beta-glycerophosphoric acid has been researched along with Calcification, Pathologic in 34 studies
beta-glycerophosphoric acid: plays role in mineralization of bone in vitro
glycerol 2-phosphate : A glycerol monophosphate having the phosphate group at the 2-position.
Excerpt | Relevance | Reference |
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"Taurine is a free β-amino acid and plays important physiological roles including protective effect of cardiovascular events." | 1.38 | Taurine suppresses osteoblastic differentiation of aortic valve interstitial cells induced by beta-glycerophosphate disodium, dexamethasone and ascorbic acid via the ERK pathway. ( Feng, X; Gu, L; Hu, YR; Li, JM; Liao, XB; Shang, BP; Sheng, ZF; Tang, H; Xie, H; Yuan, LQ; Zhang, W; Zhang, ZY; Zhou, XM, 2012) |
"Calcific tendonitis is a common clinical condition associated with high rates of tendon rupture, prolonged symptoms, and poor response to therapy." | 1.34 | Calcific tendonitis : a model. ( Fahey, M; Gohr, CM; Rosenthal, AK, 2007) |
Timeframe | Studies, this research(%) | All Research% |
---|---|---|
pre-1990 | 1 (2.94) | 18.7374 |
1990's | 7 (20.59) | 18.2507 |
2000's | 10 (29.41) | 29.6817 |
2010's | 15 (44.12) | 24.3611 |
2020's | 1 (2.94) | 2.80 |
Authors | Studies |
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Bai, Y | 1 |
Xu, J | 1 |
Yang, S | 2 |
Zhang, H | 1 |
He, L | 1 |
Zhou, W | 1 |
Cheng, M | 1 |
Zhang, S | 1 |
Zhang, Z | 1 |
Jiang, W | 1 |
Yang, H | 1 |
Lin, Q | 1 |
Qin, X | 1 |
Zhiduleva, EV | 1 |
Irtyuga, OB | 1 |
Shishkova, AA | 1 |
Ignat'eva, EV | 1 |
Kostina, AS | 1 |
Levchuk, KA | 1 |
Golovkin, AS | 1 |
Rylov, AY | 1 |
Kostareva, AA | 1 |
Moiseeva, OM | 1 |
Malashicheva, AB | 1 |
Gordeev, ML | 1 |
Patel, JJ | 1 |
Bourne, LE | 1 |
Davies, BK | 1 |
Arnett, TR | 1 |
MacRae, VE | 2 |
Wheeler-Jones, CP | 1 |
Orriss, IR | 1 |
Qiuyang, L | 1 |
Ting, W | 1 |
Ting, Y | 1 |
Zhaoliang, S | 1 |
Gangjun, Z | 1 |
Ling, QY | 1 |
Liu, J | 1 |
Xu, BD | 1 |
Wu, T | 1 |
Ye, T | 1 |
Zong, GJ | 1 |
Keasey, MP | 1 |
Lemos, RR | 1 |
Hagg, T | 1 |
Oliveira, JR | 1 |
Zhang, SL | 1 |
Xu, JS | 1 |
Bai, YL | 1 |
Zhang, JX | 1 |
Cui, LW | 1 |
Yu, QY | 1 |
Kang, YH | 1 |
Jin, JS | 1 |
Yi, DW | 1 |
Son, SM | 1 |
Cai, Y | 2 |
Teng, X | 1 |
Pan, CS | 2 |
Duan, XH | 1 |
Tang, CS | 2 |
Qi, YF | 2 |
Zhao, MM | 1 |
Xu, MJ | 1 |
Zhao, G | 1 |
Guan, Y | 1 |
Kong, W | 1 |
Tang, C | 4 |
Wang, X | 1 |
Mackenzie, NC | 1 |
Zhu, D | 1 |
Longley, L | 1 |
Patterson, CS | 1 |
Kommareddy, S | 1 |
Al-Aly, Z | 1 |
Cmoch, A | 1 |
Strzelecka-Kiliszek, A | 1 |
