thyroxine has been researched along with Bone Loss, Osteoclastic in 81 studies
Thyroxine: The major hormone derived from the thyroid gland. Thyroxine is synthesized via the iodination of tyrosines (MONOIODOTYROSINE) and the coupling of iodotyrosines (DIIODOTYROSINE) in the THYROGLOBULIN. Thyroxine is released from thyroglobulin by proteolysis and secreted into the blood. Thyroxine is peripherally deiodinated to form TRIIODOTHYRONINE which exerts a broad spectrum of stimulatory effects on cell metabolism.
thyroxine : An iodothyronine compound having iodo substituents at the 3-, 3'-, 5- and 5'-positions.
Excerpt | Relevance | Reference |
---|---|---|
"Hydroxyproline excretion was increased by hyperthyroid patients." | 9.05 | [Effects of propranolol and indomethacin upon urinary hydroxyproline in hyperthyroid patients (author's transl)]. ( Benzoni, D; Beylot, M; Bodson, A; Mornex, R; Riou, JP; Vincent, M, 1982) |
" The fracture risk increases in cases of untreated thyrotoxicosis, when administered suppressive doses of thyroxine, in postmenopausal women and patients with low peak bone mass." | 8.80 | [The influence of thyrotoxicosis and thyroxine therapy on the risk of osteoporosis]. ( Bolanowski, M; Zatońska, K, 2000) |
"The effect of antithyroid treatment on the disturbed calcium-phosphorus metabolism in hyperthyroidism was studied in 16 patients." | 7.66 | Effect of antithyroid treatment on calcium-phosphorus metabolism in hyperthyroidism. I: Chemical quantities in serum and urine. ( Christensen, MS; Melsen, F; Mosekilde, L; Sørensen, NS, 1978) |
"Hydroxyproline excretion was increased by hyperthyroid patients." | 5.05 | [Effects of propranolol and indomethacin upon urinary hydroxyproline in hyperthyroid patients (author's transl)]. ( Benzoni, D; Beylot, M; Bodson, A; Mornex, R; Riou, JP; Vincent, M, 1982) |
" The fracture risk increases in cases of untreated thyrotoxicosis, when administered suppressive doses of thyroxine, in postmenopausal women and patients with low peak bone mass." | 4.80 | [The influence of thyrotoxicosis and thyroxine therapy on the risk of osteoporosis]. ( Bolanowski, M; Zatońska, K, 2000) |
"In the hypothyroidism men group: (1) the bone mass was lower than the control group with significant differences, (2) the bone resorption index CTX-1 was significantly higher than that in the control group and calcium and phosphorus were not different from those in healthy control subjects, and (3) TSH was positively correlated with CTX-1." | 4.12 | Study of the relationship between FT3, FT4, and TSH with bone resorption indices in men with hypothyroidism. ( Al-Saadi, AH; Mohamed, AH; Naji, NS, 2022) |
"Serum calcium, phosphorus, total and bone-specific alkaline phosphatase, procollagen type 1-C peptide (PICP), osteocalcin, IL-6 and TNF-alpha measurements were performed and deoxypyridinoline (free DPD), calcium, phosphorus and creatinine levels were measured in fasting morning urine specimens of all hyperthyroid patients and all controls." | 3.71 | Bone remodelling markers and serum cytokines in patients with hyperthyroidism. ( Akalin, A; Alatas, O; Colak, O; Efe, B, 2002) |
"Serum osteocalcin (OC) and bone-specific alkaline phosphatase (B-ALP), reflecting bone formation, and urinary pyridinoline cross-link (Pyr) excretion, reflecting bone resorption, have been measured in 27 patients with hyperthyroidism and 30 age-matched controls using direct and novel immunoassays." | 3.69 | Markers of bone turnover in hyperthyroidism and the effects of treatment. ( Bertholin, A; Delmas, PD; Garnero, P; Riou, JP; Vassy, V, 1994) |
"The effect of antithyroid treatment on the disturbed calcium-phosphorus metabolism in hyperthyroidism was studied in 16 patients." | 3.66 | Effect of antithyroid treatment on calcium-phosphorus metabolism in hyperthyroidism. I: Chemical quantities in serum and urine. ( Christensen, MS; Melsen, F; Mosekilde, L; Sørensen, NS, 1978) |
"We found that urinary markers of bone resorption are best measured on 2-hour fasting samples, because results on random urine showed poor precision and less decline with therapy." | 2.69 | Utility of biochemical markers of bone turnover in the follow-up of patients treated with bisphosphonates. ( Garber, J; Greenspan, SL; Lee, SL; Moses, AC; Rosen, HN; Ross, DS, 1998) |
