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8-Arm PEG

Catalog No. Name Structure M.W. Purity
In stock BPG-4727 8-Arm PEG-Amido-Succinic Acid, MW 10K-40K
8-Arm PEG-Amido-Succinic Acid, MW 10K-40K - Chemical Structure
N/A N/A
In stock BPG-4726 8-Arm PEG-Amido-(CH2)3CO2H, MW 10K-40K
8-Arm PEG-Amido-(CH2)3CO2H, MW 10K-40K - Chemical Structure
N/A N/A
In stock BPG-4725 8-Arm PEG-(CH2)3CO2H, MW 10K-40K
8-Arm PEG-(CH2)3CO2H, MW 10K-40K - Chemical Structure
N/A N/A
In stock BPG-2767 8-Arm PEG-Norbornene (tripentaerythritol), MW 20k
8-Arm PEG-Norbornene (tripentaerythritol), MW 20k - Chemical Structure
N/A N/A
In stock BPG-2764 8-Arm PEG-MAL (tripentaerythritol), MW 10k-40k
8-Arm PEG-MAL (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2761 8-Arm PEG-NH2 (tripentaerythritol), MW 10k-40k
8-Arm PEG-NH2 (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2758 8-Arm PEG-AA (tripentaerythritol), MW 10k-40k
8-Arm PEG-AA (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2756 8-Arm PEG-VS (tripentaerythritol), MW 10k-20k
8-Arm PEG-VS (tripentaerythritol), MW 10k-20k - Chemical Structure
Customizable N/A
In stock BPG-2754 8-Arm PEG-SH (tripentaerythritol), MW 10k-20k
8-Arm PEG-SH (tripentaerythritol), MW 10k-20k - Chemical Structure
Customizable N/A
In stock BPG-2752 8-Arm PEG-acrylate (tripentaerythritol), MW 10k-20k
8-Arm PEG-acrylate (tripentaerythritol), MW 10k-20k - Chemical Structure
Customizable N/A
In stock BPG-2750 8-Arm PEG (tripentaerythritol), 7-Arm-OH, 1-Arm-AA, MW 10k-20k
8-Arm PEG (tripentaerythritol), 7-Arm-OH, 1-Arm-AA, MW 10k-20k - Chemical Structure
Customizable N/A
In stock BPG-2748 8-Arm PEG (hexaglycerol), 7-Arm-OH, 1-Arm-AA, MW 10k-20k
8-Arm PEG (hexaglycerol), 7-Arm-OH, 1-Arm-AA, MW 10k-20k - Chemical Structure
Customizable N/A
In stock BPG-2744 8-Arm PEG-SS (tripentaerythritol), MW 10k-40k
8-Arm PEG-SS (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2740 8-Arm PEG-SG (tripentaerythritol), MW 10k-40k
8-Arm PEG-SG (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2736 8-Arm PEG-glycol (tripentaerythritol), MW 10k-40k
8-Arm PEG-glycol (tripentaerythritol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-2732 8-Arm PEG-glycol (hexaglycerol), MW 10k-40k
8-Arm PEG-glycol (hexaglycerol), MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-1180 8-Arm PEG-VS, MW 10k-40k
8-Arm PEG-VS, MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-1177 8-Arm PEG-Tosylate, MW 10k-40k
8-Arm PEG-Tosylate, MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-1174 8-Arm PEG-SS, MW 10k-40k
8-Arm PEG-SS, MW 10k-40k - Chemical Structure
Customizable N/A
In stock BPG-1171 8-Arm PEG-SH, MW 10k-40k
8-Arm PEG-SH, MW 10k-40k - Chemical Structure
Customizable N/A

Background

The polymer 8-arm PEG, also called 8-arm polyethylene glycol, is made up of several PEG chains that are joined together at the center. PEG is hydrophilic because it has repeated ethylene oxide units in each arm of the polymer. The flexibility and functionality of a variety of applications, including medication delivery, surface modification, and biomaterials, can be improved by the branching structure. 8-arm PEG is frequently used in biomedical research and drug development due to its biocompatibility and ability to enhance the solubility and stability of drugs or biomolecules.

Structures of different PEG derivativesFig. 1. Structures of different PEG derivatives.

Example of 8-Arm PEG

8-Arm PEG Amine

The amine functional group on the 8-arm PEG amine allows covalent attachment of various molecules or surfaces, which can be achieved by reacting the amine group with a reactive group on the target molecule or surface. Conjugating 8-Arm PEG amines to antibodies, proteins and peptides increases their stability and solubility. Pegylation can prevent protein aggregation, increase protein half-life, and enhance protein solubility in aqueous solutions. This is especially useful for therapeutic proteins or antibodies that may be easily degraded or have poor solubility. In addition to proteins and antibodies, 8-Arm PEG Amine can also be conjugated to solid supports such as nanoparticles or surfaces. This allows the creation of PEGylated nanoparticles or coatings, improving their stability, biocompatibility and circulation time in the body. PEGylation of solid supports can also reduce non-specific binding and improve the overall performance of the system.

8-Arm PEG Maleimide

8-arm PEG maleimide is a PEG derivative containing eight arms or branches. It has a maleimide functional group at the end of each arm. Maleimides are reactive groups that can form covalent bonds with thiol groups, such as those found on cysteine residues in proteins or peptides. 8-arm PEG maleimide is commonly used in bioconjugation and drug delivery applications. It can be used to modify proteins or peptides by reacting with exposed cysteine residues to form stable thioether linkages. This allows the attachment of various molecules, such as fluorescent dyes, drugs, or targeting ligands, to proteins or peptides of interest. The multiple arms of the 8-arm PEG maleimide provide a higher degree of functionalization compared to linear PEG derivatives, thereby improving the payload capacity and stability of the resulting conjugates.

8-Arm PEG NHS

NHS is a reactive group that can react with primary amines to form stable amide bonds. When combined with PEG, it can create a versatile platform for conjugating various molecules such as proteins, peptides, drugs or imaging agents. The 8-arm structure of PEG NHS provides a high degree of versatility and flexibility for creating multifunctional conjugates. It allows the attachment of multiple molecules or functional groups to a single PEG backbone, enhancing the stability, solubility, and biocompatibility of the conjugate.

8-Arm PEG-Biotin

Each branched end of 8-arm PEG-Biotin contains a molecule of biotin, which has high affinity for avidin and streptavidin proteins. The multiple arms of 8-arm PEG-biotin provide more attachment sites for biotin, allowing a higher degree of biotinylation than linear PEG-biotin molecules. This increased biotin density can enhance the binding affinity and specificity of biotinylated molecules to avidin or streptavidin, thereby improving the performance of applications such as affinity chromatography, protein arrays, or biosensors.

Advantages of 8-Arm PEG

One of the top suppliers of numerous chemical goods, such as 8-arm PEG, is BOC Sciences. For various client needs, our 8-arm PEGs come in a variety of molecular weights and functional groups. Moreover, BOC Sciences has a group of knowledgeable chemists that can custom-synthesize 8-Arm PEG in accordance with customers' particular needs. The molecular weight, functional groups, and other properties can be adjusted to satisfy individual requirements. Please get in touch with us if you're interested in learning more about our PEGylation services.

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