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W P Deiss

Publications and source records attributed to W P Deiss.

At least 19 recordsLinked to original sources

Characterization of a new animal model of chronic hyperprolactinemia.

Animal models of chronic prolactin (PRL) excess have included rats bearing transplantable pituitary tumors that have produced other hypophyseal hormones in addition to PRL. We report characterization of a new model, the Buffalo rat implanted with the MMQ tumor, a line developed from the 7315a line. Rats implanted with the MMQ tumor have serum PRL levels that increase with time and correlate with the estimated volume of the subcutaneous tumor. When rats are killed 4 weeks after implantation, serum PRL levels are strikingly higher in tumor-bearing rats compared with controls (females, 2,723 +/- 266 v 192 +/- 46 ng/mL, P less than .0001; males, 1,637 +/- 213 v 99 +/- 11 ng/mL, P less than .0001). Serum PRL levels measured by the Nb2 lymphoma assay were higher than immunoassay measurements in both tumor-bearing and control Buffalo rats. Sephadex chromatography of serum from tumor-bearing rats showed that most of the PRL immunoreactivity co-eluted with 125I-rPRL. Neither serum growth hormone (GH) nor luteinizing hormone (LH) levels were different from controls in tumor-bearing rats. Female MMQ-bearing rats had lower estradiol levels. At death, the wet weights of adrenal glands, kidneys, and gonads were not affected by the presence of tumor. In contrast, tumor-bearing rats had increased spleen weight and histological evidence of white pulp hyperplasia. The Buffalo rat implanted with the PRL-only MMQ tumor is a promising new tool for the study of chronic hyperprolactinemia.

Animals

Hypercalciuria in a new rat model of hyperprolactinemia.

Hypercalciuria has been reported in rats with mild hyperprolactinemia due to implantation of anterior pituitary glands under the kidney capsule and in rats bearing transplantable tumors that secrete large amounts of prolactin (PRL) and growth hormone (GH). We studied Buffalo rats implanted subcutaneously with the new MMQ pituitary tumor line that secretes only PRL. Urinary calcium excretion increased as the tumors grew. Three weeks after tumor implantation in female rats, the urinary calcium excretion was 1.102 +/- 0.092 mg/100 g body weight (BW).24 hours compared with controls, 0.296 +/- 0.079, P less than .0005. Male tumor-bearing rats also had increased urinary calcium excretion compared with male controls. In tumor-bearing rats the urinary calcium excretion factored for urinary sodium excretion, dietary calcium intake, or urinary creatinine excretion was elevated. Urinary calcium excretion was correlated with serum PRL levels and with estimated tumor volume. Serum calcium, immunoassayable parathyroid hormone, and urinary cyclic adenosine monophosphate (cAMP) excretion were normal in the tumor-bearing rats. There was some evidence of loss of bone calcium in rats bearing the MMQ tumor, and serum levels of calcitonin were decreased. These results are similar to those found in anterior pituitary-grafted hypercalciuric rats. It is unlikely that parathyroid hormone (PTH) abnormalities are responsible for the hypercalciuria in the MMQ-bearing rats. The pituitary gland may have an effect on the distal renal tubule to decrease calcium reabsorption.

Animals

Does hypogonadism contribute to the occurrence of a minimal trauma hip fracture in elderly men?

The risk of MTHF in hypogonadal elderly men was investigated with a case-control model. Cases and controls were selected from males age 65 years and older residing in the 120-bed McGuire Veterans Affairs Medical Center Nursing Home Care Unit over a 5-day interval. Historical data and serum free testosterone (fTe) were available on 17 subjects with MTHF and 61 controls. When groups were compared for differences in age, race, alcohol abuse, cigarette abuse, and diseases or drugs that may be associated with MTHF, only race was significantly different. Although 25.6% of residents were black, 100% of MTHF subjects were white (P = 0.004). Hypogonadism was defined as a random fTe less than 9 pg/mL (normal 9 to 46 pg/mL) and was found in 21 subjects (26.9%). Of cases with a MTHF, 58.8% were hypogonadal compared with only 18.0% of controls. Utilizing logistic regression, a highly significant association was found between hypogonadism and MTHF (P = 0.008), and using the odds ratio, subjects with hypogonadism were 6.5 times more likely to have a MTHF (95% CI 2.0 to 20.6). To adjust for race, the odds ratio was repeated excluding black subjects, and the results remained highly significant (4.6, 95% CI 1.3 to 16.2). We conclude that hypogonadal elderly white men may be at increased risk for MTHF.

Black or African American

Hypogonadism does not mediate urinary calcium loss in pituitary-grafted rats.