"Intense bone resorption is a natural phenomenon also observed in some teleosts, during reproductive migration and fasting." | 1.34 | Thyroid hormone-induced demineralisation of the vertebral skeleton of the eel, Anguilla anguilla. ( Aroua, S; Baloche, S; Dufour, S; Kacem, A; Lopez, E; Meunier, F; Rousseau, K; Sbaihi, M, 2007) |
"However, patients receiving surgery for pituitary tumors or parasellar lesions have not been well studied for their bone sequel in Japan." | 1.33 | High risk of osteopenia and bone derangement in postsurgical patients with craniopharyngiomas, pituitary adenomas and other parasellar lesions. ( Matsuno, A; Okazaki, R; Okinaga, H, 2005) |
"Hyperthyroidism is characterized by accelerated bone turnover, caused from direct stimulation of bone cells by increased thyroid hormones." | 1.32 | Serum osteocalcin levels in hyperthyroidism before and after antithyroid therapy. ( Atay, A; Barsal, G; Erciyas, F; Hekimsoy, Z; Taneli, F, 2004) |
"However, of patients with Graves' disease (GD) maintained on antithyroid drug (ATD) treatment, some exhibit persistent suppression of TSH long after normalization of their serum free T3 (FT3) and free T4 (FT4) levels." | 1.31 | Persistent increase in bone turnover in Graves' patients with subclinical hyperthyroidism. ( Inaba, M; Ishikawa, T; Kumeda, Y; Kurioka, Y; Morii, H; Nishizawa, Y; Tahara, H, 2000) |
" Dose-dependent inhibition of resorption was seen with SB-273005 after 7 days of dosing using Dpd as a measure of bone resorption." | 1.31 | Rapid inhibition of thyroxine-induced bone resorption in the rat by an orally active vitronectin receptor antagonist. ( Gowen, M; Hoffman, SJ; Lark, MW; Miller, WH; Stroup, G; Vasko-Moser, J, 2002) |
"The minimal dosage of L-T4 (mean +/- standard error = 1." | 1.30 | Prospective study of bone loss in pre- and post-menopausal women on L-thyroxine therapy for non-toxic goitre. ( Astazi, P; Caradonna, P; Carrozza, C; De Rosa, G; Giacomini, D; Testa, A, 1997) |
"In mouse calvariae, the effect on bone resorption of the thyroid hormones is dependent on increased cellular replication, perhaps of osteoclast precursors, or other bone cells involved in the resorptive process." | 1.30 | Prostaglandin-independent stimulation of bone resorption in mouse calvariae and in isolated rat osteoclasts by thyroid hormones (T4, and T3). ( Conaway, HH; Lerner, UH; Ransjö, M, 1998) |
" L-T4 treatment resulted in reduction in BMDs in the lumbar spine, tail, and femur as measured by dual energy X-ray absorptiometry, but there was no correlation with the dosage of L-T4 or the serum T4 level." | 1.29 | A rat model of thyroid hormone-induced bone loss: effect of antiresorptive agents on regional bone density and osteocalcin gene expression. ( Kung, AW; Ng, F, 1994) |
"In contrast, all parameters of bone resorption increased significantly with a good correlation between D-Pyr excretion and the serum parameter ICTP (r = 0." | 1.29 | Markers of bone metabolism during short-term administration of thyroxine in healthy volunteers. ( Biester, A; Brabant, G; Frevert, EU; Müller, MJ; Schmidt-Gayk, H; von zur Mühlen, A, 1994) |
"To determine the effect of T3 on bone resorption, we used an isolated rat osteoclast bone resorption assay in the absence or presence of added osteoblasts." | 1.29 | Osteoblasts mediate thyroid hormone stimulation of osteoclastic bone resorption. ( Britto, JM; Fenton, AJ; Holloway, WR; Nicholson, GC, 1994) |
" In the dose-response studies, a biphasic increase in medium IGF-I was observed in both cells and limb bones, with peak stimulatory concentrations of 10(-8) M for T3 and 10(-7) M for T4 in both systems." | 1.29 | Thyroid hormones increase insulin-like growth factor I content in the medium of rat bone tissue. ( Caplice, MD; Khanna, V; Lakatos, P; Stern, PH, 1993) |
"The serum P1CP levels of the untreated Graves' disease were significantly higher than in the controls (176." | 1.29 | Carboxy-terminal propeptide of type 1 procollagen (P1CP) and carboxy-terminal telopeptide of type 1 collagen (1CTP) as sensitive markers of bone metabolism in thyroid disease. ( Demura, H; Miyakawa, M; Tsushima, T, 1996) |
