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Retinoic acid potentiates interleukin-1- and fibroblast growth factor-induced human synovial fibroblast proliferation.

All trans-retinoic acid (ATRA) and related compounds, at concentrations ranging from 10(-8) to 10(-6) M, augmented the proliferation of human synovial fibroblasts (HSN) stimulated by human interleukin-1 alpha or -beta (IL-1 alpha, IL-beta) and both the acidic and basic forms of fibroblast growth factor (FGFa, FGFb). In contrast, ATRA had no effect on human tumor necrosis factor alpha (TNF alpha)-induced HSN proliferation. The potentiation of HSN proliferation was completely dependent on the presence of IL-1 or FGF since HSN were unresponsive to ATRA alone. The mechanism by which ATRA enhances IL-1-induced HSN proliferation does not appear mediated by changes in the affinity or number of IL-1 receptors expressed by HSN; however, treatment with dexamethasone (DEX, 10(-6)M) resulted in a twofold increase in IL-1 receptor number. ATRA inhibited both IL-1 beta- and TNF alpha-induced secretion of prostaglandin-E2 (PGE2), a potent feedback inhibitor of cytokine-stimulated HSN proliferation. However, the synergistic effect of ATRA on IL-1- or FGF-induced proliferation did not appear related to the secretion of cyclooxygenase products since ATRA had no effect on TNF alpha-induced HSN proliferation and indomethacin was included in all HSN proliferation experiments. The results of this study suggest that ATRA may contribute to the pathology of chronic arthritic disease by potentially causing increased growth of the joint-destroying pannus.

Cell Division↗

Basic fibroblast growth factor-Pseudomonas exotoxin chimeric proteins; comparison with acidic fibroblast growth factor-Pseudomonas exotoxin.

We have constructed growth factor-toxin chimeric molecules composed of basic fibroblast growth factor (bFGF) and two different binding mutant forms of Pseudomonas exotoxin termed bFGF-PE40 and bFGF-PE4E KDEL. The chimeric molecules were expressed in Escherichia coli and localized to both inclusion bodies and the spheroplast cytoplasm. The bFGF-toxin fusion protein that was isolated and purified from inclusion bodies was 3-fold more active in inhibiting protein synthesis than that purified from spheroplast cytoplasm. Immunoreactivity of purified bFGF-toxin fusion protein to anti-bFGF antibodies was similar to that of native bFGF, as determined by ELISA analysis. A variety of carcinoma cell lines were sensitive to bFGF-PE40 and bFGF-PE4E KDEL, including H3396 (breast), Hep G2 (hepatocellular), and A431 (epidermoid). The concentration of chimeric toxin that inhibited protein synthesis by 50% (EC50) was 110, 70, and 18 ng/mL for bFGF-PE40 and 15, 1, and 18 ng/mL for bFGF-PE4E KDEL. In comparison with fusion-toxins composed of acidic fibroblast growth factor (aFGF) and either PE40 or PE4EKDEL, bFGF-PE40 and bFGF-PE4E KDEL were similarly cytotoxic on most cell lines tested. Human aortic smooth muscle cells were sensitive to both bFGF and aFGF toxin fusion proteins. However, human aortic endothelial cells were sensitive to the bFGF-toxins but were resistant to both aFGF-toxin forms. Time course studies showed that bFGF-PE40 needed a 4-6-h exposure to target cells for peak inhibition of protein synthesis on both MCF-7 and A431 cells, while aFGF-PE40 was almost fully active within a 2-h incubation.(ABSTRACT TRUNCATED AT 250 WORDS)

ADP Ribose Transferases↗

Antisense targeting of basic fibroblast growth factor and fibroblast growth factor receptor-1 in human melanomas blocks intratumoral angiogenesis and tumor growth.

Unlike normal melanocytes, primary and metastatic human melanomas express high levels of basic fibroblast growth factor (bFGF) and fibroblast growth factor receptor-1 (FGFR-1) messenger RNA, and expression of these genes is essential in sustaining the proliferation of malignant melanomas in vitro. To determine whether bFGF and FGFR-1 are also required for tumor formation in these cells, liposome-mediated gene transfer was used to deliver episomal vectors containing antisense-oriented bFGF or FGFR-1 cDNAs into human melanomas, grown as subcutaneous tumors in nude mice. The growth of tumors injected with these constructs was completely arrested or the tumors regressed as a result of blocked intratumoral angiogenesis and subsequent necrosis. Thus, inhibition of bFGF/FGFR-1-mediated signaling may open a new avenue for the treatment of advanced-stage melanomas.

