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click chemical

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75

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1

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1

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57

Click Chemistry

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-156315A

    ADC Linker Cancer
    SCO-PEG2-NH2 formate is a cleavable ADC Linker containing 2 PEG units. SCO-PEG2-NH2 formate can be used as a copper-free click chemical reagent for catalyst-free click reactions.
    SCO-PEG2-NH2 formate
  • HY-156316A

    ADC Linker Cancer
    SCO-PEG3-NH2 formate is a cleavable ADC Linker containing 3 PEG units. SCO-PEG3-NH2 formate can be used as a copper-free click chemical reagent for catalyst-free click reactions .
    SCO-PEG3-NH2 formate
  • HY-151771

    ADC Linker Others
    DACN(Tos,Mal) is a click chemistry reagent containing an azide. DACN(Tos,Mal) possess high thermal and chemical stability along with comparable click reactivity .
    DACN(Tos,Mal)
  • HY-156316

    ADC Linker Cancer
    SCO-PEG3-NH2 is a cleavable ADC Linker containing 3 PEG units. SCO-PEG3-NH2 can be used as a copper-free click chemical reagent for catalyst-free click reactions.
    SCO-PEG3-NH2
  • HY-156315

    ADC Linker Cancer
    SCO-PEG2-NH2 is a cleavable ADC Linker containing 2 PEG units. SCO-PEG2-NH2 can be used as a copper-free click chemical reagent for catalyst-free click reactions.
    SCO-PEG2-NH2
  • HY-W540192

    ADC Linker Cancer
    SCO-PEG2-Maleimide is an ADC Linker containing 3 PEG units. SCO-PEG2-Maleimide can be used as a copper-free click chemical reagent for catalyst-free click reactions. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    SCO-PEG2-Maleimide
  • HY-156318

    ADC Linker Cancer
    SCO-PEG3-Maleimide is a cleavable ADC Linker containing 3 PEG units. SCO-PEG3-Maleimide can be used as a copper-free click chemical reagent for catalyst-free click reactions. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    SCO-PEG3-Maleimide
  • HY-156321

    ADC Linker Cancer
    SCO-PEG7-Maleimide is a cleavable ADC Linker containing 3 PEG units. SCO-PEG7-Maleimide can be used as a copper-free click chemical reagent for catalyst-free click reactions. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    SCO-PEG7-Maleimide
  • HY-151754

    ADC Linker Others
    DACN(Tos2,6-OH) is a click chemistry reagent containing an Azide. The alkyne moiety within the ring has a unique bent structure and high reactivity toward cycloaddition reactions. The reactivity of an alkyne heavily depends on the electronic and steric characteristics of the substituents as well as structural strain. In comparison to nonbent acyclic alkynes, cyclononyne alkynes show remarkably high reactivity. Such strain-promoted azide-alkyne cycloadditions (SPAAC) using cycloalkynes have served for reliable molecular conjugation in a broad range of fields. The nitrogens are used as connection points for a variety of functional units. In comparison to cyclooctynes, DACNs possess high thermal and chemical stability along with comparable click reactivity . DACN(Tos2,6-OH) is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    DACN(Tos2,6-OH)
  • HY-157008

    ADC Linker Cancer
    (S)-TCO-PEG2-Maleimide is an ADC linker containing 2 PEG units. (S)-TCO-PEG2-Maleimide can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S)-TCO-PEG2-Maleimide
  • HY-156307

    ADC Linker Cancer
    Me-Tet-PEG3-Maleimide is an ADC Linker containing 3 PEG units. Me-Tet-PEG3-Maleimide can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    Me-Tet-PEG3-Maleimide
  • HY-W540023

    ADC Linker Cancer
    Endo-BCN-Fmoc-L-Lysine is a linker containing the lyophilic bidentate macrocyclic ligand endo-BCN, which can further synthesize macrocyclic complexes. In click chemistry, endo-BCN can react with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    endo-BCN-Fmoc-L-Lysine
  • HY-156317

    ADC Linker Cancer
    BCN-endo-PEG7-maleimide is an ADC Linker containing 7 PEG units. BCN-endo-PEG7-maleimide contains the lyophilic bidentate macrocyclic ligand endo-BCN, which can further synthesize macrocyclic complexes. In click chemistry, endo-BCN can react with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-endo-PEG7-maleimide
  • HY-156494

    ADC Linker Cancer
    Me-Tet-PEG9-COOH is an ADC Linker containing 9 PEG units. Me-Tet-PEG9-COOH can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG9-COOH
  • HY-156322

    ADC Linker Cancer
    BCN-exo-PEG3-maleimide is an ADC Linker containing 3 PEG units. BCN-exo-PEG3-maleimide contains the lyophilic bidentate macrocyclic ligand BCN, which enables the further synthesis of macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    BCN-exo-PEG3-maleimide
  • HY-156301A

