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Biomedical subjects

L Krook

Publications and source records attributed to L Krook.

At least 55 records · Page 3Linked to original sources

Mineral metabolism and immobilization osteopenia in ponies treated with 25-hydroxycholecalciferol.

The left thoracic limb was immobilized in a plaster cast in 6 grade weanling ponies for 6 weeks. Two ponies were injected intramuscularly each day with 2.4 micrograms of 25-hydroxycholecalciferol [25(OH)D3] per kg bodyweight, two with 1.2 micrograms and two received no injections. Immobilization of 25(OH)D3 treatment had no significant effect on mineral metabolism. Immobilization resulted in significantly decreased weight and specific gravity of metacarpus III (MCIII). Histologic examination and triple fluorochrome incorporation showed that the osteopenia was caused by atrophy of osteoblasts with failure of bone apposition. Immobilization caused retardation or cessation of proliferation of cartilage in the epiphyseal plate with thinning or premature closure. Treatment with 25(OH)D3 further reduced apposition and enhanced significantly the osteopenia as shown by quantitative morphometry of microradiographs of the MCIII metaphyses. There was parathyroid gland atrophy and fibrosis in proportion to the level of 25(OH)D3 treatment, which, in absence of hypercalcemia in all ponies, was interpreted to be a direct result of vitamin D treatment. It was concluded that immobilization osteopenia under the present design and duration is caused by failure of bone apposition and that treatment with 25(OH)D3 at dose levels applied is contraindicated.

Animals↗

Bone pathology and parathyroid gland activity in hypocalcemic magnesium-deficient chicks.

Growing chicks fed magnesium-deficient (150 ppm Mg) diets for 14 or 21 days developed significant hypomagnesemia and hypocalcemia compared to control chicks fed 1,000 ppm Mg. The hypocalcemia was accompanied by significant parathyroid gland hyperactivity, suggesting that magnesium deficiency did not impair parathyroid gland function. Despite parathyroid gland hyperactivity, however, bone resorption was decreased in the magnesium-deficient chicks, although bone formation was not affected by magnesium depletion. The decrease in bone resorption in the magnesium-deficient chicks was correlated with significant bone magnesium depletion and resulted in increased bone calcium content. These findings suggested that the development of hypocalcemia in magnesium-deficient chicks was related to decreased bone resorption, due to impaired osteocytic function rather than parathyroid gland insufficiency. The results also offer an explanation for the decrease in skeletal responsiveness to PTH which has been reported during magnesium depletion.

Animals↗

Hypercalcitoninism without hypercalcitoninemia.

Yearling heifers overfed protein, calcium and phosphorus with a feed recommended for high producing dairy cows developed osteopetrosis and skeletal malformations as a result of retarded bone resorption. Histologic and electron microscopic examinations showed that C cell hyperplasia was also present. The presence of C cell hyperplasia and osteopetrosis supported the diagnosis of hypercalcitoninism. Clinically unaffected heifers were studied by serum chemistry after 1 to 1.5 months on the same diet at age 6 months and after 3 months on an optimal diet to learn whether they showed evidence of hypercalcitoninism as expressed by retarded bone resorption and/or hypercalcitoninemia. The data indicated that bone resorption was retarded and that serum gastrin was elevated in the heifers without skeletal malformations while on the high calcium feed. The heifers were isocalcitoninemic. The data suggested that overfeeding calcium was sufficient to produce hypercalcitoninism but the rate of calcitonin secretion had not exceeded the rate of removal of calcitonin from blood by binding to tissue receptors and by metabolic degradation. Since calcitonin is rapidly removed from blood, hypercalcitoninism may occur without concomitant hypercalcitoninemia.

Animal Feed↗

Calcium homeostasis and bone pathology in magnesium deficient rats.

