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C Wallaert

Publications and source records attributed to C Wallaert.

At least 19 recordsLinked to original sources

Age-related, sex-related, and seasonal changes of plasma lipoprotein concentrations in trout.

Seasonal variability in physiological parameters can be attributed to seasonal variations in environmental factors and/or to the consequence of the presence of endogenous circannual rhythms. In the current study we have measured plasma levels of lipids and of the different lipoprotein classes in fasting trout (Oncorhynchus mykiss) between the ages of 5 and 44 months. Independent of age and sexual maturity, a circannual variation in the low density lipoprotein concentration between 250 and 1300 mg/dl was demonstrated in both sexes. These seasonal fluctuations might be controlled by an endogenous biological clock synchronized by the photoperiod. The lipoprotein profile of trout is dominated by high density lipoproteins as early as the first months of life. Their concentration increases progressively during sexual maturation from about 1200 mg/dl in juveniles to about 2500 mg/dl during spermiation or at the moment of ovulation. This increase is highly significantly correlated with the increased concentration of testosterone occurring in both sexes during sexual maturation. The concentration of very low density lipoproteins increases substantially, from about 150 mg/dl to a maximal concentration of 800 mg/dl in females and 1100 mg/dl in males, during the deposit phase of lipid reserves which precedes the rapid increase in the gonadosomatic ratio. In the course of rapid ovarian growth, vitellogenin appears in the plasma of females and reaches a concentration of 2200 mg/dl 1 month before ovulation. From these results it is concluded that season and reproductive cycle are the two main factors affecting basal plasma lipid and lipoprotein levels in trout. Environmental factors such as photoperiod or endocrine factors such as the concentration of steroid hormones can be correlated and/or involved in the regulation of these quantitative variations. These results also suggest the presence of an endogenous biological clock able to exert an independent effect on plasma lipid and lipoprotein levels.

Age Factors

Circannual variation in the fatty acid composition of high-density lipoprotein phospholipids during acclimatization in trout.

A circannual variation in the fatty acid composition of plasma and high-density lipoprotein (HDL) phospholipids occurs in rainbow trout (Oncorhynchus mykiss) in response to seasonal alterations in environmental water temperature. The compensatory mechanisms employed in cold adaptation include a decrease in the level of saturated fatty acids and of monoenes of the oleic acid (n-9) family and an increase in the level of unsaturated fatty acids of the linolenic acid (n-3) family, especially in docosahexaenoic acid (22:6(n-3)). The present study demonstrates that in trout, a poikilothermic vertebrate, the weight percentage of 22:6(n-3) in HDL phospholipids is inversely correlated (r = -0.88, P < 0.0001) with water temperature.

Animals

[Arterial time of intravenous pyelography: initial results (author's transl)].

The authors consider that attention should be paid to the arterial time in intravenous pyelography in all patients who undergo the examination. Manual injection or an injector containing 80 to 100 ml of 38% iodine contrast medium set at a speed of 20 ml/sec, on the one hand, and films taken during the arterial phase on the other hand, are the two conditions necessary to obtain a satisfactory arteriogram. Slight abdominal compression and subtraction improve the definition of the films. 600 cases have been collected so far, in the exploration of 105 patients with hypertension, 17 cysts, 7 malignant tumours, extra-renal pathology and various nephropathies in which no indication for arteriography existed. Thus pyelographic arteriography made it possible to avoid renal arteriograms in almost all our patients. Only one selective and one complete arteriogram were necessary. Unusual arterial lesions in nonsurgical renal conditions may be seen (glomerulonephritis, nephroangiosclerosis...) and unexpected images in abdominal conditions with renal manifestations or in association with nephropathies (aneurysms of digestive arteries and the aorta, collagen diseases etc.).

Angiography