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Distribution and activity of antineoplastic drugs in a tumor model.

Antineoplastic drugs can be effective in solid tumors only if they can penetrate several cell layers and retain their activity in the tumor microenvironment. The capacity of several common chemotherapeutic agents to meet these requirements was evaluated in an in vitro tumor model, V79 Chinese hamster cells grown as spheroids. The delivery and toxicity of radioactively labeled 5-fluorouracil, lomustine, tetraplatin, and chlorambucil were determined by use of cell-sorting techniques to select cells as a function of their position (depth) within these spheroids, and the delivery and toxicity of doxorubicin (DOX) were evaluated on the basis of fluorescence intensity. Simultaneous measurement of drug level and toxicity in cells at the time of recovery from different depths within the spheroids led to the conclusion that drug delivery was a problem only for DOX. In contrast, several of the other agents showed a dissociation between cellular drug levels and activity, implicating a major role of the cellular microenvironment in modulating drug toxicity.

Animals↗

Importance of critical metabolites and cellular interactions in the biology of microregions of tumors.

Heterogeneity of cellular microenvironments and associated differences in phenotypic expression of cells in solid tumors occur as a consequence of deficiencies of vascularization. Intervascular microregions of tumors and micrometastases can be modeled by multicellular spheroids in vitro. These develop concentration gradients of critical metabolites such as oxygen, glucose, and probably also other important nutrients, hormones, and growth factors. Drug penetration may also be reduced. Concentrations of these factors decrease from the periphery towards the center, but gradients develop in the opposite direction for certain metabolic and necrotic products such as lactate and pH. Such gradients significantly modify the proliferative status of the cells, viability, clonogenicity, cell cycle distribution, antigen expression, and differentiation. Stress of oxygen and glucose deprivation induces synthesis of a specific set of proteins. Cellular interactions can also modulate phenotypic expression, including oxygen and glucose consumption rates and sensitivity to radiation and drugs. The mechanisms of these are unknown, but changes in cell-cell communication and DNA damage and repair have been demonstrated in spheroids. Microenvironmental and cellular changes may be transient. Thus, the characteristics of cells in tumor microregions may be quite different from the intrinsic cellular properties observed after growth of cells in standard culture systems. These changes may have significant effects on responses to therapeutic agents.

Adenocarcinoma↗

Fabrication of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBHHx) microstructures using soft lithography for scaffold applications.

This paper reports two soft lithographic methods, micromolding and hot embossing, to produce biodegradable poly (3-hydroxybutyrate-co-3-ftydroxyhexanoate) (PHBHHx) arrays of microstructures for hosting and culturing cells in a local microenvironment by controlled shape. Silicon masters with high-aspect-ratio microfeatures were fabricated using KOH and DRIE anisotropic etching. These silicon masters were used as molds to construct PHBHHx microstructures using micromolding and hot embossing. Using silicon rather than conventional PDMS as molds allowed microstructures with feature size of 20 microm and height of 100 microm to be realized. PHBHHx microstructures with different configurations including circles, rectangles, and octagons were fabricated to investigate the effects of topography on cell culture. Mouse fibroblast cell lines L929 were cultured on PHBHHx microstructures in vitro to investigate the biocompatibility. This study demonstrates the feasibility of microfabrication of PHBHHx structures with micro-scale feature size using soft lithography, and the results show that PHBHHx microstructures can be created to mimic cellular microenvironment for cell culture, providing a convenient means to investigate relationships of microstructures and cell functions.

3-Hydroxybutyric Acid↗

Gene expression signatures of morphologically normal breast tissue identify basal-like tumors.

INTRODUCTION: The role of the cellular microenvironment in breast tumorigenesis has become an important research area. However, little is known about gene expression in histologically normal tissue adjacent to breast tumor, if this is influenced by the tumor, and how this compares with non-tumor-bearing breast tissue. METHODS: To address this, we have generated gene expression profiles of morphologically normal epithelial and stromal tissue, isolated using laser capture microdissection, from patients with breast cancer or undergoing breast reduction mammoplasty (n = 44). RESULTS: Based on this data, we determined that morphologically normal epithelium and stroma exhibited distinct expression profiles, but molecular signatures that distinguished breast reduction tissue from tumor-adjacent normal tissue were absent. Stroma isolated from morphologically normal ducts adjacent to tumor tissue contained two distinct expression profiles that correlated with stromal cellularity, and shared similarities with soft tissue tumors with favorable outcome. Adjacent normal epithelium and stroma from breast cancer patients showed no significant association between expression profiles and standard clinical characteristics, but did cluster ER/PR/HER2-negative breast cancers with basal-like subtype expression profiles with poor prognosis. CONCLUSION: Our data reveal that morphologically normal tissue adjacent to breast carcinomas has not undergone significant gene expression changes when compared to breast reduction tissue, and provide an important gene expression dataset for comparative studies of tumor expression profiles.

