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Biomedical subjects

D Barritault

Publications and source records attributed to D Barritault.

At least 127 records · Page 7Linked to original sources

Biochemical comparative studies between eye- and brain-derived growth factors.

Two bovine brain-derived growth factors, BDGF I and BDGF II, were isolated using the same extraction procedure as previously described for eye-derived growth factors (EDGF). The hypothesis that these growth factors were identical to EDGF I and EDGF II, respectively, was supported by their similar molecular weights (16,000 and 15,000, respectively) and isoelectric points (9.0 and 5.0, respectively), their identical retention behavior on reverse-phase chromatography and their similar amino acid compositions. From studies on their binding properties to cell surfaces, competition between EDGF I and BDGF I as well as competition between EDGF II and BDGF II to the same receptor was observed. The amino terminal sequence of EDGF II (1-16) was shown to be identical to the amino acid residues (7-22) of the acidic FGF, strongly confirming our observations on the identity of the factors isolated from bovine brain and retina.

Amino Acid Sequence↗

Platelet derived growth factor is present in human placenta: purification from an industrially processed fraction.

Platelet derived growth factor was purified from an industrially processed fraction of human placenta (EAP) donated by the Institut Merieux. We first demonstrated that EAP contains PDGF and the quantity of this growth factor was estimated by inhibition of its biological activity using antibodies against PDGF. According to this first estimation, 1 l of EAP (obtained from 125 kg of placenta) contains 10-1000 micrograms of PDGF. A purification procedure including fast flow chromatography (cationic S), heparin Sepharose affinity, chromatography on Cibacron Blue followed by a reverse phase on a C8 column gave a 6000-fold enrichment with a yield of 14%. This result suggests that the PDGF content in 1 l of EAP is between 10 and 30 micrograms. Mitogenic activity was measured on human fibroblast AG1523, Chinese hamster fibroblasts CCL39 and bovine epithelial cells BEC. Dose-response curves indicate that our preparation of purified PDGF from human placenta induces 50% of the maximal tritiated thymidine incorporation in CCL39 at a dose of 5 ng of PDGF/ml of culture medium.

Biological Assay↗

Induction and suppression of type I collagenase in cultured human cells.

A number of peptide growth factors have been shown to induce the secretion of type I collagenase into the medium of human fibroblast cultures (Chua et al., 1985). In this study the ability of eye-derived growth factor, lectin and tumor-promoting agents on collagenase induction in human fibroblast cells were examined. These agents were found to be able to induce collagenase production to a similar extent as epidermal growth factor. Dexamethasone at 10-100 nM was found to suppress collagenase induction in human fibroblast cells. The cell-type specificity of this enzyme induction by growth factors was studied by using a human epidermoid carcinoma cell line, A-431. An Mr 55,000 band appeared in the medium of A-431 cells upon 22 h exposure to EGF. Two-dimensional peptide pattern of the Mr 55,000 band in A-431 cells was identical to the counterpart in HF cells. Our results indicated that the induction of collagenase was not unique to human fibroblast cultures.

Carcinoma, Squamous Cell↗

The mitogenic signaling pathway of fibroblast growth factor is not mediated through polyphosphoinositide hydrolysis and protein kinase C activation in hamster fibroblasts.

