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Epidermal growth factor modulates prostate cancer cell invasiveness regulating urokinase-type plasminogen activator activity. EGF-receptor inhibition may prevent tumor cell dissemination.

Urokinase-type plasminogen activator receptor (uPAR) and Epidermal Growth Factor Receptor (EGFR) are ubiquitous receptors involved in the control of a variety of cellular processes frequently found altered in cancer cells. The EGFR has been recently described to play a transduction role of uPAR stimuli, mediating uPA-induced proliferation in highly malignant cells that overexpress uPAR. We compared the uPA production, the presence of uPAR, AR, EGFR and Her2 with the chemotaxis and the Matrigel invasion in ten human PCa cell lines and observed that: (1) the levels of Her2, but not of EGFR, as well as the uPA secretion, cell motility and Matrigel invasion were statistically higher in AR negative than in AR positive PCa cells; (2) the uPA secretion and uPA Rexpression were positively related to Matrigel invasion; (3) the EGF was able to stimulate chemotaxis and Matrigel invasion in a dose-dependent manner; (4) the EGF-induced cell migration was statistically higher inAR negative than in AR positive cells with a similar increase with respect to basal value (about 2.6 fold); (5) the Matrigel invasion was statistically higher in AR negative than in AR positive PCa cells also if the increment of Matrigel invasion after EGF treatment was statistically higher in AR positive respect to AR negative cells; (6) the EGF induced uPA secretion and its membrane uptake through the increment of uPAR; and (7) these effects were blocked by EGFR/Her2 tyrosine kinase inhibitors with IC(50) lower than those needed to inhibit cell proliferation and required PI3K/Akt, MAPK and PI-PLC activities as verified by inhibition experiments. These enzymatic activities were regulated in different manners in PTEN positive and negative cells. In fact, the inhibition of PI3K blocked the EGF-induced invasiveness in PTEN positive cells but not in PTEN negative cells, in which PI3K activity was not influenced by EGFR/Her2 activation, whereas the inhibition of MAPK was able to block the invasive phenomena in both cell types. Taken together, our data suggest that the blockade of EGFR could attenuate the invasive potential of PCa cells. In addition, considering that the EGFR expression is related to higher Gleason grade of PCa and that EGFR levels are increased after anti androgenic therapy, this therapeutic approach could slow down the metastasis formation which represents the most dramatic event of PCa progression.

Cell Line, Tumor↗

Modulation of Sertoli cell functions in the two-chamber assembly by peritubular cells and extracellular matrix.

A two-chamber assembly has been employed to investigate influences of peritubular cells (PC) and extracellular matrix (Matrigel) on barrier formation by Sertoli cells (SC) in culture and on transferrin production. The kinetics of transport of [3H]inulin across a Millipore filter were essentially the same in the presence or absence of Matrigel or PC. In contrast, a SC monolayer retarded the diffusion of [3H]inulin, increasing the estimated time for 50% equilibration from about 4 h to approximately 12 h. Matrigel and PC each independently further increased the equilibration time, with the largest effects elicited by the presence of Matrigel (approximately 21 h). Data have been interpreted to indicate that these two components, especially extracellular matrix, facilitate the formation of a functional barrier by SC in the two-chamber system. PC assume a more important role than Matrigel in the modulation of transferrin secretion by SC. Transferrin concentrations were higher in the inner chamber, corresponding to those in the adluminal compartment, but transferrin masses were higher in the outer chamber under the conditions described. We report the effects of the presence and absence of Matrigel, PC, and FSH on levels of transferrin secreted by SC. Addition of FSH resulted in increased transferrin secretion by SC maintained under all conditions examined. We compare our data with those previously reported by others and attempt to provide a basis for the differences observed. We discuss the properties of the system and outline major advantages and limits of the two-chamber assembly in investigations on the polarity and properties of SC in culture.

Animals↗

Essential role of biliary glycoprotein (CD66a) in morphogenesis of the human mammary epithelial cell line MCF10F.

