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Biomedical subjects

C Auger

Publications and source records attributed to C Auger.

At least 37 records · Page 2Linked to original sources

Immunoreactivity of aqueous extracts of rat and mouse tissue with anti-thymosin alpha 1, anti-bovine thymopoietin and anti-thymulin antibodies. Studies using immunoblotting.

Anti-thymosin alpha 1 monoclonal antibodies recognized, on immunoblots, 1 to 2 bands corresponding to molecules of 34 and 35 Kd when using aqueous extracts of thymus, spleen, kidney, liver, brain, pituitary and adrenal glands from rats or mice. Anti-bovine thymopoietin polyclonal antibodies, in the same conditions, labelled analogous 34, 35 and 35.5 Kd molecules in brain and thymus extracts but also a 40 Kd molecules in thymus and a 90 Kd in brain extracts. Anti-synthetic thymulin monoclonal antibodies recognized irregularly and poorly a 52 Kd molecule from thymus and brain extracts. These results suggest that thymopoietin, thymulin and specially Thymosin alpha 1 are first synthesized in large precursors. Finally, other organs seem capable of synthesizing thymosin alpha 1 and probably thymopoietin, but for thymulin, the results are too irregular to conclude.

Animals↗

Intracellular localization of thymosin alpha 1 by immunoelectron microscopy using a monoclonal antibody.

Distribution of thymosin alpha 1 in normal mice (OF1) or autoimmune mice (NZB) was investigated using immunocytochemical techniques on sections of GMA- and Epon-embedded mouse thymuses. A monoclonal antibody directed against synthetic thymosin alpha 1 was used. With the immunofluorescence assay, patchy staining of thymosin alpha 1 was found in the cytoplasm of epithelial cells of the subcapsullary and medullary zones of OF1 thymus. In NZB thymus, the fluorescent pattern was less precisely localized. At the electron microscopic level, immunolabeling of Epon-embedded ultra-thin sections revealed ferritin in some vacuoles of epithelial cells. Ferritin labeling in OF1 thymus was found in several small vacuoles of the same cell, but was present in large, dense vacuoles in NZB thymus. These differences might reflect differences in the secretory process of thymic hormone.

Animals↗

Knowledge of medical students, pediatric residents, and pediatricians about the cost of some medications.

Medical students, pediatric residents, and pediatricians were asked to evaluate the cost of commonly prescribed medications. Their estimations varied considerably and were considered as adequate in 40%, 52%, and 62% of the cases, respectively. In most situations, the adequacy of their estimations did not seem to improve significantly with the length of training and practice. Since the cost of medications may influence compliance, it should probably be discussed more often during the course of medical and pediatric training.

Asthma↗

Localization of thymulin (FTS-Zn) in mouse thymus. Comparative data using monoclonal antibodies following different plastic embedding procedures.

The distribution of thymulin (FTS-Zn) was studied in thymuses from normal mice (OF1) or autoimmune mice (NZB). Thymulin localization was investigated using immunocytochemical techniques on sections of GMA and epon-embedded mouse thymuses. Two monoclonal antibodies were used: anti-synthetic thymulin and anti-intracellular thymulin. In the immunofluorescence assay, GMA sections allowed a more subtle localization of thymulin in the cytoplasm of epithelial cells (with a vacuolar pattern) compared to the epon sections (with a homogeneous fluorescence in the cytoplasm). In both cases, the number of labeled cells was greater in the medullary region than in the cortex of the thymus. At the electron microscopic level, immunolabeling of epon ultrathin sections showed ferritin distributed in some of the epithelial cell vacuoles. The two monoclonal antibodies revealed similar distributions of thymulin in the thymus. The results obtained in this study confirm that the amount of thymulin is greater in the epithelial cells of normal compared to autoimmune thymuses.

Animals↗

Identification of FTS (facteur thymique serique) on thymus ultrathin sections using monoclonal antibodies.

Using a new immunoelectromicroscopical technique, this study confirms the localization of the 'facteur thymique sérique' (FTS) in the reticulo-epithelial cells of mouse thymus. The use of anti-FTS monoclonal antibodies on ultrathin sections for electron microscopy reveals FTS in cytoplasmic vacuoles, labelling density depending on the density of the vacuolar content. The successful application of this technique opens the way to its use for double-immunolabelling.

Animals↗

Fibronectin-like protein in Porifera: its role in cell aggregation.

Experiments were carried out on a freshwater sponge (Ephydatia mulleri) in order to demonstrate the presence of fibronectin in Porifera. By using antibodies to highly purified human plasma fibronectin, the presence of a similar or identical protein could be demonstrated in the membranes of E. mulleri cells such as epithelial cells, fibroblast-like cells, and choanocytes. The reaction was specific, could be abolished by the addition of excess fibronectin, and was not observed with nonimmune rabbit serum. The immune fluorescent reaction became stronger when the sponge cells were pretreated with acetone and could also be observed, although with a less intense staining, on the intercellular matrix. This shows the predominant presence of a sponge fibronectin-like protein in the cell membranes and also its presence to a lesser extent in the intercellular matrix. When dissociated sponge cells were led to reassociate under the microscope, reassociation could be completely inhibited by anti-human fibronectin antiserum up to a dilution of 1:120 and partially inhibited up to a dilution of 1:240. The reassociation of dissociated sponge cells could also be inhibited by the addition of purified gelatin but not with serum albumin or with a normal, nonimmune rabbit serum. These results clearly indicate that a sponge cell fibronectin-like protein may play an important role as the (or one of the) recognition site(s) of the aggregation factor(s) and can therefore be directly involved in cell association, morphogenesis, and differentiation.

Animals↗