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Resistance to verapamil sensitization of multidrug-resistant cells grown as multicellular spheroids.

The ability of verapamil to overcome resistance to adriamycin in a multidrug-resistant derivative of the V79 cell line (LZ), grown as multicellular spheroids or as monolayers, was examined. Verapamil was much less effective in overcoming resistance to adriamycin in spheroids than in monolayers. Verapamil increased the adriamycin content of cells grown as monolayers, but had no significant effect on the drug content of spheroids. This occurred in spite of the same mdr-I mRNA and protein levels in monolayers and spheroids. When the surviving fraction of cells was normalized to the cellular adriamycin content, cells both in monolayers and spheroids treated with verapamil were still more sensitive to adriamycin than their counterparts not treated with verapamil. The observed resistance of spheroids to adriamycin and verapamil sensitization may be caused by a drug-resistance mechanism that is functional only in spheroids, in addition to the activity of P-glycoprotein. Multicellular tissue architecture and cell-cell contact may play significant roles in this type of multidrug-resistance mechanism.

Animals↗

Integrin expression on colorectal tumor cells growing as monolayers, as multicellular tumor spheroids, or in nude mice.

In this study we compared the expression of integrin alpha chains 2, 3, 4, 5, 6, v and the beta chains 1, 3, 4 in 2 colorectal carcinoma cell lines (HRT-18 and CX-2), growing in confluent and subconfluent monolayer cultures, as multicellular tumor spheroids and in nude mice, using the immunofluorescence technique (confocal microscopy) and flow cytometry. The fast-growing cell line HRT-18 expressed, in confluent and subconfluent monolayer cultures, alpha 2, 3 and beta 1 with a continuous membranous staining pattern, whereas alpha v, alpha 6, and beta 4 were expressed continuously membranous in the intermediate and apical part of the cell layer, and clustered at focal contacts at the base of the cells. In spheroids and tumors of nude mice the focal pattern of alpha v, 6 and beta 4 was changed into a diffuse one. Using flow cytometry, the expression of alpha 3 was found to be reduced in spheroids of HRT-18. The slowly-growing cell line CX-2 expressed, under the same conditions in monolayer culture, alpha 6, beta 1 and beta 4, and very weakly alpha 2, 3, 5 and v. Alpha 3 was expressed in spheroids of CX-2 only at the outer rim where the cells proliferate. In contrast, alpha 2 and 5 were expressed mainly in the quiescent, non-proliferating area. Alpha 6 was reduced in spheroids of CX-2. In the nude mouse tumor of CX-2, alpha 5 was expressed only focally and very weakly, alpha 2 was no longer detectable, but alpha v appeared to be enhanced in a focal pattern. These data indicate that integrin expression of tumor cells depends upon the culture system and that integrin expression in multicellular tumor spheroids is more similar to the in vivo situation in nude mouse tumors.

Animals↗

Polarity determination in Fucus: from zygote to multicellular embryo.

Zygotes of fucoid algae acquire polarity de novo. The initial polarity establishes the apical-basal polarity of the multicellular embryo and the adult plant. Acquisition of polarity involves the translation of external vectorial signals into spatial information within the cell via spatial photoreceptor activation at the level of the plasma membrane. Fixation of the polar axis involves interactions between the cytoskeleton, plasma membrane and the cell wall. Recently a central role for targeted secretion in polar axis fixation has been identified. In the multicellular embryo, evidence is accumulating for roles of cell wall and intercellular communication via diffusible signals in pattern formation and control of cell fate.

Cell Polarity↗

Oxygen consumption and oxygen diffusion properties of multicellular spheroids from two different cell lines.

A recently developed method for evaluating pO2 gradients in multicellular spheroids enabled the determination of the volume-related O2 consumption rate Q and of Krogh' diffusion constant KS in EMT6- and in V79-spheroids on the basis of pO2 measurements with microelectrodes. In addition, estimates for the weight-related water content W, for the O2 diffusivity D and for the O2 solubility in spheroids could be derived from KS. The results show that O2 consumption and O2 diffusion properties of multicellular spheroids are greatly influenced by the cell line chosen. On the average, Q is larger in V79-spheroids than in EMT6-spheroids, whereas KS, W, D and alpha are lower in V79-spheroids than in EMT6-spheroids. There is a decrease in Q with increasing spheroid diameter in either spheroid type, and Q in both spheroid types is lower than the respective value in single cells. Using the data obtained, theoretical pO2-profiles can be calculated that are in good agreement with the measured steady state pO2 distribution in all spheroids investigated.