Normal mammary epithelial cells express the cell surface protein biliary glycoprotein (BGP or CD66a) in a polarized manner, suggesting that this protein may play a role in the formation of mammary acini. In order to test this hypothesis, we interrupted the expression of BGP in the mammary epithelial line MCF10F when cultured in or on Matrigel, a source of extracellular matrix (ECM). When analyzed by immunofluorescence confocal microscopy, the BGP staining is confined to the lumenal surface and colocalizes with actin. Sequential scanning electron microscopy demonstrates that the MCF10F cells migrate to form clusters, followed by apoptotic cell death within the center, resulting in lumen formation. Transmission electron micrographs reveal the presence of tight junctions and desmosomes between the cells, microvilli along the lumenal surface, and typical apoptotic bodies within the lumen. When the MCF10F cells are transfected with the BGP antisense gene and grown in Matrigel, they exhibit reduced acini formation (12% and 20%) compared to untransfected cells (52%) or to cells transfected with vector only (62%). Acini formation is also significantly reduced when MCF10F cells grown in Matrigel are treated with anti-BGP antibody (18% at 100 microgram/ml), or recombinant soluble BGP (18% at 0.4 microM). In contrast, the BGP-negative MCF7 breast tumor cell line, which does not form acini when grown in matrigel, exhibits >60% cell death with the occasional formation of acini, when transfected with the BGP sense gene and grown in Matrigel. These results support the hypothesis that BGP plays a role in the normal differentiation program of mammary epithelial cells, indicating that its expression is essential to the formation of the lumen. Furthermore, and as shown by others, the differentiation program depends on the presence of ECM. The lack of expression of BGP in the MCF7 breast cancer cell line suggests that the downregulation of BGP expression confers a growth advantage to these cells in ECM. In addition, we found that the MCF10F cells could be separated into a BGP-positive epithelial fraction (MCF10F-e), and a BGP-negative myoepithelial fraction (MCF10F-m). When the myoepithelial cell-enriched fraction is grown on Matrigel, web-like structures are formed. These cells have a typical spindle shape cell morphology and express keratin, alpha-smooth muscle actin and vimentin, markers of the myoepithelial cell phenotype. When MCF10F-m cells are treated with IFNgamma, they express CEA (carcinoembryonic antigen) but not BGP. Since breast carcinomas, especially in situ carcinomas, express CEA, this finding may suggest a heretofore unappreciated relationship between myoepithelial cells and breast cancer.

Antigens, CD↗

In vivo establishment of T98G human glioblastoma.

Human derived T98G glioblastoma has long been utilized as an in vitro model for epidermal growth factor receptor (EGFR)-mediated growth regulation. Recently, T98G has been employed to develop new types of therapy directed at limiting EGFR expression such as by administration of antisense oligonucleotides directed against EGFR encoding mRNA. A major limitation to extending this model for in vivo application is that T98G implanted s.c. or intracerebrally has been reported not to grow in nude mice. In an effort to extend this model to permit in vivo studies, we evaluated the use of Matrigel and orthotopic (intracranial) implantation techniques. When equal volumes of Matrigel were mixed with T98G cell suspensions, tumors developed at both flank and orthotopic locations. Four groups of nude mice were inoculated into the flanks with either 10(5), 10(6), 4 x 10(6) or 10(7) T98G cells in a 150 microliters total volume with Matrigel. In 1/5, 3/5, 1/5 and 1/3 mice receiving 10(5), 10(6), 4 x 10(6) and 10(7) cells, respectively, tumors developed 11, 15, 15 and 15 weeks, respectively, following inoculation. Out of 4 mice inoculated orthotopically (intracranially into the frontal lobe) with only 4 x 10(4) cells and Matrigel, 2 developed tumors. However, all mice (4/4) inoculated orthotopically with 4 x 10(5) cells in a 10 microliters total volume with Matrigel developed tumors. Two were identified histologically following a scheduled sacrifice at 36 and 60 days and two more at 103 and 118 days after sacrifice following abnormal behavior. The best tumor establishment efficacy combined orthotopic implantation of 4 x 10(5) T98G cells with Matrigel. These techniques permit the use of T98G glioblastoma as an in vivo model for new forms of therapy.

