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Y Desormeaux

Publications and source records attributed to Y Desormeaux.

4 recordsLinked to original sources

Metaplastic and mitotic activity of the ischemic (endocrine) kidney in experimental renal hypertension.

Partial ligation of the aorta between the renal arteries in the rat induces malignant hypertension, metaplasia of smooth-muscle cells of arterioles and arteries into juxtaglomerular cells, and a complex series of events in tubular cells at all levels of the ischemic kidney. The tubular cells of the outer cortex, particularly the proximal convoluted cells, show a very rapid and progressive simple atrophy. In contrast, necrosis of individual cells is followed by mitotic activity in atrophic tubular cells of the inner cortex, medulla, and papilla. Subsequently, polyploidy and hyperplasia occur in the inner cortex. At the same time, hypertrophy of the protein-synthesizing apparatus and an increase in protein, DNA, and RNA, followed by a decrease in the protein content, are seen in the tubular cells of the inner cortex. In the medulla and papilla, necrosis of individual cells proceeds side by side with waves of mitotic activity. These events take place, albeit to a lesser degree, even in cases of very mild renal ischemia. While they may by unrelated to hypertension, these changes are probably involved in the increase in hydrolytic enzyme activity characteristic of the ischemic renal cortex.

Animals

On the lysosomal function of juxtaglomerular granules.

The presence of acid phosphatase, beta-glucuronidase and aryl sulfatase in juxtaglomerular cell granules (JGG) as well as the uptake and concentration of certain low molecular weight dyes by these granules have repeatedly suggested that they are akin to lysosomes. In the present experiments, rats were injected with three substances of widely different molecular weight and physicochemical properties--sucrose, iron sorbitol-citric acid complex (Jectofer) and horseradish peroxidase--that are well known to selectively concentrate in renal tubular cell lysosomes. None of these substances was found to enter the JGG to any significant degree, although both sucrose and Jectofer were evident in juxtaglomerular cells. Contrary to previous reports, thorium dioxide (Thorotrast) particles were not detected in the JGG after parenteral injection. These results indicate that JGG do not possess any significant lysosomal function and raise the question of the role of hydrolytic enzymes in the physiology of these granules.

Acid Phosphatase

Metaplasia of smooth muscle cells into juxtaglomerular cells in the juxtaglomerular apparatus, arteries, and arterioles of the ischemic (endocrine) kidney. An ultrastructural-cytochemical and autoradiographic study.

Partial ligation of the aorta between the renal arteries induces marked atrophy of the cortical tubules of the left (endocrine) kidney with a remarkable increase in the number and granularity of hypersecretory juxtaglomerular cells (JGC), which are found not only at the glomerular pole of arterioles but also in the walls of arteries and arterioles far removed from the glomerulus. Typical vascular smooth muscle cells (SMC), in which secretory granules appear, show a concomitant development of their Golgi complex and rough endoplasmic reticulum, with a gradual decrease in the number of their filaments. Microtubules also appear in the Golgi area. Thiery's periodic acid-thiocarbohydrazide-silver proteinate technique demonstrates that in these "intermediate" cells, as in mature JGC, the amount of glycogen is greater than in SMC. The newly-developed secretory granules of intermediate cells are stained by phosphotungstic acid at a low pH, as are the mature granules of JGC, an indication that both types contain glycoproteins. Light and electron microscopic autoradiography reveal that both JGC and "intermediate" cells of the vascular wall do not incorporate radioactive thymidine (injected during the 10-day observation period). Thus, they develop by metaplasia of preexistent SMC. In control kidneys, radioactive thymidine is practically never incorporated into the nuclei of SMC but is found in a few glomerular and tubular cells of all zones except the papilla.The endocrine kidney shows virtually no reactive nuclei in vascular SMC, glomeruli, or tubular cells of the outer cortex. Thymidine is incorporated into practically all nuclei of the straight portion of proximal tubules and into about half the nuclei of all medullary tubular cells including the papilla.

Animals

Comparative ultrastructural cytochemistry of juxtaglomerular cell granules and renal tubular cell lysosomes.

Because of certain similarities in morphology and function between juxtaglomerular cell granules and renal tubular cell lysosomes, the cytochemistry of both of these structures was compared. Juxtaglomerular cell granules and renal tubular cell lysosomes were found to be argentaphobic when ultrathin sections of Araldite-embedded kidneys were stained according to the periodic acid-thiocarbohydrazide-silver proteinate technique of Thiéry (Thiéry, J. P. J. Microsc. (Paris) 6: 987, 1967 and J. Microsc. (Paris) 8: 689, 1969). The rim of both structures was moderately positive when ultrathin sections of glutaraldehyde-fixed, glycol methacrylate-embedded kidneys were stained with phosphotungstic acid at a low pH. A reaction was also shown by the cell coats, residual bodies and, in proximal convoluted tubules, by the Golgi complex. In ultrathin sections of either glycol methacrylate- or Vestopal-embedded renal cortex stained by various methods with colloidal iron, juxtaglomerular cell granules were negative whereas renal tublar cell lysosomes were intesely positive. Colloidal iron also stained the cell coats of both justaglomerular and tubular cells. These results indicate that both juxtaglomerular cell granules and renal tubular cell lysosomes contain glycoproteins which are not acidic in the former and are acidic in the latter.

Animals