Adult↗

Gene delivery through cell culture substrate adsorbed DNA complexes.

Efficient gene delivery is a fundamental goal of biotechnology and has numerous applications in both basic and applied science. Substrate-mediated delivery and reverse transfection enhance gene transfer by increasing the concentration of DNA in the cellular microenvironment through immobilizing a plasmid to a cell culture substrate prior to cell seeding. In this report, we examine gene delivery of plasmids that were complexed with cationic polymers (polyplexes) or lipids (lipoplexes) and subsequently immobilized to cell culture or biomaterial substrates by adsorption. Polyplexes and lipoplexes were adsorbed to either tissue culture polystyrene or serum-adsorbed tissue culture polystyrene. The quantity of DNA immobilized increased with time of exposure, and the deposition rate and final amount deposited depended upon the properties of the substrate and complex. For polyplexes, serum modification enhanced reporter gene expression up to 1500-fold relative to unmodified substrates and yielded equivalent or greater expression compared to bolus delivery. For lipoplexes, serum modification significantly increased the number of transfected cells relative to unmodified substrates yet provided similar levels of expression. Immobilized complexes transfect primary cells with improved cellular viability relative to bolus delivery. Finally, this substrate-mediated delivery approach was extended to a widely used biomaterial, poly(lactide-co-glycolide). Immobilization of DNA complexes to tissue culture polystyrene substrates can be a useful tool for enhancing gene delivery for in vitro studies. Additionally, adapting this system to biomaterials may facilitate application to fields such as tissue engineering.

Adsorption↗

Activation of the sodium/hydrogen exchanger via the fibronectin-integrin pathway results in hematopoietic stimulation.

The proliferative response of hematopoietic cells is regulated by many factors, including the presence and type of growth factors, the cellular microenvironment, and the physiochemical conditions prevailing in the tissue milieu. A process fundamental to all cells is the regulation of the intracellular acid-base conditions. One of the mechanisms by which intracellular pH (pHi) is regulated is through the sodium/hydrogen exchanger, a ubiquitous membrane protein which exploits the intra- and extracellular sodium ion gradient to drive hydrogen ions out of the cell. However, activation of the exchanger via mitogenic and nonmitogenic signals leads to an increase in pHi which, in turn, may directly or indirectly result in a proliferative response. It has been shown that interaction of fibronectin with its integrin receptor subunits alpha4 and alpha5 can result in activation of the Na+/H+ exchanger. In this report, we demonstrate that when mouse bone marrow cells are physically brought together in a preculture system we designate as high cell density culture (HCDC), in a small volume and at the same cellularity as that in the marrow, hematopoietic stem and progenitor cell populations are stimulated with no additional stimulation in the presence of growth factors. Neutralizing antibodies to the growth factors added to HCDC had little, if any, effect on the degree of stimulation. However, when antibodies to fibronectin or the alpha4 integrin subunit were added to HCDC, inhibition was observed, indicating that the observed hematopoietic stimulation occurred via the fibronectin-integrin pathway. Addition of 5 microM 5-(N,N-hexamethylene) amiloride (5-HMA), a specific inhibitor of the Na+/H+ exchanger, also resulted in inhibition of in vitro hematopoiesis. Since the exchanger was implicated, we then measured the pHi of normal and HCDC-treated bone marrow cells in the absence and presence of 5-HMA by flow cytometry using the fluorescent pH-sensitive indicator, carboxy SNARF-1 AM. It was found that cells subjected to HCDC exhibited a higher pH than normal fresh cells. In each case, the pH was lowered in the presence of 5-HMA. Furthermore, addition of antibodies to fibronectin or the alpha4 integrin subunit to HCDC also reduced the pH, to a similar level to that found for 5-HMA. Our results demonstrate, for the first time, that a hematopoietic stem and progenitor cell proliferative response can be initiated by activation of the Na+/H+ exchanger, leading to an increase in pHi, via cell-cell interaction through the fibronectin-integrin pathway. This pathway could, therefore, be significant not only in normal hematopoietic regulation, but also under pathophysiological conditions.