Animals↗

The expression of fibroblast growth factor-2 and fibroblast growth factor receptor-1 in chondrocytes in synovial chondromatosis of the temporomandibular joint. report of two cases.

Synovial chondromatosis (SC) is a rare, benign condition characterized by the formation of metaplastic cartilaginous nodules. The expression of fibroblast growth factor-2 (FGF-2) and fibroblast growth factor receptor-1 (FGFR-1) in two cases of SC of the temporomandibular joint (TMJ) were immunohistochemically studied. The possible roles of FGF-2 and FGFR-1 in SC of the TMJ are discussed.

Cartilage↗

Monosomy 6 in human cultured fibroblast-like cells permanently stimulated by fibroblast growth factor 1: evidence for selection.

The appearance of cells with monosomy 6 (mono6 cells) in cultures of human fibroblast-like cells during long-term stimulation with acidic fibroblast growth factor (FGF1) was confirmed in five of the six lines newly investigated. Aneugenic pretreatment at the start of the cultures accelerated the emergence of mono6 cells, as would be expected if selection, rather than induction, is the main mechanism involved. This could be confirmed by using an incidental rearrangement, der(8)t(6p;8p), that emerged in one of the lines by monitoring the proliferation of the mono6 cells (here monosomic for 6p22.1-->qter) in mixtures with normal cells. During growth in the presence of FGF1, the proportion of mono6 cells increased six fold, whereas in the absence of FGF1, it declined to background levels. Selection rather than induction of the mono6 cells is further supported by their clonal origin, as ascertained on the basis of X-inactivation patterns in three informative cases. In addition, colonies grown in the presence of FGF1 from single cells did not reveal higher proportions of mono6 cells by fluorescence in situ hybridization analysis than those grown without the growth factor. During permanent stimulation with FGF1, the growth of mono6 cells did not become dependent on FGF1, nor did these cells lose their responsiveness to FGF1. Although evidence in favor of selection of preexistent mono6 cells by FGF1 is provided in this study, the contribution of a primary inducing mechanism cannot be entirely excluded.

Adult↗

The 16-kDa proteolytic fragment of insulin-like growth factor (IGF) binding protein-3 inhibits the mitogenic action of fibroblast growth factor on mouse fibroblasts with a targeted disruption of the type 1 IGF receptor gene.

We previously reported that a 16-kDa proteolytic fragment of IGF Binding Protein-3 (IGFBP-3), which is devoid of affinity for IGFs, inhibits the mitogenic effects of IGF-I on chick embryo fibroblasts. Here, we set out to determine if the fragment had biological effects on fibroblasts from mouse embryos homozygous for a targeted disruption of the Type 1 IGF receptor gene. In the cell clone used, bFGF (but not IGF, EGF or PDGF) was mitogenic in serum-free medium, increasing 14C-thymidine uptake by a factor of 10-15 within 24 hours and doubling cell proliferation. The 16-kDa fragment, isolated by HPLC following limited proteolysis of recombinant human (rh) IGFBP-3 by plasmin, in both assays dose-dependently (20 to 100 ng/ml) inhibited (up to 100%) maximal stimulation induced by 25 ng/ml bFGF, whereas intact IGFBP-3 had virtually no effect. Similar results were obtained with control wild-type cells. In the latter, the mitogenic activity of 1% fetal calf serum (equal to that of 25 ng/ml bFGF) was inhibited by only 25-30% by 100 ng/ml 16-kDa fragment or 200 ng/ml rhIGFBP-3. This agrees with an antagonistic action, affecting the mitogenic activity of serum that is attributable to IGFs. The 16-kDa IGFBP-3 fragment therefore appears to be a potent inhibitor of mitogenic signals resulting from activation of both the type 1 IGF and FGF receptors.

Animals↗

Molecular characterization of recombinant human acidic fibroblast growth factor produced in E. coli: comparative studies with human basic fibroblast growth factor.

Synthetic cDNA coding for human acidic fibroblast growth factor (haFGF) was expressed in E. coli under the control of the T7 promoter. The haFGF produced was purified extensively using heparin-Sepharose and phenyl-Sepharose columns. The mitogenic activity of haFGF on 3T3 and endothelial cells was significantly potentiated in the presence of heparin (10-50 micrograms/ml), while angiogenic activity was observed on chick embryo chorioallantoic membrane without exogenously added heparin. This significant potentiation of mitogenic activity was observed specifically with haFGF, not human basic fibroblast growth factor (hbFGF). Circular dichroism spectra of haFGF was not affected by the presence of heparin. The affinity of haFGF for heparin was examined using heparin affinity HPLC and was precisely confirmed to be relatively lower than that of hbFGF. These results implied that haFGF was potentiated by heparin and that this potentiation did not involve a significant change in the conformation of the haFGF molecule. The affinity of haFGF for copper was also confirmed to be higher than that of hbFGF using a copper affinity HPLC column. In addition, under acidic conditions, haFGF appeared more stable than hbFGF and was further stabilized in the presence of heparin.