Animals↗

An experimental trial of cyclic nucleotides on multicellular spheroids derived from human brain tumours.

The effects of cyclic nucleotides, dibutyryl cyclic adenosine monophosphate and dibutyryl cyclic guanosine monophosphate (db-cAMP and db-cGMP), on the growth rate of multicellular tumour spheroids were evaluated by comparing the growth delay and colony forming efficiency in vitro. Multicellular tumour spheroids were derived directly from human brain tumours. To compare the chemotherapeutic effect of cyclic nucleotides, CCNU was used as a known effective cytotoxic drug on malignant gliomas. Significant growth delay was obtained by db-cAMP (p less than 0.001) while CCNU was tumouricidal rather then producing a delay in growth of the tumour spheroids. Db-cGMP found not to be effective in decreasing the growth rate of the tumour spheroids in vitro (p greater than 0.2). The role of cyclic nucleotides in brain tumours is discussed on a review basis.

3',5'-Cyclic-GMP Phosphodiesterases↗

Multicellular complexes of thymocytes and different types of thymic stromal cells in the mouse.

The isolation of multicellular complexes of thymocytes and different types of thymic stromal cells from the mouse thymus is described. Isolated complexes were examined by light microscopy. Stromal cells, binding thymocytes at their surface, were identified using electron microscopy, and three types of epithelial cells, macrophages and interdigitating-like cells (IDC-like cells) were distinguished from their morphological characteristics. The epithelial cell types correspond morphologically to epithelial cells present in situ in various thymic regions. The type of thymocyte-contact with epithelial cells, macrophages and IDC-like cells indicated that the formation of multicellular complexes is common.

Animals↗

Isolation of multicellular complexes of follicular dendritic cells and lymphocytes: immunophenotypical characterization, electron microscopy and culture studies.

The morphological and phenotypical features of multicellular complexes formed by follicular dendritic cells and lymphocytes (FDC-LC) isolated from human hyperplastic tonsils and adenoids are described. FDC-LC obtained with this procedure were morphologically and immuno-phenotypically heterogeneous. In one type of FDC-LC, probably obtained from germinal centers, the lymphocytes exhibited ultrastructural features of centroblasts and centrocytes. In a second type, likely derived from follicular mantles, the enclosed lymphocytes were small in size and characterized by a condensed chromatin pattern. Similar heterogeneity was observed by immuno-phenotypical analysis, which revealed a prevalence of IgD+, CD3-, MT2+ small lymphocytes in a high proportion of FDC-LC. Both types of FDC-LC contained desmoplakin immunoreactivity in a typical punctate pattern corresponding to intercellular junctions when tested with a specific antibody. These findings confirm the importance of FDC in maintaining the follicular structure and also suggest that the different zones forming lymphoid follicles (mantle zone and germinal center) are formed by lymphocytes gathered in single "domains" by cytoplasmic processes of FDC. These domains have strong resistance to mechanical stress, such as that used in isolation procedures. FDC-LC have also been maintained as organized multicellular clusters for short periods (more than 48 h) in agarose gel cultures.

Adenoids↗

Development of quasi-multicellular bodies of Treponema denticola.

The formation of quasi-multicellular bodies of Treponema denticola was analysed using different electron microscopical methods. These bacteria could develop four different conformations: (i) normal helical forms; (ii) twisted spirochetes, forming plaits; (iii) twisted spirochetes,forming club-like structures; (iv) spherical bodies in different size. Treponemes within spherical bodies, plaits, and clubs proved to be enclosed in a common outer sheath in which the normal arrangement of their axial flagella was lost. The development of the quasi-multicellular bodies starting from the monoforme spirochetes was elucidated and this morphogenetic process is illustrated by a schematic drawing. Factors which might be involved in the induction of the structures are discussed and their possible pathogenetic importance is considered.

