PAMAM dendrimer, ethylenediamine core, generation 0.5 solution

20wt.% in methanol

Reagent Code: #94529

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 1269 g/mol
Formula NH₂CH₂₂NH₂G₀₅PAMAMNHCH₂CH₂COONa₈
badge Registry Numbers
MDL Number MFCD00192447
thermostat Physical Properties
Boiling Point 65 °C
inventory_2 Storage & Handling
Density 0.86 g/mL at 25 °C
Storage 2-8°C

description Product Description

PAMAM dendrimer, ethylenediamine core, generation 0.5 solution, is widely used in drug delivery systems due to its unique branching structure and ability to encapsulate or bind therapeutic agents. Its surface functional groups allow for targeted delivery, enhancing the efficiency of treatments while minimizing side effects. In gene therapy, it serves as a non-viral vector for transporting genetic material into cells, facilitating gene editing or expression. Additionally, it is employed in diagnostic imaging as a contrast agent carrier, improving the clarity and specificity of imaging techniques. Its biocompatibility and versatility also make it suitable for use in tissue engineering, where it aids in scaffolding and promoting cell growth. In nanotechnology, it acts as a template or stabilizer for synthesizing nanoparticles with controlled sizes and shapes.

shopping_cart Available Sizes & Pricing

Size Availability Unit Price Quantity
inventory 5g
10-20 days £798.09
PAMAM dendrimer, ethylenediamine core, generation 0.5 solution
PAMAM dendrimer, ethylenediamine core, generation 0.5 solution, is widely used in drug delivery systems due to its unique branching structure and ability to encapsulate or bind therapeutic agents. Its surface functional groups allow for targeted delivery, enhancing the efficiency of treatments while minimizing side effects. In gene therapy, it serves as a non-viral vector for transporting genetic material into cells, facilitating gene editing or expression. Additionally, it is employed in diagnostic imaging as a contrast agent carrier, improving the clarity and specificity of imaging techniques. Its biocompatibility and versatility also make it suitable for use in tissue engineering, where it aids in scaffolding and promoting cell growth. In nanotechnology, it acts as a template or stabilizer for synthesizing nanoparticles with controlled sizes and shapes.
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