Cell Division↗

Fibroblast growth factor 2 promotes pancreatic epithelial cell proliferation via functional fibroblast growth factor receptors during embryonic life.

Several investigators have postulated that soluble growth factors are involved in the early development of the pancreas. In many tissues in which soluble factors are implicated in development, these factors act on their target cells through tyrosine kinase receptors. Because we had some preliminary evidence that fibroblast growth factor receptors (FGFRs) were expressed in the early pancreas, we investigated the effect of fibroblast growth factors (FGFs) during embryonic pancreatic development. For that purpose, we first studied the distribution and the functionality of FGFRs during pancreatic organogenesis. FGFR1 and FGFR4 were shown to be expressed at a high level during early pancreatic development before embryonic day 16, their levels of expression decreasing thereafter. The functionality of FGFR was studied next. It was demonstrated in vitro that both FGF1 and FGF2 induce the expression of NGFI-A mRNA, a useful indicator of functional growth factor-signaling pathways. Finally, the effect of FGF2 on embryonic pancreatic epithelial cell proliferation was studied. It was shown that FGF2 induces the proliferation of pancreatic epithelial cells during embryonic life. Taken together, these data strongly suggest that FGFs are implicated in pancreatic development during embryonic life.

Animals↗

Ability of Ovarian Steroids to Regulate the Expression of the Fibroblast Growth Factor Family in Fibroblasts Derived from Uterine Endometrium.

Uterine endometrial neovascularization during the menstrual cycle is regulated by a basic fibroblast growth factor (FGF) in the endometrium, consisting of endothelial and stromal cells. Acidic FGF (FGF-1), basic FGF (FGF-2) and hst-1 (FGF-4) proteins also possess angiogenic potency in vivo. Therefore, it is important to improve our understanding of the role of stromal cells in FGF supply for endometrial neovascularization. In this study, we determined FGF-1, -2, and -4 mRNA and FGF-2 by reverse transcription-polymerase chain reaction-Southern blot analysis, and enzyme-linked immunosorbent assay, respectively, in fibroblasts derived from uterine endometria as a substitute for stromal cells. Experimental results indicate that estradiol significanlty increases the levels of intracellular and secreted FGF-2 and its mRNA expression in the FGF family in the fibroblasts. Moreover, progesterone reduces the estradiol-induced increase. Therefore, endometrial neovascularization might be partially regulated by stroma-derived FGF-2 under the influence of sex steroids through a paracrine cell-to-cell interaction. Copyright 1996 S. Karger AG, Basel

Journal Article↗

Integrin alpha(v)beta(3) is involved in stimulated migration of vascular adventitial fibroblasts by basic fibroblast growth factor but not platelet-derived growth factor.

We examined the effects of basic fibroblast growth factor (bFGF) and platelet-derived growth factor (PDGF) on the migration of vascular adventitial fibroblasts (VAFs) isolated from rat aortic adventitiae. Both bFGF and PDGF significantly stimulated VAF migration in vitro. An antibody to rat beta(3) integrin reduced bFGF-stimulated migration in a dose dependent manner. Moreover, VAF migration was inhibited in the presence of cyclic RGD (cRGD) peptide. However, PDGF-directed migration was blocked only by equivalent cRGD peptide but not by antibody to beta(3) integrin. These data suggest that alpha(v)beta(3) integrin mediates VAF migration stimulated by bFGF and that chemoattractant directed migration may be through distinct integrins.

Animals↗

Expression of basic fibroblast growth factor and fibroblast growth factor receptor in advanced gastric carcinoma.