"Gallium nitrate (GN) is an agent used in the treatment of hypercalcemia." | 1.28 | Gallium nitrate inhibits bone resorption and collagen synthesis in neonatal mouse calvariae. ( Lakatos, P; Mong, S; Stern, PH, 1991) |
"It inhibited arotinoid-stimulated bone resorption as assessed by calcemia in thyroparathyroidectomized rats at a SC dose as low as 0." | 1.28 | BM 21.0955, a potent new bisphosphonate to inhibit bone resorption. ( Bauss, F; Bosies, E; Fleisch, H; Janner, M; Mühlbauer, RC; Schenk, R; Strein, K, 1991) |
"Bone resorption was stimulated during the first week as evaluated from serum calcium and renal excretion of calcium, phosphate, and hydroxyproline." | 1.27 | Exogenous triiodothyronine activates bone remodeling. ( Charles, P; Eriksen, EF; Hasling, C; Mosekilde, L, 1987) |
" The dose-response curve to thyroxin was shallow, and the agent did not produce maximal resorption." | 1.27 | Indomethacin inhibits thrombin-, but not thyroxin-stimulated resorption of fetal rat limb bones. ( Hoffmann, O; Klaushofer, K; Koller, K; Mavreas, T; Peterlik, M; Stern, P, 1986) |
"Thyroxine increased bone resorption and formation rates, trabecular bone volume and balance, number of osteoclast nuclei, and life span of bone forming sites." | 1.26 | The effects of 1,25-dihydroxycholecalciferol, parathyroid hormone, and thyroxine on trabecular bone remodeling in adult dogs. A histomorphometric study. ( Black, HE; Capen, CC; High, WB, 1981) |
"Fetal bone resorption was measured by an organ culture technique using fetuses from thyroparathyroidectomized (TPTX) pregnant rats to investigate the roles of fetal and maternal hormones in the regulation of basal bone resorption in utero." | 1.26 | Basal bone resorption in the rat fetus related to the hormonal status of the mother. ( Delbarre, F; Garel, JM; Rebut-Bonneton, C, 1980) |
"Indomethacin did not inhibit T4 response suggesting that T4 stimulation of bone resorption was not mediated by increased prostaglandin synthesis by the cultured bone." | 1.26 | Direct stimulation of bone resorption by thyroid hormones. ( Bandelin, JG; Canalis, EM; Mundy, GR; Raisz, LG; Shapiro, JL, 1976) |
"The glands secreted a stimulator of bone resorption which did not appear to be parathyroid hormone (PTH)." | 1.26 | Secretion of a bone resorbing factor by chick thyroid glands in organ culture. ( Feinblatt, JD; Leone, RG; Tai, LR, 1976) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 37 (45.68) | 18.7374 |
1990's | 28 (34.57) | 18.2507 |
2000's | 9 (11.11) | 29.6817 |
2010's | 6 (7.41) | 24.3611 |
2020's | 1 (1.23) | 2.80 |
Authors | Studies |
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Mohamed, AH | 1 |
Naji, NS | 1 |
Al-Saadi, AH | 1 |
Zhang, W | 1 |
Zhang, Y | 1 |
Liu, Y | 1 |
Wang, J | 1 |
Gao, L | 1 |
Yu, C | 1 |
Yan, H | 1 |
Zhao, J | 1 |
Xu, J | 1 |
Leonova, TA | 1 |
Drozd, VM | 1 |
Saenko, VA | 1 |
Mine, M | 1 |
Biko, J | 1 |
Rogounovitch, TI | 1 |
Takamura, N | 1 |
Reiners, C | 1 |
Yamashita, S | 1 |
Kim, MK | 1 |
Yun, KJ | 1 |
Kim, MH | 1 |
Lim, DJ | 1 |
Kwon, HS | 1 |
Song, KH | 1 |
Kang, MI | 1 |
Baek, KH | 1 |
Tsourdi, E | 1 |
Rijntjes, E | 1 |
Köhrle, J | 1 |
Hofbauer, LC | 1 |
Rauner, M | 1 |
Oheim, R | 1 |
Simon, MJK | 1 |
Steiner, M | 1 |
Vettorazzi, E | 1 |
Barvencik, F | 1 |
Ignatius, A | 1 |
Amling, M | 1 |
Clarke, IJ | 1 |
Pogoda, P | 1 |
Beil, FT | 1 |
Baliram, R | 1 |
Sun, L | 1 |
Cao, J | 1 |
Li, J | 1 |
Latif, R | 1 |
Huber, AK | 1 |
Yuen, T | 1 |
Blair, HC | 1 |
Zaidi, M | 1 |
Davies, TF | 1 |
Li, D | 1 |
Liu, A | 1 |
Ye, J | 1 |
Wang, Z | 1 |
Hu, Q | 1 |
OIKARINEN, VJ | 1 |
SIIRILAE, HS | 1 |
Barsal, G | 1 |
Taneli, F | 1 |
Atay, A | 1 |
Hekimsoy, Z | 1 |
Erciyas, F | 1 |
Okinaga, H | 1 |
Matsuno, A | 1 |
Okazaki, R | 1 |
Sbaihi, M | 1 |
Kacem, A | 1 |
Aroua, S | 1 |
Baloche, S | 1 |
Rousseau, K | 1 |
Lopez, E | 1 |
Meunier, F | 1 |
Dufour, S | 1 |
Mikosch, P | 1 |
Kerschan-Schindl, K | 1 |
Woloszczuk, W | 1 |
Stettner, H | 1 |
Kudlacek, S | 1 |
Kresnik, E | 1 |
Gallowitsch, HJ | 1 |
Lind, P | 1 |
