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C Remacle

Publications and source records attributed to C Remacle.

At least 109 records · Page 6Linked to original sources

Morphological and functional characteristics of islets neoformed during tissue culture of fetal rat pancreas.

Cell suspensions prepared by collagenase digestion of the pancreas of rat fetuses (21.5 days) were cultured for 7-9 days in RPMI medium containing 10 mM glucose. Exocrine cells disappeared rapidly, whereas fibroblasts and endocrine cells proliferated. These latter were first arranged in monolayers but progressively reorganized in neoformed islets essentially composed of B-cells. Total insulin content of the culture dishes increased until day 9, and fractional insulin release was about 20% per day. After 1 week, islets incubated in glucose-free medium released less than 1% of their insulin content over 2 h. Glucose (16.7 mM) caused a slower and weaker (3-fold) stimulation than 10 mM leucine or arginine (3-5-fold). The effects of the three secretagogues were potentiated by theophylline, but only those of glucose and leucine were inhibited by diazoxide. These neoformed islets thus retain a fetal character (relatively low responsiveness to glucose), but the stimulus-specificity of the inhibition by diazoxide is the same as in adult islets. This technique may be useful for studying the mechanisms which govern the organization of pancreatic endocrine cells in islets, and which underlie their functional maturation during the perinatal period.

Amino Acids↗

Localization of GABA high-affinity binding sites in the pancreas of neonatal rat.

The localization of gamma-aminobutyric acid (GABA) high-affinity binding sites was investigated in the exocrine and endocrine pancreas of neonatal rats by means of 3H-GABA autoradiography. GABA-binding was identified on Schwann cells and on the cells of the intralobular excretory ducts. In the endocrine part of the pancreas, no labelling was observed except in peripheral islet cells which, on the basis of their scarcity and distribution, could be somatostatin cells. Furthermore, peri-insular innervation showed considerable labelling.

Animals↗

Cell proliferation in pancreatic islets of rat fetuses and neonates from normal and diabetic mothers. An in vitro and in vivo study.

The influence of diabetic pregnancy on the fetal and newborn endocrine pancreas of rats was investigated in vitro and in vivo. A mild diabetic state was induced experimentally in the mother with 30 mg streptozotocin injected in the vein of the tail on the first day of gestation. The maternal blood sugar was 326 +/- 28 mg/dl at the end of the gestation. The in vitro experiment was performed on fetuses of 21.5 days. The endocrine pancreases were cultured during four or seven days and incubated the last 24 hours with tritiated thymidine. The healthy state of the islet cells after the two respective periods of culture was confirmed by an electron microscope study. After incubation with tritiated thymidine, a significantly higher percentage of labelled nuclei was observed in the islets of the diabetic group when compared with the controls. This was apparent after four days (diabetics: 54% - controls: 50%) and is obvious after seven days (diabetics: 28.8% - controls: 18%). For the in vivo experiment, two day old rats born at term from normal or diabetic mothers were injected (s.c.) with tritiated thymidine and killed two hours later. The proliferative capacity of the islet cells of pups born from diabetic mothers compared to the controls was higher when the percentage of labelled nuclei was calculated (respectively 5.4% versus 3.8%). An islet hypertrophy was also found in the diabetic group. In conclusion, our results combining in vitro techniques with in vivo observations demonstrate the higher proliferative rate of the fetal endocrine pancreas induced by a mildly diabetic feto-maternal environment.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Organ culture of the Islets of Langerhans from young and senescent rats.

The B-cells of the endocrine pancreas constitute an adequate model for in vitro study of the aging process in highly differentiated cells. In the present study, collagenase-isolated islets of Langerhans from young and senescent rats were cultured up to 28 days. The response of the B-cells to the stimulatory conditions of the culture medium involved the nucleus, ribosomes, endoplasmic reticulum, Golgi apparatus, and secretory granules. Correlated data from light microscopy, electron microscopy, and insulin radioimmunoassay show that the differentiation and function of senescent B-cells are maintained in culture, as it has been proven for the B-cells of younger animals. On the other hand, signs of cytological deficiency not directly concerned with the specific function of B-cells were observed: abnormal mitochondria and lysosomes are more numerous in the senescent B-cells. The proliferative capacity of the B-cells of aged rats is reduced.