    ADC Linker Cancer
    Me-Tet-PEG8-NH2 (hydrochloride) is an ADC Linker containing 2 PEG units. Me-Tet-PEG8-NH2 (hydrochloride) can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG8-NH2 hydrochloride
  • HY-134734

    ADC Linker Cancer
    BCN-exo-PEG7-maleimide is an ADC Linker containing 7 PEG units. BCN-exo-PEG7-maleimide contains the lyophilic bidentate macrocyclic ligand BCN, which allows for further synthesis of macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    BCN-exo-PEG7-maleimide
  • HY-141161B

    ADC Linker Cancer
    (R)-TCO-PEG8-acid is an ADC linker containing 8 PEG units. (R)-TCO-PEG8-acid can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (R,E)-TCO-PEG8-acid
  • HY-156491

    ADC Linker Cancer
    Me-Tet-PEG9-NHS is an ADC Linker containing 9 PEG units. Me-Tet-PEG9-NHS can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG9-NHS
  • HY-156475

    ADC Linker Cancer
    Me-Tet-PEG2-COOH is an ADC Linker containing 2 PEG units. Me-Tet-PEG2-COOH can use its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG2-COOH
  • HY-156311

    ADC Linker Cancer
    BCN-endo-PEG2-maleimide is an ADC Linker containing 4 PEG units. BCN-endo-PEG2-maleimide contains the lyophilic bidentate macrocyclic ligand endo-BCN, which can further synthesize macrocyclic complexes. In click chemistry, endo-BCN can react with molecules containing azide groups to form stable triazoles in the absence of catalysts. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    BCN-endo-PEG2-maleimide
  • HY-156312

    ADC Linker Cancer
    Me-Tet-PEG8-Maleimide is an ADC Linker containing 8 PEG units. Me-Tet-PEG8-Maleimide can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    Me-Tet-PEG8-Maleimide
  • HY-157003

    ADC Linker Cancer
    (S)-TCO-PEG2-NH2 is an ADC Linker containing 2 PEG units. (S)-TCO-PEG2-NH2 can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S)-TCO-PEG2-NH2
  • HY-156495

    ADC Linker Cancer
    Biotin-PEG3-Me-Tet is an ADC Linker containing 3 PEG units. Biotin-PEG3-Me-Tet can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Biotin-PEG3-Me-Tet
  • HY-156479

    ADC Linker Cancer
    Me-Tet-PEG3-NHBoc is an ADC Linker containing 3 PEG units. Me-Tet-PEG3-NHBoc can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG3-NHBoc
  • HY-W591272

    ADC Linker Cancer
    Me-Tet-PEG3-NH2 is an ADC Linker containing 3 PEG units. Me-Tet-PEG3-NH2 can use its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG3-NH2
  • HY-141167B

    ADC Linker Cancer
    (S)-TCO-PEG4-NHS ester is an ADC linker containing 4 PEG units. (S)-TCO-PEG4-NHS ester can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S)-TCO-PEG4-NHS ester
  • HY-156476

    ADC Linker Cancer
    Me-Tet-PEG2-NHS is an ADC Linker containing 2 PEG units. Me-Tet-PEG2-NHS can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG2-NHS
  • HY-156478

    ADC Linker Cancer
    Me-Tet-PEG4-NHBoc is an ADC Linker containing 4 PEG units. Me-Tet-PEG4-NHBoc can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG4-NHBoc
  • HY-156313

    ADC Linker Cancer
    Me-Tet-PEG4-NHS is an ADC Linker containing 4 PEG units. Me-Tet-PEG4-NHS can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG4-NHS
  • HY-156319

    ADC Linker Cancer
    BCN-exo-PEG2-NH2 is an ADC Linker containing 2 PEG units. BCN-exo-PEG2-NH2 contains the lyophilic bidentate macrocyclic ligand BCN, which can further synthesize macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-exo-PEG2-NH2
  • HY-156323

    ADC Linker Cancer
    BCN-exo-PEG4-NHS is an ADC Linker containing 4 PEG units. BCN-exo-PEG4-NHS contains the lyophilic bidentate macrocyclic ligand BCN, which allows for further synthesis of macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-exo-PEG4-NHS
  • HY-156320

    ADC Linker Cancer
    BCN-exo-PEG2-maleimide is an ADC Linker containing 2 PEG units. BCN-exo-PEG2-maleimide contains the lyophilic bidentate macrocyclic ligand BCN, which allows for further synthesis of macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    BCN-exo-PEG2-maleimide
  • HY-156308

    ADC Linker Cancer
    Me-Tet-PEG4-Maleimide is an ADC Linker containing 4 PEG units. Me-Tet-PEG4-Maleimide can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups. Its maleimide group (-Maleimide) degrades in aqueous media and has been used in drug delivery studies.
    Me-Tet-PEG4-Maleimide
  • HY-141169B

