Catalog |
name |
Description |
price |
R-R-0016 |
SH-PEG2000-COOH |
Thiol-PEG2000-Acid/SH-PEG2000-Acid. SH-PEG2000-COOH is a versatile molecule that can be used in various applications. It can be used to modify surfaces or nanoparticles by binding to thiol-reactive groups, enabling the attachment of various biomolecules, drugs, or dyes. The PEG chains provide increased water solubility and biocompatibility to the molecule, making it suitable for applications in drug delivery, biomedicine, and biosensors. |
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R-1501 |
mPEG-SH |
Methoxyl-polyethylene glycol-Thiol, mPEG-SH is a linear Monofunctional PEG reagent |
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R-1502 |
HS-PEG-SH |
Bis Thiol functionalized polyethylene glycol, Thiol-polyethylene glycol-Thiol, HS-PEG-SH is a linear homobifunctional PEG crosslinking reagent |
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R-1503 |
HS-PEG-COOH |
Thiol-polyethylene glycol-Carboxyl, HS-PEG-COOH is a linear heterobifunctional PEG reagent with a Thiol and a Carboxyl group |
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R-1505 |
Alkyne-PEG-SH |
Thiol-polyethylene glycol-Alkyne, Alkyne-PEG-SH is a linear heterobifunctional PEG reagent with a Thiol and a Alkyne group |
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R-1506 |
HS-PEG-NHS |
Thiol-polyethylene glycol-NHS, HS-PEG-NHS from RuixiBio is a linear heterobifunctional PEG reagent with a Thiol |
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R-1507 |
HS-PEG-Biotin |
Thiol-polyethylene glycol-Biotin, HS-PEG-Biotin from RuixiBio is a linear heterobifunctional PEG reagent with a Thiol and a Biotin group |
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R-9428 |
HS-PEG-Silane |
Thiol-polyethylene glycol-Silane, HS-PEG-Silane from RuixiBio is a linear heterobifunctional PEG reagent |
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R-9430 |
HS-PEG-Folic acid |
Thiol-polyethylene glycol-Folic acid, HS-PEG-FA from RuixiBio is a linear heterobifunctional PEG reagent with a Thiol and a Folate group |
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R-R-0063 |
Phosphoric acid-PEG-Thiol(SH) |
Thiol-PEG-phosphonic acid has been extensively utilized in the development of drug delivery systems and biomaterials due to its unique chemical properties. The thiol group can be used for covalent attachment of drugs or targeting ligands, while the phosphonic acid group can facilitate the interaction with calcium ions and the formation of mineralized coatings on the surface of medical implants, leading to enhanced biocompatibility and reduced inflammatory response. |
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