产品详情
简单介绍:
One-Step mini kit for covalent conjugation of proteins and other amine containing ligands to 100nm Gold NanoUrchins. Contains enough reagents for conjugation of 10 x 10ug of protein.
详情介绍:
Product Details
Cytodiagnostics 100nm NHS-activated Gold NanoUrchins Conjugation Kit have been optimized for high efficiency one-step conjugation of proteins and other primary amine-containing ligands to gold nanourchins.
The kit contains ready-to-use pre-made mixtures. No activation or manipulation of the gold nanourchins is required prior to conjugation, which often results in poor performing conjugates. Simply mix your protein with the pre-activated NHS ester gold nanourchins supplied in the kit.
Kit Components
- 100nm NHS-Activated Gold NanoUrchins (lyophilized)
- Protein Resuspension Buffer
- Reaction Buffer
- Quencher Solution
Features & Benefits
- Results in covalently bound ligand and more stable conjugate.
- Fast and convenient one-step conjugation reaction with no pre-activation requirements.
- Spacer between the gold surface and conjugated ligand minimizes effects on the tertiary protein structure, which can lead to poor performing conjugates, a common problem seen in conjugates prepared by passive adsorption.
- Precisely engineering surface coating that reduces non-specific protein binding in biological assays.
Gold Nanoparticle Specifications
Surface functionality: NHS-ester (~ 1 NHS group/nm2) (10kDa PEG-spacer between gold surface and NHS-group)
Core diameter: 100nm
Concentration: OD=20 (when dissolved to a final volume of 100ul)
Particles per ml: ~7.68E+10 (when dissolved to a final volume of 100ul)
Absorbance (lambda max): 680nm
Diameter | Peak SPR Wavelength (nm) | NPS/ml* | Wt. Conc (mg/ml)* | Molar Ext (M-1cm-1) | Size Dispersity (+/-nm) | Particle Volume (nm3)# | Surface Area (nm2)# | Surface/ Volume Ratio# | Particle Mass (g) | Molar Mass (g/mol) | Molar Concentration* |
100 | 680 | 3.84E+09 | 3.89E-02 | 1.57E+11 | <8% | 5.24E+05 | 3.14E+04 | 0.06 | 1.02E-14 | 6.11E+09 | 6.37E-12 |
*All concentrations as indicated at an optical density of 1 (OD=1), # Data is approximated based upon a spherical nanoparticle. |
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