Animals↗

Reconstituted basement membrane reduces proliferation and increases prolactin expression of GH3 cells.

This study investigated the effects of reconstituted basement membrane Matrigel on the proliferation and prolactin expression of GH3 cells in culture for 6 days. When cells were cultured on Matrigel, the initial attachment was increased but the cell number was not changed with time whereas rapid increase in cell number was observed in cultures on plastic. Bromodeoxyuridine (BrdU)-labeling showed that BrdU incorporation ratio of GH3 cells cultured on Matrigel was about one half of that observed with cells cultured on plastic (9.7+/-0.7% vs. 18.7+/-1.2%). Immunocytochemistry revealed that the ratio of the prolactin-immunoreactive GH3 cells was about 3.6 times (58.4+/-2.9% on Matrigel vs. 16.2+/-1.4% on plastic), which was compatible with the results of Western blot analysis. In situ hybridization demonstrated that prolactin mRNA-positive cells were identified more frequently when cells were cultured on Matrigel compared to cultures on plastic. These findings indicate that Matrigel is a proper culture substrate for the long-term culture of GH3 pituitary cells due to the inhibition of overgrowth and promotion of prolactin expression.

Animals↗

Urokinase (u-PA) and the u-PA receptor. Modulation of in vitro invasiveness of human bladder cancer cell lines.

BACKGROUND: Urokinase (u-PA) and the u-PA receptor (u-PAR) influence tumor invasion and metastasis. PURPOSE: The purpose of this study is to determine whether u-PAR display in 4 human bladder cancer cell lines (RT4, 253J, EJ and T24) can be modulated with substances including phorbol 12-myristate 13-acetate, interferon gamma, epidermal growth factor, and transforming growth factor beta and to correlate changes with u-PAR expression with the ability of these cells to invade artificial basement membrane (Matrigel). METHODS: u-PAR display was determined using flow cytometry and immunohistochemical staining with an anti-u-PAR monoclonal antibody (Mab3936). Matrigel invasion chamber assays were used to assess the invasive capacity of the cell lines. RESULTS: The T24, EJ and 253J cells expressed the u-PAR while the RT4 cells did not. The EJ cells (expressing the highest u-PA antigen levels and the u-PAR) invaded Matrigel. The T24 cells, which expressed the u-PAR but do not produce u-PA, invaded Matrigel only when pretreated with high molecular weight urokinase (HMW u-PA). HMW u-PA pretreatment of EJ and 253J cells also enhanced their invasive potential. Blocking u-PA/u-PAR attachment with an anti-u-PAR monoclonal antibody (Mab3936) inhibited invasion. Modulation of u-PAR expression on cell lines displaying the u-PAR directly affected in vitro invasiveness of the cell lines. The RT4 cells which lack the u-PAR were not invasive under conditions tested. Thus, bladder cancer cell lines require both u-PA and the u-PAR to invade Matrigel and modulation of u-PAR display directly affects their in vitro invasive capacity. CONCLUSIONS: This study shows that bladder tumor cells produce u-PA and express the u-PAR and require both for in vitro invasion to occur. When bladder cancer cells express the u-PAR, invasiveness can be enhanced by exogenous u-PA and inhibited by anti-u-PAR antibodies. Modulation of u-PAR expression on the cell surface of bladder cancer cells can also affect their ability to invade Matrigel. IMPLICATIONS: Histologically similar bladder tumors show differences in their propensity to invade locally or metastasize. Intrinsic differences in the tumor cells such as the production of u-PA antigen and u-PA receptor on the cell surface and extrinsic differences in the tumor cell environment such as substances influencing u-PAR display or antibodies blocking the u-PAR may affect the biological potential of human bladder cancers and offer one explanation for the aggressive or indolent tumor behavior observed in individual patients.

