Search PubMed⌕ Search

Biomedical subjects

B Rousset

Publications and source records attributed to B Rousset.

96 records · Page 6Linked to original sources

Dynamic analysis of drug action on in vitro reconstituted thyroid follicle by microinjection of tracer molecules and videomicroscopy.

Thyroid cells isolated from the gland by trypsinization are capable in culture of reconstituting histiotypic structures, the thyroid follicles. This morphological differentiation requires the presence of the main thyroid regulator; thyrotropin. We have analyzed some structural and functional aspects of in vitro reconstituted thyroid follicles (RTF) using microinjection of fluorescent probes and videomicroscopy. This experimental approach allowed to visualize biological processes and actions of drugs, signalling factors, etc. in living cells. We describe here some examples of what can be studied with this powerful still-undervalued method. Microinjection of a cell-impermeant fluorescent probe of either high or low molecular mass into the lumen of RTF allowed to check the tightness of this compartment and therefore to analyze the control of tight junctions assembly. A small cell-impermeant probe like Lucifer Yellow microinjected into a cell was used to demonstrate and then to study the regulation of cell to cell communication via gap junctions. The presence of calcium in the lumen of RTF was detected by microinjection of a properly designed probe: Calcium Green which becomes fluorescent in the presence of the ligand. The lumen to cell transport or endocytosis of thyroglobulin, the thyroid prohormone, which is stored into the lumen of the follicles, is currently studied by microinjection of TRITC-labeled thyroglobulin. Coupled to image processing and videorecorder systems, kinetic analysis and quantitative measurements can be performed.

Animals↗

[Proceedings: Iodine metabolism in isolated human thyroid cells (hyperplastic goitre and toxic adenoma) (author's transl)].

We present here data on hormone synthesis and thyroxine secretion by isolated human thyroid cells. Thyroid cells were dispersed by trypsinization. Thyroid tissue was surgically obtained from two euthyroid patients with hyperplastic goitre and from two thyrotoxic patients with toxic adenoma. In 6 hr incubation experiments, we observed that isolated human thyroid cells, i) concentrated iodide, ii) synthetized iodothyronines, iii) released thyroxine in the incubation medium. Each parameters was TSH dependant. That thyroxine release was due to a secretion process is suggested by similar and further documented data obtained with isolated hog thyroid cells. This technique may provide further help for thyroid physiopathology investigation in humans.

Adenoma↗

[Dissociation between the effects of TSH and dibutyryl cAMP on thyroxine secretion by isolated thyroid cells. Similarity of actions on iodide uptake and thyroxine synthesis (author's transl)].

We have compared the effects of TSH and dibutyryl-cAMP (DBC) on three parameters of iodine metabolism in isolated hog thyroid cells: iodide uptake, thyroxine (T4) synthesis and T4 secretion. As WILSON, we observed a similarity between TSH (60 mU/ml) and DBC (3 mM) actions on iodide uptake and T4 synthesis. But DBC did not reproduce the TSH stimulation of T4 secretion. Since TSH increased T4 secretion in the presence of DBC, the lack of effect of DBC was not due to an alteration of the secretory process by DBC. The present observation might suggest that the stimulatory effect of TSH on T4 secretion by isolated thyroid cells is not mediated by the adenyl cyclase-cAMP system, or could indicate that DBC may not act like cAMP on some target enzyme systems.

Animals↗