Amiloride↗

Variation of immunocytochemical expression of transforming growth factor (TGF)-beta in hepatocytes in culture and liver slices.

Transforming growth factor beta (TGF-beta) is a major member of a cytokine family with pluripotent biological activity. In the liver, TGF-beta has pathophysiological significance with respect to hepatic fibrogenesis, regulation of liver cell growth, tumor development, and induction of hepatocellular apoptosis. We show that the expression of immunocytochemically detectable TGF-beta in cultured hepatocytes is strongly dependent on culture conditions and cellular microenvironment. Hepatocytes in situ and freshly isolated cells are TGF-beta negative. In contrast, hepatocytes in incubated liver slices are stained with a patch-like pattern, whereas parenchymal cells cultured as a monolayer exhibit strong diffuse positive immunostaining for TGF-beta within 2 h after seeding. The intensity of immunocytochemical staining is dependent on culture substrata, major expression being observed in cells maintained on glass or plastic surfaces. When collagen type-I and type-IV, or EHS-matrix are used as substrata, TGF-beta is absent or only weakly immunocytochemically apparent in cultured hepatocytes, irrespective of the culture medium used. The positive immunocytochemical expression of TGF-beta in hepatocytes arises neither by transcriptional and translational pathways nor by disturbed intracellular calcium homeostasis. However, calcium-dependent proteinases, such as calpain-I and -II, might be involved in the immunochemical presentation of intracellular TGF-beta, because respective calpain inhibitors strongly reduce the appearance of TGF-beta in cultured parenchymal liver cells. Thus, hepatocytes are a major cellular source of (latent) TGF-beta in liver, as becomes evident during culture.

Animals↗

Tumor cell invasion of basement membrane in vitro is regulated by amino acids.

Because most cancer deaths result from disseminated disease, understanding the regulation of tumor invasion and metastasis is a central theme in tumor cell biology. Interactions between extracellular matrices (ECM) and cellular microenvironment play a crucial role in this process. We have tested selected amino acids and polyamines for their ability to regulate RL95-2 cell invasion through both intact human amniotic basement membrane and a novel human ECM (Amgel). Three major systems for neutral amino acid transport, systems L, A, and ASC, are operational in these neoplastic cells. Amino acids entering the cell via transport system A or N, i.e., (methyl amino)-isobutyrate (MeAIB) or Asn, markedly enhanced invasiveness of these human adenocarcinoma cells as measured by a standard 72-hr amnion or Amgel invasion assay. Addition of 2-amino-2-norborane carboxylic acid (BCH; 1 mM), a model substrate of the L transport system, caused a significant decrease in invasive activity when tested in the Amgel assay. Interestingly, Val lowers steady-state levels of MeAIB uptake and blocks the increase in cell invasion elicited by MeAIB. At the same time, these amino acids do not influence cell proliferation activity. Neither the charged amino acid Lys or Asp (not transported by A/N/L systems) nor the polyamines putrescine, spermidine, or spermine modulate invasiveness under similar experimental conditions. Moreover, the observed time-dependent stimulation of system A activity (cellular influx of MeAIB) by substrate depletion is prevented by the addition of actinomycin D (5 microM) or cycloheximide (100 microM), suggesting the involvement of de novo RNA and protein synthesis events in these processes. MeAIB treatment of tumor cells selectively increased the activities of key invasion-associated type IV collagenases/gelatinases. These results indicate that in the absence of defined regulators (growth factors or hormones), certain amino acids may contribute to the epigenetic control of human tumor cell invasion and, by extension, metastasis. We propose that amino acids, acting via specific signaling pathways, modulate phenotypic cell behavior by modulating the levels of key regulatory enzymatic proteins.

Amino Acid Transport Systems↗

The influence of microenvironment on the cytotoxicity of TNF [symbol: see text] vitro.

