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Monodispersed PEGs
- >Methoxy PEG (mPEG)
- >Azide(N3) PEG
- >Amine(NH2) PEG
- >Hydroxyl(OH) PEG
- >Thiol(SH) PEG
- >Boc/Fmoc PEG
- >Carboxylic Acid(COOH) PEG
- >Maleimide(Mal) PEG
- >Alkyne PEG
- >NHS ester PEG
- >Biotin PEG
- >Aldehyde (Ald/CHO)PEG
- >Acrylate(AC) PEG
- >Acrylamide(ACA) PEG
- >DBCO PEG
- >DSPE PEG
- >Other Lipid PEG
- >Epoxide (EPO) PEG
- >Hydrazide (HZ) PEG
- >Folic Acid(FA) PEG
- >Lipoic acid(LA) PEG
- >Methacrylate (MA) PEG
- >Silane PEG
- >PEG Sulfonic acid
- >PEG PFP ester
- >PEG TFP ester
- >Halide (F,Cl,Br,I) PEG
- >Benzyl-PEG
- >Aminooxy PEG
- >Fluorescent (FITC) PEG
- >Rhodamine B(RB) PEG
- >Cholesterol PEG
- >OPSS PEG
- >Nitrophenyl Carbonate (NPC) PEG
- >DNP PEG
- >Other PEG
- >PROTAC Linker
- >Hydrocarbons PEG
- >View More
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Polydispersed PEGs
- >Methoxy PEG (mPEG)
- >Azide(N3) PEG
- >Amine(NH2) PEG
- >Hydroxyl(OH) PEG
- >Thiol(SH) PEG
- >DSPE PEG
- >Carboxylic Acid(COOH) PEG
- >Maleimide(Mal) PEG
- >NHS ester PEG
- >Acrylate(AC) PEG
- >Boc/Fmoc PEG
- >Biotin PEG
- >Aldehyde (Ald/CHO)PEG
- >Fluorescent (FITC) PEG
- >Cyanine (Cy) PEG
- >Epoxide (EPO) PEG
- >Hydrazide (HZ) PEG
- >Silane PEG
- >Cholesterol PEG
- >DBCO PEG
- >Alkyne PEG
- >Nitrophenyl Carbonate (NPC) PEG
- >OPSS PEG
- >Acrylamide(ACA) PEG
- >PLGA PEG
- >PCL PEG
- >PLA PEG
- >PEG Sulfonic acid
- >PEG PFP ester
- >Halide (F,Cl,Br,I) PEG
- >Aminooxy PEG
- >Folic Acid(FA) PEG
- >Lipoic acid(LA) PEG
- >Methacrylate (MA) PEG
- >Rhodamine B(RB) PEG
- >Other Lipid PEG
- >Other PEG
- >Hydrocarbons PEG
- >View More
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Multi-arm PEGs
- >Hydroxyl(OH) PEG
- >NHS ester PEG
- >Amine(NH2) PEG
- >Maleimide(Mal) PEG
- >Azide(N3) PEG
- >Thiol(SH) PEG
- >DBCO PEG
- >Carboxylic Acid(COOH) PEG
- >Aldehyde (Ald/CHO)PEG
- >Methoxy PEG (mPEG)
- >Acrylate(AC) PEG
- >Biotin PEG
- >Cholesterol PEG
- >OPSS PEG
- >Acrylamide(ACA) PEG
- >Epoxide (EPO) PEG
- >Hydrazide (HZ) PEG
- >Folic Acid(FA) PEG
- >Lipoic acid(LA) PEG
- >Methacrylate (MA) PEG
- >Silane PEG
- >Halide (F,Cl,Br,I) PEG
- >Nitrophenyl Carbonate (NPC) PEG
- >Other PEG
- >View More
- >Hydrocarbons PEG
- PEGs by Application
- Lipid Nanoparticle (LNP) Lipids
- Nucleic Acid Chemistry
- PEG Raw Material
- On Sale PEG Linkers
- Recombinant Proteins
CatalogID: 10006 Purity: ≥95% CAS NO.: 89485-61-0
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CAS No.:
89485-61-0 -
Synonyms:
mPEG-Azide
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Purity:
≥95% -
Recommended Storage Condition:
Store at -5°C,keep in dry and avoid sunlight. -
Uses:
Methoxypoly(ethylene glycol) Azide (mPEG-N3) is a linear monofunctional PEG reagent featuring a reactive azide (N3) group. It serves as a versatile tool in bioconjugation and chemical modification applications, particularly in PEGylation via click chemistry reactions with alkynes or acetylenes. By facilitating selective conjugation with molecules possessing complementary functional groups, such as alkynes or strained cyclooctynes, mPEG-N3 allows for precise and controlled modifications of biomolecules, nanoparticles, and surfaces.
Biopharma PEG offers a wide range of PEG products from lab to commercial scale in both non-GMP and GMP grades. Email at [email protected] and start using a superior product for your next product R&D project.
Cited Publications
This PEG derivative has been cited in peer-reviewed scientific publications. Browse the references below to learn more.
- Schmidt, J., Ziegler, A. L., Kaps, F. T., Rosenberger, L. J., Bros, M., Frey, H., & Luxenhofer, R. A Non-Antigenic Randomized Polyethylene Glycol/Poly(2-Phenyl-2-Oxazine)-Based Drug Delivery Platform. Macromolecular Rapid Communications, e00781. https://doi.org/10.1002/marc.202500781
- Polyanion Chemistry Engineers Ternary RNA Nanoparticle Structure/Function from the Inside-Out, Lijun Hu, David J. Peeler, Tianyi Jin, James J. Doutch, Baihao Shao, Jonathan Yeow, Li Ma, Hanna M. G. Barriga, Jiaqing Tang, Xuan Cao, Chenchen Liu, Christopher L. Grigsby, Alfredo Alexander-Katz, Robin J. Shattock, and Molly M. Stevens, ACS Nano Article ASAP, DOI: 10.1021/acsnano.5c19683
- High-throughput single molecule microscopy with adaptable spatial resolution using exchangeable oligonucleotide labels
Klarinda de Zwaan, Ran Huo, Myron N.F. Hensgens, Hannah Lena Wienecke, Miyase Tekpinar, Hylkje Geertsema, Kristin Grussmayer, bioRxiv 2024.10.30.621026; doi: https://doi.org/10.1101/2024.10.30.621026 - Dinara Bulgari, Samantha L. Cavolo, Brigitte F. Schmidt, Katherine Buchan, Marcel P. Bruchez, David L. Deitcher, Edwin S. Levitan; Ca2+ and cAMP open differentially dilating synaptic fusion pores. J Cell Sci 1 July 2023; 136 (13): jcs261026. doi: https://doi.org/10.1242/jcs.261026
- Ca2+ and cAMP open differentially dilating synaptic fusion pores, Dinara Bulgari, Samantha L. Cavolo, Brigitte F. Schmidt, Katherine Buchan, Marcel P. Bruchez, David L. Deitcher, Edwin S. Levitan, bioRxiv 2022.12.24.521856; doi: https://doi.org/10.1101/2022.12.24.521856
View more publications citing Biopharma PEG products.
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