Basement Membrane↗

Cell adhesion molecule uvomorulin expression in human breast cancer cell lines: relationship to morphology and invasive capacities.

Loss of cell-cell adhesion in carcinoma cells may be an important step in the acquisition of an invasive, metastatic phenotype. We have examined the expression of the epithelial-specific cell adhesion molecule uvomorulin (E-cadherin, cell-CAM 120/80, L-CAM) in human breast cancer cell lines. We find that fibroblastoid, highly invasive, vimentin-expressing breast cancer cell lines do not express uvomorulin. Of the more epithelial-appearing, less invasive, keratin-expressing breast cancer cell lines, some express uvomorulin, and some do not. We examined the morphologies of the cell lines in the reconstituted basement membrane matrix Matrigel and measured the ability of the cells to traverse a Matrigel-coated filter as in vitro models for detachment of carcinoma cells from neighboring cells and invasion through basement membrane into surrounding tissue. Colonies of uvomorulin-positive cells have a characteristic fused appearance in Matrigel, whereas uvomorulin-negative cells appear detached. Cells which are uvomorulin negative and vimentin positive have a stellate morphology in Matrigel. We show that uvomorulin is responsible for the fused colony morphology in Matrigel since treatment of uvomorulin-positive MCF-7 cells with an antibody to uvomorulin caused the cells to detach from one another but did not induce invasiveness in these cells, as measured by their ability to cross a Matrigel-coated polycarbonate filter in a modified Boyden chamber assay. Two uvomorulin-negative, vimentin-negative cell lines are also not highly invasive as measured by this assay. We suggest that loss of uvomorulin-mediated cell-cell adhesion may be one of many changes involved in the progression of a carcinoma cell to an invasive phenotype.

Blotting, Northern↗

Effects of extracellular matrix on the growth and casein gene expression of primary mouse mammary tumor cells in vitro.

This study describes a serum-free culture system and provides a tumor model to investigate the effects of extracellular matrices on the growth and beta-casein gene expression of mouse mammary tumor epithelial cells (MMTCs) in vitro. Primary cultures of MMTCs derived from autochthonous mammary tumors in BALB/cfC3H x DBA/8 F1 mice, FUKU cells, an established MMTC line, and COMMA-1D cells established from mouse mammary tissues were studied. A reconstituted basement membrane from the Englbreth-Holm-Swarm tumor (Matrigel) allowed a 2.7-fold increase in cell number of 5-day primary MMTC cultures in serum-free, insulin-supplemented medium. FUKU and COMMA-1D cells in serum-free medium displayed a 13.6- and 11.5-fold increase in cell number, respectively, after 5 and 6 days in culture on Matrigel. In semisolid agar cultures, Matrigel or laminin was shown to promote colony-forming efficiency of FUKU cells when either of the matrices was mixed in the top agar layer. An increase of 4.4 or 2.1 times in colony-forming efficiency was detected when 20% (v/v) Matrigel or 112 micrograms/ml of laminin were mixed in the agar layer compared with FUKU cells plated in plain agar. beta-Casein mRNA was detectable by Northern blot assays in the primary mammary tumors. MMTCs in primary cultures grown on Matrigel in serum-free, insulin-supplemented medium for 4 days were inducible for beta-casein mRNA following the treatment with prolactin and hydrocortisone (FPRL) for 24 h. No beta-casein mRNA was detectable in the absence of FPRL. MMTCs in the primary cultures could also be induced for beta-casein mRNA when they were cultivated on type I collagen gels for 4 days but not on laminin, type IV collagen, or plastic. However, the capacity to respond to FPRL was not lost in MMTCs cultured on laminin. When MMTCs were initially cultured on laminin for 4 days and then subcultured on Matrigel for another 4 days, they were inducible for beta-casein mRNA upon exposure to FPRL for 24 h. In contrast, no beta-casein mRNA upon exposure to FPRL for 24 h. In contrast, no beta-casein mRNA was found in MMTCs from the same tumors cultured on laminin for 8 days with the same treatment of hormones. These data demonstrate that cells from autochthonous mammary tumors, which are not dependent on estrogen for growth in vivo, are inducible in vitro for beta-casein mRNA by FPRL; and this hormonal response of MMCTs requires appropriate extracellular matrix.