Freeze Fracturing↗

Dose-dependent alteration of rat cardiac sodium current by isoproterenol: results from direct measurements on multicellular preparations.

Conflicting results have been reported in literature about the influence of beta-adrenergic stimulation on the fast cardiac sodium current (INa+). To elucidate these mechanisms in multicellular preparations we used the loose-patch-clamp technique to evaluate the effect of the beta-adrenergic agonist isoproterenol 1-1000 nmol/l. Isoproterenol enhanced INa+ at all membrane potentials by elevation of the maximal available INa+ . Only at the high concentration of 1 micromol/l was INa+ slightly depressed after depolarizing conditioning clamps. The most marked increase of the maximal available INa+ was 30+/-9% after application of 100 nmol/l isoproterenol. To learn about the mechanisms in view of sodium channel modulation we combined isoproterenol with the sodium channel blocker lidocaine (47 micromol/l). Under these circumstances the effects of both drugs were completely independent. This investigation shows clearly that low concentrations of isoproterenol increase INa+ in multicellular preparations by a gating-independent mechanism.

Animals↗

The growth and morphology of FRTL-5 thyroid epithelial cells grown as multicellular spheroids in vitro.

FRTL-5 cells, a diploid line of differentiated rat thyroid epithelial cells, have been grown as multicellular spheroids in spinner culture. Spheroids were initiated by seeding FRTL-5 cells either into Lab-Tek dishes or culture flasks with a 0.5% agar base. Thyroid stimulating hormone (TSH, greater than 1.0 mU/ml) was required for initial cell aggregation and spheroid growth. After 1 wk cellular aggregates were transferred to suspension culture in spinner flasks. As with FRTL-5 monolayer cultures, continued spheroid growth required the addition of TSH to the culture medium. The most unique characteristic of the FRTL-5 spheroids was the development of central lumina similar to thyroid follicles in vivo. Follicular structures were absent from spheroids not stimulated with TSH. In the presence of TSH epithelial cells seem metabolically active with morphological evidence of biosynthesis of thyroglobulin-like material and basal laminar-like components. In contrast, all evidence of cellular metabolic activity is absent from cells in spheroids maintained in the absence of TSH. Thus, nontransformed FRTL-5 cells grown as three-dimensional multicellular spheroids responded to hormonal manipulation in a manner comparable to follicular epithelial cells in vivo. This spheroid model might therefore prove to be a very effective tool for investigating aspects of thyroid physiology and pathology in vitro.

Animals↗

A simplified method for the culturing of primary adult rat and human hepatocytes as multicellular spheroids.

A simple and highly reproducible method was established for the culturing of adult rat and human hepatocytes as multicellular aggregates (spheroids). Purified rat and human liver parenchymal cells were cultured on nontissue culture (bacteriological) polystyrene petri dishes on a rotating platform. After an overnight incubation, the cells were found to form multicellular aggregates. The aggregates became spheroidal in shape after several days in culture. Histological sections of the spheroids showed an organized structure consisting of squamated cells on the outermost layer and cuboidal cells in the interior. Cellular structures characteristic of hepatocytes in the liver in vivo including bile canaliculi, peroxisomes, Golgi bodies, abundant mitochondria, and rough and smooth endoplasmic reticulum were observed with electron microscopy. The spheroids were found to be viable up to the longest time studied of approx. 1 month in culture as demonstrated by their adherence and growth on collagen-coated substratum. The morphological resemblance between hepatocytes cultured as spheroids and the liver in vivo suggests that the spheroids may be a useful in vitro experimental model of the liver. Our simple method should allow hepatocytes to be cultured as spheroids easily in any laboratory equipped for cell culture. Our study here also is the first to report the culturing of human hepatocytes as spheroids.

Animals↗

The pre-Mendelian, pre-Darwinian world: shifting relations between genetic and epigenetic mechanisms in early multicellular evolution.