The expression of basic fibroblast growth factor (bFGF) and fibroblast growth factor receptor (FGFR) mRNA was examined in gastric carcinomas by immunohistochemistry and in situ hybridization, respectively. In the 20 advanced carcinomas examined, bFGF was found in 14 (70.0 per cent) and was confined to the tumour cells, whereas FGFR mRNA was demonstrated in 12 (60.0 per cent) and seen in both tumour cells and endothelial cells. The bFGF and FGFR mRNA-positive carcinomas were larger, were more frequently classified as undifferentiated adenocarcinoma, more frequently invaded the serosal layer, and had a higher rate of lymph node metastases than the bFGF and FGFR mRNA-negative carcinomas. Patients with bFGF and FGFR mRNA-positive carcinomas appear to die earlier than those with bFGF and FGFR mRNA-negative tumours. The values for the carcinomas that were positive for either bFGF or FGFR mRNA fell between these two groups. The findings suggest that the autocrine/paracrine bFGF/FGFR channel is associated with undifferentiated gastric carcinomas and may lead to a poorer prognosis.

Adenocarcinoma↗

Cultured human prostate-derived fibroblasts produce a factor that stimulates their growth with properties indistinguishable from basic fibroblast growth factor.

Fibrostromal proliferation is believed to be important in the development of benign prostatic hyperplasia (BPH). We found that a mitogen for cultured mesodermal-derived cells was present in extracts of BPH tissue. The mitogen was identified as basic fibroblast growth factor (bFGF). Previous studies did not determine the cell population(s) responsible for bFGF production in the prostate. This information is important to the understanding of the role of bFGF in the etiology of BPH. Human prostate-derived fibroblasts (PF) were initiated in culture. Recombinant bFGF and PF lysates stimulated tritiated thymidine uptake by quiescent PF cells. Greater than 90% of the mitogen in PF lysates bound to heparin-Sepharose and had the same elution profile and apparent molecular weight as bFGF isolated from BPH tissue. The growth factor in PF lysates competed with recombinant iodinated bFGF for binding to antiserum to (1-24)bFGF. Cultured PF incorporated 35S-methionine into protein that was precipitated by antiserum to bFGF. The apparent molecular weight of the radiolabeled protein, about 17,000, was similar to authentic bFGF. The observations are consistent with the interpretation that cultured PF synthesize a growth factor that stimulates their growth with properties that are indistinguishable from bFGF.

Cell Survival↗

Influence of transforming growth factor beta 1 and other growth factors on basic fibroblast growth factor level and proliferation of cultured human prostate-derived fibroblasts.

Basic fibroblast growth factor (bFGF) has been identified in the human prostate. The level of bFGF has been reported to be elevated in benign prostatic hyperplasia (BPH), compared with normal prostate, suggesting that the growth factor may play a role in this disease of the prostate. Basic FGF is a mitogen for cultured human prostate-derived fibroblasts (PF). PF also synthesize bFGF, suggesting that growth regulation of these cells may be under autocrine control. The current study was undertaken to identify factors that affect PF proliferation and bFGF expression. Transforming growth factor beta 1 (TGF-beta 1) inhibited PF proliferation. The inhibition by TGF-beta 1 was partially overcome by bFGF but not by epidermal growth factor (EGF), platelet-derived growth factor (PDGF), insulin-like growth factor type 1 (IGF-1), or insulin. Incubation of PF with TGF-beta 1 increased bFGF mRNA and immunoreactive bFGF levels in a dose- and time-dependent fashion. None of the other growth factor studies affected bFGF levels. PF were also found to express TGF-beta 1 mRNA, the level of which was increased two- to fivefold by TGF-beta 1. These observations suggest that PF proliferation is controlled by the interaction of two different growth factors. It is possible that bFGF/TGF-beta imbalance in favor of cell proliferation promotes prostatic stromal hyperplasia.

Blood Proteins↗

Inhibitors of calcineurin block expression of cyclins A and E induced by fibroblast growth factor in Swiss 3T3 fibroblasts.

In Swiss 3T3 fibroblasts, growth factor-stimulated progression from G1 to S phase involves activation of the Ca2+/calmodulin-dependent serine/threonine-specific protein phosphatase 2B (calcineurin). Here we report that both cobalt and the calcium chelator EGTA, inhibitors of calcium uptake, as well as cyclosporin A and FK-506, specific inhibitors of calcineurin function, abolished fibroblast growth factor (FGF)-induced expression of cyclins A and E, but not cyclin D1. At 0.1 microM concentration cyclosporin A completely blocked FGF-induced expression of cyclins E and A and it inhibited FGF-stimulated DNA synthesis by 40%; full inhibition of DNA synthesis required 10 microM cyclosporin A. PD 98059, an inhibitor of mitogen-activated protein (MAP) kinase kinase, and hemicholinium-3, an inhibitor of FGF-induced MAP kinase activity, did not inhibit the stimulatory effect of FGF on the expression of cyclin E. On the other hand, the inhibitory effect of 0.1 microM cyclosporin A on FGF-stimulated DNA synthesis was additive with that of hemicholinium-3, suggesting that the two inhibitors acted by different mechanisms. The inhibitors of calcineurin and calcium uptake also completely blocked the stimulatory effects of lysophosphatidic acid on the expression of cyclins E and A, but not cyclin D1. The results suggest that FGF- or lysophosphatidic acid-induced transcription of cyclin A and cyclin E genes is mediated by calcineurin involving a MAP kinase-independent mechanism and that increased expression of cyclins A and E is required for the maximal stimulatory effects of these mitogens on DNA synthesis.