Basic or acidic fibroblast growth factor (FGF), alone, was found to be as potent as alpha-thrombin to reinitiate DNA synthesis in G0-arrested Chinese hamster lung fibroblasts (CCL39). Basic FGF at 50 ng/ml or thrombin at 1 unit/ml rapidly initiated early events such as cytoplasmic alkalinization (0.2-0.3 pH units), rise in cytoplasmic Ca2+, phosphorylation of ribosomal protein S6 and increased c-myc expression, followed by a 30-40-fold increase in labeled nuclei. Whereas thrombin is a potent activator of phospholipase C as judged by the rapid release of inositol trisphosphate, inositol bisphosphate and by the massive accumulation of total inositol phosphate (IP) in the presence of 20 mM Li+, FGF failed to induce the breakdown of polyphosphoinositides in quiescent CCL39 cells. Indeed, no inositol trisphosphate nor inositol bisphosphate could be detected in response to FGF; in presence of Li+ the total IP release never exceeded 8% of the IP released by the action of thrombin. Two additional findings indicated that FGF and thrombin activate different signaling pathways. First, we found that, in contrast to thrombin, the FGF-induced rise in the cytoplasmic free Ca2+ concentration measured by quin-2 fluorescence, is strictly dependent upon the presence of Ca2+ in the external medium. Second, we found that FGF failed to activate protein kinase C as judged by the epidermal growth factor-receptor binding assay. Treatment of the cells with either thrombin or phorbol esters, rapidly inhibited 125I-labeled epidermal growth factor binding (50-60%). Basic or acidic FGF had no effect. We conclude that: the FGF-receptor signaling pathway is not coupled to phospholipase C activation, and early mitogenic events and reinitiation of DNA synthesis can be initiated independently of inositol lipid breakdown and protein kinase C activation.

Animals↗

Evidence for FGF-like growth factor in adult bovine retina: analogies with EDGF I.

Eye Derived Growth Factor (EDGF) is the genus name for growth factor activities found in several ocular tissues. Purification from bovine retina by Cibacron blue affinity chromatography has previously given a fraction which can induce target cell proliferation at doses of 30 ng per ml of culture medium. Radioimmunoassay using a labelled synthetic decapeptide [Tyr 10]--FGF (1-10) including the 9 N terminal amino acids of brain Fibroblast Growth Factor (FGF) indicated that EDGF contained a FGF-like material. Further purification of Cibacron blue purified EDGF with heparin sepharose chromatography yielded two active fractions after elution with a sodium chloride gradient. One fraction named EDGF I eluted between 1.3 and 1.5 M NaCl and accounted for over 50% of the input biological activity and comigrated with purified FGF on SDS PAGE at a molecular weight of 16,000 d as a single band. FGF competed with EDGF I for binding to specific receptors on bovine epithelial lens cells. We conclude that retina contains a growth factor activity (EDGF I) similar if not identical to FGF.

Animals↗

Evidence and characterization of the receptor to eye-derived growth factor I, the retinal form of basic fibroblast growth factor, on bovine epithelial lens cells.

Eye-derived growth factor I (EDGF-I), the retinal form of the basic fibroblast growth factor, has been purified to homogeneity from bovine retina by heparin-Sepharose chromatography. The radioiodinated EDGF-I retained full mitogenic activity and was used to study the interaction of the growth factor with bovine epithelial lens cells. We showed that 125I-labeled EDGF-I bound in a saturable and reversible manner to a specific cellular receptor. Scatchard analysis of the equilibrium binding gave a Kd of 53 X 10(-12) M with approximately equal to 20,000 binding sites per cell. Crosslinking experiments using two homobifunctional reagents induced the formation of a specific major complex with a Mr of approximately equal to 145,000, as determined by NaDodSO4/PAGE, and independent of reducing conditions. These data establish the existence of a receptor for the basic growth factor derived from neural tissues and give an estimation of the size of this receptor at Mr 130,000.

Animals↗

Eye-derived growth factor isolated from bovine retina and used for epidermal wound healing in vivo.

Eye-derived growth factor (EDGF) has been found in several ocular tissues and shown to be able to stimulate the in vitro proliferation of cells from various tissues and organisms. It had already been shown that EDGF differs biochemically and biologically from other growth factors such as epidermal growth factor (EGF) and fibroblast growth factor in that it is the only one that can stimulate the in vitro growth of human adult keratinocytes. Moreover EDGF stimulates reepithelialization and neovascularization. In this paper we report data concerning the effect on the rate of epidermal wound healing in guinea pigs of different extracts obtained from adult bovine retina. Our results show that EDGF can significantly increase the rate of reepithelialization when epidermis is detached from dermis and removed after induction of a blister. The doses used were comparable to the ones used to obtain maximal increase of cell proliferation in vitro. However no attempt was made to further investigate the mechanism accounting for the observed wound healing. At 24 h, control wounds maintained under occlusive dressing had only about 50% of their surface covered with cells as opposed to EDGF-treated wounds which were covered up to about 80% (p = 0.05). On the other hand, EGF does not increase the rate of wound healing in this model even at 1000-fold higher doses than those used in in vitro bioassays. Although EDGF is still not purified to homogeneity and another 10- to 100-fold purification might be necessary to achieve homogeneity, our results suggest that EDGF may find therapeutic applications as a potent in vivo epidermal wound healing agent.