Pietschmann, P | 1 |
Adams, P | 1 |
Jowsey, J | 3 |
Frost, HM | 1 |
Martin, TJ | 1 |
High, WB | 2 |
Capen, CC | 2 |
Black, HE | 2 |
Garel, JM | 1 |
Rebut-Bonneton, C | 1 |
Delbarre, F | 1 |
Beylot, M | 1 |
Vincent, M | 1 |
Benzoni, D | 1 |
Bodson, A | 1 |
Riou, JP | 2 |
Mornex, R | 1 |
Kung, AW | 1 |
Ng, F | 1 |
Frevert, EU | 1 |
Biester, A | 1 |
Müller, MJ | 1 |
Schmidt-Gayk, H | 1 |
von zur Mühlen, A | 1 |
Brabant, G | 1 |
Kizior, MJ | 1 |
Chai, JY | 1 |
Turner, DW | 1 |
Stern, PH | 3 |
Garnero, P | 1 |
Vassy, V | 1 |
Bertholin, A | 1 |
Delmas, PD | 1 |
Yamamoto, M | 1 |
Markatos, A | 1 |
Seedor, JG | 1 |
Masarachia, P | 1 |
Gentile, M | 1 |
Rodan, GA | 1 |
Balena, R | 1 |
Britto, JM | 1 |
Fenton, AJ | 1 |
Holloway, WR | 1 |
Nicholson, GC | 1 |
Lakatos, P | 2 |
Caplice, MD | 1 |
Khanna, V | 1 |
Tørring, O | 1 |
Mora, S | 2 |
Cella, D | 1 |
Puzzovio, M | 1 |
Cairella, R | 1 |
Chiumello, G | 2 |
Lewinson, D | 1 |
Shenzer, P | 1 |
Hochberg, Z | 1 |
Nakamura, H | 1 |
Mori, T | 1 |
Genma, R | 1 |
Suzuki, Y | 1 |
Natsume, H | 1 |
Andoh, S | 1 |
Kitahara, R | 1 |
Nagasawa, S | 1 |
Nishiyama, K | 1 |
Yoshimi, T | 1 |
Campbell, J | 1 |
Day, P | 1 |
Diamond, T | 1 |
Laudo Pardos, C | 1 |
Puigdevall Gallego, V | 1 |
del Río Mayor, MJ | 1 |
Velasco Martín, A | 1 |
Miyakawa, M | 1 |
Tsushima, T | 1 |
Demura, H | 1 |
Kidder, LS | 1 |
Schmidt, IU | 1 |
Evans, GL | 1 |
Turner, RT | 1 |
Zeni, S | 1 |
Gomez-Acotto, C | 1 |
Mautalen, C | 1 |
De Rosa, G | 1 |
Testa, A | 1 |
Giacomini, D | 1 |
Carrozza, C | 1 |
Astazi, P | 1 |
Caradonna, P | 1 |
Conaway, HH | 1 |
Ransjö, M | 1 |
Lerner, UH | 1 |
Yeo, PP | 1 |
Loh, KC | 1 |
Toivonen, J | 1 |
Tähtelä, R | 1 |
Laitinen, K | 1 |
Risteli, J | 1 |
Välimäki, MJ | 1 |
Rosen, HN | 1 |
Moses, AC | 1 |
Garber, J | 1 |
Ross, DS | 1 |
Lee, SL | 1 |
Greenspan, SL | 1 |
Gürlek, A | 1 |
Gedik, O | 1 |
Weber, G | 1 |
Marenzi, K | 1 |
Signorini, E | 1 |
Rovelli, R | 1 |
Proverbio, MC | 1 |
Zatońska, K | 1 |
Bolanowski, M | 1 |
Kumeda, Y | 1 |
Inaba, M | 1 |
Tahara, H | 1 |
Kurioka, Y | 1 |
Ishikawa, T | 1 |
Morii, H | 1 |
Nishizawa, Y | 1 |
Hoffman, SJ | 1 |
Vasko-Moser, J | 1 |
Miller, WH | 1 |
Lark, MW | 1 |
Gowen, M | 1 |
Stroup, G | 1 |
Akalin, A | 1 |
Colak, O | 1 |
Alatas, O | 1 |
Efe, B | 1 |
Mosekilde, L | 6 |
Lund, B | 1 |
Sorensen, OH | 1 |
Christensen, MS | 3 |
Melsen, F | 5 |
Atkins, D | 1 |
Peacock, M | 1 |
Mundy, GR | 1 |
Shapiro, JL | 1 |
Bandelin, JG | 1 |
Canalis, EM | 1 |
Raisz, LG | 1 |
Hoskins, WE | 1 |
Asling, CW | 1 |
Bagger, JP | 1 |
Myhre-Jensen, O | 1 |
Schwartz Sorensen, N | 1 |
Sørensen, NS | 1 |
Feinblatt, JD | 1 |
Tai, LR | 1 |
Leone, RG | 1 |
Ohishi, T | 1 |
Takahashi, M | 1 |
Kushida, K | 1 |
Horiuchi, K | 1 |
Ishigaki, S | 1 |
Inoue, T | 1 |
Pioli, G | 1 |
Pedrazzoni, M | 1 |
Palummeri, E | 1 |
Sianesi, M | 1 |
Del Frate, R | 1 |
Vescovi, PP | 1 |
Prisco, M | 1 |
Ulietti, V | 1 |
Costi, D | 1 |
Passeri, M | 1 |
Mong, S | 1 |
Mühlbauer, RC | 1 |
Bauss, F | 1 |
Schenk, R | 1 |
Janner, M | 1 |
Bosies, E | 1 |
Strein, K | 1 |
Fleisch, H | 1 |
Toh, SH | 1 |
Brown, PH | 1 |
Klaushofer, K | 2 |
Hoffmann, O | 2 |
Gleispach, H | 1 |
Leis, HJ | 1 |
Czerwenka, E | 1 |
Koller, K | 2 |
Peterlik, M | 2 |
Hasling, C | 1 |
Eriksen, EF | 1 |
Charles, P | 1 |
Mavreas, T | 1 |
Stern, P | 1 |
Broulik, PD | 1 |
Stĕpán, JJ | 1 |
Límanová, Z | 1 |
Pacovský, V | 1 |
Gisondi, JG | 1 |
Kronman, JH | 1 |
Van Nguyen, V | 1 |
Ghozlan, R | 1 |
Brocheriou, C | 1 |
Catz, G | 1 |
Godeau, P | 1 |
Denis, G | 1 |
Kuczerpa, A | 1 |
Nikolaiczuk, N | 1 |
Thompson, JS | 1 |
Urist, MR | 1 |
Meunier, P | 1 |
Vignon, G | 1 |
Vauzelle, JL | 1 |
Zech, P | 1 |
Detenbeck, LC | 1 |
Collignon, G | 1 |
Baghdiantz, A | 1 |
Baret, A | 1 |
Moura, AM | 1 |
Blanquet, P | 1 |
Mathieu, H | 2 |
Cuisinier-Gleizes, P | 2 |
Giuliano, C | 2 |
George, A | 2 |
Kelly, PJ | 1 |
Cher, SN | 1 |
Chausm, AB | 1 |
Bellavia, JV | 1 |
Wallach, S | 1 |
Derby, A | 1 |
Côté, G | 1 |
Gabbiani, G | 1 |
Tuchweber, B | 1 |
Déziel, C | 1 |
Tapp, E | 1 |
Payne, JM | 1 |
Sansom, BF | 1 |
6 reviews available for thyroxine and Bone Loss, Osteoclastic
Article | Year |
---|---|
The skeletal intermediary organization.