PURPOSE: Investigations were undertaken to study the influence of oxygen levels on tumor necrosis factor [symbol: see text] (TNF [symbol: see text] toxicity in vitro. METHODS AND MATERIALS: The cell line used to assess the cytotoxicity of TNF [symbol: see text] the mouse fibroblast line L929. The cell line was incubated under conditions of 21%, 10%, 5% and 2% oxygen either before or during exposure to TNF [symbol: see text]. All incubations with TNF were for 24 h in the presence of 1 microgram/ml actinomycin D. Cell number was assessed immediately following treatment by a colormetric method. RESULTS: By preincubating L929 cells under various oxygen conditions for 24 h prior to incubating with TNF [symbol: see text], we show that pretreatment does influence TNF [symbol: see text] cytotoxicity since up to 50 times more TNF [symbol: see text] is required to elicit the same survival level when L929 cells have been preincubated for 24 h at oxygen levels relevant to those in solid tumors, that is 2% rather than at 21%. A 24 h preincubation under an environment of 5% oxygen is not as effective at inducing resistance to TNF [symbol: see text] as incubation under 2% oxygen. However, this resistance could be significantly enhanced by lengthening the preincubation time. Indeed cells cultured for five passages under 5% oxygen levels are approximately 50 times more resistant to TNF [symbol: see text] than cells cultured under 21% oxygen. The resistance induced by conditions of reduced oxygen tension could be reversed over a 24 h period if cells were returned to an environment containing of reduced oxygen tension could be reversed over a 24 h period if cells were returned to an environment containing 21% oxygen. CONCLUSION: The oxygen content of the cellular microenvironment has a profound influence on the cytotoxic action of TNF.

Animals↗

Complexities of chromium carcinogenesis: role of cellular response, repair and recovery mechanisms.

Certain hexavalent chromium (Cr(VI))-containing compounds are recognized occupational human lung carcinogens and may pose an environmental health risk. The carcinogenicity of Cr(VI) is targeted to particulate forms of moderate to low solubility. Soluble Cr(VI) oxyanions in the immediate cellular microenvironment traverse the cell membrane by non-specific anionic transporters. Cr(VI) is reductively metabolized within cells by agents including ascorbic acid (Asc), glutathione (GSH) and cysteine (Cys). During Cr(VI) reduction, a diverse range of genetic lesions are generated including Cr-DNA binary (mono) adducts, Cr-DNA ternary adducts, DNA protein crosslinks (DPCs), bi-functional (DNA interstrand crosslinks (ICLs)) adducts, single-strand breaks (SSBs) and oxidized bases. Some forms of Cr damage, such as ICLs, present physical barriers to DNA replication/transcription and, thus, likely promote a terminal cell fate such as apoptosis or terminal growth arrest. Other lesions, such as ternary DNA adducts, are potentially pre-mutagenic. Cr(VI) exposure elicits a classical DNA damage response within cells including activation of the p53 signaling pathway and cell cycle arrest or apoptosis. Moreover, Cr(VI) also induces the ATM-dependent DNA damage response pathway which is paradoxically required for both apoptosis and survival after Cr(VI) insult. In yeast, moderately cytotoxic concentrations of Cr(VI) result in an initial G1 arrest and delayed S phase progression, whereas less toxic levels of Cr(VI) induce G2 arrest, which requires homologous recombination for exit and survival. The past several years has witnessed many important advances in our understanding of the genetic/cellular damage produced by exposure to Cr(VI). Further information is needed regarding the potential involvement of oxygen radicals in Cr genotoxicity, the specific DNA repair pathways activated by Cr and the complex signaling mechanisms involved in the cellular response to Cr(VI). These pertinent issues must be considered in relation to the potential role that each plays in the induction of human respiratory tract cancer by particulate Cr(VI) compounds.

Air Pollutants, Occupational↗

Novel insights into the function of the thymic Hassall's bodies.

