SIGMA C0768-10G 环磷酰胺 一水合物 6055-19-2产品图
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SIGMA C0768-10G 环磷酰胺 一水合物 6055

-19-2
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  • ¥4070
  • Sigma-Aldrich
  • 进口
  • C0768-10G
  • 2026年04月02日
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 保存条件

      2-8°C

    • 保质期

      根据瓶身LOT号查询

    • 英文名

      Cyclophosphamide monohydrate

    • 库存

      有现货

    • 供应商

      浙江羽翔生物科技有限公司

    • CAS号

      6055-19-2

    • 规格

      10G

    属性

    产品名称

    环磷酰胺 一水合物, bulk package

    Quality Level

    200

    assay

    97.0-103.0% (HPLC)

    form

    powder

    mp

    49-51 °C (lit.)

    storage temp.

    2-8°C

    SMILES string

    [H]O[H].ClCCN(CCCl)P1(=O)NCCCO1

    InChI

    1S/C7H15Cl2N2O2P.H2O/c8-2-5-11(6-3-9)14(12)10-4-1-7-13-14;/h1-7H2,(H,10,12);1H2

    InChI key

    PWOQRKCAHTVFLB-UHFFFAOYSA-N

    Gene Information

    human ... ALDH1A1(216), ALDH1B1(219)

    说明

    General description

    环磷酰胺(CYC)是一种具有细胞毒性的烷化剂。可由肝脏中的细胞色素P-450酶系统激活。具有免疫调节功能,并能抑制体液免疫和细胞免疫。环磷酰胺具有抗癌和免疫抑制活性。环磷酰胺在体内经肝脏转化为活性烷基化4-羟基环磷酰胺代谢物,从而显示出抗肿瘤作用。

    Application

    环磷酰胺一水合物用于:
    • 测试其对TC-1肿瘤细胞的抗肿瘤作用
    • 多药溶液的组成部分,分离耐药性人伯基特淋巴瘤细胞系
    • 检测小鼠肿瘤细胞系的抗肿瘤免疫力

    Biochem/physiol Actions

    广泛用于癌症化疗的细胞毒性dan芥衍生物。它可与 DNA 交联、导致链断裂并诱导突变。
    环磷酰胺是一种广泛用于癌症化疗的具有细胞毒性的dan芥衍生物。它可与 DNA 交联、导致链断裂并诱导突变。其临床活性与乙醛脱氢酶 1 (ALDH1) 的活性降低相关。

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    图标文献和实验
    该产品被引用文献

    Down-regulation of the Notch pathway mediated by a gamma-secretase inhibitor induces anti-tumour effects in mouse models of T-cell leukaemia.

    British journal of pharmacology (2009-09-25)
    J Tammam, C Ware, C Efferson, J O'Neil, S Rao, X Qu, J Gorenstein, M Angagaw, H Kim, C Kenific, K Kunii, K J Leach, G Nikov, J Zhao, X Dai, J Hardwick, M Scott, C Winter, L Bristow, C Elbi, J F Reilly, T Look, G Draetta, Lht Van der Ploeg, N E Kohl, P R Strack, P K Majumder
    PMID19775282
    摘要

    gamma-Secretase inhibitors (GSIs) block NOTCH receptor cleavage and pathway activation and have been under clinical evaluation for the treatment of malignancies such as T-cell acute lymphoblastic leukaemia (T-ALL). The ability of GSIs to decrease T-ALL cell viability in vitro is a slow process requiring >8 days, however, such treatment durations are not well tolerated in vivo. Here we study GSI's effect on tumour and normal cellular processes to optimize dosing regimens for anti-tumour efficacy. Inhibition of the Notch pathway in mouse intestinal epithelium was used to evaluate the effect of GSIs and guide the design of dosing regimens for xenograft models. Serum Abeta(40) and Notch target gene modulation in tumours were used to evaluate the degree and duration of target inhibition. Pharmacokinetic and pharmacodynamic correlations with biochemical, immunohistochemical and profiling data were used to demonstrate GSI mechanism of action in xenograft tumours. Three days of >70% Notch pathway inhibition was sufficient to provide an anti-tumour effect and was well tolerated. GSI-induced conversion of mouse epithelial cells to a secretory lineage was time- and dose-dependent. Anti-tumour efficacy was associated with cell cycle arrest and apoptosis that was in part due to Notch-dependent regulation of mitochondrial homeostasis. Intermittent but potent inhibition of Notch signalling is sufficient for anti-tumour efficacy in these T-ALL models. These findings provide support for the use of GSI in Notch-dependent malignancies and that clinical benefits may be derived from transient but potent inhibition of Notch.

    相关实验
    • 燕麦转基因及其在提高渗透胁迫耐受中的应用

      10.1 )。 2 . 3 培养基 ( 1 )  MS1 ( 萌发培养基):4.3 g/L MS [ 52 ] 基本培养基和维生素(GIBC0 BRL Rockville,Maryland ) ,30 g/L蔗糖( Sigma,St.   Louis,MO, USA  ) ,3 g/L phytagel (Sigma), pH 5.6。 ( 2 )  MS2 ( 芽增殖培养基):MS 培养基,30 g/L 蔗糖,500 mg/L 酪蛋白酶水解物 (Sigma

    • 支原体污染的特点及检验(2)

      mixture ( 24 ul / each )  3.3.2.1 10x PCR buffer (含1.5 mM MgCl2 ) 2.5 ul  3.3.2.2 2 nd stage primer mixture 0.5 ul  3.3.2.3 dNTP ( 1.25 mM each ) 1.0 ul  3.3.2.4 MgCl2 ( 25 mM ) 0.5 ul  3.3.2.5 Taq DNA polymerase ( 5U/ul ) 0.1 ul  3.3.2.6 ddH2O 19.4 ul  

    • Combined 3C-ChIP-Cloning (6C) Assay: A Tool to Unravel Protein-Mediated Genome Architecture

      dilution). Multiple ChIP reactions can be performed from one 3C ligation reaction. The same ligation reaction can be split and used for ChIP analyses with different antibodies. 24. Add 4-10 µg of the antibody of choice

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    SIGMA C0768-10G 环磷酰胺 一水合物 6055-19-2
    ¥4070