The ultrastructural distribution of the amyloid beta-protein precursor (ABPP) in cultures of a neuronal cell line is examined. ABPP is associated with the extensive extracellular matrix (ECM) secreted by these cells. The possible role of matrix associated ABPP in the pathogenesis of Alzheimer's disease is discussed.
A primary system has been developed in which it is possible to study the production of electrically excitable neuron-like cells from a precursor population of olfactory epithelial cells. Rat nasal epithelium was dissociated and placed in culture. The initial surviving cells are flat and ciliated and contain glial fibrillary acidic protein (GFAP). After 3-5 days electrically excitable cells appear that contain neuron-specific enolase but not GFAP. These round cells originate by means of the differentiation of the GFAP-positive flat cell to a round cell, followed by the division of the round cell. Therefore, neuron-like cells can be derived from cells that synthesize GFAP.
An initial effect of nerve growth factor on a responsive nerve cell line is to increase intracellular cyclic AMP, which in turn leads to a mobilisation of calcium ions. These events are correlated with structural changes in the plasma membrane, increased cell-substratum adhesion, and neurite outgrowth.