The reliable dependence of many features of contemporary organisms on changes in gene content and activity is tied to the processes of Mendelian inheritance and Darwinian evolution. With regard to morphological characters, however, Mendelian inheritance is the exception rather than the rule, and neo-Darwinian mechanisms in any case do not account for the origination (as opposed to the inherited variation) of such characters. It is proposed, therefore, that multicellular organisms passed through a pre-Mendelian, pre-Darwinian phase, whereby cells, genes and gene products constituted complex systems with context-dependent, self-organizing morphogenetic capabilities. An example is provided of a plausible 'core' mechanism for the development of the vertebrate limb that is both inherently pattern forming and morphogenetically plastic. It is suggested that most complex multicellular structures originated from such systems. The notion that genes are privileged determinants of biological characters can only be sustained by neglecting questions of evolutionary origination and the evolution of developmental mechanisms.

Animals↗

Morphological and functional characteristics of cells infiltrating and destroying tumor multicellular spheroids in vivo.

EMT6 mammary sarcoma cells were grown in vitro as multicellular spheroids to model for the heterogeneity of microenvironments and structural changes which develop in many tumors, including micrometastases. Spheroids of 700-900 micron diameter were implanted into and recovered at different times from the peritoneal cavities of sensitized or nonsensitized allogeneic and syngeneic mice. The colony forming efficiency of spheroid tumor cells recovered at 24 and 48 h from sensitized allogeneic mice was markedly decreased as compared with those from nonsensitized allogeneic or syngeneic animals. These recovered spheroids were extensively infiltrated by both lymphocytes and macrophages, which ultrastructurally had very close membrane associations with tumor cells. Host cells recovered from spheroids exhibited cytotoxic activity in an in vitro 51Cr release assay. Thus, multicellular spheroids in vivo provide a unique experimental model to study the functional capacity of host cells within a spheroical tumor. Although lacking the stroma and the vasculature of in vivo solid tumors, this model does have many similarities to in vivo tumors and is thus suitable for studying the tumor cell-host cell interactions within the tumor microenvironment. In addition, the system offers the potential for quantitative study of the effects of treatment modalities on tumor cell-host cell interactions.

Animals↗

Expression of verapamil hypersensitivity in multidrug-resistant cells grown as multicellular spheroids.

It is known that certain multidrug-resistant cell lines are hypersensitive to verapamil and to some other membrane-active agents. We examined the expression of verapamil hypersensitivity in multidrug-resistant, verapamil-hypersensitive CHO cell line by cells grown in the form of multicellular spheroids. We found that although vincristine resistance is expressed at high levels in multicellular spheroids, we could not detect verapamil hypersensitivity when cells were grown in this form. Using a dry autoradiographic method to study the entry of [3H]-verapamil into the spheroids, we demonstrated that the lack of hypersensitivity was not due to incomplete drug penetration. We therefore propose that when hypersensitive multidrug-resistant cells are grown as three-dimensional spheroids, cellular interactions may modify the expression of verapamil hypersensitivity.

Animals↗

Characterization of the rdar morphotype, a multicellular behaviour in Enterobacteriaceae.

The rdar morphotype, a multicellular behaviour of Salmonella enterica and Escherichia coli is characterized by the expression of the adhesive extracellular matrix components cellulose and curli fimbriae. The response regulator CsgD, which transcriptionally activates the biosynthesis of the exopolysaccharide cellulose and curli, also transforms cell physiology to the multicellular state. However, the only role of CsgD in cellulose biosynthesis is the activation of AdrA, a GGDEF domain protein that mediates production of the allosteric activator cyclic-di-(3'-5')guanylic acid (c-di-GMP). In S. enterica serovar Typhimurium a regulatory network consisting of 19 GGDEF/EAL domain-containing proteins tightly controls the concentration of c-di-GMP. c-di-GMP not only regulates the expression of cellulose, but also stimulates expression of adhesive curli and represses various modes of motility. Functions of characterized GGDEF and EAL domain proteins, as well as database searches, point to a global role for c-di-GMP as a novel secondary messenger that regulates a variety of cellular functions in response to diverse environmental stimuli already in the deepest roots of the prokaryotes.

Animals↗

Evolution of the 14-3-3 protein family: does the large number of isoforms in multicellular organisms reflect functional specificity?