Animals↗

Biochemical characteristics of hyperplastic rat bile ductular epithelial cells cultured "on top" and "inside" different extracellular matrix substitutes.

An essentially pure population of bile ductular epithelial cells isolated from bile duct-ligated rats was placed in primary culture by plating the cells either "on top" of or "inside" different extracellular matrix substitutes, including basement membrane Matrigel, type I collagen gel, and agarose gel. Plating efficiencies of greater than 60% were obtained when the cells were seeded in the presence of 1.0% fetal calf serum on top of Matrigel and collagen gel, but there was very little if any cell attachment to the agarose surface. In contrast, the cells could be maintained equally well and at very similar densities when they were cultured inside the various gel substances, including agarose. Regardless of substratum condition, bile ductular cells at 10 days in primary culture expressed specific activities of the marker enzymes gamma-glutamyl transpeptidase and leucine aminopeptidase which were significantly higher than those shown by freshly isolated cells. On the other hand, alkaline phosphatase activity of the cells became undetectable by day 3 of culture when they were cultured on top of either Matrigel or collagen gel but was retained at approximately 50% of its original level in cells cultured for 10 days within Matrigel or agarose gel. Treatments with dexamethasone or hydrocortisone (i.e., 10(-6) M) inhibited the increase in gamma-glutamyl transpeptidase activity of the cultured cells but did not affect the other enzyme changes. Subcultures of the bile ductular epithelial cells were developed by passing the cells in the presence of 10% fetal calf serum on surfaces coated with either type I collagen or Matrigel. In either case, cells subjected to at least 4-6 passages (up to 100 days of culture) were still characterized by a high gamma-glutamyl transpeptidase activity. Preliminary results obtained with cells plated at very low density within Matrigel also indicated the development of cell growths that appeared to be organized in the form of distinct acinar-like structures.

Animals↗

Monolayer cell culture of freshly isolated adipocytes using extracellular basement membrane components.

Cell biological techniques requiring cells attached to surfaces, such as monolayer cell culture, microspectrofluorometry, and confocal microscopy, have not been readily available for use on adipocytes because they float and tend to lyse when attached to charged non-biological surfaces. A new method for attaching freshly isolated rodent adipocytes to thermanox plastic surfaces using Matrigel (a defined mixture of extracellular matrix components that resembles the basal lamina surrounding adipocytes in vivo) is described. The method takes advantage of an unusual physical characteristic of Matrigel, i.e., that it is a liquid at cold temperatures and a hydrated gel at higher temperatures. To attach the isolated cells, chilled thermanox plastic coverslips were coated with a thin uniform layer of ice-cold Matrigel and inverted into warm floating adipocytes. Adipocytes floated up against the liquid Matrigel and became immediately attached when the Matrigel changed to a gel in response to the warmth of the cells and media. Cell volume measurements of the attached versus freshly isolated cells indicate no significant difference in the centroid cell volume of the attached cells. This indicates that the method does not select for small or large cells. Adipocytes maintained for 6 days in culture did not display any change in their size or differentiated microscopic appearance. The relative concentrations of major proteins in silver-stained SDS-PAGE gels and several differentiation state-dependent proteins, including ATP-citrate lyase, carbonic anhydrase III (CA III), adipocyte lipid binding protein (ALBP), and pyruvate carboxylase, were examined. No significant change was observed in the relative concentrations of these proteins when the matrigel-cultured adipocytes were compared to freshly isolated cells.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipocytes↗

Stimulation and inhibition of human mammary epithelial cell duct morphogenesis in vitro.

