PAMAM dendrimer, ethylenediamine core
2.5 generation solid
Reagent
Code: #94526
CAS Number
202009-65-2
blur_circular Chemical Specifications
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Molecular Information
Weight
6265.6 g/mol
Formula
NH₂CH₂₂NH₂G₂₆PAMAMNHCH₂CH₂COONa₃₂
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Registry Numbers
MDL Number
MFCD00197936
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Storage & Handling
Storage
2-8°C
description Product Description
PAMAM dendrimers with an ethylenediamine core are widely used in drug delivery systems due to their unique tree-like structure, which allows for precise control over size and surface functionality. They can encapsulate or conjugate therapeutic agents, enhancing solubility, stability, and targeted delivery to specific cells or tissues. In gene therapy, these dendrimers act as non-viral vectors, efficiently binding and delivering nucleic acids like DNA or RNA into cells. Additionally, they are employed in diagnostic imaging as contrast agents, improving the resolution and specificity of imaging techniques. Their surface groups can be modified for specific applications, such as attaching targeting ligands for cancer therapy or antimicrobial agents for infection control. In materials science, they are used to create nanocomposites with enhanced mechanical, thermal, or electrical properties. Their versatility and tunability make them valuable in biomedical, industrial, and research applications.
format_list_bulleted Product Specification
Test Parameter | Specification |
---|---|
Appearance | White or yellow solid |
Volatile matter | 5.0 |
Infrared Spectrum | Conforms to Structure |
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PAMAM dendrimer, ethylenediamine core
PAMAM dendrimers with an ethylenediamine core are widely used in drug delivery systems due to their unique tree-like structure, which allows for precise control over size and surface functionality. They can encapsulate or conjugate therapeutic agents, enhancing solubility, stability, and targeted delivery to specific cells or tissues. In gene therapy, these dendrimers act as non-viral vectors, efficiently binding and delivering nucleic acids like DNA or RNA into cells. Additionally, they are employed in diagnostic imaging as contrast agents, improving the resolution and specificity of imaging techniques. Their surface groups can be modified for specific applications, such as attaching targeting ligands for cancer therapy or antimicrobial agents for infection control. In materials science, they are used to create nanocomposites with enhanced mechanical, thermal, or electrical properties. Their versatility and tunability make them valuable in biomedical, industrial, and research applications.
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