During thymic ontogenesis, the HBs appear when lymphopoiesis is already established and the cortex, medulla and the cortico-medullary junction are capable of conducting the positive and negative selection of T lymphocytes undergoing progressive maturation. The HBs are structurally organized from RE cells, which usually undergo hypertrophy prior to their inclusion in the outer cell layer of the corpuscles. The cellular microenvironment of the thymic medulla is composed of networks of cell types, of a variety of origins, and all of them may participate in the construction of growing, progressive HBs. Histochemically, we detected a rich content of basic non-histone proteins, PAS positive substance (glycogen) and acid mucopolysaccharides within the bodies. Employing the histological stain of Pasini and immunocytochemical methods with monoclonal antidodies (MoABs) AE2 and AE3, high molecular weight (56.5 to 67 kD) basic keratins were defined in human HBs. Employing a panel of MoABs developed against thymic RE cell surface antigens, we observed immunoreactivity localized to the outer cell layer of the HBs with MoABs TE8, TE16 and TE19, while the centrally located cells reacted positively with TE15 and TE19. Immunoreactivity in human skin, employing the TE8, TE16 and TE19 MoABs was also observed in the epidermal granulosa cell layer, while TE15 reacted with cells of the stratum corneum. The presence of endocrine, peptide secreting RE cells within the HBs was defined with the use of MoAB A2B5, which binds to the GQ ganglioside. The hypertrophied, physiologically active RE cells of the peripheral cell layer of the HBs reacted positively with medium to strong intensity when stained with MoABs UJ127.11, J1153, A2B5, 215.D11, and 275.G7. We also observed the expression of transforming growth factor-beta type II receptors in HBs. The recently detected expression of the homobox gene products B3, B4, and C6, transcription factors involved in developmental processes related to hematopoiesis within HBs provides further evidence that HBs are important functional components of the RE network of the thymus which provide developing thymocytes with paracrine and juxtacrine signals to ensure their proper functional maturation during intrathymic lymphopoiesis. Our transmission electronmicroscopical (TEM) studies on HBs determined the existence of groups of RE cells connected to one another by desmosomes. We also observed long cytoplasmic processes originating from medullary RE cells and directly contacting thymic T lymphocytes and accessory antigen presenting cells (macrophages, dendritic cells, interdigitating cells, Langerhans cells, etc.) by the use of scanning electronmicroscopy (SEM). Thus, our results indicate that the HBs are unique, antigenically distinct, functionally active, multicellular components of the nonlymphocytic, cellular micro-environment of the thymic medulla, and participate in the physiological activities of the prenatal and adult thymus.

Animals↗

Spheroid preparation from hanging drops: characterization of a model of brain tumor invasion.

BACKGROUND: The use of three-dimensional in vitro models of brain tumor invasion has provided a system for reconstructing some of the cellular microenvironments present in the tumor mass. While spheroids of murine and human astrocytoma cells can be prepared using spinning cultures, spheroid preparation using many cell lines is not amenable to this method. We have developed a reproducible system of creating implantable spheroids that is applicable to different cell lines, and is independent of cell line characteristics. METHODS: For murine and human brain tumor cell lines, 20 microl drops containing predetermined cell concentrations were suspended from the lids of culture dishes and the resulting aggregates were transferred to culture dishes base-coated with agar. The two-dimensional aggregates formed three-dimensional spheroids on the non-permissive agar substrate, and were then implanted into three-dimensional collagen I gels and the invasive activity assessed. The invasive activity of C6 and U251 spheroids prepared by hanging drops was compared to spheroids of similar size prepared by spinner culture. RESULTS: The hanging drop method produced implantable spheroids capable of sustained invasion using all cell lines tested. Most cell lines required initial hanging drop cell concentrations of 45,000 cells/drop, suspension times of 48, and 72 h on agar. C6 spheroids had the same invasive capacity regardless of the model utilized, however U251 spheroids produced by hanging drops had significantly increased invasion compared to those prepared by spinner culture. Only spheroids prepared by spinner culture showed histological evidence of central necrosis. CONCLUSIONS: This model represents a reproducible approach to the preparation of implantable spheroids with invasive potential that compares with those produced using spinner culture. The use of hanging drops broadens the applicability of three-dimensional in vitro assays examining brain tumor invasiveness.

Animals↗

Controlling cell interactions by micropatterning in co-cultures: hepatocytes and 3T3 fibroblasts.

The repair or replacement of damaged tissues using in vitro strategies has focused on manipulation of the cell environment by modulation of cell-extracellular matrix interactions, cell-cell interactions, or soluble stimuli. Many of these environmental influences are easily controlled using macroscopic techniques; however, in co-culture systems with two or more cell types, cell-cell interactions have been difficult to manipulate precisely using similar methods. Although microfabrication has been widely utilized for the spatial control of cells in culture, these methods have never been adapted to the simultaneous co-cultivation of more than one cell type. We have developed a versatile technique for micropatterning of two different cell types based on existing strategies for surface modification with aminosilanes linked to biomolecules and the manipulation of serum content of cell culture media. This co-culture technique allowed manipulation of the initial cellular microenvironment without variation of cell number. Specifically, we were able to control the level of homotypic interaction in cultures of a single cell type and the degree of heterotypic contact in co-cultures over a wide range. This methodology has potential applications in tissue engineering, implant biology, and developmental biology, both in the arena of basic science and optimization of function for technological applications.