    ADC Linker Cancer
    (R)-TCO-PEG8-NHS ester is an ADC linker containing 8 PEG units. (R)-TCO-PEG8-NHS ester can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (R,E)-TCO-PEG8-NHS ester
  • HY-156310

    ADC Linker Cancer
    BCN-endo-PEG7-NH2 is an ADC Linker containing 7 PEG units. BCN-endo-PEG7-NH2 contains the lyophilic bidentate macrocyclic ligand endo-BCN, which can further synthesize macrocyclic complexes. In click chemistry, endo-BCN can react with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-endo-PEG7-NH2
  • HY-141169A

    ADC Linker Cancer
    (S)-TCO-PEG8-NHS ester is an ADC linker containing 8 PEG units. (S)-TCO-PEG8-NHS ester can use its own TCO group to perform an inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S,E)-TCO2-PEG8-NHS ester
  • HY-157007

    ADC Linker Cancer
    (S)-TCO-PEG7-NH2 is an ADC linker containing 7 PEG units. (S)-TCO-PEG7-NH2 can use its own TCO group to perform the inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S)-TCO-PEG7-NH2
  • HY-157006

    ADC Linker Cancer
    (S)-TCO-PEG3-NH2 is an ADC linker containing 3 PEG units. (S)-TCO-PEG3-NH2 can use its own TCO group to perform the inverse electron demand Diels-Alder reaction (iEDDA) with molecules with Tetrazine groups.
    (S)-TCO-PEG3-NH2
  • HY-W096079

    ADC Linker Cancer
    BCN-endo-PEG4-NHS is an ADC Linker containing 4 PEG units. BCN-endo-PEG4-NHS contains the lyophilic bidentate macrocyclic ligand endo-BCN, which allows for further synthesis of macrocyclic complexes. In click chemistry, endo-BCN can react with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-endo-PEG4-NHS
  • HY-156477

    ADC Linker Cancer
    Me-Tet-PEG8-NHBoc is an ADC Linker containing 8 PEG units. Me-Tet-PEG8-NHBoc can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG8-NHBoc
  • HY-156490

    ADC Linker Cancer
    Me-Tet-PEG5-NHS is an ADC Linker containing 5 PEG units. Me-Tet-PEG5-NHS can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG5-NHS
  • HY-156492

    ADC Linker Cancer
    Me-Tet-PEG4-COOH is an ADC Linker containing 4 PEG units. Me-Tet-PEG4-COOH can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG4-COOH
  • HY-156300

    ADC Linker Cancer
    Me-Tet-PEG4-NH2 is an ADC Linker containing 4 PEG units. Me-Tet-PEG4-NH2 can use its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG4-NH2
  • HY-156324

    ADC Linker Cancer
    BCN-exo-PEG8-NHS is an ADC Linker containing 8 PEG units. BCN-exo-PEG8-NHS contains the lyophilic bidentate macrocyclic ligand BCN, which allows for further synthesis of macrocyclic complexes. In click chemistry, BCN reacts with molecules containing azide groups to form stable triazoles in the absence of catalysts.
    BCN-exo-PEG8-NHS
  • HY-156493

    ADC Linker Cancer
    Me-Tet-PEG5-COOH is an ADC Linker containing 5 PEG units. Me-Tet-PEG5-COOH can utilize its own Tetrazine group to undergo a specific inverse electron demand Diels-Alder reaction (iEDDA) with compounds with TCO groups.
    Me-Tet-PEG5-COOH
  • HY-151747

    ADC Linker Others
    Chemical phosphorylation amidite is a click chemical class ADC linker. Click chemistry has good biological orthogonality characteristics: biocompatible, fast and highly specific in the biological environment, and has great application potential in the binding between nucleic acids, lipids, proteins and other molecules .
    Chemical phosphorylation amidite
  • HY-151739

    ADC Linker Others
    4-Pentynoyl-Val-Ala-PAB is a click chemical class ADC linker. Click chemistry has good biological orthogonality characteristics: biocompatible, fast and highly specific in the biological environment, and has great application potential in the binding between nucleic acids, lipids, proteins and other molecules .
    4-Pentynoyl-Val-Ala-PAB
  • HY-127112

    Cytochrome P450 Others
    Oleic acid alkyne is oleic acid with an acetylene group. The terminal alkyne group can be used for click chemical ligation reactions. Oleic acid can be hydroxylated by a microsomal cytochrome P-450-dependent system (ω-OAH). Through click chemistry reactions, fluorescent or biotin-labeled oleic acid can be introduced to analyze its metabolism and biological activity.
    Oleic acid alkyne
  • HY-172506

    Biochemical Assay Reagents Others
    3-Azidopropanoyl chloride is a reactive chemical that can be used to synthesize chiral compounds. The acetyl chloride group that is useful for acetylations such as esterification and the Friedel-Crafts reaction. The azide group enables Click Chemistry.
    3-Azidopropanoyl chloride

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