGE) at position 41-46 of the beta-chain of HLA-DR/DP. Functional studies indicated that SU2 mAb strongly induced cell aggregation and large clumping in resting tonsillar B cells. SU2 mAb inhibited the spontaneous growth and proliferation of B lymphoblastoid cell lines and drastically inhibited [3H]thymidine uptake by phorbol 12-myristate 13-acetate (PMA)-activated resting B cell. Results are discussed in relation to the dual recognition of HLA-DR/DP by SU2 mAb.

Amino Acid Sequence↗

Myelin formation in rotation-mediated aggregating cell cultures: immunocytochemical, electron microscopic, and biochemical observations.

Myelination was studied in aggregating cell cultures derived from mechanically 15- to 16-day fetal rat brains. Myelin basic protein (MBP) and myelin-associated glycoprotein (MAG) were localized immunocytochemically in 20-micrometers-thick Vibratome and 1-micrometer-thick Epon sections at 15, 20, 25, and 30 days in vitro. The occurrence of these proteins was correlated with the ultrastructural appearance of oligodendrocytes and myelin sheaths and with biochemical levels of MBP, MAG, and the myelin-related enzyme, 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP). MBP appeared in ultrastructurally immature oligodendrocyte cytoplasm at 15 days in vitro. As oligodendrocytes developed a more differentiated fine structure, MBP and MAG antisera stained oligodendrocyte processes and myelin sheaths. Immunostaining in Vibratome sections demonstrated that MBP was detectable in oligodendrocytes and myelin prior to MAG. At 25 days in vitro, all Vibratome sections contained MBP- and MAG-stained oligodendrocytes and myelin sheaths. Radioimmunoassays for MBP and MAG and enzyme assays for CNP in whole homogenates of the aggregates revealed that each of these components increased with the progression of myelination. However, MBP only reached 8% of the level in adult rat brain, while MAG and CNP increased to more than half of the adult level. The protein composition of myelin purified from 30-day aggregates resembled that of myelin purified from immature rat brain.

Animals↗

Development and maintenance of the neuronal cytoskeleton in aggregated cell cultures of fetal rat telencephalon and influence of elevated K+ concentrations.

Serum-free aggregating cell cultures of fetal rat telencephalon were examined by biochemical and immunocytochemical methods for their development-dependent expression of several cytoskeletal proteins, including the heavy- and medium-sized neurofilament subunits (H-NF and M-NF, respectively); brain spectrin; synapsin I; beta-tubulin; and the microtubule-associated proteins (MAPs) 1, 2, and 5 and tau protein. It was found that with time in culture the levels of most of these cytoskeletal proteins increased greatly, with the exceptions of the particular beta-tubulin form studied, which remained unchanged, and MAP 5, which greatly decreased. Among the neurofilament proteins, expression of M-NF preceded that of H-NF, with the latter being detectable only after approximately 3 weeks in culture. Furthermore, MAP 2 and tau protein showed a development-dependent change in expression from the juvenile toward the adult form. The comparison of these developmental changes in cytoskeletal protein levels with those observed in rat brain tissue revealed that protein expression in aggregate cultures is nearly identical to that in vivo during maturation of the neuronal cytoskeleton. Aggregate cultures deprived of glial cells, i.e., neuron-enriched cultures prepared by treating early cultures with the antimitotic drug cytosine arabinoside, exhibited pronounced deficits in M-NF, H-NF, MAP 2, MAP 1, synapsin I, and brain spectrin, with increased levels of a 145-kDa brain spectrin breakdown product. These adverse effects of glial cell deprivation could be reversed by the maintenance of neuron-enriched cultures at elevated concentrations of KCl (30 mM). This chronic treatment had to be started at an early developmental stage to be effective, a finding suggesting that sustained depolarization by KCl is able to enhance the developmental expression and maturation of the neuronal cytoskeleton.

Animals↗

Identification of a new genetic determinant for cell aggregation associated with lactose plasmid transfer in Lactococcus lactis.