Palczewska, M | 1 |
Groves, P | 1 |
Pikula, S | 1 |
Feng, X | 1 |
Li, JM | 1 |
Liao, XB | 1 |
Hu, YR | 1 |
Shang, BP | 1 |
Zhang, ZY | 1 |
Yuan, LQ | 1 |
Xie, H | 1 |
Sheng, ZF | 1 |
Tang, H | 1 |
Zhang, W | 1 |
Gu, L | 1 |
Zhou, XM | 1 |
Haarhaus, M | 1 |
Arnqvist, HJ | 1 |
Magnusson, P | 1 |
Sugitani, H | 1 |
Wachi, H | 1 |
Mecham, RP | 1 |
Seyama, Y | 1 |
Huang, Z | 1 |
Li, J | 2 |
Jiang, Z | 1 |
Qi, Y | 1 |
Du, J | 3 |
GOLDENBERG, H | 1 |
SOBEL, AE | 1 |
Chai, S | 1 |
Wu, SY | 1 |
Zhang, BH | 1 |
Jiang, HF | 1 |
Pang, YZ | 1 |
Zhang, B | 1 |
Wang, S | 1 |
Pang, Y | 1 |
Perinpanayagam, H | 1 |
Schneider, G | 1 |
Holtman, K | 1 |
Zaharias, R | 1 |
Stanford, C | 1 |
Mathieu, P | 1 |
Voisine, P | 1 |
Pépin, A | 1 |
Shetty, R | 1 |
Savard, N | 1 |
Dagenais, F | 1 |
Olesen, P | 1 |
Nguyen, K | 1 |
Wogensen, L | 1 |
Ledet, T | 1 |
Rasmussen, LM | 1 |
Gohr, CM | 1 |
Fahey, M | 1 |
Rosenthal, AK | 1 |
Shioi, A | 2 |
Nishizawa, Y | 2 |
Jono, S | 2 |
Koyama, H | 1 |
Hosoi, M | 1 |
Morii, H | 2 |
McQuillan, DJ | 1 |
Richardson, MD | 1 |
Bateman, JF | 1 |
Scheller, M | 1 |
Zimmermann, B | 1 |
Bernimoulin, JP | 1 |
Scholz, P | 1 |
Hui, M | 1 |
Li, SQ | 1 |
Holmyard, D | 1 |
Cheng, P | 1 |
Mori, K | 1 |
Wada, T | 1 |
McKee, MD | 1 |
Steitz, S | 1 |
Giachelli, CM | 2 |
Steitz, SA | 1 |
Speer, MY | 1 |
Curinga, G | 1 |
Yang, HY | 1 |
Haynes, P | 1 |
Aebersold, R | 1 |
Schinke, T | 1 |
Karsenty, G | 1 |
Roach, HI | 1 |
34 other studies available for beta-glycerophosphoric acid and Calcification, Pathologic
Article | Year |
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The intermediate-conductance calcium-activated potassium channel KCa3.1 contributes to alkalinization-induced vascular calcification in vitro.
Topics: Alkaline Phosphatase; Animals; Aorta; Calcinosis; Calcium; Cells, Cultured; Core Binding Factor Alph | 2021 |
The miR-182/SORT1 axis regulates vascular smooth muscle cell calcification in vitro and in vivo.
Topics: Adaptor Proteins, Vesicular Transport; Animals; Atherosclerosis; Calcinosis; Cell Line; Cholecalcife | 2018 |
Cellular Mechanisms of Aortic Valve Calcification.
Topics: Aged; Aortic Valve; Aortic Valve Stenosis; Ascorbic Acid; Bone Morphogenetic Protein 2; Calcinosis; | 2018 |
Differing calcification processes in cultured vascular smooth muscle cells and osteoblasts.
Topics: Alkaline Phosphatase; Animals; Calcinosis; Calcium Phosphates; Cell Survival; Cell Transdifferentiat | 2019 |
[Effect of bone morphogenetic protein-2 on human heart valve interstitial cells calcification in vitro].
