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首页> 外文期刊>Journal of cellular biochemistry. >Structurally different bisphosphonates exert opposing effects on alkaline phosphatase and mineralization in marrow osteoprogenitors.
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Structurally different bisphosphonates exert opposing effects on alkaline phosphatase and mineralization in marrow osteoprogenitors.

机译:结构上不同的双膦酸酯对碱性磷酸酶和骨髓骨祖细胞的矿化作用具有相反的作用。

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Bisphosphonates (BPs) are inhibitors of bone resorption and soft tissue calcification. The biological effects of the BPs in calcium-related disorders are attributed mainly to their incorporation in bone, enabling direct interaction with osteoclasts and/or osteoblasts through a variety of biochemical pathways. Structural differences account for the considerable differences in the pharmacological activity of BPs. We compared the effects of two structurally different compounds, alendronate and 2-(3'-dimethylaminopyrazinio)ethylidene-1,1-bisphosphonic acid betaine (VS-6), in an osteoprogenitor differentiation system. The BPs were examined in a bone marrow stromal-cell culture system, which normally results in osteoprogenitor differentiation. The drugs were present in the cultures from days 2 to 11 of osteogenic stimulation, a period estimated as being comparable to the end of proliferation and the matrix-maturation stages. We found that the two different BPs have opposing effects on specific alkaline phosphatase (ALP) activity, on stromal-cell proliferation, and on cell-mediated mineralization. These BPs differentially interact with cell-associated phosphohydrolysis, particularly at a concentration of 10(-2) of ALP Km, in which alendronate inhibits whereas VS-6 did not inhibit phosphatase activity. VS-6 treatment resulted in similar and significantly increased mineralization at 10 and 1 microM drug concentrations, respectively. In contrast, mineralization was similar to control, and significantly decreased at 10 and 1 microM drug concentrations, respectively, under alendronate treatment.
机译:双膦酸盐(BPs)是骨吸收和软组织钙化的抑制剂。 BP在钙相关疾病中的生物学作用主要归因于它们掺入骨中,从而能够通过多种生化途径与破骨细胞和/或成骨细胞直接相互作用。结构差异解释了BP药理活性的显着差异。我们在骨祖细胞分化系统中比较了两种结构不同的化合物阿仑膦酸盐和2-(3'-二甲基氨基吡嗪并)亚乙基-1,1-双膦酸甜菜碱(VS-6)的作用。在骨髓基质细胞培养系统中检查BP,这通常会导致骨祖细胞分化。这些药物存在于成骨刺激第2天到第11天的培养物中,这一时期估计与增殖结束和基质成熟阶段相当。我们发现两种不同的BP对特定的碱性磷酸酶(ALP)活性,基质细胞增殖以及细胞介导的矿化作用具有相反的影响。这些BPs与细胞相关的磷酸水解不同地相互作用,特别是在ALP Km浓度为10(-2)的情况下,其中阿仑膦酸盐抑制,而VS-6则不抑制磷酸酶活性。 VS-6处理分别在10和1 microM药物浓度下导致相似且显着增加的矿化作用。相反,在阿仑膦酸盐治疗下,矿化作用与对照相似,并且分别在10和1 microM药物浓度下显着降低。

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