3T3 Cells↗

Peripheral nerve regeneration using bioresorbable macroporous polylactide scaffolds.

The ability of DRG-derived neurons to survive and attach onto macroporous polylactide (PLA) foams was assessed in vitro. The foams were fabricated using a thermally induced polymer-solvent phase separation. Two types of pore structures, namely oriented or interconnected pores, can be produced, depending on the mechanism of phase separation, which in turn can be predicted by the thermodynamics of the polymer-solvent pair. Coating of the porous foams with polyvinylalcohol (PVA) considerably improved the wettability of the foams and allowed for cell culture. The in vitro biocompatibility of the PVA-coated supports was demonstrated by measuring cell viability and neuritogenesis. Microscopic observations of the cells seeded onto the polymer foams showed that the interconnected pore networks were more favorable to cell attachment than the anisotropic ones. The capacity of highly oriented foams to support in vivo peripheral nerve regeneration was studied in rats. A sciatic nerve gap of 5-mm length was bridged with a polymer implant showing macrotubes of 100 microm diameter. At 4 weeks postoperatively, the polymer implant was still present. It was well integrated and had restored an anatomic continuity. An abundant cell migration was observed at the outer surface of the polymer implant, but not within the macrotubes. This dense cellular microenvironment was found to be favorable for axogenesis.

Animals↗

Bone marrow cells associated with heightened eosinophilopoiesis: an electron microscope study of murine bone marrow stimulated by Ascaris suum.

An acute eosinophilopoiesis occurs in mice secondarily exposed to Ascaris suum, the marrow eosinophils increasing from approximately 5% to 45%, and blood levels from 50/ml3 to more than 1000/ml3, within 14 days. Eosinophilopoiesis occurs in hematopoietic compartments of the bone marrow and is associated with four other cell types: branched stromal cells, macrophages, lymphocytes, and reticular cells adventitial to venous sinuses. Branched stromal cells, a newly recognized cell type, are presented in intensified hematopoiesis of at least several blood-cell types. They are characterized by extensive branches surrounding contiguous hematopoietic cells, dense cytoplasm, and multiple communications between nuclear cisternae and an extensive, dilated endoplasmic reticulum. These cells, moreover, have a capacity to coalesce to form an extensive, branching, multinucleate giant-cell system. They are neither phagocytic nor fibroblastic, and attend every phase of eosinophilic hematopoiesis. Macrophages lie among eosinophils, and they possess many processes which extend among eosinophils. The may constitute, with the eosinophils, islets similar to erythroblastic islets; or they may lie among eosinophils in sheets. Macrophages also lie against the outside surfaces of vascular sinuses and extend transmural processes into the lumina. Lymphocytes of a type not yet known are regularly present among developing eosinophils. Adventitial cells of vascular sinuses, fibroblastic cells, extend processes deep into perivascular hematopoietic spaces, and thereby envelop eosinophils and other maturing blood cells. While adventitial cells can be dense, they were typically quite lucent and had microfilaments clustered beneath their plasmalemmae. With the large-scale blood-cell delivery characteristic of this model, marked changes occurred in the walls of the vascular sinuses. Adventitial cells moved away from the vascular wall, permitting blood cells direct access to the basal surface and reducing their cover from more than 65% to less than 20%. Both adventitial and endothelial cells may be compact and dark, or expanded and quite lucent. Heterolysomes occur in moderate-to-large numbers in both adventitial and endothelial cells, and large gaps filled with blood cells in transit occur in endothelium. The hematopoietic-associated cells and the vasculature described here would appear to provide the cellular microenvironment which regulates hematopoiesis.

Animals↗

DNA synthesis and cell proliferation in the simple liver acinus of 10 to 20-day-old rats: evidence for cell fusion.