Derivatives of the lactose miniplasmid pMG820 were constructed in which a staphylococcal erm gene was inserted and in which this was accompanied by subsequent deletion of the lactose genes. The resulting plasmids were thus marked with both erythromycin resistance and lactose utilization genes in pF1132 or solely erythromycin resistance in pF1133. These plasmids retained the normal conjugation properties characteristic of lactose plasmid pLP712, including the generation by intermolecular rearrangement of high-frequency-transfer Clu+ derivatives which exhibited cell aggregation. The use of such Clu+ plasmids in a variety of mating experiments between different lactococcal strains and the observation of cell aggregation when particular mating mixtures were made led to the discovery of a new component of this conjugation system named Agg. A chromosomal gene agg was postulated to be present in some but not all strains of lactococci. High-frequency conjugation and cell aggregation thus depend on the presence of both Agg and Clu, although in a mating pair these components can be in the same or in separate strains. The Agg and Clu components may be analogous to the binding substance and aggregation substance that are involved in the hemolysin plasmid transfer system of Enterococcus faecalis, although control of their expression is different.

Conjugation, Genetic↗

A three-dimensional vertex dynamics cell model of space-filling polyhedra simulating cell behavior in a cell aggregate.

We developed a three-dimensional (3D) cell model of a multicellular aggregate consisting of several polyhedral cells to investigate the deformation and rearrangement of cells under the influence of external forces. The polyhedral cells fill the space in the aggregate without gaps or overlaps, consist of contracting interfaces and maintain their volumes. The interfaces and volumes were expressed by 3D vertex coordinates. Vertex movements obey equations of motion that rearrange the cells to minimize total free energy, and undergo an elementary process that exchanges vertex pair connections when vertices approach each other. The total free energy includes the interface energy of cells and the compression or expansion energy of cells. Computer simulations provided the following results: An aggregate of cells becomes spherical to minimize individual cell surface areas; Polygonal interfaces of cells remain flat; Cells within the 3D cell aggregate can move and rearrange despite the absence of free space. We examined cell rearrangement to elucidate the viscoelastic properties of the aggregate, e.g. when an external force flattens a cell aggregate (e.g. under centrifugation) its component cells quickly flatten. Under a continuous external force, the cells slowly rearrange to recover their original shape although the cell aggregate remains flat. The deformation and rearrangement of individual cells is a two-step process with a time lag. Our results showed that morphological and viscoelastic properties of the cell aggregate with long relaxation time are based on component cells where minimization of interfacial energy of cells provides a motive force for cell movement.

Animals↗

Parathyroid hormone stimulates phosphate efflux through an apparently adenosine 3',5'-monophosphate-independent process in rat parotid cell aggregates.

The effects of PTH on phosphate fluxes and cAMP and protein secretion in rat parotid cell aggregates were studied. PTH-(1-34) as well as PTH-(1-84) stimulated phosphate efflux in a dose-dependent [5 X 10(-7) to 7 X 10(-6) M for human (h) PTH-(1-34), 2 X 10(-7) to 5 X 10(-6) M for bovine (b) PTH-(1-34), and 3.8-114 U/ml for bPTH-(1-84)] and time-dependent [detectable by 15-30 min after incubation with N-terminal PTH and 30-45 min after incubation with bPTH-(1-84)] manner. The effect of PTH on phosphate efflux was saturable, with maximal stimulation at 10(-6) M above for N-terminal PTH and at 57.8 U/ml and above for bPTH-(1-84). Half-maximal stimulation of phosphate efflux by hPTH-(1-34), bPTH-(1-34), and bPTH-(1-84) was achieved at 5.7 X 10(-7) M, 10(-7) M, and 40 U/ml, respectively. Neither bPTH-(1-34) nor bPTH-(1-84) had any effect on phosphate uptake by parotid cell aggregates at the concentrations examined. bPTH-(1-34) and bPTH-(1-84) also stimulated amylase secretion, with a significant increase in cAMP production (70-90% over basal). However, (BU)2cAMP did not stimulate phosphate efflux. Isoproterenol (10(-5) M) markedly stimulated cAMP production and amylase secretion without causing a significant increase in phosphate efflux. Oxidized bPTH-(1-84) and the C-terminal fragment of hPTH had no stimulating effect on phosphate efflux. The present results suggest, therefore, that PTH may play an important role in regulating rat parotid cell phosphate metabolism through an apparently cAMP-independent process.