We previously determined that normal human mammary epithelial cells (HMECs) placed on the basement membrane-like substance Matrigel form structures, whereas malignant breast cells do not (1). In the present study, we determined that the structures formed by normal cells on Matrigel resembled breast ducts in vivo by electron microscopy, and the process of their formation recapitulated what is known of duct formation in vivo. We therefore used this model to study less well-understood aspects of breast morphogenesis. Two priming signals appeared necessary for initiation of morphogenesis: one provided by the Matrigel and one by the cells in an autocrine fashion. Evidence for this included diminished duct formation by cells plated low-concentration Matrigel or at low cell densities, and the reversal of the latter by conditioned medium from high-density cells on Matrigel. Antibodies to bFGF inhibited morphogenesis, suggesting a stimulatory autocrine role for this factor, and antibodies to TGF-beta 1 stimulated duct formation, suggesting an inhibitory autocrine role. Added TGF-beta 1 abolished morphogenesis and stimulated normal cells to wander through Matrigel as do malignant cells. Conditioned medium from normal cells did not stimulate malignant cells to form ducts, but conditioned medium from tumor cells diminished normal morphogenesis, suggesting that malignant cells secrete an inhibitor of morphogenesis.

Biocompatible Materials↗

A quantitative assay using basement membrane extracts to study tumor angiogenesis in vivo.

We describe a quantitative assay for assessing tumor angiogenesis in vivo using basement membrane extracts (Matrigel). Nude mice were injected s.c. with liquid Matrigel mixed with HT1080 human fibrosarcoma cells. Since Matrigel rapidly forms a solid gel at body temperature, the gel containing tumor cells can be removed immediately and then processed for histological studies. Tumor angiogenesis was monitored quantitatively by measuring both the number and the total area of neovessels present in the gels using an image analyzer, which could be achieved approximately 72 hr later. Furthermore, HT1080 cell-conditioned medium, which may contain various tumor-derived factors, promoted the basement membrane degradation, migration, proliferation and tube formation of endothelial cells in vitro, as did Matrigel, although to a lesser extent. In addition, Northern blot analysis demonstrated that the amount of vascular endothelial growth factor (VEGF) mRNA in HT1080 cells was much higher than that in human fibroblasts or NIH3T3 cells. Our results suggest that angiogenesis observed in our assay may be due to the synergic effects of tumor angiogenic factors such as VEGF, and Matrigel. The advantages of our assay are: 1) it is possible to assess early angiogenesis quantitatively; and 2) this assay may be applicable for screening anti-angiogenic therapeutic agents to be used against human neoplasms.

3T3 Cells↗

Mechanochemical manipulation of hepatocyte aggregation can selectively induce or repress liver-specific function.

Controlled activation of hepatocyte aggregation is critical to three-dimensional (3D) multicellular morphogenesis during native regeneration of liver as well as tissue reconstruction therapies. In this work, we quantify the stimulatory effects of two model hepatotrophic activators, epidermal growth factor (EGF) and hepatocyte growth factor (HGF), on the aggregation kinetics and liver-specific function of hepatocytes cultured on organotypic substrates with differing mechanical resistivity. Substrate-specific morphogenesis of cultured hepatocytes is induced on a tissue basement membrane extract, Matrigel, formulated at two distinct levels of mechanical compliance (storage modulus G', at oscillatory shear rate 1 rad/s, was 34 Pa for basal Matrigel and 118 Pa for crosslinked Matrigel). Overall, we report that growth factor stimulation selectively promotes the kinetics of aggregation in the form of two-dimensional corded aggregates on basal Matrigel and three-dimensional spheroidal aggregates on crosslinked Matrigel. Our analysis also indicates that costimulation with EGF and HGF (20 ng/mL each) cooperatively maximizes the kinetics of aggregation in a substrate-specific manner. In addition, we show that the role of growth factor stimulation on hepatocyte function is sensitively governed by the mechanical compliance of the substrate. In particular, on matrices with high compliance, costimulatory aggregation is shown to elicit a marked increase in albumin secretion rate, whereas on matrices with low compliance aggregation results in effective functional repression to basal, unstimulated levels. Thus, our studies highlight a novel interplay of physicochemical parameters of the culture microenvironment, leading to selective enhancement or repression of differentiated functions of hepatocytes, in concert with the activation of cellular morphogenesis.

