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Strontium ranelate

CAS No. 135459-87-9

Strontium ranelate ( Distrontium renelate | S-12911 )

产品货号. M11444 CAS No. 135459-87-9

雷奈酸锶(II)盐,可刺激CaSR并导致前成骨细胞分化为成骨细胞,增加骨形成;还刺激成骨细胞分泌骨保护素,抑制与 RANKL 系统相关的前破骨细胞形成的破骨细胞;一种治疗骨质疏松症的化合物。Osteoporosis批准

纯度: >98% (HPLC)

COA Datasheet HNMR HPLC MSDS Handing Instructions
规格 价格/人民币 库存 数量
25MG ¥389 有现货
50MG ¥640 有现货
100MG ¥948 有现货
200MG ¥1596 有现货
500MG ¥3645 有现货
1G 获取报价 有现货

生物学信息

  • 产品名称
    Strontium ranelate
  • 注意事项
    本公司产品仅用于科研实验,不得用于人体或动物的临床与诊断
  • 产品简述
    雷奈酸锶(II)盐,可刺激CaSR并导致前成骨细胞分化为成骨细胞,增加骨形成;还刺激成骨细胞分泌骨保护素,抑制与 RANKL 系统相关的前破骨细胞形成的破骨细胞;一种治疗骨质疏松症的化合物。Osteoporosis批准
  • 产品描述
    A strontium(II) salt of ranelic acid that stimulates CaSR and leads to the differentiation of pre-osteoblast to osteoblast, increases the bone formation; also stimulates osteoblasts to secrete osteoprotegerin in inhibiting osteoclasts formed from pre-osteoclasts in relation to the RANKL system; a medication for osteoporosis treatment.Osteoporosis Approved.
  • 体外实验
    Strontium Ranelate (0.1-1 mM; 22 days; Mouse calvaria cells) treatment shows the expression of mRNA for early osteoblast markers (alkaline phosphatase, ALP) is visualized by day 5, while late markers (osteocalcin, OCN) are detectable only by day 15 and beyond.Strontium Ranelate (0.1-1 mM; 22 days; Mouse calvaria cells) treatment results in significantly increases the mRNA expression of the osteoblastic markers ALP, BSP and OCN at day 22 of MC cell culture.Strontium Ranelate is found to increase alkaline phosphatase activity and prostaglandin E2 production in a COX-2 dependent manner in murine marrow stromal cells. RT-PCRCell Line:Mouse calvaria (MC) cells Concentration:0.1 mM, 0.3 mM or 1 mMIncubation Time:22 daysResult:The expression of mRNA for early osteoblast markers (ALP) was visualized by day 5, while late markers (OCN) were detectable only by day 15 and beyond.Western Blot AnalysisCell Line:Mouse calvaria (MC) cells Concentration:0.1 mM, 0.3 mM or 1 mMIncubation Time:22 days Result:Significantly increased the mRNA expression of the osteoblastic markers ALP, BSP and OCN at day 22 of MC cell culture.
  • 体内实验
    Strontium Ranelate increases bone formation and decreased bone resorption, which results in increased bone mass in the vertebrae of intact adult mice. In intact adult rats, Strontium Ranelate also increases bone mass, as measured by dual-energy X-ray absorptiometry, in lumbar vertebra and femur, and this is confirmed by histological assessment of trabecular bone volume in the tibial metaphysis.Strontium Ranelate is found to decrease bone resorption and to increase bone formation in alveolar bone in normal adult monkeys (Macaca fascicularis), which exhibits extensive bone remodeling.In ovariectomized rats, short-term (3 months) treatment with Strontium Ranelate prevents trabecular bone loss induced by oestrogen deficiency, as demonstrated by bone ash, bone mineral content and histomorphometric analysis in the tibial metaphysis. This effect results from decreased bone resorption while bone formation was maintained. These beneficial effects of Strontium Ranelate on bone mass and microarchitecture in ovariectomized rats are confirmed in long-term experiments. In this long-term study (2 years), the increase in bone mass and microarchitecture induced by Strontium Ranelate results in a marked improvement in bone strength, supporting the beneficial effect of this drug on bone resistance.
  • 同义词
    Distrontium renelate | S-12911
  • 通路
    GPCR/G Protein
  • 靶点
    CaSR
  • 受体
    CalciumChannel
  • 研究领域
    Metabolic Disease
  • 适应症
    Osteoporosis

化学信息

  • CAS Number
    135459-87-9
  • 分子量
    513.4896
  • 分子式
    C12H6N2O8SSr2
  • 纯度
    >98% (HPLC)
  • 溶解度
    DMSO: < 1 mg/mL
  • SMILES
    O=C([O-])CC1=C(C([O-])=O)SC(N(CC([O-])=O)CC([O-])=O)=C1C#N.[Sr+2].[Sr+2]
  • 化学全称
    3-Thiopheneacetic acid, 5-[bis(carboxymethyl)amino]-2-carboxy-4-cyano-, strontium salt (1:2)

运输与储存

  • 储存条件
    (-20℃)
  • 运输条件
    With Ice Pack
  • 稳定性
    ≥ 2 years

参考文献

1. Hamdy NA. Rheumatology (Oxford). 2009 Oct;48 Suppl 4:iv9-13. 2. Chu JG, et al. BMC Musculoskelet Disord. 2017 Feb 10;18(1):78. 3. Tsai TT, et al. PLoS One. 2017 Jan 4;12(1):e0167296.
产品手册
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