Metallothionein expression in zinc-treated cartilage precursor ATDC5 cells
暂无分享,去创建一个
[1] Susu Wang,et al. Cadmium‐induced apoptosis through reactive oxygen species‐mediated mitochondrial oxidative stress and the JNK signaling pathway in TM3 cells, a model of mouse Leydig cells , 2019, Toxicology and applied pharmacology.
[2] M. Kimmel,et al. Renal effects of metallothionein induction by zinc in vitro and in vivo , 2017, BMC Nephrology.
[3] A. Boskey,et al. Chondrogenic ATDC5 cells: An optimised model for rapid and physiological matrix mineralisation , 2012, International journal of molecular medicine.
[4] M. Chatterjee,et al. A Review of Metallothionein Isoforms and their Role in Pathophysiology , 2011, World journal of surgical oncology.
[5] M. Ley,et al. Role of metallothionein in differentiation of leukemia cells , 2011, Molecular Biology Reports.
[6] M. Apostolova,et al. Delay of M‐phase onset by aphidicolin can retain the nuclear localization of zinc and metallothionein in 3T3‐L1 fibroblasts , 2000, Journal of cellular physiology.
[7] K. Ohya,et al. Cadmium induces expression of metallothionein in rat dental pulp. , 2000, Japanese journal of pharmacology.
[8] R. Alcalde,et al. Zinc accumulation and metallothionein gene expression in the proliferating epidermis during wound healing in mouse skin , 1999, Histochemistry and Cell Biology.
[9] T. O’Halloran,et al. Metallothionein Is Part of a Zinc-scavenging Mechanism for Cell Survival under Conditions of Extreme Zinc Deprivation* , 1999, The Journal of Biological Chemistry.
[10] D. Beyersmann,et al. Transient peaks in zinc and metallothionein levels during differentiation of 3T3L1 cells. , 1999, Archives of biochemistry and biophysics.
[11] T. Hamamoto,et al. A water-soluble tetrazolium salt useful for colorimetric cell viability assay , 1999 .
[12] G. Wysocki,et al. Immunohistochemical localization of metallothionein in the developing teeth of cadmium-injected rats. , 1999, Archives of oral biology.
[13] Jie Liu,et al. Metallothionein: an intracellular protein to protect against cadmium toxicity. , 1999, Annual review of pharmacology and toxicology.
[14] L. N. Wu,et al. Effect of Metal Ions on Calcifying Growth Plate Cartilage Chondrocytes , 1998, Calcified Tissue International.
[15] D. Nie,et al. Induction and characterization of metallothionein in chicken epiphyseal growth plate cartilage chondrocytes , 1998, Journal of cellular biochemistry.
[16] E. Thonar,et al. Collagen and proteoglycan production by bovine fetal and adult chondrocytes under low levels of calcium and zinc ions. , 1996, Connective tissue research.
[17] Keij Suzuki,et al. Immunochemical detection of metallothionein in brain , 1995, Neurochemistry International.
[18] M. Omoto,et al. The Effects of Long-Term Intake of Restricted Calcium, Vitamin D, and Vitamin E and Cadmium-Added Diets on Various Organs and Bones of Mice , 1995 .
[19] J. Brandão-Neto,et al. THE ESSENTIAL ROLE OF ZINC IN GROWTH , 1995 .
[20] J. Lazo,et al. Role of metallothionein in carcinogenesis. , 1994, Toxicology and applied pharmacology.
[21] M. Zafarullah,et al. Basal and inducible expression of metallothionein and heat shock protein 70 genes in bovine articular chondrocytes. , 1993, Experimental cell research.
[22] J. Pelletier,et al. Expression of c‐fos, c‐jun, jun‐B, metallothionein and metalloproteinase genes in human chondrocyte , 1992, FEBS letters.
[23] C. Klaassen,et al. The protective effect of metallothionein on the toxicity of various metals in rat primary hepatocyte culture. , 1991, Toxicology and applied pharmacology.
[24] B. Genge,et al. Regulatory effect of endogenous zinc and inhibitory action of toxic metal ions on calcium accumulation by matrix vesicles in vitro. , 1989, Bone and mineral.
[25] Diponkar Banerjee,et al. IMMUNOHISTOCHEMICAL LOCALIZATION OF METALLOTHIONEIN IN CELL NUCLEUS AND CYTOPLASM OF FETAL HUMAN LIVER AND KIDNEY AND ITS CHANGES DURING DEVELOPMENT , 1987, Pathology.
[26] J. Frazier,et al. Protective effect of metallothionein on cadmium toxicity in isolated rat hepatocytes. , 1985, The Biochemical journal.
[27] R. Cousins. Absorption, transport, and hepatic metabolism of copper and zinc: special reference to metallothionein and ceruloplasmin. , 1985, Physiological reviews.
[28] C. Korzeniewski,et al. An enzyme-release assay for natural cytotoxicity. , 1983, Journal of immunological methods.
[29] W. Mohr,et al. Influence of zinc and copper on lapine articular chondrocytes in monolayer culture: morphology, proliferation and proteoglycan synthesis. , 1982, Experimental cell biology.
[30] M. Cherian,et al. Immunohistochemical localization of metallothionein in cell nucleus and cytoplasm of rat liver and kidney. , 1982, Toxicology.
[31] J. L. Britton,et al. Influence of cadmium on caries and the cariostatic properties of fluoride in rats. , 1980, Archives of environmental health.
[32] N. Otaki,et al. Bone and kidney lesions in experimental cadmium intoxication. , 1975, Archives of environmental health.
[33] W. C. Thomas,et al. Effect of Various Metals on Mineralization in vitro. ∗ , 1963, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[34] Hurley Ls,et al. The influence of trace elements on the skeleton. , 1963 .
[35] J. Kägi,et al. Metallothionein: a cadmium- and zinc-containing protein from equine renal cortex. , 1960 .
[36] B. Vallee,et al. A CADMIUM PROTEIN FROM EQUINE KIDNEY CORTEX , 1957 .