Amylases↗

Inhibition of red cell aggregation prevents spontaneous echocardiographic contrast formation in human blood.

BACKGROUND: Spontaneous echocardiographic contrast (SEC) is a pattern of blood echogenicity that has been attributed to ultrasonic backscatter from blood cell aggregates that form under low shear conditions. Patients with left atrial SEC have an increased thromboembolic risk. This study examined the role of red cell and platelet aggregates in the pathogenesis of SEC in human blood and the effects on SEC of antithrombotic therapy and red cell disaggregatory agents. METHODS AND RESULTS: Blood echogenicity was examined with the use of quantitative videodensitometry over a controlled range of flow velocities in an in vitro model characterized by nonlaminar flow conditions. One hundred ninety study samples were prepared from single fresh blood donations (40 to 120 mL) from 24 healthy volunteers and 11 patients. Whole blood echogenicity was unaltered by depletion of platelets, stimulation of platelet aggregation with adenosine diphosphate, or inhibition of platelet aggregation with aspirin. Low flow-related echogenicity increased with increasing hematocrit (P<.001) but was abolished when red cells were lysed selectively with saponin (P<.001). In the presence of red cells, low flow-related echogenicity increased with increasing fibrinogen concentration (P<.001) and with plasma paraproteins. Low flow-related echogenicity in whole blood was unaltered by heparin and warfarin but was reduced in a dose-dependent manner by dextran 40 (40 mg/mL, 70% reduction, P<.001) and poloxamer 188 (8 mg/mL, 47% reduction, P<.001), which inhibited red cell aggregation. CONCLUSIONS: These results support protein-mediated red cell aggregation as the mechanism of SEC in human blood. Inhibition of red cell aggregation, indexed by resolution of SEC, may provide an alternative to anticoagulant and antiplatelet therapy to reduce cardiac thromboembolic risk.

Adult↗

Vascularization of purified pancreatic islet-like cell aggregates (pseudoislets) after syngeneic transplantation.

To clarify whether avascular purified endocrine cell aggregates derived from islets of Langerhans (pseudoislets) revascularize similarly to what is known for intact pancreatic islet grafts, we studied the process of angiogenesis and revascularization of syngeneically transplanted pseudoislets using intravital fluorescence microscopy. Pseudoislets were composed of pure beta-cells (B) or non-beta-cells (NB), as well as of mixed beta- and non-beta-cells (B/NB; 70/30%) or nonsorted-cells (NC), and were transplanted into the dorsal skinfold of Syrian golden hamsters. Intact islet grafts served as controls. At day 6 after transplantation, microvascularization of all types of pseudoislets was found to be less than in controls, as indicated by a reduced number of transplants that contained newly formed microvessels (take-rate: B, 38.8; NB, 38.7; B/NB, 43.8; and NC, 40.3% vs. intact islet grafts, 71.9%; P < 0.01). Moreover, those pseudoislets that had developed a microvascular network revealed a significantly lower functional capillary density (145.8+/-49.5 to 241.0+/-47.5 cm(-1) vs. intact islet grafts: 459.8+/-65.6 cm(-1); P < 0.05). After 20 days, the take-rate of pseudoislets was still lower (B, 67.4; NB, 45.3; B/NB, 48.4; and NC, 64.2%) when compared with intact islet grafts (88%; P < 0.05); however, islet-like aggregates with vascularization now showed an islet-specific glomerulus-like network of capillaries with a functional capillary density (498.5+/-49.1 to 601.4+/-124.0 cm[-1]) similar to that of intact islet grafts (644.3+/-26.8 cm[-1]). We conclude that the dissociation of pancreatic islets, followed by reaggregation of the purified endocrine cells to islet-like clusters (pseudoislets), delays the process of angiogenesis and revascularization after free transplantation; however, this does not influence the capacity to form an intact islet-specific microvasculature (angio-architecture), which appears to be independent from the cellular composition of pseudoislets.