Topics: Bone and Bones; Bone Development; Bone Diseases; Bone Resorption; Cell Differentiation; Cell Divisio | 1983 |
Drug and hormone effects on calcium release from bone.
Topics: Animals; Bone and Bones; Bone Resorption; Calcitonin; Calcitriol; Calcium; Epidermal Growth Factor; | 1983 |
[Bone metabolism and thyroid disease. Normalized bone metabolism prevents osteoporosis].
Topics: Aged; Bone Density; Bone Resorption; Female; Humans; Middle Aged; Osteoporosis, Postmenopausal; Risk | 1993 |
[Current status of the treatment with thyroid hormones].
Topics: Bone Resorption; Goiter, Nodular; Humans; Hypothyroidism; Intestinal Absorption; Thyroid Diseases; T | 1996 |
Subclinical thyrotoxicosis.
Topics: Atrial Fibrillation; Biomarkers; Bone and Bones; Bone Density; Bone Resorption; Diagnosis, Different | 1998 |
[The influence of thyrotoxicosis and thyroxine therapy on the risk of osteoporosis].
Topics: Bone Resorption; Female; Humans; Middle Aged; Osteoporosis; Thyroid Hormones; Thyrotoxicosis; Thyrox | 2000 |
6 trials available for thyroxine and Bone Loss, Osteoclastic
Article | Year |
---|---|
[Effects of propranolol and indomethacin upon urinary hydroxyproline in hyperthyroid patients (author's transl)].
Topics: Adult; Aged; Bone Resorption; Calcium; Female; Humans; Hydroxyproline; Hyperthyroidism; Indomethacin | 1982 |
Fine adjustments in thyroxine replacement and its effect on bone metabolism.
Topics: Adult; Aged; Alkaline Phosphatase; Biomarkers; Bone and Bones; Bone Resorption; Calcium; Female; Hum | 1996 |
Utility of biochemical markers of bone turnover in the follow-up of patients treated with bisphosphonates.
Topics: Alkaline Phosphatase; Amino Acids; Antineoplastic Agents; Biomarkers; Bone and Bones; Bone Resorptio | 1998 |
Effect of endogenous subclinical hyperthyroidism on bone metabolism and bone mineral density in premenopausal women.
Topics: Adult; Biomarkers; Bone and Bones; Bone Density; Bone Resorption; Female; Humans; Hyperthyroidism; P | 1999 |
Longitudinal changes of bone density and bone resorption in hyperthyroid girls during treatment.
Topics: Adolescent; Adult; Antithyroid Agents; Biomarkers; Bone Density; Bone Resorption; Child; Child, Pres | 1999 |
Bone mineral content in hypothyroid male patients with hormone replacement: a 3-year study.
Topics: Bone Density; Bone Diseases, Metabolic; Bone Resorption; Clinical Trials as Topic; Follow-Up Studies | 1990 |
69 other studies available for thyroxine and Bone Loss, Osteoclastic
Article | Year |
---|---|
Study of the relationship between FT3, FT4, and TSH with bone resorption indices in men with hypothyroidism.
Topics: Bone Resorption; Calcium; Humans; Hypothyroidism; Male; Phosphorus; Thyrotropin; Thyroxine | 2022 |
Thyroid-stimulating hormone maintains bone mass and strength by suppressing osteoclast differentiation.
Topics: Animals; Bone and Bones; Bone Density; Bone Resorption; Cell Differentiation; Cell Line; Femur; Male | 2014 |
Bone mineral density in treated at a young age for differentiated thyroid cancer after Chernobyl female patients on TSH-suppressive therapy receiving or not Calcium-D3 supplementation.
Topics: Adolescent; Bone Density; Bone Density Conservation Agents; Bone Resorption; Calcium, Dietary; Chern | 2015 |
The effects of thyrotropin-suppressing therapy on bone metabolism in patients with well-differentiated thyroid carcinoma.
Topics: Bone and Bones; Bone Density; Bone Resorption; Calcium; Cell Differentiation; Female; Humans; Male; | 2015 |
Hyperthyroidism and Hypothyroidism in Male Mice and Their Effects on Bone Mass, Bone Turnover, and the Wnt Inhibitors Sclerostin and Dickkopf-1.
Topics: 3T3 Cells; Adaptor Proteins, Signal Transducing; Animals; Bone and Bones; Bone Density; Bone Marrow | 2015 |
Sheep model for osteoporosis: The effects of peripheral hormone therapy on centrally induced systemic bone loss in an osteoporotic sheep model.