Animals↗

Stimulation of human prostatic carcinoma tumor growth in athymic mice and control of migration in culture by extracellular matrix.

The tumorigenicity, migration, growth and invasiveness of certain tumor cells is stimulated by basement membranes. Here we have examined the effect of Matrigel, an extract of basement membrane proteins, on the behavior of several prostate cancer cell lines, testing their growth and invasiveness in vitro and in vivo. Cells of the Tsu-prI line were more invasive than PC-3, Du-145, or LNCaP cells. Peptide inhibitors implicated laminin in the migration and invasion of these cells. When these cells were suspended in Matrigel and injected into nude mice, their growth was greatly enhanced, since large tumors formed in athymic nude mice whereas virtually no tumors were observed in the absence of Matrigel. The growth of a slowly growing line, LNCaP, was increased by exogenous basic fibroblast growth factor when injected with Matrigel. A laminin cell adhesion peptide, YIGSR, was a potent inhibitor of Matrigel-stimulated tumor growth implicating cell-laminin interactions in this process. These results suggest that tumor growth of prostate adenocarcinoma cells may be dependent both on cellular growth factors and on cell-matrix interactions mediated by laminin which facilitate the development of transplanted tumors in nude mice.

Animals↗

Synergistic improvements in cell and axonal migration across sciatic nerve lesion gaps using bioresorbable filaments and heregulin-beta1.

The success of entubulation for peripheral nerve regeneration is still limited, especially with long lesion gaps. In this study, we examined if regeneration could be enhanced by constructing implants to both align axonal growth and promote Schwann cell proliferation and migration. Silicone implants were used to bridge a 1.4-cm gap in the rat sciatic nerve. Adult female Sprague-Dawley rats were divided into four groups of tubes containing either 1) Matrigel; 2) Matrigel and heregulin; 3) Matrigel and poly(L-lactic acid) (PLLA) microfilaments; or 4) Matrigel, PLLA microfilaments, and heregulin. Ten weeks postimplantation, the number of axons and Schwann cells were measured at the distal end of implants. Implants with microfilaments displayed better tissue cable formation, increased Schwann cell migration, and regeneration of anti-calcitonin gene-related peptide-positive axons, but not RMDO95-positive axons compared with nonfilament-containing groups. Heregulin treatment caused an increase in Schwann cell number, but it demonstrated no significant improvement in either tissue cable formation or axon number. Extensive regeneration was observed through implants containing Matrigel, microfilaments, and heregulin, which induced significant improvements in the number and longitudinal organization of both Schwann cells and axons. These results indicate that physical guidance of microfilaments and the Schwann cell growth factor, heregulin, act synergistically to improve nerve regeneration across long lesion gaps.

Animals↗

In vitro kinetics of basic fibroblast growth factor diffusion across a reconstituted corneal endothelium.

We have studied the ability of bFGF to traverse and be trapped within basement membranes. An extract of EHS tumor (matrigel) coated on culture chamber filters was used as an in vitro model of basement membranes. Our results showed a slow diffusion of bFGF dependent on the amount of low affinity binding sites present within the matrigel. High amounts of bFGF and heparin increased the initial rate of diffusion by displacement of bFGF bound to matrigel. An in vitro corneal endothelium model (endothelial cells overlying matrigel) was also developed. This monolayer, with a weak permeability, decreased the kinetic rate of bFGF diffusion compared with matrigel alone. These results indicate that modulation of bFGF distribution in a tissue by a basement membrane is dependent on bFGF concentration, basement membrane composition, permeability of associated cells, and local presence of heparin. This selective control may be a regulating step in bFGF action.

