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Stimulation of growth factor synthesis in skin wounds using tissue extract (G-90) from the earthworm Eissenia foetida.

Growth factors are biologically-active mediators that bind to specific receptors on target cells and regulate genes involved in cell growth, wound healing and regeneration. In the case of wound healing, a proper wound dressing is needed to cover the wound area, protect the damaged tissue, and if possible to activate cell proliferation and stimulate the healing process. In this study we examined the efficacy of a glycolipoprotein tissue homogenate extract from Eisenia foetida (G-90) to activate signal transduction pathways, leading to wound healing. We measured the activation of EGF and FGF in healthy skin, in wounds with physiological healing and in wounds treated with G-90. The activation of EGF and FGF was measured during the first 24 h of wound healing under both physiological conditions and treatment with G-90. In both cases an increased concentration of EGF and FGF was observed 6 h after wounding. In comparison with healthy skin, the concentration of EGF increased 10-fold and FGF five-fold in wounds treated with G-90 (10 ng ml(-1)). Healing in physiological conditions resulted in a two-fold increase of EGF and 1.5-fold of FGF.

Animals↗

[Determination of DNA methylase activity in animal tissue extracts].

An express method for measuring the level of in vitro DNA methylation in homogenates and nuclei from animal tissues as well as during initial steps of DNA methylase isolation and purification when methylase activity is low and hardly testable by other methods has been suggested. The method is based on the measuring the radioactivity incorporated in filter adsorbed DNA (acid-insoluble material) 3H-label from S-adenosile-L-methionine as a result of in vitro DNA methylation. The advantage of the method consists in the replacement of a long-duration repeated deproteinization procedure traditionally used by a relatively simple procedure (15 min incubation of the mixture at 80 degrees C with 10 volumes of the 8M urea, 5 mM EDTA, 5% n-butanol, 2% sodium dodecilsulfate, 1 M sodium chloride solution) and the absence of any loss of DNA. The method is fit for the fast serial assay of DNA methylase activity taking into consideration that about one third of the total acid-insoluble radioactivity is due to the radioactivity in 5-methylcytosine residues in DNA.

Adsorption↗

Effects of sodium chloride, Triton X-100, and alkaline pH on the measurable contents and sedimentability of the nerve growth factor (NGF) antigen in adult rat hippocampal tissue extracts.

Nerve growth factor (NGF) was found to be largely associated with sedimentable fractions of hippocampal and other neural tissues of the adult rat (Hoener et al.: Brain Res 728:47-56, 1996), verified by both bioassay and ELISA techniques. In the present study, the ELISA assay conditions were improved and simplified. Bovine serum albumin was needed in the phosphate buffered saline for maximal measurability of NGF antigen. Hippocampal tissue sonicates were separated into nonsedimentable supernatant and sedimentable pellet fractions. Individual or combined treatments with sodium chloride, Triton X-100, and pH were applied to the samples for possible effects on the i) measurable content of NGF antigen and ii) distribution of sedimentable and nonsedimentable forms. The amount of measurable NGF antigen was found to be increased in a dose dependent fashion by sodium chloride between 0.15 and 0.35 M, Triton X-100 between 0 and 0.5%, and pH between 8.5 and 10.5. The same treatment that led to maximal measurable NGF levels (0.7% Triton X-100 and pH 10.5) also caused the release of the NGF antigen from sedimentable to nonsedimentable fractions. Similar findings regarding maximal NGF antigen levels and release were seen for treatments applied to the sonicate before separation into a supernatant and pellet fraction.

Alkalies↗