911445
Polyester bis-MPA dendron, 4 Rhodamine, 1 carboxyl (core)
generation 2
Sinónimos:
Bis-MPA dendron, Fluoresenct linker, Fluoresent dendron
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About This Item
Productos recomendados
form
solid
mol wt
generation 2
no. Surface Groups
4
color
red to pink
functional group
carboxylic acid (core)
storage temp.
−20°C
Categorías relacionadas
General description
- Polymer architecture: Dendron
- End Group Functionality: Rhodamine
- Bis-MPA : 2,2-Bis(hydroxymethyl)propionic acid
Application
Bis-MPA dendritic molecules are based on 2,2-bismethylolpropionicacid (bis-MPA) building blocks. The hydrolysable linkers presented in this type of polymers allow their degradation into byproducts that can be reabsorbed by the body or into excretable non-toxic small molecules. Therefore, this group of dendritic polymers is biocompatible and biodegradable, making them suitable for biomedical applications.
The core of this product is functionalized by carboxyl groups, which can be readily used in bioconjugation. The rhodamine labeled corona allows for application in bioimaging.
The core of this product is functionalized by carboxyl groups, which can be readily used in bioconjugation. The rhodamine labeled corona allows for application in bioimaging.
Storage Class
11 - Combustible Solids
wgk_germany
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
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Encuentre la documentación para los productos que ha comprado recientemente en la Biblioteca de documentos.
Molecules (Basel, Switzerland), 23(8) (2018-08-17)
Herein, we present the first evaluation of cationic dendrimers based on 2,2-bis(methylol)propionic acid (bis-MPA) as nonviral vectors for transfection of short interfering RNA (siRNA) in cell cultures. The study encompassed dendrimers of generation one to four (G1⁻G4), modified to bear
Chemistry of multifunctional polymers based on bis-MPA and their cutting-edge applications.
Progress in Polymer Science, 48, 85-110 (2015)
Chemical Society reviews, 42(13), 5858-5879 (2013-05-01)
Dendritic polymers are highly branched, globular architectures with multiple representations of functional groups. These nanoscale organic frameworks continue to fascinate researchers worldwide and are today under intensive investigation in application-driven research. A large number of potential application areas have been
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