Aging↗

Nuclear events in B-cells of young and senescent rat islets in organ culture.

In vitro, B-cells maintain their capacity to multiply. However, the number of mitotic figures observed in cultured rat Langerhans islets is far larger for young donnor animals than for old ones. The same observation is true for the number of nuclei incorporating tritiated thymidine in vitro. These data are in agreement with the principal observation resulting from the study of senescence on different in vitro cellular models: the decrease of the replication potential with increasing age. The stimulation of DNA synthesis by glucose, however, does not seem to be altered with aging.

Aging↗

Gonads of Carassius auratus (teleosts) in organ culture: a new technique and the effects of testosterone.

The use of a semi-natural medium (Eagle's MEM supplemented with chicken embryo extract) appears to be satisfactory for ovarian and testicular fragment cultures of Carassius auratus. The male germ cells show a normal degeneration which might be attributed to a lack of pituitary hormones: gonadotropic and, possibly, somatotropic hormone. The ovarian fragments maintain a normal organization during 21 days of culture. Only the oocytes in late vitellogenesis massively atresiate at the beginning of culture. The addition of fetal bovine serum to this medium produces surprising effects on the testicular explants, particularly on the spermatogonial mitoses. This might be attributed to the presence of STH and androgen in the serum. The modifications of ovarian explants, on the other hand, are identical to those observed with Eagle's MEM supplemented with chicken embryo extract. M 199 has been tested as a synthetic medium; the preliminary results are encouraging. Testosterone, when added to the semi-natural medium, permits complete spermatogenesis in the testicular fragments during the 21 days of culture, but does not produce any effect on the ovarian explants.

Animals↗

Transmission, recombination and conversion of mitochondrial markers in relation to the mobility of a group I intron in Chlamydomonas.

Mitochondrial DNA transmission has been analyzed in diploids produced from sexual crosses or artificial fusions between Chlamydomonas strains which differ by several genetic markers: a group I intron (Cs cob. 1 or alpha intron), three restriction sites (Nh, Nc and H markers) located 0.5-5 kb from the insertion site of the intron, and a MUD2 point mutation (27 bp from the insertion site) conferring resistance to myxothiazol. Recombination between mitochondrial markers is a general property of all crosses and fusions analyzed. In crosses between two intron-containing (alpha+) strains or two intron-less (alpha-) strains, the transmission is preferentially paternal (mt-), with a preponderance depending on the nature of the parental genomes. In crosses between alpha+ and alpha- strains, the conversion of intron-less molecules intron+ is frequent when the alpha+ parent is maternal (mt+) and nearly absolute when the alpha+ parent is paternal (mt-). In 94% of cases, the conversion is accompanied by the co-conversion of the MUD2 marker. In both crosses and artificial fusions, the conversion of alpha- into alpha+ also influences the transmission of the more distant Nh, Nc and H markers. It is hypothesized that the more frequent transmission of the genome containing the intron results from the elimination of alpha- molecules, as a result of a double-strand cut which is induced by an endonuclease encoded by the intron.

Animals↗

The cellularity of developing adipose tissues in Pietrain and Meishan pigs.

The development of external, internal, inter- and intramuscular adipose tissues was compared in Pietrain (lean) and Meishan (obese) pigs during their growth, at 0, 7, 30 and 90 days of age. Up to 1 month of age, the total lipid content of external and internal adipose tissues as well as mean adipocyte diameter increased similarly in both breeds of pigs. The percentage of plurilocular adipocytes decreased in both breeds; it remained higher in Meishan up to 30 days of age, which would indicate a delayed maturity of adipose tissue in this pig. Adipocyte hypertrophy characterizing the Meishan pig starts between 1 and 3 months of age. At 90 days, adipocyte diameters were about 50% higher in Meishan than in Pietrain. Muscle lipid content was higher in Pietrain than in Meishan until 1 month of age, whereafter it became lower than that of Meishan. Intramuscular adipocytes appeared later than those of other tissues in both breeds and were larger in Meishan than in Pietrain.