Animals↗

S-antigen is coded by [poly A+] mRNA from bovine retina.

Total RNA, [poly (A)-] mRNA and [poly (A)+] mRNA purified from bovine retina were translated in vitro in a rabbit reticulocyte lysate system. Immunoprecipitation of translation products with antibodies to the retinal S-antigen (a photoreceptor specific protein involved in autoimmune retinal disease) revealed this protein as a 50,000 daltons band comigrating with purified S-antigen. This indicates that the S-antigen is synthesized in the retina and is not a maturation or degradation product of a larger protein. Its messenger RNA is the polyadenylated RNA, as for some other proteins expressed in nervous tissue.

Animals↗

Bovine retina contains three growth factor activities with different affinity to heparin: eye derived growth factor I, II, III.

Several ocular tissues have been shown to contain growth factor activity designated under a generic name as Eye Derived Growth Factor. Purification from bovine retina was undertaken and a fraction which could induce target cells to proliferate at doses of 5 ng per ml of culture medium was obtained. Using heparin sepharose chromatography we now show that this mitogenic activity can be fractionated into three different activities. Crude extract of bovine retina used as starting material was separated into two major fractions, one with no affinity for heparin and which was named Eye Derived Growth Factor III, and one with a strong affinity for heparin and eluted from the column with 1.4 M NaCl named Eye Derived Growth Factor I. This fraction EDGF I induces cell proliferation at doses of 100 pg/ml of culture medium. A 10(5) fold purification was achieved by this single chromatography step. Cibacron Blue purified EDGF was also further fractionated by heparin sepharose. All biological activity was found to bind to heparin. One fraction eluted at 1 M NaCl named Eye Derived Growth Factor II had a biological activity at doses of 1 ng while the other growth factor was the EDGF I with biological activity at 25 pg. At this step of purification EDGF I runs as a single band on SDS polyacrylamide gel at a molecular weight of 17 000 d. These data strongly suggest that Eye Derived Growth Factors I and II are respectively similar to Brain Fibroblast Growth Factor and to Endothelial Cell Growth Factor from hypothalamus.

Animals↗

A unique family of endothelial cell polypeptide mitogens: the antigenic and receptor cross-reactivity of bovine endothelial cell growth factor, brain-derived acidic fibroblast growth factor, and eye-derived growth factor-II.

Bovine brain, hypothalamus, pituitary, and retina contain potent anionic polypeptide mitogens for endothelial cells. Immunological assays using murine monoclonal antibodies against bovine endothelial cell growth factor (ECGF) and radioreceptor assays using [125I]ECGF were performed to determine the cross-reactivity of ECGF with bovine acidic pI brain-derived fibroblast growth factor (acidic FGF) and bovine eye-derived growth factor-II [EDGF-II). We observed that acidic FGF and EDGF-II are recognized by anti-ECGF monoclonal antibodies and compete with [125I] ECGF for receptor occupancy. Furthermore, the biological activity of ECGF, acidic FGF, and EDGF-II is potentiated by the glycosaminoglycan, heparin. These results argue that ECGF, acidic FGF, and EDGF-II belong to a common family of polypeptide growth factors.

Animals↗

[Use of the eye-derived growth factor in the treatment of ulcer of the cornea. A veterinary medicine study in the dog].

A growth factor purified from adult bovine retina and named Eye Derived Growth Factor (EDGF) has been shown to stimulate proliferation of target cells in vitro and in vivo, and to increase the rate of wound healing of experimentally induced corneal ulcers in rabbits. In the present report, dogs (mainly boxers) with chronic recurrent ulcers resistant to various treatments, including chloramphenicol and reputed wound healing drugs, were treated by morning and evening instillations of drops containing 10 stimulation units of EDGF in phosphate buffer saline. Stable healing of the ulcer was obtained in all cases after 12 days of treatment, and no sign of relapse was detected after three months. During the healing period, as well as during the period of increase in cellular proliferation, transitory inflammation accompanied by neovascularization was observed. EDGF represents a new drug for treatment of ulcer.