Animals↗

Developmental expression, pattern of distribution, and effect on cell aggregation implicate a neuron-glial junctional domain protein in neuronal migration.

We developed a panel of monoclonal antibodies to cerebellar astroglial cells and selected for study those that revealed microdomain structures on the cell surface of neocortical and cerebellar astrocytes. One antibody, 15D7-AD7, recognized the approximately 72 kDa polypeptide doublet that was identified previously by the polyclonal antibody D4 as a component of the microdomain structure formed between migrating neurons and radial glial cell processes (Cameron and Rakic [1994] J. Neurosci. 14:3139-3155). Immunofluorescent localization studies reveal a spatial and temporal pattern of 15D7 immunoreactivity in multiple brain regions that correlates well with time periods when neuronal cell migration is a prominent morphogenetic event. In areas where the process of migration is underway, 15D7 immunoreactivity is detected simultaneously in both radial glial cells and cells that have the positional and morphologic features characteristic of migrating neurons. Subsequent to the completion of migration, immunoreactivity is detected in the transitional forms of radial glial cells and mature astrocytes, but not in neurons. Cell aggregation analyses reveal that 15D7 antibodies perturb the rate of aggregation for astrocyte-astrocyte, neuron-neuron, and mixed cell-cell combinations. Taken together, the present studies suggest that the polypeptides recognized by the 15D7 antibodies likely participate in an adhesive process, principally within the ventricular and subventricular zones, that is essential at the onset of the cell migration process.

Aging↗

Vibrissa dermal papilla cell aggregative behaviour in vivo and in vitro.

Parallel cultures of adult rat vibrissa dermal papilla cells and skin fibroblasts revealed differences between the two cell types with respect to a number of criteria. In particular the dermal papilla cells demonstrated a distinctive single cell morphology, and at confluence formed cell aggregates radically different from regular fibroblast multilayering and patterning. This finding confirmed repeated observations of papilla cell clumping in short-term culture. The dermal papilla cells which are mitotically quiescent in situ were also shown to have a lower proliferative capacity than the skin fibroblasts. The affinity shown by papilla cells towards each other in culture reflected the behaviour demonstrated by isolated dermal papillae transplanted into ear dermis and into the collagenous capsule of the vibrissa follicle. In the absence of epidermal contact the papilla cells remained as recognizable rounded aggregates for the experimental period of up to nine months. Synthesis of extracellular material typical of that seen in situ was observed, particularly during the first weeks following transplantation. The collective behaviour of the dermal papilla cells revealed in this study may be significant for the morphogenetic activity of the papilla, and for papilla size during the hair cycle. It may also reflect the retention of embryonic-like properties by the dermal component of adult hair follicles.

Animals↗

Monte Carlo simulation of LNCaP human prostate cancer cell aggregation in liquid-overlay culture.

Neoplastic cells self-assemble in liquid-overlay cultures into multicellular spheroids that resemble micrometastases and avascular regions of larger tumors. A Monte Carlo simulation based on Meakin's cluster-cluster aggregation model resolved the physical mechanisms by which LNCaP human prostate cancer cells aggregate in this environment. The best-fit solution suggests that LNCaP cells aggregate with an adhesion probability of 0.5% when they migrate within a radius of influence between cell centers of 180 microm, 10 times the cell diameter. The sweeping radius of influence is indicative of cell tethering and/or chemotaxis and results in an intrinsic rate of self-aggregation that increases from k(11) = 1.5 h(-1) for single cells to k(1010) = 17.5 h(-1) for 10-mers. Similar rates are predicted by Smoluchowski's collision theory (1), suggesting that they are inherent properties of LNCaP liquid-overlay culture. Aggregates form more compact structures in culture than during simulation as measured by the fractal dimension: D(F) = 1.74 +/- 0.04 for 10-mers in culture vs D(F) = 1.25 +/- 0.10 for simulated 10-mers. Additional restructuring would further extend the radius of influence and diminish adhesion. Applications of this work include the production of highly viable spheroids for drug testing and basic oncological research.

