Acetylene-PEG3-MMAF-OMe
Acetylene-PEG3-MMAF-OMe (LCB14-0536) is a protein-active agent conjugate. Acetylene-PEG3-MMAF-OMe can be recognized by isoprenoid transferase. Acetylene-PEG3-MMAF-OMe is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
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- CAS No.: 1411977-91-7
- Formula: C49H79N5O12
- Molecular Weight:930.18
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Storage:
Please store the product under the recommended conditions in the Certificate of Analysis.
All Drug-Linker Conjugates for ADC Isoforms
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Biological Activity
Description
Chemical Information
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CAS No. 1411977-91-7
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Molecular Weight 930.18
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Formula C49H79N5O12
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SMILES
COC([C@H](CC1=CC=CC=C1)NC([C@H](C)[C@H]([C@@]2([H])N(CCC2)C(C[C@@H](OC)[C@H]([C@@H](C)CC)N(C)C([C@H](C(C)C)NC([C@H](C(C)C)N(C)C(COCCOCCOCC#C)=O)=O)=O)=O)OC)=O)=O
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Synonyms
LCB14-0536
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Shipping
Room temperature in continental US; may vary elsewhere.
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Storage
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocols
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EdU Incorporation Assay (Click Chemistry-Based DNA Synthesis Measurement)
The EdU incorporation assay measures DNA synthesis by adding the thymidine analog 5-ethynyl-2′-deoxyuridine to cells or tissues, where it is incorporated into newly synthesized DNA during S phase. Incorporated EdU is detected by copper-catalyzed azide-alkyne cycloaddition, in which a fluorescent azide covalently reacts with the ethynyl group on EdU, allowing S-phase cells to be detected by fluorescence microscopy, flow cytometry, or high-content imaging. EdU detection does not require DNA denaturation or anti-BrdU antibody access, which preserves sample structure and improves compatibility with immunostaining and multiparameter cytometry compared with BrdU-based detection. EdU can be cytotoxic in a cell-type- and exposure-dependent manner, so pulse duration, concentration, and continuous-labeling designs should be validated for each cell type.
Purity & Documentation
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)