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azide-peg-amine

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Azide-PEG-amine (MW 2000)
T17457
Azide-PEG-amine (MW 2000) is a Polyethylene Glycol (PEG)-derived linker compound used in the synthesis of Proteolysis Targeting Chimeras (PROTACs)[1].
  • $68
5 days
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Azide-PEG-amine (MW 3500)
T17458
Azide-PEG-amine (MW 3500) is a polyethylene glycol (PEG) linker compound, designed for the synthesis of proteolysis targeting chimeric molecules (PROTACs)[1].
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Azide-PEG-amine (MW 5000)
T17459
Azide-PEG-amine (MW 5000) is a polyethylene glycol (PEG)-derived linker compound with azide functionality, primarily utilized in the synthesis of proteolysis-targeting chimeras (PROTACs)[1].
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    N3-PEG-NH2 (MW 1000)
    Azide-PEG-Amine (MW 1000)
    TCL-01450
    N3-PEG-NH2 (MW 1000) (Azide-PEG-Amine (MW 1000)) is a heterobifunctional PEG compound featuring azide and amine groups at the termini of the PEG chain. Serving as a crucial crosslinker with a PEG chain, the azide group allows for molecular conjugation via chemical reactions, while the amine group can react with carboxylic acids or NHS esters.
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    N3-PEG-NH2 (MW 10000)
    Azide-PEG-Amine (MW 10000)
    TCL-01554
    N3-PEG-NH2 (MW 10000) (Azide-PEG-Amine (MW 10000)) is a heterobifunctional PEG compound featuring an azide and an amine group at each end of the PEG chain. This compound serves as a crucial crosslinker with PEG linkages. The azide group facilitates molecular conjugation through chemical reactions, while the amine group can react with carboxylic acids or NHS esters.
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    N3-PEG-NH2 (MW 3400)
    Azide-PEG-Amine (MW 3400)
    TCL-01560
    N3-PEG-NH2 (MW 3400) (Azide-PEG-Amine (MW 3400)) is a heterobifunctional PEG compound featuring azide and amine groups at its termini. This compound serves as a significant crosslinker with a PEG chain. The azide group allows for molecular conjugation through chemical reactions, while the amine group reacts with carboxylic acids or NHS esters.
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    N3-PEG-NH2 (MW 20000)
    Azide-PEG-Amine (MW 20000)
    TCL-01563
    N3-PEG-NH2 (MW 20000) (Azide-PEG-Amine (MW 20000)) is a heterobifunctional PEG compound characterized by azide and amine groups located at the termini of the PEG chain. Serving as a significant crosslinking agent with a PEG backbone, the azide component facilitates molecular conjugation through chemical reactions, while the amine group is reactive with carboxylic acids or NHS esters.
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    N3-PEG-NH2 (MW 40000)
    Azide-PEG-Amine (MW 40000)
    TCL-01667
    N3-PEG-NH2 (MW 40000) [Azide-PEG-Amine (MW 40000)] is a heterobifunctional PEG compound featuring an azide group and an amine group at its termini. This compound serves as an essential crosslinking agent with a PEG chain. The azide moiety can participate in chemical reactions for molecular conjugation, while the amine group can react with carboxylic acids or NHS esters.
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    N-(azide-PEG3)-N'-(Amine-C3-Amide-PEG4)-Cy5
    T183742107273-70-9
    N-(azide-PEG3)-N'-(Amine-C3-Amide-PEG4)-Cy5 is a polyethylene glycol (PEG)-based linker used in PROTAC synthesis [1].
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    Propargyl-PEG3-azide
    Propargyl-PEG3-amine
    T19974932741-18-9
    Propargyl-PEG3-amine is a PEG derivative containing a propargyl group and an amino group. The propargyl group can be reacted with azide-bearing compounds or biomolecules via copper-catalyzed azide-alkyne Click Chemistry to yield a stable triazole linkage.
    • $426
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    Propargyl-PEG7-amine
    T208122
    Propargyl-PEG7-amine is a PROTAC linker belonging to the PEG class and is utilized in the synthesis of PROTAC molecules. It serves as a click chemistry reagent, featuring an alkyne group that can undergo a copper-catalyzed azide-alkyne cycloaddition reaction (CuAAc) with azide-containing molecules.
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    Propargyl-PEG11-amine
    T208123
    Propargyl-PEG11-amine is a PEG-based PROTAC linker employed in the synthesis of PROTAC molecules. Serving as a click chemistry reagent, it incorporates an alkyne group that can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAC) with molecules containing azide groups.
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    DBCO-PEG6-amine TFA
    T208166
    DBCO-PEG6-amine (TFA) is a PROTAC linker classified within the PEG category, suitable for synthesizing PROTAC molecules. This compound is utilized as a click chemistry reagent and includes a DBCO group, enabling it to participate in strain-promoted alkyne-azide cycloaddition (SPAAC) reactions with azide-containing molecules.