Calcium homeostasis and bone pathology were studied in weanling rats fed a low (70 ppm) magnesium diet for 2-21 days. The rats developed significant, progressive hypercalcemia after 6 days on the diet. The increase in blood calcium was accompanied by progressive hypoactivity of the parathyroid gland (PTG), as determined by histologic and morphometric analyses. Thus hyperactivity of the PTG could not have been responsible for the hypercalcemia observed. Histologic examination of femora and humeri from magnesium-deficient rats showed progressive subperiosteal hyperplasia, consisting of undifferentiated osteoprogenitor cells and fibrous tissue, after 7 days of deficiency. The presence of unmineralized osteoid tissue in the metaphyses indicated that mineralization was not proceeding normally. The alterations in differentiation of osteoprogenitor cells, together with the failure of mineralization, resulted in significantly lower rates of bone formation (as measured by fluorochrome labeling) in the magnesium-deficient rats. Basophilic cementing lines and inactive osteocytes in the cortices of bones from magnesium-deficient rats indicated that bone resorption was also severely reduced in magnesium deficiency. We postulate that bone magnesium depletion (66% by day 21) has a direct negative effect on osteoblastic and osteocytic activity, and may explain, in part, the decreased responsiveness of bone to parathyroid hormone (PTH) that has been observed in magnesium-deficient animals.

Animals↗

New York State and U.S. Federal fluoride pollution standards do not protect cattle health.

Fluoride emissions from an aluminum plant in New York State just west to the bridge to Cornwall, Ontario, Canada, are in compliance with New York State and U.S. Federal standards. Ambient air fluoride virtually never exceeds New York State standards. In a New York State dairy farm, downwind from the aluminum plant about 40% of the time and with the fields within 1300 to 2800 m from the plant, fluoride contamination of forage ranged from 13 to 25 ppm, well below the 40 ppm which is the "tolerance" level by National Academy of Sciences. Sixty-three of 82 dairy cattle on that farm were slaughtered in 1979 because of chronic fluoride poisoning. In the 19 cattle left on the farm in June, 1979, there was no dental fluorosis in calves less than 4 months of age, mild to moderate dental fluorosis in older calves and heifers and severe dental fluorosis in the 4 young adult cattle. Ash fluoride in a stillborn calf was 280 ppm and in the oldest cattle 2800; the increase was significantly correlated to age. It is concluded that New York State and U.S. Federal standards for fluoride emissions, New York State standards for ambient air fluoride and National Academy of Sciences "tolerance" levels for ingestion of fluoride do not protect cattle health.

Air Pollution↗

Ascorbic acid deficiency and hypertrophic osteodystrophy in the dog: a rebuttal.

Plasma ascorbic acid (PAA) in normal Labrador Retriever dogs less than one year of age averaged 1.22 +/- 0.05 mg/dl (x +/- sem) and was significantly higher than the value of 0.89 +/- 0.03, for Labrador Retrievers two years of age and older. No significant diurnal variation in PAA was observed. Oral or intravenous administration of 0.5 or 1.0 g of ascorbic acid (AA) elevated PAA for less than 8 hours. Injection of ACTH caused a significant decline in PAA for the initial 2 days, with variable results thereafter. Labrador Retriever puppies fed a ration high in protein, energy and calcium developed the typical skeletal diseases of overnutrition, including hypertrophic osteodystrophy (HOD). The addition or oral AA (0.5 g twice daily) had no ameliorating effect on the skeletal lesions. Instead AA supplementation resulted in relatively higher serum calcium values which, presumably by enhanced hypercalcitoninism, decreased bone resorption. Thus, AA treatment of dogs with HOD is contraindicated, as it can only aggravate the osseous lesions of HOD. The decreased PAA reported in dogs with HOD is interpreted to be the result of stress from pain.

Adrenocorticotropic Hormone↗

Intestinal calcium absorption and bone morphology in magnesium deficient chicks.

Calcium absorption was measured by 47Ca disappearance from ligated duodenal loops and 47Ca uptake by tibiae in chicks fed diets containing one of four levels of Mg for two weeks. The diets, otherwise identical, contained 88 (group 1), 150 (group 2), 200 (group 3) and 1000 (group 4) ppm Mg. There were no statistically significant differences in 47Ca absorption. Mucosal CaBP and intestinal alkaline phosphatase were slightly, but not significantly, elevated in the Mg depleted chicks in groups 1 and 2 compared to groups 3 and 4. Microscopic examination of the tibiae showed marked alterations in morphology in chicks fed the 88 ppm Mg diet. The thickness of the epiphyseal plate was reduced, and the morphologic signs of osteolysis and chondrolysis, normally observed in the metaphysis, appeared to be absent. The mid-diaphysis was thickened and showed marked reduction in both osteoblast and osteocytie activity. Blood calcium levels were significantly reduced in the Mg deficient chicks. It was concluded that Mg depletion in chicks altered Ca homeostasis primarily by changing bone structure and function.