Topics: Ascorbic Acid; Bone Morphogenetic Protein 2; Calcinosis; Cells, Cultured; Glycerophosphates; Heart V | 2015 |
[Upregulated Notch1 expression promotes bone morphogenetic protein-2/4 expression of calcified human heart valve interstitial cells].
Topics: Bone Morphogenetic Protein 2; Bone Morphogenetic Protein 4; Calcinosis; Glycerophosphates; Heart Val | 2016 |
Vitamin-D receptor agonist calcitriol reduces calcification in vitro through selective upregulation of SLC20A2 but not SLC20A1 or XPR1.
Topics: Ascorbic Acid; Calcinosis; Calcitriol; Cell Differentiation; Cell Line, Tumor; CRISPR-Cas Systems; G | 2016 |
[Effects of intermediate conductance calcium-activated potassium channel blocker TARAM-34 on β-glycerophosphate induced vascular smooth muscle cells calcification].
Topics: Animals; Aorta, Thoracic; Calcinosis; Calcium; Cell Differentiation; Cells, Cultured; Core Binding F | 2016 |
Bone morphogenetic protein-7 inhibits vascular calcification induced by high vitamin D in mice.
Topics: Animals; Aorta, Thoracic; Bone Morphogenetic Protein 7; Calcinosis; Cells, Cultured; Cholecalciferol | 2010 |
Adrenomedullin up-regulates osteopontin and attenuates vascular calcification via the cAMP/PKA signaling pathway.
Topics: Actins; Adenylyl Cyclases; Adrenomedullin; Animals; Aorta, Thoracic; Calcinosis; Calcium; Cholecalci | 2010 |
Mitochondrial reactive oxygen species promote p65 nuclear translocation mediating high-phosphate-induced vascular calcification in vitro and in vivo.
Topics: Active Transport, Cell Nucleus; Animals; Calcinosis; Cells, Cultured; Glycerophosphates; Male; Membr | 2011 |
MOVAS-1 cell line: a new in vitro model of vascular calcification.
Topics: Alkaline Phosphatase; Animals; Anthraquinones; Bone Density Conservation Agents; Calcinosis; Calcium | 2011 |
Phosphate, oxidative stress, and nuclear factor-κB activation in vascular calcification.
Topics: Antioxidants; Calcinosis; Glycerophosphates; Humans; NF-kappa B; Oxidative Stress; Phosphates; React | 2011 |
Matrix vesicles isolated from mineralization-competent Saos-2 cells are selectively enriched with annexins and S100 proteins.
Topics: Annexins; Ascorbic Acid; Bone Matrix; Calcification, Physiologic; Calcinosis; Cell Fractionation; Ce | 2011 |
Taurine suppresses osteoblastic differentiation of aortic valve interstitial cells induced by beta-glycerophosphate disodium, dexamethasone and ascorbic acid via the ERK pathway.
Topics: Adult; Alkaline Phosphatase; Aortic Valve; Ascorbic Acid; Bicuspid Aortic Valve Disease; Biomarkers; | 2012 |
Calcifying human aortic smooth muscle cells express different bone alkaline phosphatase isoforms, including the novel B1x isoform.
Topics: Alkaline Phosphatase; Aortic Diseases; Calcinosis; Calcium; Cells, Cultured; Enzyme Induction; Enzym | 2013 |
Accelerated calcification represses the expression of elastic fiber components and lysyl oxidase in cultured bovine aortic smooth muscle cells.
Topics: Alkaline Phosphatase; Animals; Aorta; Calcinosis; Cattle; Cells, Cultured; Enzyme Inhibitors; Fibril | 2002 |
Effects of adrenomedullin, C-type natriuretic peptide, and parathyroid hormone-related peptide on calcification in cultured rat vascular smooth muscle cells.
Topics: Adrenomedullin; Alkaline Phosphatase; Animals; Aorta; Calcinosis; Calcium; Cell Count; Cell Division | 2003 |
Calcification. XII. Cation-linked inhibition by fluoride and cyanide ions in beta-glycerophosphate medium.