3T3 Cells↗

Interleukin secretion, proteoglycan and procollagen alpha(1)(I) gene expression in Crouzon fibroblasts treated with basic fibroblast growth factor.

The present study provides the first evidence that fibroblasts obtained from patients affected by Crouzon syndrome, a rare craniosynostosis, despite mutations in the high-affinity bFGF receptor retain their capacity to respond to bFGF. The growth factor reduces IL-1 secretion, downregulates biglycan and procollagen alpha(1)(I), and increases betaglycan expression. Since betaglycan is a co-receptor for bFGF signalling, an alternative signal transduction pathway is suggested in Crouzon fibroblasts, to explain the documented changes in ECM macromolecule production.

Adolescent↗

Effects of epidermal growth factor, fibroblast growth factor, minoxidil and hydrocortisone on growth kinetics in human hair bulb papilla cells and root sheath fibroblasts cultured in vitro.

Comparative studies on growth kinetics of cultivated human hair bulb papilla cells (PCs) and hair root sheath fibroblasts (RSFs) yielded evidence of some peculiarities of PCs in both proliferative behavior and morphological growth pattern. As the dermal papilla, essentially supporting the nutrition of matrix epithelium, can be considered a target tissue for agents influencing maintenance of hair growth, we studied the effects of epidermal growth factor (EGF), fibroblast growth factor (FGF), minoxidil (Mino), and hydrocortisone (HC) on the proliferation of PCs and RSFs, both gained from dissected hair follicles of scalp biopsy specimens of two male adults and separately cultured in vitro. EGF and FGF proved to increase proliferation of both PCs and RSFs most, yet at a different intensity for each cell group. HC slowed proliferation, and Mino failed to influence growth of PCs and RSFs.

Adult↗

Basic fibroblast growth factor and fibroblast growth factor receptor-i in human meningiomas.

The expression of basic fibroblast growth factor (bFGF) and fibroblast growth factor receptor-1 (FGFR-1) in human meningiomas and the relationships between their expression and the tumors' histological features and angiogenesis were investigated by means of immunohistochemical technique. The expression of bFGF and FGFR-1 was detected by antibody of bFGF or FGFR-1. The tumors' angiogenesis was evaluated by microvascular density (MVD) and, which was observed by use of CD34-antibody immunohistochemically. The results showed that there were varied degrees of the expression of bFGF and FGFR-1 proteins in meningiomas. The expression was correlated with the tumors' histological characters and angiogenesis. It was concluded that bFGF and FGFR-1 might play important roles in meningiomas' angiogenesis and proliferation. The expression positive rate of bFGF and FGFR-1 may provide an indication of evaluating the histological and malignant degree of the tumor.

Adolescent↗

Correlation between DNA synthesis and glucosamine incorporation in human diploid fibroblasts stimulated by fibroblast growth factor and fetal calf serum.

A 20 and 80% decrease of 3H-glucosamine incorporation was observed in resting human fibroblasts stimulated with fibroblast growth factor (FGF) and fetal calf serum (FCS), respectively. The decrease occurred as early as 15 min after stimulation. Inversely, DNA synthesis was increased 1 and 5 fold and cell number was increased 2 and 2.5 fold 72h later. 3H-glucosamine was incorporated in cell membrane glycopeptides (GP). Extracted from control or from cells exposed to FGF or FCS, GP have the same molecular weight and identical chemical constitution. The decrease of 3H-glucosamine incorporation caused by FGF and FCS appears to be related to the competitive binding between glucosamine-FGF and glucosamine-FCS components to GP, which probably constitute cell membrane receptors. A decline of 3H-glucosamine incorporation caused by FCS seems to result from the binding to cell-surface receptors (i.e., GP) of a large number of FCS components. The results suggest a correlation between cell growth rate and the density of growth-promoting molecules received by cells, since a large decrease of 3H-glucosamine incorporation corresponds to a high increase of DNA synthesis in cells exposed to FCS, which is a mixture of components with multiple effects.

Blood Physiological Phenomena↗