Radioautography after 3H-thymidine injection, mitotic arrest by colchicine and camera lucida drawings were used to study DNA synthesis, mitosis, formation of binucleated cells and morphogenesis in the simple liver acinus of Rappaport in 10-20-day old rats. By ten days the arrangement of hepatic cell plates had already attained the adult configuration - irregular and thick in acinar zone 1 (periportal), straight and thin in acinar zone 3 (pericentral). The DNA synthetic index of parenchymal and bile duct cells slowly decreased during the observation period. Zonal labeling remained steady in the relationship: zone 1 greater than zone 2 greater than zone 3. Mitosis of parenchymal and bile duct cells reached a peak at 12 days, decreasing slowly thereafter. Mitosis also exhibited the relationship zone 1 greater than zone 2 greater than zone 3. The number of binucleated cells remained constant until after day 14 when it increased rapidly. Zonal distribution of binucleated cells was just the reverse of that for DNA synthesis and mitosis, that is zone 3 greater than zone 2 greater than zone 1. Radioautographic studies of binucleated cells labeled with 3H-thymidine indicated that a small percentage of them were formed by fusion of mononucleated cells. Conclusions are: (1) the 10-20-day old rat liver is expanding its cell population primarily in acinar zones 1 and 2 while overt differentiation is occurring in acinar zone 3, (2) ingestion of solid food around day 16 may be related to binucleated cell production due in part to altered portal venous blood changing the cellular microenvironments, (3) binucleated cells arise by suppression of cytokinesis, cell fusion and/or other non-mitotic routes.

Animals↗

Lavage and nipple aspiration of breast ductal fluids: a source of biomarkers for environmental mutagenesis.

The acquisition of breast ductal fluid by nipple aspiration and ductal lavage are simple noninvasive procedures to sample breast tissue. Nipple aspiration fluid (NAF) obtained with gentle suction and a simple syringe-adapted apparatus may evaluate the secretory components that bathe the ductal epithelial cells. Evaluations have included the quantification of soluble markers (carcinoembryonic antigen and prostatic-specific antigen), DNA amplification, protein gel electrophoresis, and mutagenesis assays. It has been suggested that environmental mutagens in the breast ductal system may contribute to carcinogenesis. The feasibility of mutagenesis assays on NAF has been limited by the small size of the samples obtained. Three small clinical studies detected mutagens in 6-14% of the samples using the Salmonella Ames assay. Ductal lavage collects more of a cellular aspirate from the ductal system utilizing a microcatheter. Early studies on ductal lavage fluid have included cytology and methylation-specific PCR. Ductal lavage in a high-risk group has identified cellular atypia in 21% of those sampled. Samples obtained through the nipple, by aspiration or lavage, are the proteinaceous secretions from the ductal system and ductal epithelial cells. The fluid represents the cellular events and the dynamic secretory process of the breast and may include potential initiators of the carcinogenesis process in the cellular microenvironment. Fluid obtained by ductal lavage may allow for more detailed studies of the role of mutagens in breast cancer.

Adult↗

Humoral and contact interactions in astroglia/stem cell co-cultures in the course of glia-induced neurogenesis.

Astroglial cells support or restrict the migration and differentiation of neural stem cells depending on the developmental stage of the progenitors and the physiological state of the astrocytes. In the present study, we show that astroglial cells instruct noncommitted, immortalized neuroectodermal stem cells to adopt a neuronal fate, while they fail to induce neuronal differentiation of embryonic stem cells under similar culture conditions. Astrocytes induce neuron formation by neuroectodermal progenitors both through direct cell-to-cell contacts and via short-range acting humoral factors. Neuron formation takes place inside compact stem cell assemblies formed 30- 60 h after the onset of glial induction. Statistical analyses of time-lapse microscopic recordings show that direct contacts with astrocytes hinder the migration of neuroectodermal progenitors, while astroglia-derived humoral factors increase their motility. In non-contact co-cultures with astrocytes, altered adhesiveness prevents the separation of frequently colliding neural stem cells. By contrast, in contact co-cultures with astrocytes, the restricted migration on glial surfaces keeps the cell progenies together, resulting in the formation of clonally proliferating stem cell aggregates. The data indicate that in vitro maintained parenchymal astrocytes (1) secrete factors, which initiate neuronal differentiation of neuroectodermal stem cells; and (2) provide a cellular microenvironment where stem cell/stem cell interactions can develop and the sorting out of the future neurons can proceed. In contrast to noncommitted progenitors, postmitotic neuronal precursors leave the stem cell clusters, indicating that astroglial cells selectively support the migration of maturing neurons as well as the elongation of neurites.

Animals↗