Animals↗

[In vitro properties of various growth factors and in vivo effects].

This article summarizes some of the data that have been accumulated on several growth factors. Biochemical and biological properties of the Epidermal, Fibroblast, Astrocytes and Tumor growth factors (EGF, FGF, AGF, TGF) and those of growth factors derived from Platelets (PDGF), Brain (BDGF, ECGF), Eye (EDGF) and Cartilage (CDGF) are reviewed, as well as the in vitro mechanism of action of EGF and PDGF. The in vivo effects of these growth factors, particularly the experiments achieved to understand the physiological or physiopathological significance are described. The potential interest of these molecules in pharmacology and their use as wound healing agents is discussed.

Animals↗

Comparison of the effects of EGF, pFGF and EDGF on corneal epithelium wound healing.

EDGF, a growth factor purified from bovine retina is able to increase the rate of wound healing of rabbit corneal epithelium in a dose dependent way. Two applications a day are enough to obtain the maximum rate. The most purified preparation of EDGF is as effective as EGF or pFGF in promoting this phenomenon and allows the epithelium to reach its normal organization earlier. Excess addition of EDGF did not adversely affect the normal or healed epithelium.

Administration, Topical↗

Human and bovine vascular endothelial cells. Comparative effect on cell growth and longevity of an eye-derived growth factor (EDGF) and of extracellular matrix.

Human and bovine vascular endothelial cells from the umbilical vein and the aorta, respectively, were cultured in the presence of EDGF (a growth factor prepared from bovine retina) on plastic or on extracellular matrix (ECM). Both EDGF and ECM are required to allow the maximal proliferation of human cells and their organization in a typical monolayer. Conversely, bovine aortic endothelial cells grow perfectly in the absence of both factors in 6% fetal calf serum. However, a requirement for EDGF can also be demonstrated in low serum conditions, or in cells at high passage number. ECM had no growth promoting activity by itself. Thrombin acts similarly to EDGF on bovine serum-starved cells. EDGF prolongs the in vitro lifespan of both types of cells. Cells at all stages still synthesize factor VIII antigen as revealed by immunofluorescence. Thus EDGF, like other growth factors from brain, FGF or ECGF, may have an important role in angiogenesis, a critical problem in pathological retinas.

Animals↗

Purification, characterization, and biological properties of the eye-derived growth factor from retina: analogies with brain-derived growth factor.

Several ocular tissues contain a polypeptide growth factor(s) (eye-derived growth factor(s) or EDGF) that stimulates the proliferation of a large variety of cells from different tissues or species. Partial purification of EDGF from adult bovine retina was accomplished by acid precipitation, blue Ultrogel chromatography, and high-pressure liquid chromatography. EDGF has an isoelectrical point at pH 4.5 +/- 0.5 and an apparent molecular weight of 17,500 +/- 3,500 measured by high-pressure liquid chromatography. On the basis of these data as well as its biological properties EDGF is different from other known growth factors. The specific activity of highly purified EDGF is 1,000-fold greater than that of a 20,000g supernatant of a crude retinal extract. At this stage of purification, EDGF stimulates replicative DNA synthesis and cell proliferation of bovine epithelium lens cells at a concentration of 14 ng/ml of culture medium and for these cells is as efficient as purified brain fibroblast growth factor. The same purification steps were applied to crude bovine brain extracts. Growth factor activity was recovered exactly as for EDGF with slightly smaller apparent molecular weight 14,000 +/- 3,500, suggesting a great similarity between the two tissues as a source of growth factors. A purification of about 2,500-fold was obtained and cell proliferation stimulated at a concentration of 100 ng/ml. Interestingly an inhibitory activity not retained on blue Ultrogel was recovered from both preparations.

Acetates↗