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Home > Products >  Dynasore

Dynasore CAS NO.304448-55-3

  • FOB Price: USD: 1.00-1.00 /Gram Get Latest Price
  • Min.Order: 100 Gram
  • Payment Terms: L/C
  • Available Specifications:

    ≥98.0%(100-500)Gram≥98.0%(1000-5000)Gram

  • Product Details

Keywords

  • Dynasore
  • 3-Hydroxy-naphthalene-2-carboxylic acid (3,4-dihydroxy-benzylidene)-hydrazide monohydrate;Dynasore monohydrate;Dynasore;3-Hydroxynaphthalene-2-carboxylicacid(3,4-dihydroxybenzylidene)hydrazide;3-Hydro
  • 304448-55-3

Quick Details

  • ProName: Dynasore
  • CasNo: 304448-55-3
  • Molecular Formula: C18H14N2O4H2O
  • Appearance: light yellow solid
  • Application: CAS:304448-55-3; Signalling;Cell Cycl...
  • DeliveryTime: 2 months
  • PackAge: 100g,500g,1kg,25kg
  • Port: shang hai
  • ProductionCapacity: 1000 Gram/Month
  • Purity: 98%
  • Storage: Dry seal
  • Transportation: shipping
  • LimitNum: 100 Gram

Superiority

We are specialized in custom synthesis, chemical/pharmaceutical/ pesticides outsourcing and contract research.
 
 
 

We are committed to provide excellence in researching, manufacturing and drug discovery process.
 
 
 

Our research team of scientists consists of western-trained Ph.D.s with experience and capabilities in drug R&D methodologies and medicinal chemistry.

 

Details

Dynasore is a cell-permeable small molecule that inhibits the GTPase activity of dynamin1, dynamin2 and Drp1, the mitochondrial dynamin.
IC50 Value: 15 uM [1]
Target: dynamin
Dynasore was discovered in a screen of approximately 16,000 compounds for inhibitors of the dynamin2 GTPase. Dynasore is a noncompetitive inhibitor of dynamin GTPase activity and blocks dynamin-dependent endocytosis in cells, including neurons[2].
in vitro: Dynasore inhibits dynamin GTPase activity and transferrin uptake at IC(50) approximately 15 microM but use in some biological applications requires more potent inhibitor than dynasore. Dynasore treatment led to the abnormal accumulation of LDL and free cholesterol (FC) within the endolysosomal network. The measure of cholesterol esters (CE) further showed that the delivery of regulatory cholesterol to the endoplasmic reticulum (ER) was deficient. This resulted in the inhibition of the transcriptional control of the three major sterol-sensitive genes, sterol-regulatory element binding protein 2 (SREBP-2), 3-hydroxy-3-methyl-coenzymeA reductase (HMGCoAR), and low-density lipoprotein receptor (LDLR)[3].

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