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Results for "

tco-nhs ester

" in TargetMol Product Catalog.
  • Inhibitors & Agonists
    22
    TargetMol | All_Pathways
  • PROTAC Products
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    TargetMol | PROTAC
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    TargetMol | Cell_Research_Reagents
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TCO-NHS ester
T170141191901-33-3
TCO-NHS ester is a alkyl/ether-based linker for PROTACs which joins two essential ligands, crucial for forming PROTAC molecules. This linker enables selective protein degradation by leveraging the ubiquitin-proteasome system within cells.
  • $38
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TCO-NHS Ester (axial)
T898071610931-22-0
TCO-NHS Ester axial is a click chemistry reagent and serves as a building block for amine reactions. It contains a TCO group that undergoes inverse electron demand Diels-Alder (iEDDA) reactions with molecules featuring a Tetrazine group.
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10-14 weeks
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(S,E)-TCO-NHS Ester
TYD-02676
(S,E)-TCO-NHS Ester is a Click Amino Acid utilized for labeling amine-containing compounds or biomolecules. The TCO-NHS ester comprises a TCO group, which can undergo an inverse-electron-demand Diels-Alder reaction (iEDDA) with molecules possessing Tetrazine groups.
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TCO-PEG4-NHS ester
T170171613439-69-2
TCO-PEG4-NHS ester is a PROTAC linker bridge in the PEG class, used for synthesizing various PROTAC molecules. As a cleavable and synthetic ADC, it is also utilized in the synthesis of antibody-drug conjugates (ADCs).
  • $61
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Tetrazine-Ph-PEG5-NHS ester
Tetrazine-PEG5-NHS ester
T170631682653-80-0
Tetrazine-Ph-PEG5-NHS ester is a PEG-based PROTAC linker that can be used for the synthesis of PROTAC molecules with a tetrazine moiety, which allows click chemistry with molecules containing a TCO moiety.
  • $30
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TCO-PEG12-NHS ester
T187562185016-39-9
TCO-PEG12-NHS ester is a cleavable ADC linker used in the synthesis of antibody-drug conjugates (ADCs).
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TCO-PEG2-Sulfo-NHS ester
T187592353409-48-8
TCO-PEG2-Sulfo-NHS ester is a Polyethylene glycol (PEG)-based linker for PROTAC synthesis[1].
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TCO-PEG24-NHS ester
T18761
TCO-PEG24-NHS ester is a PEG-based linker for PROTACs that joins two essential ligands, crucial for forming PROTAC molecules, and enables selective protein degradation by leveraging the ubiquitin-proteasome system within cells.
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TCO-PEG3-NHS ester
T187682141981-88-4
TCO-PEG3-NHS ester is a PEG-based linker for PROTACs that joins two essential ligands, crucial for PROTAC molecule formation, enabling selective protein degradation via the ubiquitin-proteasome system [in cells].
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TCO-PEG6-NHS ester
T187782353409-96-6
TCO-PEG6-NHS ester, a PEG-based linker for PROTACs, joins two essential ligands required for the formation of PROTAC molecules, facilitating selective protein degradation by utilizing the (ubiquitin-proteasome system) within cells.
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TCO-PEG8-NHS ester
T187812353409-95-5
TCO-PEG8-NHS ester is a PEG-based linker for PROTACs that joins two essential ligands, crucial for forming PROTAC molecules, enabling selective protein degradation by leveraging the ubiquitin-proteasome system within cells.
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TCO-PEG2-NHS ester
T2070102250217-33-3
TCO-PEG2-NHS ester is a PROTAC linker categorized within the PEG and Alkyl/ether classes, and it is utilized for synthesizing various PROTAC molecules. As a click chemistry reagent, TCO-PEG2-NHS ester contains a TCO group that can engage in an inverse electron demand Diels-Alder reaction (iEDDA) with molecules containing a Tetrazine group.
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10-14 weeks
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TCO-PEG5-NHS ester
T2070142714310-77-5
TCO-PEG5-NHS ester is a PROTAC linker belonging to the PEG and Alkyl/ether categories, used for synthesizing various PROTAC molecules. This click chemistry reagent features a TCO group, enabling it to undergo an inverse electron-demand Diels-Alder reaction (iEDDA) with molecules containing a Tetrazine group.
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10-14 weeks
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TCO-PEG2-Sulfo-NHS ester sodium
T208175
TCO-PEG2-Sulfo-NHS ester sodium is a PROTAC linker from the PEG category, utilized in the synthesis of PROTAC molecules.
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(E)-TCO-PEG4-NHS ester
(E)-TCO-PEG4-NHS ester
T390921621096-79-4
(E)-TCO-PEG4-NHS ester is a PEG-based linker for PROTACs that connects two essential ligands, facilitating the formation of PROTAC molecules and enabling selective protein degradation via the ubiquitin-proteasome system within cells.
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TCO-GK-PEG4-NHS ester
T877542307311-19-7
TCO-GK-PEG4-NHS ester serves as an ADC linker, suitable for synthesizing [18F] AlF-NOTA-Tz-TCO-GK-2Rs15d, which demonstrates high affinity and immunoreactivity to HER2 [1]. This compound is a click chemistry reagent containing a TCO group that can engage in an inverse electron demand Diels-Alder reaction (iEDDA) with Tetrazine-containing molecules.
  • $1,670
8-10 weeks
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(S,E)-TCO2-PEG4-NHS ester
T87800
(S)-TCO-PEG4-NHS ester, an ADC linker with four PEG units, utilizes its TCO group to facilitate an inverse electron demand Diels-Alder reaction (iEDDA) with Tetrazine-containing molecules.
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(S,E)-TCO2-PEG8-NHS ester
T87812
(S)-TCO-PEG8-NHS ester, an ADC linker featuring 8 PEG units, actively employs its TCO group to facilitate an inverse electron demand Diels-Alder reaction (iEDDA) with molecules possessing Tetrazine groups.
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(R,E)-TCO-PEG8-NHS ester
T87821
(R)-TCO-PEG8-NHS ester, an ADC linker featuring 8 polyethylene glycol (PEG) units, utilizes its TCO group to engage in an inverse electron demand Diels-Alder reaction (iEDDA) with Tetrazine-containing molecules.
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TCO-PEG4-TFP ester
TYD-019332268817-73-6
TCO-PEG4-TFP ester is an amine-reactive labeling reagent used for the modification of proteins, antibodies, and other amine-containing biopolymers. TFP is a reactive ester that demonstrates superior stability during hydrolysis in aqueous media, enhancing the efficiency and reproducibility of biopolymer labeling. The TFP ester of carboxylic acid reacts with primary amines at a rate equivalent to NHS esters, forming a covalent amide bond identical to that produced by the reaction of primary amines with NHS or sulfo-NHS esters.
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10-14 weeks
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(S,E)-TCO2-PEG3-NHS ester
TYD-02666
(S,E)-TCO2-PEG3-NHS ester is reactive to NH2 groups and is employed in chemical synthesis. It includes a TCO group that can undergo a specific "click" reaction with tetrazine groups.
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Methyltetrazine-PEG12-NHS ester
TYD-02691
Methyltetrazine-PEG12-NHS ester is a click chemistry reagent that contains an azide group. It reacts with compounds containing TCO to form a stable covalent bond.
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