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Biomedical subjects

C W Cooper

Publications and source records attributed to C W Cooper.

At least 109 records · Page 6Linked to original sources

Medullary thyroid carcinoma: relationship of method of diagnosis to pathologic staging.

Medullary thyroid carcinoma (MTC) develops in virtually all patients affected with multiple endocrine neoplasia type II (MEN II), a disease inherited as an autosomal dominant trait. The thyroid tumor cells secrete calcitonin (CT) and the detection of elevated plasma levels (>300 pg/ml) of this hormone in MEN II kindred members strongly suggests the presence of MTC even though it may not be evident clinically. Intravenously administered calcium ion (Ca(++)) and pentagastrin (Pg) are potent CT secretagogues which are of particular value in establishing the early diagnosis of MTC. In evaluating seven kindreds with MEN II, we detected 90 patients with MTC. Depending on the method of diagnosis, they could be divided into three categories: Group 1; patients with no clinical evidence of MTC whose undetectable basal plasma calcitonin levels became elevated following intravenous Ca(++) or Pg, Group II; patients with no clinical evidence of MTC who had elevated basal plasma CT levels, and Group III; patients with clinically evident MTC. At the time of diagnosis of MTC, the patients in Group I were younger (20.5 +/- 1.9 years) than the patients in Group II (32.5 +/- 4.7 years, p < 0.005) and Group III (34.3 +/- 2.0, p < 0.00005). The incidence of residual MTC, as indicated by an elevated plasma CT level following provocative testing postoperatively, was less frequent in patients diagnosed biochemically ([6/34]; Group I, 4/26 and Group II, 2/8) than in those diagnosed clinically (Group III, 15/26, p < 0.002). Furthermore, regional nodes were involved less often in patients diagnosed biochemically ([5/28]; Group I, 2/22 and Group II, 3/6) than in those diagnosed clinically (Group III, 15/24, p < 0.02). Distant metastases were only evident in Group III patients. Patients with MEN II who had the diagnosis of MTC established biochemically rather than clinically, had a more favorable pathological stage of disease at the time of thyroidectomy. This was especially true if the biochemical diagnosis had been by provocative testing.

Adolescent↗

Acute and chronic fluctuations of immunoreactive and biologically active plasma calcitonin in the rat.

Using a sensitive calcitonin (CT) immunoassay and a newly developed bioassay capable of detecting 0.025 MRC mU CT, we have studied acute and chronic plasma CT fluctuations in male and female rats. Immunoassay of serial plasma samples revealed progressive increases in plasma CT concentrations during aging; female rats have higher CT concentrations than age-matched males. Acute periodic CT fluctuations were discovered by immunoassay of plasmas obtained at 3-h intervals; the greatest values occurred just before and during feeding. Fed rats have higher CT than starved rats. We have used immunoadsorbent chromatography to concentrate specifically CT moieties from large volumes of plasma for concurrent immunoassay and bioassay measurements of circulating CT. These concurrent measurements of immunoextracted plasma CT demonstrate that for normal rats, our immunoassay measurements correspond to bioassay measurements. In 1-yr-old rats on a regulated feeding schedule, the biological (hypocalcemic) activity of CT recovered from 15 ml peripheral plasma ranged from less than 0.15 mU in starved males to 0.78 mU in feeding females. We conclude that biologically active CT circulates in normal rats and that the blood concentration of biologically active CT progressively increases during somatosexual maturation, being highest in old females, and increases acutely just before and during feeding.

Aging↗

Stimulation of gastrin secretion in the pig by parathyroid hormone and its inhibition by thyrocalcitonin.

Gastrin secretion was studied in 16 young anesthetized pigs weighing 14-26 kg. Test substances were infused (0.1 ml/min x 10-20 min) directly into the gastric antrum via a catheter in the right gastroepiploic artery. Samples were collected from a catheter in the right gastroepiploic vein and plasma gastrin was measured by radiommunoassay. The following results were observed: 1) basal gastrin in antral venous blood was 10-5 times that in peripheral blood (620+/-222 pg/ml vs. 41+/-10 pg/ml, 2) native bovine parathyroid hormone (PTH) and synthetic human 1-34 PTH (0.02-4U/min) produced rapid (within 10-30 min) and pronounced (approximately 10-fold) increases in gastrin release with no increase in plasma calcium and, in several animals, in the face of a falling plasma calcium concentration, 3) neither acute thyroidectomy nor infusion of porcine thyrocalcitonin (TCT), 0.5-2.5 U/min) consistently altered basal gastrin secretion (N=3-6), and 4) infusion of TCT (0.5 U/min)along with PTH (2U/min) significantly suppressed the 10-11-fold increase in gastrin release observed when PTH subsequently was infused alone in each pig (N=6). The results demonstrate that PTH can stimulate gastrin secretion in the pig and that TCT can suppress this effect.

Animals↗

Improvement and initial in vivo application of the radioimmunoassay of rat thyrocalcitonin.

Previously we reported a homologous radioimmunoassy for rat thyrocalcitonin (TCT) which was sensitive enough (2--3 ng/ml serum) to measure TCT in thyroid venous blood or thyroid gland extracts but could not detect TCT in peripheral blood even after provocative challenge with iv calcium. In the present study chicken antisera to rat TCT were developed which were sufficiently sensitive (120--240 pg/ml serum) to permit initial evaluation of changes in TCT in rat peripheral blood. The following results were observed: (1) Basal serum TCT in young male Holtzman rats was undetectable, being less than 120--240 pg/ml; (2) induction of marked hypercalcemia by iv calcium increased TCT to approximately 1000--3000 pg/ml within 5 min; (3) thyroid cautery increased TCT to approximately 1000 pg/ml in 5--15 min; (4) calcium gavage (12.2 mg Ca/100 g) produced modest hypercalcemia in 30--60 min and increased serum TCT to approximately 500 pg/ml; (5) injection of isoproterenol raised serum TCT detectably; (6) injection of large doses of gastrin or pentagastrin did not produce detectable increases in TCT 5 or 30 min later. The results show that suitable antisera to rat TCT can be developed in chickens and applied to the measurement, by radioimmunoassay, of elevated circulating levels of TCT in the rat.

Animals↗