Alkaline Phosphatase↗

Industrial fluoride pollution. Chronic fluoride poisoning in Cornwall Island cattle.

An aluminum plant on the south bank of the St. Lawrence river, southwest of Cornwall Island, Ontario, Canada, has emitted 0.816 metric tons of fluoride daily since 1973; considerably higher amounts were emitted from 1959 to 1973. The plant has been designated as the "major source of fluoride emissions impacting on Cornwall Island." Chronic fluoride poisoning in Cornwall island cattle was manifested clinically by stunted growth and dental fluorosis to a degree of severe interference with drinking and mastication. Cows died at or were slaughtered after the third pregnancy. The deterioration of cows did not allow further pregnancies. Fluoride concentrations in ash of biopsied coccygeal vertebrae increased significantly with age and were dependent on distance from and direction to the aluminum plant. Fluoride in bone ash of a 7-month old-fetus exceeded 500 ppm; fluoride thus was passed transplacentally. Analyses of fluoride in ash of bones obtained at necropsy of cattle from 4 months of age to 4 to 5 years of age showed increased amounts with age. Cancellous bone retained far higher amounts than cortical bone, a reflection of the normally higher metabolic rate of cancellous bone. Concentrations exceeding 10,000 ppm fluoride were recorded in cancellous bone of a 4-to 5-year-old cow. The target cells for fluoride in chronic fluorosis were shown to be the ameloblasts, the dental pulp cells and the odontoblasts and, in bone, primarily the resorbing osteocytes and also the osteoblasts. Atrophy and necrosis of the ameloblasts were responsible for enamel defects. The existing enamel showed brown discoloration from fluoride deposits. The pulp cells underwent fibrous and osseous metaplasia and necrosis of the ectopic bone occurred. The odontoblasts were atrophic and the dentin showed brown discoloration. The resorbing osteocytes were inactive and osteosclerosis resulted. This was especially pronounced in areas of normally great apposition, i.e. in the metaphyses. The epiphyseal plate became squeezed between petrotic bone and growth was stunted. Resorption of alveolar bone surrounding the deciduous teeth was severely retarded or arrested. A delay in eruption of permanent teeth occurred; it was up to 3.5 years in incisor teeth. Interference with the resorbing osteocytes in fluorotic bone was also demonstrated by loss of collagen birefringency in such bone. Failure of bone resorption also caused retention of trabecular bone in the cortices; this was observed even in a 4-t0-5-year-old cow. In areas where modeling into osteonic bone had begun, fluoride deposits were extremely heavy but this bone showed numerous soft osteons in microradiographs. The toxic effect of fluoride on osteocytes also resulted in the death of the cells. Such osteonecrosis occurred mainly in gnathic bone. There was atrophy of the osteoblasts. Osteopenia thus resulted from osteonecrosis and osteoporosis. Subperiosteal exostoses were not observed in long bones. The degree of fluorosis in Cornwall Island cattle was severe...

Air Pollutants↗

An electron microscopic investigation of human familial bone dysplasia. Inhibition of osteocytic osteolysis and induction of osteocytic formation of elastic fibers following calcitonin treatment.

Familial bone dysplasia with hyperphosphatasemia is characterized by excessive bone resorption early in life with resulting severe skeletal deformity. The disease can be ameliorated by treatment with human calcitonin. We have the studied the ultrastructure of bone from diseased patients before treatment and at intervals during 1 year of treatment with calcitonin. Pretreatment osteoblasts, osteoclasts, and osteocytes exhibited mitochondria which contained vast amounts of dense microcrystal deposits. Osteocytes were also distinguished by minimal organellar development. Osteoclasts were rare. Calcitonin treatment included a progressive development of a more normal bone structure. Intramitochondrial crystal deposits were absent in mitochondria of osteocytes and osteoclasts but were still present in mitochondria of osteoblasts. Surprisingly, the developing bony matrix during calcitonin treatment exhibited large numbers of elastic fibers. These appeared to develop normally in alignment with the surface membrane of osteocytes. Calcitonin treatment caused a proliferation of osteocyte organellar development. It is concluded that familial bone dysplasia is primarily a disease of osteocytes and that osteocytic activity is influenced by calcitonin.

Bone Diseases, Developmental↗

Gastrict carcinoma with pseudohyperparathyroidism in a horse.

