Benzyl-α-GalNAc
CAS No. 3554-93-6
Benzyl-α-GalNAc ( —— )
产品货号. M26345 CAS No. 3554-93-6
Benzyl-α-GalNAc 是一种有效的 O-糖基化抑制剂,用于减少细胞表面的粘蛋白。
纯度: >98% (HPLC)
COA
Datasheet
HNMR
HPLC
MSDS
Handing Instructions
| 规格 | 价格/人民币 | 库存 | 数量 |
| 5MG | ¥421 | 有现货 |
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| 10MG | ¥648 | 有现货 |
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| 25MG | ¥1320 | 有现货 |
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| 50MG | ¥2130 | 有现货 |
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| 100MG | ¥3686 | 有现货 |
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| 500MG | ¥7995 | 有现货 |
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| 1G | 获取报价 | 有现货 |
|
生物学信息
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产品名称Benzyl-α-GalNAc
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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
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产品简述Benzyl-α-GalNAc 是一种有效的 O-糖基化抑制剂,用于减少细胞表面的粘蛋白。
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产品描述Benzyl-α-GalNAc is a potent inhibitor of O-glycosylation and is used to reduce mucin on cell surfaces.
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体外实验Cell Viability Assay Cell Line:SUIT-2 cells Concentration:5 mM Incubation Time:72 h Result:Inhibited mucin O-glycosylation.Cell Viability Assay Cell Line:LX-2 cellsConcentration:2, 4 mM Incubation Time:48 h Result:Remarkably decreased the expression of α-SMA in a dose-dependent manner (α-SMA is the marker for the activation of HSCs, which means that quiescent cells transform into myofibroblasts).Cell Proliferation Assay Cell Line:LX-2 cells (PDGF-BB-induced)Concentration:2, 4 mM Incubation Time:48 h Result:Partly reversed PDGF-BB-induced proliferation in cells.Western Blot Analysis Cell Line:LX-2 cells Concentration:2, 4 mM Incubation Time:48 h Result:Downregulated the mRNA levels of collagens I and III in a dose-dependent manner.
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体内实验Animal Model:Female severe combined immunodeficient (SCID) mice (6 to 8-week-old; capan-1 tumour model).Dosage:1 mg/mice (in combination with 5-FU)Administration:Tumoural injection; single daily; days 4, 6, 8 and 10 after tumour size reaches 50-70 mm3 Result:Significantly lowered neoplastic cells compared to 5-FU alone.
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同义词——
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通路Others
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靶点Other Targets
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受体Human Endogenous Metabolite
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研究领域——
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适应症——
化学信息
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CAS Number3554-93-6
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分子量311.334
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分子式C15H21NO6
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纯度>98% (HPLC)
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溶解度In Vitro:?DMSO : 25 mg/mL (80.30 mM)
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SMILESCC(=O)N[C@@H]1[C@@H](O)[C@@H](O)[C@@H](CO)O[C@@H]1OCc1ccccc1
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化学全称——
运输与储存
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储存条件(-20℃)
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运输条件With Ice Pack
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稳定性≥ 2 years
参考文献
1.Su?é-Pou M, Prieto-Sánchez S, et al. Cholesteryl oleate-loaded cationic solid lipid nanoparticles as carriers for efficient gene-silencing therapy. Int J Nanomedicine. 2018 May 30;13:3223-3233.
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