Topics: Animals; Biomechanical Phenomena; Bone and Bones; Bone Density; Bone Resorption; Disease Models, Ani | 2017 |
Hyperthyroid-associated osteoporosis is exacerbated by the loss of TSH signaling.
Topics: Animals; Bone Density; Bone Diseases, Metabolic; Bone Resorption; Dose-Response Relationship, Drug; | 2012 |
[Animal experimental study on endocrine factors affecting alveolar repair].
Topics: Acid Phosphatase; Alkaline Phosphatase; Alveolar Process; Animals; Bone Resorption; Diabetes Mellitu | 2000 |
AN EXPERIMENTAL STUDY OF THE EFFECT OF GROWTH HORMONE, THYROTROPIN AND THYROXIN ON BONE CHANGES IN THE ALVEOLAR SOCKET AND ITS SURROUNDINGS.
Topics: Bone Resorption; Growth Hormone; Rats; Research; Thyrotropin; Thyroxine; Tooth Extraction | 1965 |
Serum osteocalcin levels in hyperthyroidism before and after antithyroid therapy.
Topics: Alkaline Phosphatase; Antithyroid Agents; Biomarkers; Bone Resorption; Calcium; Case-Control Studies | 2004 |
High risk of osteopenia and bone derangement in postsurgical patients with craniopharyngiomas, pituitary adenomas and other parasellar lesions.
Topics: Adolescent; Adult; Aged; Bone Density; Bone Diseases, Metabolic; Bone Resorption; Child; Collagen; C | 2005 |
Thyroid hormone-induced demineralisation of the vertebral skeleton of the eel, Anguilla anguilla.
Topics: Anguilla; Animals; Bone Demineralization, Pathologic; Bone Density; Bone Resorption; Female; Osteopo | 2007 |
High cathepsin K levels in men with differentiated thyroid cancer on suppressive L-thyroxine therapy.
Topics: Adult; Aged; Aged, 80 and over; Biomarkers; Bone and Bones; Bone Resorption; Carcinoma, Papillary; C | 2008 |
Bone and mineral metabolism in hyperthyroidism: an experimental study.
Topics: Animals; Bone and Bones; Bone Resorption; Calcium; Dogs; Female; Hyperthyroidism; Microradiography; | 1967 |
The effects of 1,25-dihydroxycholecalciferol, parathyroid hormone, and thyroxine on trabecular bone remodeling in adult dogs. A histomorphometric study.
Topics: Animals; Bone and Bones; Bone Regeneration; Bone Resorption; Calcitriol; Dogs; Female; Hydroxyprolin | 1981 |
Basal bone resorption in the rat fetus related to the hormonal status of the mother.
Topics: 24,25-Dihydroxyvitamin D 3; Animals; Bone and Bones; Bone Resorption; Calcitriol; Calcium; Dihydroxy | 1980 |
Effects of thyroxine on cortical bone remodeling in adult dogs: a histomorphometric study.
Topics: Animals; Body Temperature; Body Weight; Bone and Bones; Bone Resorption; Dogs; Electrolytes; Female; | 1981 |
A rat model of thyroid hormone-induced bone loss: effect of antiresorptive agents on regional bone density and osteocalcin gene expression.
Topics: Animals; Base Sequence; Bone Density; Bone Resorption; Calcitonin; Disease Models, Animal; DNA, Comp | 1994 |
Markers of bone metabolism during short-term administration of thyroxine in healthy volunteers.
Topics: Adult; Amino Acids; Biomarkers; Bone and Bones; Bone Resorption; Collagen; Female; Humans; Male; Ost | 1994 |
Flurbiprofen effects on bone resorption.
Topics: Analysis of Variance; Animals; Bone and Bones; Bone Resorption; Disease Models, Animal; Fetus; Flurb | 1993 |
Markers of bone turnover in hyperthyroidism and the effects of treatment.
Topics: Adult; Aged; Aged, 80 and over; Alkaline Phosphatase; Amino Acids; Biomarkers; Bone and Bones; Bone | 1994 |
The effects of the aminobisphosphonate alendronate on thyroid hormone-induced osteopenia in rats.
Topics: Alendronate; Animals; Bone Diseases, Metabolic; Bone Remodeling; Bone Resorption; Diphosphonates; Di | 1993 |
Osteoblasts mediate thyroid hormone stimulation of osteoclastic bone resorption.
Topics: Animals; Bone Resorption; Cytological Techniques; Osteoblasts; Osteoclasts; Rats; Rats, Sprague-Dawl | 1994 |
Thyroid hormones increase insulin-like growth factor I content in the medium of rat bone tissue.
Topics: Animals; Bone and Bones; Bone Resorption; Culture Media; Culture Techniques; Dose-Response Relations | 1993 |
Radioimmunoassay for a new bone resorption marker and results for pediatric subjects.
Topics: Bone Resorption; Collagen; Congenital Hypothyroidism; Fetal Blood; Humans; Hypothyroidism; Infant; I | 1993 |
Growth hormone involvement in the regulation of tartrate-resistant acid phosphatase-positive cells that are active in cartilage and bone resorption.
Topics: Acid Phosphatase; Animals; Bone Resorption; Cartilage; Dexamethasone; Growth Hormone; Growth Plate; | 1993 |
Urinary excretion of pyridinoline and deoxypyridinoline measured by immunoassay in hypothyroidism.
