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Immunologically induced sympathectomy of preganglionic nerves by antibodies against acetylcholinesterase: increased levels of peptides and their messenger RNAs in rat adrenal chromaffin cells.

Systemic administration of murine monoclonal acetylcholinesterase antibodies to rats has been shown to cause selective degeneration of sympathetic preganglionic neurons. In the present study rats were subjected to a single i.v. injection of these acetylcholinesterase antibodies, or to normal IgG or saline for control. Exophthalmos, piloerection and eyelid-drooping (ptosis) were observed within 1 h after administration of the antibodies. Rats were killed at different time-points after antibody administration, and the adrenal glands were analysed by means of indirect immunohistochemistry and in situ hybridization histochemistry. As soon as 3 h after the antibody treatment, a marked increase in the number of chromaffin cells expressing mRNA encoding, respectively, enkephalin, calcitonin gene-related peptide, galanin, neurotensin and substance P was seen. At 12 h the peptide mRNA levels were still elevated and there was a concomitant increase in the number of peptide-immunoreactive cells. All peptide levels remained high for at least 48 h; however, 77 days after the antibody treatment only enkephalin-immunoreactive cells could be encountered. A disappearance of acetylcholinesterase- and enkephalin-immunoreactive cells could be encountered. A disappearance of acetylcholinesterase- and enkephalin-positive fibers was already seen 3 h after the antibody treatment, and after 24 h no fibers were encountered. In contrast, up until 48 h there was no apparent change in the number or intensity of immunofluorescent fibers expressing calcitonin gene-related peptide, galanin, neurotensin or substance P. However, 77 days after the antibody treatment the number of calcitonin gene-related peptide- and substance P-immunoreactive fibers was increased as compared to controls. In addition, reappearance of acetylcholinesterase- and enkephalin-immunoreactive fibers was seen 77 days after antibody administration, although their number was still low as compared to controls. Double-labeling immunohistochemistry revealed that the chromaffin cells expressing peptides after the antibody treatment preferentially were adrenaline storing cells (noradrenaline-negative). The majority of these cells expressed only one peptide. Both surgical transection of the splanchnic nerve as well as treatment with acetylcholine receptor antagonists mimicked the effects seen after the acetylcholinesterase-antibody treatment, although changes were less pronounced. The present results show that interruption of splanchnic transmission induces fast, marked, and selective increases in peptide expression in rat adrenal chromaffin cells.

Acetylcholinesterase↗

Catecholamine secretion by chemically skinned cultured chromaffin cells.

The secretory system of intact chromaffin cells is not accessible to direct chemical manipulation because of the selective permeability of the plasmalemma. We have devised a simple procedure for chemically "skinning" (permeabilizing) cultured adrenal medullary chromaffin cells by brief exposure to the detergent saponin. This procedure disrupts the continuity of the plasmalemma, thus allowing us to bypass those aspects of the secretory process controlled by the cell membrane and giving direct access to exogenous substances to the cellular secretory machinery. We report here that the skinned cells retain a fully competent secretory mechanism dependent only on exogenous calcium and MgATP. Saponin treatment had no significant effect on the total catecholamine content of the cells. Secretion could be initiated by either MgATP or calcium as long as the other was present in the medium. Catecholamine and dopamine-beta-hydroxylase release by the skinned cells was dependent on the calcium concentration of the medium. The ratio of secreted catecholamine and enzyme was similar to that of the cells, indicating that secretion occurred by an exocytotic mechanism. About half the total cellular content of the cytoplasmic enzyme lactic dehydrogenase was released during the permeabilization process and subsequent incubations, indicating plasmalemma permeability to molecules as large as protein. Calcium-induced secretion was unaffected by several drugs known to affect catecholamines and granule function. Saponin treatment of chromaffin cells in culture appears to be a simple means for allowing access to exogenous substances to the cells' secretory machinery. Therefore, it offers the opportunity to use chemical treatments, and perhaps specific antibodies to cellular components, to determine the role of these elements in the secretory process. These techniques should also be applicable to other cells known to secrete by an exocytotic mechanism.

Adenosine Triphosphate↗

Monoamine-storing cells in the avian aortic wall.

Using the Falck-Hillarp method, monoamine-storing cells were demonstrated in the avian thoracic aorta just above the openings of the ductus arteriosus. By electron microscopy, numerous dense-cored vesicles, 90-220 nm in diameter, were seen in the cytoplasm. The electron opacity of these dense-cored vesicles was reduced when reserpine (5 mg/kg) was administered. These monoamine-storing cells formed typical synapses with the Schwann cell-enclosed nerve terminals. The monoamine-storing cells first appeared in the aortic wall at 9 days in ovo but it remained obscure whether they originated from the neuroectoderm.

Animals↗