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J F Denef

Publications and source records attributed to J F Denef.

59 records · Page 4Linked to original sources

The influence of thyrotropin and growth hormone on the thyroid gland in the hereditary dwarf mouse: a morphometric study.

Snell-type dwarf mice were injected with TSH, GH, or both hormones together for 6 days. GH induced an increase in body weight but not in the weight of the thyroid gland itself; on the contrary, TSH caused an increase in the weight of the thyroid but no increase in body weight. After TSH injection, the relative volume of the thyroid parenchyme was enhanced by 45% compared to that in untreated dwarf mice, and the radius of the follicles and follicular lumina increased by 50% and 48%, respectively. The major effect of TSH was an increase in cellular volume (+93%), and the mean number of cells in the average follicle was doubled, without a reduction in the number of follicles. GH had almost the same effect as TSH on the relative volume of the parenchyme and caused the radius of follicles and of the follicular lumina to increase by 61% and 69%, respectively. However, GH did not influence cellular volume. Its primary effect was to stimulate cellular division (cells were increased about 5 times in the average follicle) and to reduce the number of follicles. The nucleo-cytoplasmic ratio increased with GH but decreased with TSH. T4 serum levels increased to a much lesser extent with GH than with TSH, while normal values were obtained with both hormones together. At a morphological level, the combined administration of TSH and GH produced the same qualitative effects as separate administration, inducing an increase in cell volume and number which was less than the sum of the effects of each hormone administered separately.

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The influence of fixation procedure, embedding medium and section thickness on morphometric data in thyroid gland.

In this study, the effects of fixation procedures, embedding medium and section thickness on stereological measurements of normal thyroid were analysed. The following conclusions were drawn: A) the use of a single section for the analysis of a lobe is sufficient if this section is located in the central part of the lobe. B) fixation and embedding with glutaraldehyde-Epon leads to a larger shrinkage than Bouin-paraplast, but the difference between the two procedures is not significant. C) osmium post-fixation reduces the shrinkage induced by glutaraldehyde and lowers the axial deformation produced by sectioning. D) Bouin's fixative and paraplast embedding induce considerable shrinkage of the interstitial tissue. The shrinkage obtained with glutaraldehyde-Epon is less. However, it is still not known whether this difference is due to the fixative, or to the embedding procedure or to both. E) only in glutaraldehyde and osmium-fixed material, embedded in Epon, can follicles and colloids be assumed to be spherical in shape without significant errors.

Animals↗

Thyroid gland in dwarf mice: a stereological study.

Stereological methods were used to compare thyroids of dwarf mice and of their heterozygote littermates. In the thyroid of dwarf mice unorganized cellular masses, adipous tissue and ultimobranchial cysts are abundant. Follicles are small and their distribution function is unimodal. The number of cells per follicle is considerably lowered if compared with the normal. In control mice the distribution function of thyroid follicles is bimodal. These data show that origin of the thyroid anomaly in dwarf mice is due to a drastic diminution of cell divisions, probably resulting from the lack of growth hormone.

Animals↗

Ultrastructure of the thyroid in dwarf mice.

The thyroid gland of Snell's dwarf mice consists of small follicles with flattened epithelium, partly differentiated cords and undifferentiated masses. Many adipocytes are found. The ultimobranchial cysts are well developed. Parafollicular cells are normal. In the partly organized cords, microfollicular cells are some small follicles limited by two or three cells are seen. The presence of these structures led us to think that they represent the first stages of normal folliculogenesis, described as the fusion of two adjacent unicellular microfollicles. Their further growth is the result of the coalescing of small adjacent follicles or of cellular multiplication. The presence of undifferentiated masses and partly differentiated cords, in dwarf mice, seems due to a developmental arrest rather than to aberrant development. This disorder of organogenesis is ascribed mainly to a lack of pituitary growth hormone.

Animals↗