Topics: Adult; Aged; Amino Acids; Biomarkers; Bone Resorption; Cross-Linking Reagents; Enzyme-Linked Immunos | 1996 |
Carboxy-terminal propeptide of type 1 procollagen (P1CP) and carboxy-terminal telopeptide of type 1 collagen (1CTP) as sensitive markers of bone metabolism in thyroid disease.
Topics: Adult; Alkaline Phosphatase; Biomarkers; Bone and Bones; Bone Resorption; Collagen; Collagen Type I; | 1996 |
Effects of growth hormone and low dose estrogen on bone growth and turnover in long bones of hypophysectomized rats.
Topics: Animals; Anti-Inflammatory Agents; Body Weight; Bone Density; Bone Development; Bone Resorption; Cal | 1997 |
The effect of olpadronate in ovariectomized thyroxine-treated rats.
Topics: Alkaline Phosphatase; Animals; Body Weight; Bone and Bones; Bone Density; Bone Resorption; Creatinin | 1997 |
Prospective study of bone loss in pre- and post-menopausal women on L-thyroxine therapy for non-toxic goitre.
Topics: Absorptiometry, Photon; Adult; Alkaline Phosphatase; Biomarkers; Bone Density; Bone Resorption; Fema | 1997 |
Prostaglandin-independent stimulation of bone resorption in mouse calvariae and in isolated rat osteoclasts by thyroid hormones (T4, and T3).
Topics: 6-Ketoprostaglandin F1 alpha; Acetylglucosaminidase; Animals; Bone Matrix; Bone Resorption; Calciton | 1998 |
Markers of bone turnover in patients with differentiated thyroid cancer with and following withdrawal of thyroxine suppressive therapy.
Topics: Adult; Aged; Biomarkers; Bone Development; Bone Resorption; Case-Control Studies; Cell Differentiati | 1998 |
Persistent increase in bone turnover in Graves' patients with subclinical hyperthyroidism.
Topics: Adult; Alkaline Phosphatase; Amino Acids; Antithyroid Agents; Autoantibodies; Biomarkers; Bone and B | 2000 |
Rapid inhibition of thyroxine-induced bone resorption in the rat by an orally active vitronectin receptor antagonist.
Topics: Amino Acids; Animals; Biomarkers; Bone Density; Bone Resorption; Male; Osteocalcin; Pyridines; Rats; | 2002 |
Bone remodelling markers and serum cytokines in patients with hyperthyroidism.
Topics: Adult; Alkaline Phosphatase; Amino Acids; Autoantibodies; Biomarkers; Bone Resorption; Calcium; Case | 2002 |
Serum-25-hydroxycholecalciferol in hyperthyroidism.
Topics: Bone and Bones; Bone Resorption; Calcium; Humans; Hydroxycholecalciferols; Hyperthyroidism; Parathyr | 1977 |
A comparison of the effects of the calcitonins, steroid hormones and thyroid hormones on the response of bone to parathyroid hormone in tissue culture.
Topics: Animals; Bone and Bones; Bone Resorption; Calcitonin; Calcium; Carbohydrate Metabolism; Cholesterol; | 1975 |
Direct stimulation of bone resorption by thyroid hormones.
Topics: Animals; Bone and Bones; Bone Resorption; Cyclic AMP; Dose-Response Relationship, Drug; Female; Indo | 1976 |
Influence of growth hormone and thyroxine on endochondral osteogenesis in the mandibular condyle and proximal tibial epiphysis.
Topics: Animals; Bone Resorption; Calcification, Physiologic; Cartilage; Epiphyses; Female; Growth Hormone; | 1977 |
Bone changes in hyperthyroidism: interrelationships between bone morphometry, thyroid function and calcium-phosphorus metabolism.
Topics: Adolescent; Adult; Aged; Alkaline Phosphatase; Bone and Bones; Bone Resorption; Calcium; Female; Hum | 1977 |
Effect of antithyroid treatment on calcium-phosphorus metabolism in hyperthyroidism. I: Chemical quantities in serum and urine.
Topics: Adult; Aged; Alkaline Phosphatase; Bone and Bones; Bone Resorption; Calcium; Carbimazole; Female; Hu | 1978 |
Effect of antithyroid treatment on calcium-phosphorus metabolism in hyperthyroidism. II: Bone histomorphometry.
Topics: Adult; Aged; Bone and Bones; Bone Resorption; Calcium; Carbimazole; Female; Humans; Hyperthyroidism; | 1978 |
Interrelationships between bone morphometry, thyroid function tests and serum parathyroid hormone in hyperthyroidism.
Topics: Adult; Aged; Bone and Bones; Bone Resorption; Calcium; Creatinine; Humans; Hyperthyroidism; Iodine R | 1977 |
Secretion of a bone resorbing factor by chick thyroid glands in organ culture.
Topics: Animals; Bone Resorption; Calcitonin; Calcium; Chickens; Dose-Response Relationship, Drug; Drug Inte | 1976 |
Quantitative analyses of urinary pyridinoline and deoxypyridinoline excretion in patients with hyperthyroidism.
Topics: Adult; Alkaline Phosphatase; Amino Acids; Biomarkers; Bone Resorption; Female; Humans; Hydroxyprolin | 1992 |
Longitudinal study of bone loss after thyroidectomy and suppressive thyroxine therapy in premenopausal women.