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    Sulfo DBCO-PEG3-acid
    T896862566404-75-7
    Sulfo DBCO-PEG3-acid is a click chemistry reagent featuring an azide group. This compound is an analog of DBCO-acid, equipped with a PEG linker and a DBCO moiety. The DBCO group, known for its strain-promoted high-energy state, is commonly utilized in copper-free click reactions. The hydrophilic polyethylene glycol chain and the sulfonyl group enhance its water solubility. The terminal carboxylic acid can react with primary amine groups in the presence of activators (such as EDC or HATU) to form stable amide bonds. This reagent is for research use only and is of reagent grade.
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    10-14 weeks
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    N3-PEG-NH2 (MW 2000)
    TCL-01375
    N3-PEG-NH2 (MW 2000) (Azide-PEG-Amine (MW 2000)) is a heterobifunctional PEG compound that features azide and amine groups at the termini of the PEG chain. It serves as a crucial crosslinker with a PEG backbone. The azide group can participate in molecular conjugation via chemical reactions, while the amine group reacts with carboxylic acids or NHS esters.
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    N3-PEG-NH2 (MW 5000)
    TCL-01389
    N3-PEG-NH2 (MW 5000) (Azide-PEG-Amine (MW 5000)) is a heterobifunctional PEG product featuring azide and amine groups at the ends of the PEG chain. This compound serves as a crucial crosslinking agent with a PEG chain. The azide allows for molecular conjugation through chemical reactions, while the amine can react with carboxylic acids or NHS esters.
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    Azido-PEG13-amine
    Azido-PEG13-NH2
    TCL-01921
    Azido-PEG13-amine (Azido-PEG13-NH2) is a PEG derivative used in research areas like drug delivery. It functions as a click chemistry reagent, containing an Azide group that enables copper-catalyzed azide-alkyne cycloaddition reactions (CuAAc) with molecules containing Alkyne groups. Additionally, it participates in strain-promoted azide-alkyne cycloaddition reactions (SPAAC) with molecules containing DBCO or BCN groups.
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    DBCO-PEG-Amine (MW 3400)
    DBCO-PEG-NH2 (MW 3400)
    TCL-01971
    DBCO-PEG-Amine (MW 3400) (DBCO-PEG-NH2 (MW 3400)) is a PEG derivative composed of DBCO, PEG units, and an amine group. The amine group can react with other chemical groups, such as carboxyl or aldehyde groups, to form stable chemical bonds. Additionally, the DBCO group in this compound enables it to undergo a strain-promoted alkyne-azide cycloaddition (SPAAC) with azide-containing molecules.
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    DBCO-PEG-Amine (MW 5000)
    DBCO-PEG-NH2 (MW 5000)
    TCL-01979
    DBCO-PEG-Amine (MW 5000) (DBCO-PEG-NH2 (MW 5000)) is a polyethylene glycol (PEG) derivative composed of DBCO, PEG units, and an amine group. The amine can react with other chemical groups, such as carboxyl and aldehyde groups, to form stable chemical bonds. Containing a DBCO group, DBCO-PEG-Amine (MW 5000) can participate in strain-promoted azide-alkyne cycloaddition (SPAAC) reactions with molecules that have azide groups.
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    DBCO-PEG16-NHS ester
    TCL-02102
    DBCO-PEG16-NHS ester is a PEG derivative composed of DBCO, PEG units, and an NHS ester. The NHS ester can react with amino acids or other amine-containing molecules. The DBCO group in DBCO-PEG16-NHS ester can engage in a strain-promoted alkyne-azide cycloaddition reaction (SPAAC) with azide-containing molecules.
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    DBCO-PEG-NHS (MW 1000)
    TCL-02136
    DBCO-PEG-NHS (MW 1000) is a PEG derivative composed of DBCO, PEG units, and an NHS ester. The NHS ester can react with amino acids or other amine-containing molecules. The DBCO group facilitates a strain-promoted alkyne-azide cycloaddition (SPAAC) with molecules containing azide groups.
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    endo-BCN-PEG4-Boc-amine
    TYD-019232468686-11-3
    endo-BCN-PEG4-Boc-amine is a PEG linker that contains a BCN group and a Boc-protected amine. The protected amine can be deprotected under mildly acidic conditions, while the BCN group reacts with azide-labeled biomolecules.
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    10-14 weeks
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    N-(acid-PEG10)-N-bis(PEG10-azide)
    TYD-020852803119-06-2
    N-(acid-PEG10)-N-bis(PEG10-azide) is a widely utilized PEG reagent featuring a terminal carboxylic acid and two azide groups. Its hydrophilic PEG spacer enhances solubility in aqueous media. The azide groups can react with alkynes, BCN, or DBCO via Click Chemistry to create stable triazole linkages. The terminal carboxylic acid can form robust amide bonds by reacting with primary amine groups in the presence of activating agents such as EDC or HATU.
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    Sulfo DBCO-PEG3-NHS ester
    TYD-02678
    Sulfo DBCO-PEG3-NHS ester is a click chemistry reagent featuring an azide group. It serves as an analog of DBCO-acid, incorporating a PEG linker and a DBCO group. The DBCO group is often utilized in copper-free click reactions due to its high-energy strain. The hydrophilic polyethylene glycol chain and sulfo group enhance its water solubility. The terminal carboxylic acid can react with primary amine groups to form stable amide bonds in the presence of activators such as EDC or HATU. This is a reagent-grade compound intended solely for research purposes.
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