Topics: Calcification, Physiologic; Calcinosis; Cations; Cyanides; Fluorides; Glycerophosphates; Humans; Pho | 1954 |
Homocysteine potentiates calcification of cultured rat aortic smooth muscle cells.
Topics: Alkaline Phosphatase; Animals; Aorta, Thoracic; Calcinosis; Calcium; Calcium Radioisotopes; Cell Cou | 2003 |
Endothelin-1 is a potent regulator in vivo in vascular calcification and in vitro in calcification of vascular smooth muscle cells.
Topics: Animals; Aorta; Calcinosis; Endothelin-1; Glycerophosphates; In Vitro Techniques; Muscle, Smooth, Va | 2003 |
Alteration of heme-oxygenase-carbon monoxide pathway in calcified rat vascular smooth muscle cells.
Topics: Animals; Calcinosis; Calcium; Carbon Monoxide; Carboxyhemoglobin; Cell Differentiation; Cells, Cultu | 2004 |
Altered Cbfa1 expression and biomineralization in an osteosarcoma cell line.
Topics: Animals; Base Sequence; Calcinosis; Calcium; Cell Line, Tumor; Core Binding Factor Alpha 1 Subunit; | 2004 |
Calcification of human valve interstitial cells is dependent on alkaline phosphatase activity.
Topics: Actins; Alkaline Phosphatase; Aortic Valve; Calcinosis; Cell Differentiation; Cells, Cultured; Conne | 2005 |
Calcification of human vascular smooth muscle cells: associations with osteoprotegerin expression and acceleration by high-dose insulin.
Topics: Alkaline Phosphatase; Aorta; Aortic Diseases; Calcinosis; Calcium; Cells, Cultured; Diabetic Angiopa | 2007 |
Calcific tendonitis : a model.
Topics: Animals; Calcinosis; Cartilage, Articular; Collagen Type I; Dermatan Sulfate; Disease Models, Animal | 2007 |
Beta-glycerophosphate accelerates calcification in cultured bovine vascular smooth muscle cells.
Topics: Alkaline Phosphatase; Animals; Ascorbic Acid; Calcinosis; Calcium; Calcium Radioisotopes; Cattle; Ce | 1995 |
Matrix deposition by a calcifying human osteogenic sarcoma cell line (SAOS-2).
Topics: Calcinosis; Cell Division; Chromatography, Gel; Chromatography, Ion Exchange; Collagen; Extracellula | 1995 |
Induction of metalloproteinase activity, cartilage matrix degradation and inhibition of endochondral mineralization in vitro by E. coli lipopolysaccharide is mediated by interleukin 1 alpha.
Topics: Amino Acid Sequence; Animals; Calcinosis; Cartilage, Articular; Cell Differentiation; Collagen; Endo | 1995 |
Stable transfection of nonosteogenic cell lines with tissue nonspecific alkaline phosphatase enhances mineral deposition both in the presence and absence of beta-glycerophosphate: possible role for alkaline phosphatase in pathological mineralization.
Topics: Alkaline Phosphatase; Animals; Bone Neoplasms; Calcification, Physiologic; Calcinosis; Calcium Phosp | 1997 |
Expression of matrix Gla protein (MGP) in an in vitro model of vascular calcification.
Topics: Alendronate; Animals; Blotting, Northern; Calcinosis; Calcium; Calcium-Binding Proteins; Cattle; Cel | 1998 |
Calcification of vascular smooth muscle cell cultures: inhibition by osteopontin.
Topics: Adaptation, Physiological; Animals; Calcinosis; Cattle; Cell Adhesion; Cells, Cultured; Glycerophosp | 1999 |
Smooth muscle cell phenotypic transition associated with calcification: upregulation of Cbfa1 and downregulation of smooth muscle lineage markers.
Topics: Animals; Antigens, Differentiation; Aorta; Calcinosis; Calcium Phosphates; Calcium-Binding Proteins; | 2001 |
Induction of normal and dystrophic mineralization by glycerophosphates in long-term bone organ culture.
Topics: Alkaline Phosphatase; Animals; Autoradiography; Bone and Bones; Calcification, Physiologic; Calcinos | 1992 |