Adipocytes↗

The adipose conversion process: regulation by extracellular and intracellular factors.

White adipose tissue regulates lipid metabolism and acts as a secretory organ. Because of its importance for human health and animal production, many studies have attempted to better understand its development at the cellular and molecular levels by culturing preadipose cells in vitro. This synthesis article describes our current knowledge, acquired by this approach, concerning the regulation of the different steps of the adipocyte differentiation program by extracellular (hormones, cytokines, growth factors, retinoids and fatty acids) and intracellular agents (second messengers and transcription factors). The discrepant effects that have been observed for some of these factors are also discussed. This information is very important in the perspective of a better control of fat deposits in human and breeding species.

Adipocytes↗

Smooth muscle cells influence monocyte response to LDL as well as their adhesion and transmigration in a coculture model of the arterial wall.

We investigated the possible interference of smooth muscle cells with monocyte response to LDL as well as with their adhesion and transmigration in a coculture of porcine endothelial and smooth muscle cells. Lysophosphatidylcholine (LPC), a component of oxidized LDL (oxLDL), stimulated the adhesion of THP-1 cells to endothelial cells both in mono- and in coculture with smooth muscle cells. When THP-1 cells were incubated with endothelial cells in the presence of copper oxLDL, their adhesion was increased, but only in coculture. The addition of sodium nitroprusside (SNP) together with oxLDL markedly increased the adhesion of THP-1 cells in coculture. Close proximity between endothelial and smooth muscle cells was necessary to observe that effect. Furthermore, this increase in adhesion of THP-1 cells can, at least in part, be attributed to the augmented production of monocyte chemoattractant protein-1 (MCP-1) observed in coculture under the influence of oxLDL and SNP. The passage of THP-1 cells through the coculture was stimulated by MCP-1 and LPC. These results show that physical contacts or close proximity between endothelial and smooth muscle cells play a key role in the adhesion of monocytes and their infiltration into the intima in response to oxLDL.

Animals↗

Viability of long-term cryopreserved human saphenous veins.

The feasibility of maintaining long-term viability of human venous allografts by cryopreservation has been investigated. Segments of vein were obtained from 85 patients undergoing a stripping operation for varicose veins. The venous segments were immersed in a dimethylsulfoxide 15% solution, deep frozen at -196 degrees C in liquid nitrogen and preserved for a duration of 1 week to 24 months. Light microscopy (n = 126) failed to demonstrate striking differences between control veins and any of the cryopreserved veins. The types of damage observed at scanning electron microscopy included endothelial cell separation, endothelial cell loss, exposed basement membrane and exposed fibrillar collagen, which were graded on a scale. The score for short term (less than 3 weeks) stored veins was 8.1 +/- 0.9 (mean +/- SEM) and did not differ from the long-term (greater than 10 weeks) stored veins score (6.3 +/- 1.0, p NS). The tissue enzymes LDH, GOT, GPT, CPK were measured in the frozen vein groups (n = 115) after thawing to room temperature. Cryopreservation did not alter any of the tissue enzymes measured when compared to controls. Endothelial fibrinolytic activity (FA) of 58 venous segments cryopreserved for a mean duration of 20 months was 6136.4 +/- 292.1 Tissue Activator Units (TAU) and did not differ from FA of 11 controls (5989.1 +/- 696.8 TAU). Synthesis of 6-Keto-PGF1-alpha-2, a stable breakdown product of PGI2, measured in 10 venous segments cryopreserved for 10 months, was significantly higher than in 13 veins stored in saline for 12 hours at 4 degrees C (2.8 +/- 0.4 vs 0.4 +/- 0.1 PG ml-1mg-1min-1, respectively; p less than 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)

Cryopreservation↗