14-3-3 proteins constitute a family of eukaryotic proteins that are key regulators of a large number of processes ranging from mitosis to apoptosis. 14-3-3s function as dimers and bind to particular motifs in their target proteins. To date, 14-3-3s have been implicated in regulation or stabilization of more than 35 different proteins. This number is probably only a fraction of the number of proteins that 14-3-3s bind to, as reports of new target proteins have become more frequent. An examination of 14-3-3 entries in the public databases reveals 153 isoforms, including alleloforms, reported in 48 different species. The number of isoforms range from 2, in the unicellular organism Saccharomyces cerevisiae, to 12 in the multicellular organism Arabidopsis thaliana. A phylogenetic analysis reveals that there are four major evolutionary lineages: Viridiplantae (plants), Fungi, Alveolata, and Metazoa (animals). A close examination of the aligned amino acid sequences identifies conserved amino acid residues and regions of importance for monomer stabilization, dimer formation, target protein binding, and the nuclear export function. Given the fact that 53% of the protein is conserved, including all amino acid residues in the target binding groove of the 14-3-3 monomer, one might expect little to no isoform specificity for target protein binding. However, using surface plasmon resonance we show that there are large differences in affinity between nine 14-3-3 isoforms of A. thaliana and a target peptide representing a novel binding motif present in the C terminus of the plant plasma membrane H(+)ATPase. Thus, our data suggest that one reason for the large number of isoforms found in multicellular organisms is isoform-specific functions.

14-3-3 Proteins↗

An iterative method to calculate forces exerted by single cells and multicellular assemblies from the detection of deformations of flexible substrates.

We present a new method for quantification of traction forces exerted by migrating single cells and multicellular assemblies from deformations of flexible substrate. It is based on an iterative biconjugate gradient inversion method. We show how the iteration and the solution are influenced by experimental parameters such as the noise on deformations sigma ( XY ), and the mean depth of recorded deformations Z (M). In order to find the validity range of our computational method, we simulated two different patterns of force. The first artificial force pattern mimics the forces exerted by a migrating Dictyostelium slug at a spatial resolution of Delta=20 mum (Rieu et al. in Biophys J 89:3563-3576, 2005) and corresponds to a large and spread force field. The second simulated force pattern mimics forces exerted by a polarized fibroblast at discrete focal adhesion sites separated by Delta=4 microm. Our iterative method allows, without using explicit regularization, the detailed reconstruction of the two investigated patterns when noise is not too high (sigma ( XY )/u (max)< or =6%, where u (max )is the maximal deformation), and when the plane of recorded deformations is close to the surface (Delta/Z (M)> or =4). The method and the required range of parameters are particularly suitable to study forces over large fields such as those observed in multicellular assemblies.

Algorithms↗

Programmed cell death during the transition from multicellular structures to globular embryos in barley androgenesis.

Androgenesis represents one of the most fascinating examples of cell differentiation in plants. In barley, the conversion of stressed uninucleate microspores into embryo-like structures is highly efficient. One of the bottlenecks in this process is the successful release of embryo-like structures out of the exine wall of microspores. In the present work, morphological and biochemical studies were performed during the transition from multicellular structures to globular embryos. Exine wall rupture and subsequent globular embryo formation were observed only in microspores that divided asymmetrically. Independent divisions of the generative and the vegetative nuclei gave rise to heterogeneous multicellular structures, which were composed of two different cellular domains: small cells with condensed chromatin structure and large cells with normal chromatin structure. During exine wall rupture, the small cells died and their death marked the site of exine wall rupture. Cell death in the small cell domain showed typical features of plant programmed cell death. Chromatin condensation and DNA degradation preceded cell detachment and cytoplasm dismantling, a process that was characterized by the formation of vesicles and vacuoles that contained cytoplasmic material. This morphotype of programmed cell death was accompanied by an increase in the activity of caspase-3-like proteases. The orchestration of such a death program culminated in the elimination of the small generative domain, and further embryogenesis was carried out by the large vegetative domain. To date, this is the first report to show evidence that programmed cell death takes part in the development of microspore-derived embryos.

Apoptosis↗