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H Kleinman

Publications and source records attributed to H Kleinman.

5 recordsLinked to original sources

Scatter factor stimulates migration of vascular endothelium and capillary-like tube formation.

Scatter factors (SFs) are heat- and trypsin-sensitive cytokines secreted by fibroblastic and vascular smooth muscle cell lines which stimulate motility of normal epithelium, carcinoma cells, and vascular endothelium. Human and mouse SFs have been purified and identified as 90 kD heterodimeric proteins consisting of heavy (58 kD) and light (31 kD) disulfide-bonded subunits. Partial amino acid sequence data from SF-derived tryptic peptides indicate marked sequence homology with hepatocyte growth factors, suggesting a common multigene family. In this chapter we describe the regulation by SF of vascular endothelial cell chemotaxis and chemokinesis; migration from microcarrier beads to flat surfaces; invasion through porous filters coated with reconstituted basement membrane; secretion of plasminogen activator; and in vitro capillary-like tube formation on a basement membrane surface.

Animals

[Connective matrix and localization of a biological signal: demonstration of a matrix receptor for interferon-gamma in basement membranes].

Extracellular matrix has a variety of biological effects on cells, including increased cell adhesion, migration, division and differentiation. Cells are also regulated by soluble factors such as cytokines. We have investigated the binding of interferon-gamma to basement membrane. Interferon-gamma binds basement membrane with a high affinity (kD = 1.5 x 10(-9) M). The binding site is located on the glycosaminoglycan part of the heparan sulfate proteoglycan. This result suggests that extracellular matrix interacts with interferon-gamma and could modulate the cellular response to such factors.

Basement Membrane

Laminin immunized monkeys develop sera toxic to cultured rat embryos and fail to reproduce.

In a previous study antilaminin antibodies in a monkey with a poor reproductive history were found to be the cause of serum toxicity to cultured rat embryos. In the present study four monkeys were immunized with murine tumor laminin and a fifth with bovine serum albumin. Subsequently, sera from only the laminin immunized monkeys became toxic to cultured rat embryos. This serum toxicity was not mediated by complement but did require the antibody to have a divalent structure. Finally, mating trials were conducted with two of the laminin immunized monkeys that previously had excellent reproductive histories. Based on progesterone levels and observation the monkeys continued to have normal menstrual cycles but failed to initiate a successful pregnancy following immunization in over 2 years of mating trials. These data demonstrated that antibodies against laminin could have prevented conception or could have interrupted pregnancy because of embryotoxicity or failure of implantation.

Animals