S82274 |
NITD609 |
源葉(MedMol) | 98% |
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- 產(chǎn)品描述: Cipargamin (NITD609) is an potent antimalarial compound, with an IC50 of appr 1 nM against P. falciparum.
- 靶點(diǎn): IC50: 1 nM (P. falciparum);Parasite
- 體外研究:
Cipargamin (NITD609) inhibits T. gondii with a MIC90 for tachyzoites of 5 μM and a MIC50 of 1 μM, without toxicity to human foreskin fibroblasts (HFFs) at the highest concentration tested (10 μM). Cipargamin (NITD609) is the most effective inhibitor of early gametocyte development at 50 and 500 nM. Cipargamin shows a dose-dependent inhibiting effect on late gametocyte development. Cipargamin (NITD609) shows potent activities against a panel of culture-adapted P. falciparum strains, with ICIC50 values of 0.5-1.4 nM. Cipargamin is effective as artesunate with potency in the low nanomolar range (ICIC50 values consistently <10 nM) against all P. falciparum and P. vivax isolates
- 體內(nèi)研究:
Cipargamin (NITD609) shows favorable pharmacokinetic properties and displays single dose cure efficacy in a malaria mouse model. Cipargamin (100 mg/kg) completely clears P. berghei infection in all treated mice, and partial cure (50%) is achieved with a single oral dose at 30 mg/kg
- 參考文獻(xiàn):
1. Zhou Y, et al. Spiroindolone that inhibits PfATPase4 is a potent, cidal inhibitor of Toxoplasma gondii tachyzoites in vitro and in vivo. Antimicrob Agents Chemother. 2014;58(3):1789-92. 2. van Pelt-Koops JC, et al. The spiroindolone drug candidate NITD609 potently inhibits gametocytogenesis and blocks Plasmodium falciparum transmission to anopheles mosquito vector. Antimicrob Agents Chemother. 2012 Jul;56(7):3544-8. 3. Rottmann M, et al. Spiroindolones, a potent compound class for the treatment of malaria. Science. 2010 Sep 3;329(5996):1175-80.
- 溶解性: soluble in DMSO
- 保存條件: -20℃
- 配置溶液濃度參考:
1mg 5mg 10mg 1 mM 2.563 ml 12.813 ml 25.625 ml 5 mM 0.513 ml 2.563 ml 5.125 ml 10 mM 0.256 ml 1.281 ml 2.563 ml 50 mM 0.051 ml 0.256 ml 0.513 ml
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輸入產(chǎn)品批號(hào):
本計(jì)算器可幫助您計(jì)算出特定溶液中溶質(zhì)的質(zhì)量、溶液濃度和體積之間的關(guān)系,公式為:
質(zhì)量 (mg) = 濃度 (mM) x 體積 (mL) x 分子摩爾量 (g/mol)