Animals↗

In vitro model of angiogenesis using a human endothelium-derived permanent cell line: contributions of induced gene expression, G-proteins, and integrins.

The EA hy926 cell line is a continuous, clonable, human cell line that displays a number of features characteristic of vascular endothelial cells (Edgell et al., 1983). Here we report that when EA hy926 cells (EA cells) are plated on an extracellular matrix material [Matrigel], they undergo a process of morphological re-organization leading to the formation of a complex network of cord or tubelike structures. These events seem to resemble, in some respects, an in vitro process of angiogenesis. The morphological re-arrangement occurs within a 12-16 hr period and seems to require expression of new messenger RNA and protein, since it is completely blocked when actinomycin D or cycloheximide are present at the time the cells are plated on Matrigel. This is not due to overt toxicity of the drugs, since exposure of cells to actinomycin D at 2 hr or more after plating on Matrigel has little effect on the formation of the tubelike structures. The process of Matrigel-induced tube formation also apparently involves a G-protein mediated signal. Treatment of the EA cells with pertussis toxin completely blocks the process and causes the ADP-ribosylation of a 42 kD protein that is recognized by an antibody to Gi-alpha subunits. In contrast, concentrations of pertussis toxin sufficient to block tube formation have only modest effects on the adhesion or motility of EA cells on purified matrix components such as laminin or collagen IV. The process of Matrigel-induced tube formation also involves integrins since monoclonal antibodies to integrin alpha 6 or beta 1 subunits can completely block the process. The concentrations of anti-integrin antibodies needed to block tube formation are much lower than those required to block cell adhesion on purified matrix components and are sufficient to occupy less than 10% of the alpha 6 or beta 1 subunits available at the cell surface. These results suggest that integrins may be involved in this potential model of angiogenesis in processes beyond their usual role in cell adhesion. Based on these results, it seems likely that the EA hy 926 cell line will prove to be a useful model for in vitro study of angiogenic processes.

Antibodies↗

Cell substratum modulates responses of preosteoblasts to retinoic acid.

The aim of this study was to determine the role of ECM components of bone in regulating the differentiation and function of cells of the osteoblast lineage. Rat UMR 201 cells, phenotypically preosteoblast, were plated onto plastic tissue culture dishes or dishes coated with gelled type I collagen or reconstituted basement membrane (matrigel). Acute cell attachment assays showed that cells adhered to substrates in the following order: collagen > matrigel >> plastic. Proliferation rate up to 96 hr were similar on each substrate. However, if cells were treated with 10(-6) M retinoic acid (RA), proliferation rates were reduced compared with control for cells grown on collagen and matrigel but not on plastic. Morphological changes were matrix-specific; in subconfluent cultures, long thin processes were seen with cells grown on collagen and a pattern of interconnecting cell processes formed when cells were plated on matrigel. Striking differences were observed in the constitutive or RA-induced gene expression of cells grown on the different substrates. When cells plated on collagen were treated with RA, induction of mRNA for alkaline phosphatase (ALP) as well as ALP enzyme activity were much less than with cells grown on plastic. In contrast, RA treatment induced osteopontin (OP) mRNA expression more strongly in cells plated on collagen compared with plastic within 24 hr and this was maintained for 72 hr. RA treatment produced a two fold increase of pro-alpha 1(I) collagen mRNA in cells grown on plastic and matrigel but not in cells grown on collagen. Growth on collagen produced changes in the way UMR 201 cells responded to RA from which they did not fully recover in subsequent 48-hr growth periods on plastic. These results indicate that ECM components regulate the function of and are capable of modulating RA-induced differentiation of preosteoblasts.

Alkaline Phosphatase↗