Cell Adhesion↗

Stimulation of prolactin secretion after short term or pulsatile exposure to dopamine in superfused anterior pituitary cell aggregates.

The dynamics of dopamine (DA) action on PRL release was studied in superfused rat anterior pituitary cell aggregates, cultured for for 5 days either in conventional or in serum-free defined medium. In aggregates cultured in conventional medium 0.1-1 nM DA applied for 20 min provoked a rapid and concentration-dependent inhibition of PRL release, lasting only a few minutes, after which there was a gradual rise in secretion up to near baseline levels. A sustained inhibition was obtained from DA concentrations more than or equal to 10 nM. When DA, used at the latter concentration, was withdrawn from the superfusion medium, a marked rebound secretion of PRL occurred, exceeding basal release for as long as 40-50 min. Rebound secretion was not followed by a compensatory fall in secretion rate. After a 10-min pulse of 10 or 30 nM DA, the amount of PRL released above baseline was considerably higher than the amount of PRL not released during the time DA was present. The latter stimulation of PRL release was not seen after a 40- or 90-min exposure time to DA. However, when DA was given for 40 min in 10 pulses of 4 min (4 min DA on 4 min DA off), a clear-cut stimulation of PRL release followed the termination of the pulses. When the serum used in the culture medium was extracted with dextran-coated charcoal, post-DA rebound secretion of PRL was markedly diminished. The latter secretion pattern partially reappeared when the extracted serum was supplemented with 10 nM dexamethasone. DA had similar effects on PRL release in aggregates cultured in serum-free defined medium. Dexamethasone did not affect DA-inhibition but strongly stimulated post-DA rebound, and this effect was potentiated by T3 present in the defined medium. There was three to four times more PRL secreted in excess of basal release than was inhibited during exposure to DA. The present data suggest a dual action of DA on PRL release: inhibition during tonic exposure to the catecholamine and inhibition-mediated stimulation after pulsatile exposure.

Animals↗

Cells from normal and malignant human colon mucosa differentially inhibit embryonic cell aggregation.

A model system for studying some aspects of the interaction of cancer cells in tumors and their surrounding nonmalignant tissue is the co-culture of cancer cells and embryonic chick neural retinal cells in gyratory shakers. Neural retina cell aggregation, under these conditions, has been shown to be differentially inhibited by small numbers of cultured mouse and human cancer cells. We extend here these observations to co-cultures of retinal cells with small numbers (60:1 ratio) of human cells isolated from normal colon mucosa or colonic adenocarcinoma tissue. The cells from the malignant tissue samples inhibited aggregation to a significantly greater extent than the cells from normal mucosa, even when both were from the same individual. Cells derived from nonmalignant tumors were more inhibitory than those from normal individuals, which is consistent with described differences in this 'transitional' region. Thus, the aggregation inhibition assay appears applicable to freshly isolated human tissues.

Adenocarcinoma↗

Epidermal growth factor and bovine growth hormone stimulate differentiation and myelination of brain cell aggregates in culture.

Bovine growth hormone (bGH) and epidermal growth factor (EGF) increased the activity of ornithine decarboxylase (ODC) in brain cell aggregates cultured in a serum-free chemically defined medium. ODC is considered as a marker of cell growth and differentiation. The effect of bGH and EGF on myelination was investigated by measuring two myelin markers, 2',3'-cyclic nucleotide 3'-phosphodiesterase (CNP) and myelin basic protein (MBP). EGF treatment at days 2 and 5 caused a dose-dependent increase of both myelin markers at culture day 12. This increase could still be observed at culture day 19, indicating a prolonged action of EGF. The continual presence of bGH in the culture medium produced a large accumulation of MBP at day 19. This effect was dose-dependent and required the presence of triiodothyronine (T3). In contrast, the effect of bGH on CNP activity did not require the presence of T3. This is the first report showing a direct effect of bGH on CNS myelination in vitro and of EGF on both MBP accumulation and ODC activity.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