PubMed Health⌕ Search

Biomedical subjects

R Nayyar

Publications and source records attributed to R Nayyar.

9 recordsLinked to original sources

Hyperparathyroidism induced by hypothyroidism.

The coexistence of hyperparathyroidism and thyroid tumors and/or chronic thyroiditis has raised the possibility of an etiologic relationship. The present study was designed to test the hypothesis that the chronic elevation of thyroid-stimulating hormone (TSH) is related to the development of hyperparathyroidism. Three groups of 24 rats each were treated for 12 weeks as follows: group 1 received propylthiouracil (PTU) in their deionized water; group 2 received PTU and thyroid hormone to suppress TSH and to serve as a control group for possible direct effects of PTU; and group 3 was not treated at all and served as another control group. At 12 weeks, 95% of group 1 rats (PTU only) showed hyperplasia of the parathyroids with a 30% mean increase in circulating parathormone.

Administration, Oral↗

High phosphate diet-induced primary hyperparathyroidism: an animal model.

Primary hyperparathyroidism (PHPT) is increasing in incidence and detection, primarily because of the aging of our population and the widespread use of automated serum calcium determination. As a result, a substantial number of "early" cases or "biochemical" PHPT are being detected. The indications for parathyroidectomy in such early cases of PHPT are currently under debate, primarily because of economic issues. These factors underscore the importance of research into the basic mechanisms and natural history of PHPT. We investigated an animal model of diet-induced PHPT that retains two crucial aspects of PHPT: elevation of endogenously produced parathyroid hormone (PTH), accompanied by gross and microscopic changes in the native parathyroid glands. Female Long-Evans rats were divided into six groups of 15 each and fed a control diet (Ca/P of 1:2) or a high-phosphate diet (Ca/P of 1:7) for 1-, 2-, or 3-month intervals. Compared with the control animals, serum PTH levels were elevated at all three time intervals in the experimental group, whereas serum calcium levels were decreased at all time intervals. Serum creatine levels were also elevated at all time intervals, whereas serum phosphorus levels did not change. Parathyroid histopathologic studies demonstrated no change at 1 month, whereas nine of 15 experimental animals showed mild hyperplasia at 2 months and 13 of 14 showed mild to moderate hyperplasia with gland enlargement at 3 months compared with control animals. Histopathologic examination of the kidneys showed no change at 1 month but focal parenchymal inflammation with calcium deposition at 2 and 3 months in the experimental groups. In conclusion, the high-phosphate diet successfully induced the earliest changes of PHPT: elevated PTH levels and parathyroid hyperplasia. However, because renal function was mildly compromised early on, some element of early secondary (renal) hyperparathyroidism may have supervened quickly. Because this model is simple, it may be useful to investigate this complex syndrome further, as well as its natural history and the complications it produces in other organs such as the kidneys.

Animals↗

Anatomical and functional effects of estrogen-induced prolactinomas on the rat hypothalamus.

Although estrogen-induced prolactinomas have been widely studied, little attention has been accorded to local pressure effects of the tumor on the hypothalamus and portal vasculature. To portray the magnitude of this phenomenon, four groups of 12-13-week-old female Fisher 344 rats were studied. Group 1 was an intact control receiving a subcutaneously (SC) placed placebo pellet; group 2 was an ovariectomized control with a SC placed placebo pellet; group 3 was ovariectomized with a 10 mg SC placed diethylstilbestrol (DES) pellet; and group 4 was ovariectomized receiving both 10 mg DES and 10 mg SC placed bromocriptine pellets. Blood samples were obtained at 4 weeks, and the animals were sacrificed at 8 weeks after pellet implantation at which time blood, pituitary and hypothalami were obtained. At 4 weeks serum prolactin levels were similarly and significantly elevated above the control groups in both the DES and DES/bromocriptine groups. By 8 weeks, however, serum prolactin level(s) in the DES-treated animals had tripled from the 4-week value, while levels in the DES/bromocriptine-treated animals were unchanged from the 4-week values. This finding matched the observation that the DES-treated animals had pituitaries 2.5-fold heavier than the DES/bromocriptine animals. The gross and histologic structure of the hypothalami and portal vessels were markedly disrupted in DES-treated rats and much less so in the DES/bromocriptine-treated group. These findings lead us to speculate that the pathogenesis of DES-induced prolactinomas proceeds in two phases: First, there is an early chemical induction phase in which estrogen directly and indirectly stimulates lactotrope proliferation and, second, a mechanical disinhibition phase, where tumor-induced destruction of the hypothalamus and portal vessels unleashes the pituitary from the dopaminergic restraining effects of the hypothalamus.

Animals↗

Radioiodine sensitivity of parafollicular C cells in aged Long-Evans rats.

An earlier study from our laboratory demonstrated that the incidence of thyroid C cell neoplasia in aging Long-Evans rats was high. When radioactive iodine was administered to 8-week-old Long-Evans rats, this incidence was reduced, although thyroid follicular cell neoplasia was increased. The aim of this study was to determine whether iodine-131 (131I) administered to an aged population of Long-Evans rats with established C cell hyperplasia would have a C cell ablative effect as pronounced as that observed in studies of young rats. For this study, 180 18-month-old Long-Evans rats (90 male and 90 female) were used. Baseline serum calcitonin levels were determined, and control and experimental groups containing equal numbers of animals were designated. 131I was administered by intraperitoneal injection to the experimental group, while equal volumes of saline solution were given to the control group. Blood samples for determination of serum calcitonin levels were obtained at 6-week intervals until the rats were 24 months old. Thyroid glands were then removed, and tissues were fixed, sectioned, and stained with hematoxylin and eosin and with peroxidase-antiperoxidase (PAP) using an anticalcitonin antibody. Examination of thyroid tissues showed that the incidence of C cell neoplasia was significantly reduced in irradiated animals as compared with nonirradiated controls (chi 2 analysis, p less than 0.05). PAP staining demonstrated diminished intracytoplasmic calcitonin in the radiation-treated group. Analysis of serum calcitonin levels over time showed significantly lower levels in the irradiated rat group than in the nonirradiated group (p less than 0.006).