Rats rendered chronically hyperprolactinemic by implantation of extra anterior pituitary glands (AP) under the kidney capsule have excess urinary calcium excretion. Although serum testosterone levels are normal in male AP-grafted rats, more subtle androgen deficiency might contribute to the increased calcium loss. Female AP-grafted rats lose the normal estrous cycle, which might also alter calcium homeostasis. The urinary calcium and calcium/sodium excretion ratio in gonadectomized AP-grafted rats of both sexes were compared with that of otherwise intact AP-grafted rats and muscle-grafted control rats. AP-grafted rats had increased urinary calcium excretion and calcium/sodium excretion ratio, regardless of gonadal status. Treatment of castrated male AP-grafted animals with testosterone or dihydrotestosterone did not have a significant effect on urinary calcium loss, nor did estrogen replacement of ovariectomized female AP-grafted rats. These studies indicate that the hypercalciuria of the AP-grafted rat is not mediated via an anti-gonadal effect of the prolactin-secreting pituitary graft.

Calcium

Myocardial hydroxyproline and mechanical response to prolonged pressure loading followed by unloading in the cat.

To determine the myocardial response to prolonged pressure-loading and unloading, kittens weighing 0.8-1.2 kg underwent pulmonary artery banding, which initially elevated right ventricular (RV) systolic pressure by 10-15 mm Hg. 52 and 76 wk later; RV weight/body weight had increased by approximately 80%. Total RV hydroxyproline had increased significantly, whereas hydroxyproline concentration was unchanged from that of nonbanded animals of comparable age. In isometrically contracting RV papillary muscles, peak active force was significantly less at 76 wk (3.3 +/- 0.8 [SD] g/mm2 than at 52 wk (5.1 +/- 0.8 g/mm2) or in nonbanded animals (4.8 +/- 0.8 g/mm2). Velocity of muscle shortening at comparable loads was unchanged after 52 wk but was significantly less after 76 wk. In nonstimulated, slowly stretched muscles, passive stiffness constants, alpha and beta, derived from delta = alpha(e beta epsilon - 1), where delta is instantaneous stress and epsilon is Lagrangian strain, were unchanged by banding. The band was removed after 52 wk in additional animals that were studied 24 wk later. In those animals with normal RV pressures at death, hypertrophy had regressed and hydroxyproline concentration was comparable to that of nonbanded and banded animals; Active and passive mechanical function remained normal. In this model, changes in hydroxyproline parallel changes in muscle mass, and passive stiffness remains normal during development and regression of hypertrophy. Removal of the pressure load after prolonged hypertrophy prevents or retards the late development of myocardial dysfunction.

Animals

Hydroxyproline and passive stiffness of pressure-induced hypertrophied kitten myocardium.

Passive stiffness and hydroxyproline content of myocardium hypertrophied by pressure-loading were determined in kittens 2, 8-16, and 24-52 wk after pulmonary artery banding, which initially elevated right ventricular systolic pressure by 10-15 mm Hg. Right ventricular mass increased by approximately 75%, three-quarters of which occurred during the first 2 wk after banding. Passive stiffness was assessed from resting length-tension relations of isometrically contracting isolated right ventricular papillary muscles. Stiffness constants, alpha and beta were determined from the relationship sigma = alpha (e beta epsilon - 1) where sigma = stress and epsilon = Lagrangian strain. Elastic stiffness (d sigma/d epsilon) was derived from: d sigma/d epsilon = beta sigma + beta alpha. Right ventricular hydroxyproline increased in proportion to muscle mass so that hydroxyproline concentration remained unchanged after banding. Both alpha, beta, and elastic stiffness-stress relations were similar to values in nonbanded controls. Thus, we did not observe an increase in passive stiffness or hydroxyproline concentration of pressure-stiffness or hydroxyproline concentration of pressure-induced hypertrophied myocardium in contrast to most previous studies.

Animals

Bone matrix studies. Influences of parathyroid extract, calcitonin, and cholecalciferol and of rickets and its treatment.

Bones from young rats were incubated with radioactive glucosamine and proline. The concentrations and specific activities of matrix glycosaminoglycan fractions, prepared by a cetylpyridinium chloride method, and the specific activity of insoluble collagen hydroxyproline were determined. Acute parathyroid extract treatment increased labelling of hyaluronic acid and a glycopeptide fraction. These effects were partially blocked by calcitonin treatment which had no effect by itself. Parathyroid extract inhibited collagen synthesis and this effect was not blocked by calcitonin. Effects of these two hormones on labelling of chondroitin sulfate fractions were more variable. Vitamin D-3 caused an increase in labelling of all matrix fractions measured in bone from thyroparathyroidectomized rats, but its stimulating effect upon collagen synthesis was blocked by parathyroid extract. Bones from rats made rachitic on a phosphorus and vitamin D-deficient diet were incubated in vitro with radioactive glucosamine and proline. Over a three-week period rachitic bone exhibited a progressive fall in concentration and labelling of a glycopeptide-hyaluronic acid fraction, while pair-fed animals supplemented either with phosphorus alone or with phosphorus and vitamin D-3 not only remineralized their bones, but the bones showed a pronounced increment in concentration and labelling of this fraction. Both treatment regimens also enhanced chondroitin sulfate and collagen labelling.

Animals