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Biomedical subjects

D Millet

Publications and source records attributed to D Millet.

At least 19 recordsLinked to original sources

Effects of angiotensins on cellular hypertrophy and c-fos expression in cultured arterial smooth muscle cells.

An increase in cell size and protein content was observed when quiescent arterial smooth muscle cells in culture were incubated with either angiotensin II or III. These effects were inhibited by the specific angiotensin type-1 receptor antagonist losartan (DuP753) but not by CGP42112A. In parallel, a transient and dose-dependent induction of c-fos was demonstrated not only with angiotensins II and III but also with angiotensin I. Both angiotensins II and III exerted their maximal effect at 1 microM, while angiotensin I needed a tenfold-higher concentration to exert an identical effect. As for hypertrophy, losartan also inhibits angiotensin-induced c-fos expression, suggesting that this gene may be involved into the hypertrophic process. Angiotensin-I-mediated c-fos induction is partially inhibited by the angiotensin-converting enzyme inhibitors captopril and trandolaprilate; given that an angiotensin-converting enzyme activity was detected in these smooth muscle cell cultures, these results suggest that angiotensin-I-induced c-fos expression is mediated in part via angiotensin-I conversion to angiotensin II, but also by other unidentified pathway(s). Angiotensin I could essentially induce smooth muscle cell hypertrophy by indirect mechanisms, while angiotensins II and III act directly on smooth muscle cells.

Angiotensin-Converting Enzyme Inhibitors

Cell cycle dependent gene expression in quiescent stimulated and asynchronously cycling arterial smooth muscle cells in culture.

The expression of a set of cell cycle dependent (CCD) genes (c-fos, c-myc, ornithine decarboxylase (ODC), and thymidine kinase (TK)) was comparatively studied in cultured arterial smooth muscle cells (SMC) during exit from quiescence and exponential proliferation. These genes, which were not expressed in quiescent SMC, were chronologically induced after serum stimulation. c-fos mRNA were rapidly and transiently expressed very early in the G1 phase; c-myc and ODC peaked a few hours after serum stimulation and then remained at an intermediary level throughout the first cell cycle; TK mRNA and activity then appeared at the G1/S boundary and peak in G2/M phases. Except for c-fos, the other genes were also expressed in asynchronously cycling SMC (ACSMC); their expression was studied in elutriated subpopulations representative of cell cycle progression. c-fos mRNA were undetectable in any sorted subpopulations, even in the pure early G1 population. Despite a slight increase as the cell cycle advanced, c-myc and ODC genes were expressed throughout the ACSMC cell cycle. A faint TK activity was found in G1 subpopulations and increased in populations enriched in other phases; in contrast, TK mRNA remained highly expressed in all elutriated subpopulations. This study demonstrates significant modulations in CCD gene expression between quiescent stimulated and asynchronously cycling SMC in culture. This suggests that the events occurring during the emergence of SMC from quiescence are probably different from those in the G1 phase of ACSMC.

Cell Cycle

Immediate local tissue reactions to Teflon vocal cord implants.

From the beginning of the teflon injection technique for paralyzed vocal cords there has been an obvious interest in its role as a foreign body. There are a number of previous reports after varying periods of time of residence. This case report describes the tissues response of the foreign body reaction very early, 48 hours after the injection of teflon. It is consistent with early inflammatory foreign body reaction.

Aged

[Ovarian hyperstimulation syndrome. Notes on the physiopathology and treatment apropos of 3 cases].

Hyperstimulation appeared in one case on the 10th 11th day after ovulation, allowing by its presence the very precocious diagnosis of successful fecondation. The study of blood coagulation revealed that hypercoagulability was mainly related to hyperactivity of the thrombocytes and of the coagulation proteins. The pathogenesis of the syndrome is discussed. Increase in the permeability of the capillary vessels and hypovolemia seem to be responsible for the main accidents. Unfortunately as we have no real mean of decreasing the permeability of the capillary vessels, the treatment can be directed only against hypovolemia and its results. The infusion of macromolecular fluids, the restriction of sodium and water intake, together with the prescription of spironolactone have been successfully employed in those three cases.

Adult