PubMed HealthSearch

Biomedical subjects

K H Haraguchi

Publications and source records attributed to K H Haraguchi.

11 recordsLinked to original sources

Stimulation of corneal endothelial wound healing in cats by mesodermal growth factor.

Several growth factors have been evaluated for their effects on corneal wound healing but few studies have yet demonstrated an acceleration of endothelial repair in vivo. Mesodermal Growth Factor (MGF) was tested in vivo by making standardized freeze wounds in cat corneas and immediately injecting one of four concentrations of MGF in sterile phosphate buffered saline (PBS), or PBS alone, into the anterior chamber. Seven days later, the animals were sacrificed and the corneas excised and stained. Descemet's membrane and endothelium were dissected and mounted onto glass slides. The wound areas were photographed, measured and compared statistically. Those cats receiving the three lowest doses of MGF had significantly smaller wounds than controls (p less than 0.05).

Animals

Synergistic growth stimulation of corneal fibroblasts by components of mesodermal growth factor from murine submaxillary glands.

Recycled mesodermal growth factor (R-MGF) is a pool of proteins of 26,000 molecular weight obtained by recycling gel chromatography of male murine submaxillary gland extracts. R-MGF strikingly accelerates corneal stromal wound healing in vivo, fibroblast growth and migration in cultured corneal buttons and is showing here to stimulate stromal fibroblast growth and division in tissue culture. Chromatographic fractionation of R-MGF has yielded several components, none of which has a greater biological potency than the parent R-MGF. In contrast, two components, MGF-I and -II, when recombined synergistically stimulate fibroblast response in tissue culture and organ culture in excess of those obtained with the parent R-MGF. Three MGF components (I, III, and IV) have been purified and are inactive at 10-15 micrograms/ml in organ culture but potently stimulate fibroblast responses when combined in pairs containing 7.5 micrograms of each component. The striking synergism in organ culture suggests that the stimulation of wound healing by R-MGF in vivo may also reflect synergistic action of more than one R-MGF component. Procedures for isolating gram quantities of R-MGF and for the purification of different R-MGF components by ion exchange chromatography are detailed.

Animals

Stimulation of corneal wound healing with mesodermal growth factor.

Mesodermal growth factor (MGF) from mouse submaxillary glands was tested in vivo for stimulating effects on corneal wounds in rabbits. Intrastromal injection of 5 microgram of MGF induced widespread fibroblast activity and stromal cell division, and markedly stimulated stromal healing. At high doses (greater than 25 microgram), corneal destruction was indicated by extensive necrosis and perforation. When low doses (1 to 5 microgram) of MGF were applied to the lip of nonperforating knife wounds of the cornea, three major differences were noted between control and experimental wounds. In wounds treated with MGF, the depth of stromal healing was greater, as was the intensity of the fibroblast activity, and the width and depth of the epithelial plug were significantly decreased. These results establish that MGF is an effective growth-stimulating agent in vivo and that the initial stages of corneal wound healing may be accelerated in vivo.

Animals

A potent new mesodermal growth factor from mouse submaxillary gland. A quantitative, comparative study with previously described submaxillary gland growth factors.

A new growth factor with potent growth stimulating effects on connective tissue cells of the cornea has been isolated and partially purified from mouse submaxillary glands. A computerized image analysis system has been used to quantitate the growth responses of connective tissue fibroblasts to this new growth factor and to compare its activity with that of four previously described growth factors [nerve growth factor (NGF), epidermal growth factor (EGF), mesodermal growth factor (MGF), and thymocyte-transforming factor (TTF)] also obtained from mouse submaxillary glands. The new factor is as potent a growth stimulator as the previously described MGF. All five of the growth factors possessed esteropeptidase activity (trypsin-like) and general proteolytic activity. There was no correlation between the degree of growth stimulation of the connective tissue cells and either the esteropeptidase or general proteolytic activities of any of the growth factors.

Animals