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Biomedical subjects

G Jossart

Publications and source records attributed to G Jossart.

3 recordsLinked to original sources

Immunoprecipitation isolates multiple TSH receptor forms from human thyroid tissue.

Attempts to purify the thyroid-stimulating hormone receptor (TSHR) have been complicated by its susceptibility to proteolysis and its low level of expression in thyrocytes and many transfected cells. Controversy exists over its size and structure. Multiple, single-polypeptide forms of the TSHR (230, 187, and 95-100 kDa) have been recently identified in immunoblots of crude plasma membranes prepared from COS-7 cells transfected with rat or human cDNA, but the relationship of these receptor species to the TSHR in human thyroid tissue has been heretofore unknown. We have developed a technique for immunoprecipitation of the TSHR which employed IgG purified from a polyclonal rabbit antiserum to TSHR residues 352-366. We have used immunoprecipitation to isolate the previously characterized 95-100 kDa TSH-holoreceptor, 187 kDa intermediate, and 230 kDa precursor forms of the TSHR from plasma membrane prepared from transfected COS-7 cells and human thyroid tissue. The presence of all three forms was not altered by the addition of reducing agent to the sample buffer, demonstrating the single polypeptide structure of the TSHR. This is, to our knowledge, the first report of the purification from transfected COS-7 cells of these TSHR species identified previously only in immunoblots of crude plasma membrane, and the first report of the identification by any means of these TSHR forms in human thyroid tissue. The isolation of TSHR from human thyroid tissue requires confirmation by direct means, but promises to make the receptor available in a soluble form for studies of its structure and function.

Cell Line

Pharmacodynamics of local heparin infusion in a canine renal allograft model.

Inasmuch as heparin has demonstrated immunosuppressive activity in vivo and in vitro, we utilized a canine renal transplant model to estimate the first-pass extraction of heparin during renal artery infusion and to examine the effect of regional heparin delivery on the histologic features of rejection and allograft survival. Four autotransplanted mongrel dogs with programmable, implantable pump/catheter systems received a continuous intrarenal heparin infusion which was increased daily in stepwise fashion. Activated coagulation time (ACT) rose linearly with local heparin dose, indicating that heparin clearance remained constant over the dosage range studied. Comparison of these ACT values with those measured during same-dose i.v. infusion and those predicted from i.v. bolus studies revealed that there was little or no first-pass renal extraction of heparin by the transplanted kidney. In nine allografted dogs, the heparin infusion rate was adjusted according to daily ACT to maximize local heparin delivery but still maintain the ACT close to 125% of base line. There was no difference in overall survival between the heparin-treated dogs and a group of 14 untreated controls, and vascular rejection was significantly more intense in the heparin-treated animals. We conclude that intrarenal dosing of heparin to the point of producing systemic anticoagulation is limited by failure of the transplanted kidney to eliminate drug and does not prolong canine renal allograft survival.

Animals