tert-Butyl protected carboxylate PEG
Protected Synthesis, Conjugation
| Catalog No. | Name | Structure | M.W. | Purity | Buy |
|---|---|---|---|---|---|
| BPG-4100 | t-Boc-N-amido-PEG-Succinimidyl Valerate, MW 3.4K |
|
N/A | N/A | |
| BPG-4099 | t-Boc-N-amido-PEG-Succinimidyl Carbonate, MW 2K-5K |
|
N/A | N/A | |
| BPG-4098 | t-Boc-N-amido-PEG-OH, MW 1K-10K |
|
N/A | N/A | |
| BPG-4097 | t-Boc-N-amido-PEG-CH2COOH, MW 1K-10K |
|
N/A | N/A | |
| BPG-4096 | t-Boc-N-amido-PEG-amine, MW 1K-10K |
|
N/A | N/A | |
| BPG-4095 | t-Boc-N-Amido-C1-Azide-PEG-alcohol, MW 1K-10K |
|
N/A | N/A | |
| BPG-4094 | t-Boc-N-Amido-C1-Azide-PEG-acid, MW 1K-10K |
|
N/A | N/A | |
| BPG-4080 | Fmoc-NH-PEG-OH, MW 1K-10K |
|
N/A | N/A | |
| BPG-4079 | Fmoc-N-amido-PEG-Succinimidyl Valerate, MW 3.4K |
|
N/A | N/A | |
| BPG-4078 | Fmoc-N-amido-PEG-NHS ester, MW 2K |
|
N/A | N/A | |
| BPG-4077 | Fmoc-N-amido-PEG-CH2COOH, MW 1K-10K |
|
N/A | N/A | |
| BPG-4076 | Fmoc-N-amido-PEG-amine, MW 1K-10K |
|
N/A | N/A | |
| BPG-4075 | Boc-Amine Alkyne-PEG-OH, MW 1K-10K |
|
N/A | N/A | |
| BPG-4074 | Boc-Amine Alkyne-PEG-acid, MW 1K-5K |
|
N/A | N/A | |
| BPG-2783 | Boc-NH-PEG-Succinimidyl propionate, MW 3.5k-5k |
|
Customizable | N/A | |
| BPG-2781 | Fmoc-NH-PEG-Succinimidyl propionate, MW 3.5k-5k |
|
Customizable | N/A | |
|
BPG-2777
CAS: 488085-18-3
|
Fmoc-NH-PEG-NHS, MW 1k-4k |
|
Customizable | N/A | |
| BPG-2773 | Boc-NH-PEG-NHS, MW 1k-4k |
|
Customizable | N/A | |
| BPG-1355 | Fmoc-NH-PEG-SCM, MW 1k-10k |
|
Customizable | N/A | |
| BPG-1350 | Fmoc-NH-PEG-NH2, MW 1k-10k |
|
Customizable | N/A |
Background
Boc-protected amine PEG and Fmoc-protected amine PEG are both common compounds that are the product of introducing a protecting group (Boc or Fmoc) onto a polyethylene glycol (PEG) molecule. These protecting groups protect the reactivity of the amine moiety during synthesis for specific chemical reactions when needed.
Fig. 1. Schematic diagram of Boc protected amine PEG as a linker (Bioorganic & medicinal chemistry letters. 2007, 17(24): 6876-6878).
Boc/Fmoc protected amine PEG can be used to modify the surface of liposomes to alter their properties and functions. For example, covalent binding of Boc/Fmoc protected amine PEG to the surface of liposomes can improve the stability of liposomes, reduce protein adsorption, and prolong the circulating half-life. This modification can be achieved by chemical reaction or insertion of modified PEG chains on the liposome surface.
Boc/Fmoc protected amine PEG can be combined with liposomes for drug encapsulation and drug delivery. By covalently binding or physically encapsulating Boc/Fmoc protected amine PEG with drug molecules inside or outside of liposomes, drug solubility, stability and specific delivery can be improved.
The introduction of specific targeting ligands or functional groups on Boc/Fmoc protected amine PEG enables targeting of liposomes. This allows liposomes to selectively recognize and bind to receptors or molecular markers on specific cell surfaces, thus enabling targeted delivery of drugs.
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