Topics: Adult; Bone Density; Bone Resorption; Calcitonin; Female; Humans; Longitudinal Studies; Menopause; M | 1992 |
Gallium nitrate inhibits bone resorption and collagen synthesis in neonatal mouse calvariae.
Topics: Animals; Bone and Bones; Bone Resorption; Calcitriol; Calcium; Collagen; Dose-Response Relationship, | 1991 |
BM 21.0955, a potent new bisphosphonate to inhibit bone resorption.
Topics: Alendronate; Animals; Benzoates; Bone Resorption; Calcium; Clodronic Acid; Diphosphonates; Etidronic | 1991 |
Bone-resorbing activity of thyroid hormones is related to prostaglandin production in cultured neonatal mouse calvaria.
Topics: 6-Ketoprostaglandin F1 alpha; Animals; Animals, Newborn; Arachidonic Acid; Arachidonic Acids; Bone a | 1989 |
Exogenous triiodothyronine activates bone remodeling.
Topics: Adult; Aged; Bone Resorption; Calcium; Calcium-Binding Proteins; Female; Humans; Male; Middle Aged; | 1987 |
Indomethacin inhibits thrombin-, but not thyroxin-stimulated resorption of fetal rat limb bones.
Topics: Animals; Bone Resorption; Calcium; In Vitro Techniques; Indomethacin; Prostaglandins; Rats; Thrombin | 1986 |
Bone isoenzyme of serum alkaline phosphatase and urinary hydroxyproline excretion in thyrotoxicosis.
Topics: Adult; Aged; Alkaline Phosphatase; Bone Regeneration; Bone Resorption; Calcium; Female; Humans; Hydr | 1985 |
Thyroid influence on bone histology during tooth movement in hamsters.
Topics: Alveolar Process; Animals; Bone Resorption; Cricetinae; Decalcification Technique; Decalcification, | 1972 |
Bone metabolism. The acute effects of hormones, vitamin D3, and acidosis during in vivo perfusion ff adult dog forelimbs.
Topics: Acidosis; Alkaline Phosphatase; Animals; Bone and Bones; Bone Development; Bone Resorption; Calciton | 1970 |
[Hyperthyroidism with hypercalcemia. Apropos of a case of hyperthyroidism-hyperparathyroidism association].
Topics: Adenoma; Aged; Bone Resorption; Calcitonin; Female; Humans; Hypercalcemia; Hyperparathyroidism; Hype | 1972 |
Stimulation of bone resorption by increasing dietary protein intake in rats fed diets low in phosphorus and calcium.
Topics: Animals; Bone and Bones; Bone Resorption; Calcium; Diet; Dietary Proteins; Epiphyses; Magnesium; Mal | 1973 |
Effects of cortisone on bone metabolism in intact and thyroidectomized rabbits.
Topics: Animals; Body Weight; Bone and Bones; Bone Resorption; Calcitonin; Calcium; Collagen; Cortisone; Hex | 1973 |
[Quantitative histological study of osteoclastic resorption in primary and secondary hyperparathyroidism].
Topics: Adenoma; Adult; Aged; Biopsy; Bone and Bones; Bone Resorption; Female; Humans; Hyperparathyroidism; | 1969 |
Importance of thyroid hormones in bone metabolism and calcium homeostasis.
Topics: Animals; Blood Proteins; Bone and Bones; Bone Resorption; Calcitonin; Calcium; Dogs; Edetic Acid; Ho | 1969 |
[Thyroxine-calcitonin interaction. Study in the iodine-deficient rat].
Topics: Animals; Bone Resorption; Calcitonin; Calcium; Calcium Isotopes; Deficiency Diseases; Hypercalcemia; | 1970 |
[Bone resorption by phosphorus deprivation in rats].
Topics: Animals; Bone Resorption; Calcium; Calcium, Dietary; Deficiency Diseases; Hydroxyproline; Intestinal | 1971 |
Effects of thyroid and parathyroid deficiency on bone remodelling distal to a venous tourniquet.
Topics: Animals; Bone Resorption; Calcitonin; Calcium; Dogs; Hindlimb; Microradiography; Parathyroid Glands; | 1971 |
Interactions of thyroxine and thyrocalcitonin in the rat.
Topics: Animals; Bone and Bones; Bone Resorption; Calcitonin; Calcium; Calcium Isotopes; Hypercalcemia; Hype | 1970 |
Stimulation of bone resorption by phosphorus deprivation in the rat.
Topics: Animals; Bone and Bones; Bone Resorption; Calcium; Calcium, Dietary; Diet; Parathyroid Glands; Phosp | 1971 |
An in vitro quantitative analysis of the response of tadpole tissue to thyroxine.
Topics: Animals; Anura; Bone Resorption; Culture Techniques; Metamorphosis, Biological; Potassium Iodide; Ta | 1968 |
Effect of thyrocalcitonin and thyroxine on experimental metastatic calcification.
Topics: Animals; Bone and Bones; Bone Resorption; Calcinosis; Calcitonin; Female; Hyperparathyroidism; Kidne | 1968 |
The effects of hormones on bone in growing rats.
Topics: Animals; Bone Development; Bone Resorption; Cortisone; Epiphyses; Estrogens; Growth Hormone; Photomi | 1966 |
Calcium metabolism in normal and thyro-parathyroidectomized goats.
Topics: Animals; Bone Resorption; Calcium; Goats; Intestinal Absorption; Male; Parathyroid Glands; Radiometr | 1966 |