Aging↗

Androgen-mediated development of irradiation-induced thyroid tumors in rats: dependence on animal age during interval of androgen replacement in castrated males.

When male Long-Evans rats at age 8 weeks were radiation treated (40 microCi Na131I), thyroid follicular adenomas and carcinomas were observed at age 24 months with a high incidence of 94%. Castration of males prior to irradiation significantly reduced this tumor incidence to 60%. When testosterone (T) was replaced in castrated, irradiated male rats, differentially increased incidences of thyroid tumors occurred, depending on the time interval for hormone replacement. Immediate (age 2-6 mo) or early (age 6-12 mo) T replacement at approximate physiologic levels led to thyroid follicular tumor incidences of 100 and 82%, respectively, whereas intermediate (12-18 mo) or late (18-24 mo) T treatment led to only 70 and 73% incidences, respectively. Continuous T replacement (2-24 mo) in castrated irradiated male rats raised thyroid tumor incidence to 100%. Since elevated thyroid-stimulating hormone (TSH) is a reported requisite for development of radiation-associated thyroid tumors, the effects of T on serum TSH levels were examined. Mean serum TSH values in all irradiated animal groups were significantly elevated above age-matched nonirradiated animals at 6, 12, 18, and 24 months. Serum TSH levels were higher in continuous T-replaced irradiated castrates than in intact, irradiated males, whereas such intact male TSH levels were greater than those for irradiated castrates without T treatment. Interval T replacement in castrated male rats was generally associated with increased serum TSH levels during the treatment interval and with lowered TSH levels after discontinuation of T treatment, particularly in irradiated rats. However, when irradiated, castrated males received late T replacement (age 18-24 mo), there was no elevation of TSH at the end of the treatment interval. Thus an indirect effect of T via early stimulation of TSH may be at least partly responsible for the high incidence of irradiation-induced thyroid tumors in rats.

Age Factors↗

Testosterone enhancement of thyroid carcinoma in rats: the role of TSH.

Radiation treatment of Long-Evans male rats (40 mu Ci Na131I at the age of 2 months) led to a high incidence of thyroid follicular carcinomas at the age of 24 months; castration of males before irradiation caused a significant reduction in incidence of this tumor. In this study, replacement testosterone (T) was administered to castrated male rats by means of implanted, slow-release hormone-containing pellets (T-physiologic dose). Three testosterone doses (0.1T, 1.0T, and 30T) were used to treat groups of castrated irradiated and castrated nonirradiated rats from 2 to 18 months of age. The incidence of thyroid follicular carcinoma at 18 months in irradiated rats depended on the dose of replacement testosterone used. Tumor incidence was 8%, 14%, 41%, and 50% after treatment with 0T, 0.1T, 1.0T, and 30T, respectively. The incidence of thyroid follicular carcinoma in nonirradiated rats ranged from 0 to 7%. Mean serum thyroid-stimulating hormone (TSH) values in irradiated animal groups were elevated significantly above those for age-matched nonirradiated animals. The degree of TSH elevation in irradiated animals was related directly to the testosterone-replacement level. All rat groups showed age-dependent decreases in serum T4 levels, and T4 levels were also lowered by replacement testosterone in nonirradiated castrated animals. In aging irradiated animals, serum T4 levels were similarly decreased by testosterone, despite elevated TSH levels in these groups. In this study, testosterone appeared to act indirectly to promote development of irradiation-induced thyroid tumors by early and prolonged elevation of TSH levels.

Adenocarcinoma↗

Isolation and characterization of a rough microsomal fraction from rat kidney that is enriched in lysosomal enzymes.

1. A special population of rough microsomal material (microsomes) rich in lysosomal acid hydrolases was separated by isopycnic centrifugation as a discrete fraction (RM(2)) from the bulk of rough microsomal material in rat kidney because of its greater density. 2. The specific activities of five acid hydrolases in the RM(2) fraction were approximately one-half those of a purified lysosomal (L) fraction and 10- to 30-fold greater than those of an ordinary rough microsomal (RM(1)) fraction. 3. These special rough microsomes have a distinctive ultrastructure and electron-cytochemical properties. Their cisternal content resembles the matrix of lysosomes in that it is electron-dense, osmiophilic and plumbophilic and gives a positive reaction for acid phosphatase activity. 4. Polyacrylamide-gel electrophoresis of soluble proteins from the L fraction resolved nine anionic glycoproteins, most of which exhibit acid hydrolase activities (Goldstone & Koenig, 1970, 1973; Goldstone et al., 1971a). The most anionic glycoprotein is the acidic lipoglycoprotein of the lysosomal matrix (Goldstone et al., 1970). 5. Polyacrylamide-gel electrophoresis of soluble proteins from the RM(2) fraction resolved two cationic glycoproteins with acid hydrolase activities (Goldstone & Koenig, 1973) and an anionic glycoprotein with the same electrophoretic mobility as the lysosomal lipoglycoprotein, but without its lipid constituents or capacity to bind the basic fluorochrome Acridine Orange. These constituents are considered to be the precursors of the lysosomal glycoproteins.

Acid Phosphatase↗