Pseudohyperparathyroidism was diagnosed in a mature stallion presented for anorexia, weight loss, pollakiuria and constipation. Laboratory findings included hypercalcemia, hypophosphatemia, anemia and isosthenuria. Thoracocentesis indicated an exfoliating squamous cell carcinoma. At necropsy, a squamous cell carcinoma of the stomach with metastases to the abdominal and thoracic cavities was diagnosed. No osseous metastases were found. No gross or microscopic renal lesions were noted. Bone tissue showed arrested resorption, and the parathyroid gland was atrophic.

Animals↗

Vitamin D toxicity. Initial site and mode of action.

Two groups of weanling pigs, injected with 45Ca, were fed diets containing optimal calcium and phosphorus, and vitamin D3 at 1320 IU/kg feed in the control group, and 825,000 IU/kg feed in the test group. The groups were further subdivided with 2 pigs in each subgroup, with survival times of 1, 2, 3, 4, 7, and 14 days. Pigs fed the high level of vitamin D3 lost weight and anorexia, weakness, rough hair coat and labored breathing were observed. Hypercalcemia began at 12 hours and progressed rapidly after 2 days. Radioisotope sutdies interpreted in the light of histopathologic findings indicated that bone was the primary source of increased plasma calcium. Calcium was released at a rapid rate into blood from prelabeled bone which was undergoing necrosis; it was also removed from blood and deposited into bone at a slower rate due to decreased apposition. Histopathologic examination of bones from test pigs showed regressive changes in the osteocytes, chondrocytes and osteoblasts which bean within 1 day of treatment and resulted in evidence osteopenia within 7 days. Arrested osteocytic osteolysis led to the appearance of cementing lines and to chondroid core retention. Further regressive changes in the osteocytes resulted in osteocytic death and osteonecrosis with subsequent osteoclasia and osteopenia. Retardation and arrest of cartilage maturation as well as osteoblastic deficiency contributed to the osteopenia. The osteopenia was further evidenced by decreased specific gravity and ash content per unit volume of humerus. The initial negative effect on the osteocytes, chondrocytes and osteoblasts is attributed to a direct toxic effect of excessive dietary vitamin D3 since hypoparathyroidism and hypercalcitoninism, which occur secondarily to hypercalcemia, could not account for the rapid appearance of this effect, nor are they known to induce osteocytic death. The release of bone calcium and the resulting hypercalcemia in vitamin D3 toxicosis is therefore due to a direct toxic effect of the vitamin, or its metabolites, on the osteocyte resulting in osteonecrosis. It is not due to increased resorption as has been reported previously from both in vivo and in vitro investigations. Degeneration, with subsequent inflammation, but without calcification, was observed in the kidneys and in the lungs. Epithelial cells, basement membranes, and smooth muscle were affected. This conclusively demonstrates that degeneration is the primary soft tissue lesion in vitamin D3 toxicosis, and that the subsequent calcification is therefore dystrophic. Degenerative changes occurred in the parathyroid glands within 1 day of treatment resulting in necrosis, inflammation and atrophy within 4 days. Relative fibrosis was seen as the parenchyma receded. The parathyroid gland changes were considered a direct effect of vitamin D3 toxicity since they occurred with only mild hypercalcemia and since necrosis of parathyroid cells has not been demonstrated with hypercalcemia either in vivo or in vitro.

Animals↗

Lamellated periosteal reactions: a radiologic and histologic investigation.

The lamellated periosteal reaction produced in the hind limbs of seven beagle puppies following ligation of the femoral vein was used as a model for studying the mechanism of lamellated new bone formation. Rather than resulting from alternating periods of slow and fast growth, this lamellated periosteal reaction was caused by acceleration of the normal process of periosteal bone growth. This involvement is thought to explain the "physiologic" periosteal new bone of early infancy.

Animals↗

Calcitonin treatment in hereditary bone dysplasia with hyperphosphatasemia: a radiographic and histologic study of bone.

Two children with bone dysplasia with hyperphosphatasemia (juvenile Paget's disease) were treated with synthetic human calcitonin. The progress of bone disease was monitored radiographically and histologically. Pretreatment radiographs showed markedly abnormal bone, characterized by lack of discrete cortex and absence of normal modeling. During treatment a discrete cortex was formed composed of compact bone, and more normal modeling occurred. This coincided with a histologic change from woven bone before treatment to a more lamellar type during treatment.

Alkaline Phosphatase↗