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  • LTX-401 dihydrochloride
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LTX-401 dihydrochloride

LTX-401是一种可靶向作用高尔基体(Golgiapparatus)的溶瘤氨基酸衍生物。

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¥3775-27250
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3020-21800
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  • 货号: ajcx30962
  • CAS: N/A
  • 别名:
  • 分子式: C23H35Cl2N3O
  • 分子量: 440.45
  • 纯度: >98%
  • 溶解度: DMSO: 100 mg/mL (227.04 mM)
  • 储存: 4°C, away from moisture
  • 库存: 现货

Background

LTX-401, an oncolytic amino acid derivative, targets the Golgi apparatus.


LTX-401, an oncolytic amino acid derivative, targets the Golgi apparatus[2]. LTX-401 effectively reduces the viability of several tumor cell lines in vitro, with a similar degree of cytotoxicity against non-malignant cell lines such as HUV-EC-C endothelial cells, HaCat keratinocytes and MRC-5 fibroblasts. LTX-401 displays the highest cytotoxic activity against the human malignant melanoma cell line MDA-MB-435S (13.5 μM), and is least active against the human hepatocellular carcinoma cell line HEPG2 (35.4 μM). For the remaining cell lines, LTX-401 exhibits similar IC50 values, varying slightly within the range of 19-32 μM. No in vitro hemolytic activity against RBCs is observed using the same concentrations required for the induction of cell death in cancer cell lines. A 50% hemolysis is observed using higher concentrations of LTX-401 (400 μg/mL=1087 μM)[1].


The majority (9/11) of the animals demonstrate a complete and lasting tumor regression after intratumoral treatment with LTX-401. Samples are collected from selected animals in the treatment group and control group on days 2 and 7 post-treatment with a single i.t injection. The immunolabelling of tumor tissue with anti-CD3 antibody reveals that a majority of the infiltrating cells are CD3+ T cells, whereas tumors injected with vehicle only exhibit tumors with a viable tumor tissue, with minimal necrosis and few lymphocytes[1].


[1]. Liv-Marie Eike, et al. The Cytolytic Amphipathic β(2,2)-Amino Acid LTX-401 Induces DAMP Release in Melanoma Cells and Causes Complete Regression of B16 Melanoma. PLoS One. 2016; 11(2): e0148980. [2]. Heng Zhou, et al. The oncolytic compound LTX-401 targets the Golgi apparatus. Cell Death Differ. 2018 Jan; 25(1): 227-228.

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