- Oligonucleotides
- Conjugatable Lipids
- Lipid DBCO
Lipid DBCO
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Lipid DBCO (23)
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- Formula: (C2H4O)nC43H86NO9P
- Molecular Weight: 2000 (Average)
DSPE-PEG2000-DBCO is a phospholipid PEG polymer that combines a hydrophobic phospholipid (DSPE), a hydrophilic polyethylene glycol spacer with a molecular weight of 1000 Da, and a reactive click chemistry terminal group (DBCO). DSPE-PEG2000-DBCO migrates to lymph nodes via the endogenous albumin transport system, implants bioorthogonal DBCO docking sites, and enables the enrichment of azide-functionalized vesicles in lymph nodes mediated by click chemistry. DSPE-PEG2000-DBCO can be used in studies related to atherosclerosis.
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- Molecular Weight: 3400 (Average)
DSPE-PEG3400-DBCO sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. DSPE-PEG3400-DBCO sodium can be used in drug delivery research.
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- Formula: C71H116N3O15P
- Molecular Weight: 1282.67
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- Formula: (C2H4O)nC63H100N3O12P.H3N
DSPE-PEG-DBCO ammonium is the ammonium salt form of DSPE-PEG-DBCO. DSPE-PEG-DBCO ammonium is utilized in copper-free click chemistry through SPAAC conjugation with an azido-functionalized peptide ligand. DSPE-PEG-DBCO ammonium is applied in drug-delivery and nanoparticle research.
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- Molecular Weight: 5000 (Average)
DSPE-PEG5000-DBCO is a phospholipid PEG polymer that combines a hydrophobic phospholipid (DSPE), a hydrophilic polyethylene glycol spacer with a molecular weight of 5000 Da, and a reactive click chemistry terminal group (DBCO). DSPE-PEG-DBCO migrates to lymph nodes via the endogenous albumin transport system, implants bioorthogonal DBCO docking sites, and enables the enrichment of azide-functionalized vesicles in lymph nodes mediated by click chemistry. DSPE-PEG-DBCO can be used in studies related to atherosclerosis.
August 31
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- Molecular Weight: 5000 (Average)
DSPE-PEG5000-DBCO sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. DSPE-PEG5000-DBCO sodium can be used in drug delivery research.
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- Formula: C36H48N2O2
- Molecular Weight: 540.78
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- Formula: C153H280N3O57P
- Molecular Weight: 3104.82
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- Formula: C133H240N3O47P
- Molecular Weight: 2664.29
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- Molecular Weight: 3400 (Average)
DSPE-PEG3400-C2-DBCO sodium is a PEG lipid that can improve the delivery efficiency and tissue specificity of poorly soluble drugs. DSPE-PEG3400-C2-DBCO sodium can be used in drug delivery research.
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- Formula: C77H127N3NaO19P
- Molecular Weight: 1452.80
DSPE-PEG8-DBCO is a click chemistry reagent, it contains a DBCO group that can undergo strain-promoted alkyne-azide cycloaddition (SPAAC) with molecules containing Azide groups. DSPE-PEG8-DBCO can be used to prepare lipid nanoparticles for drug delivery.
August 31
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DMG-PEG1000-DBCO is a conjugate composed of dimyristic glycerol (DMG), a PEG chain, and a terminal dibenzocyclooctylene (DBCO). DMG-PEG1000-DBCO combines the membrane compatibility of phospholipids with the high reactivity of the DBCO group in copper-free click chemistry, making it suitable for research in biomaterial construction and drug delivery.
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DMG-PEG10000-DBCO is a conjugate composed of dimyristic glycerol (DMG), a PEG chain, and a terminal dibenzocyclooctylene (DBCO). DMG-PEG10000-DBCO combines the membrane compatibility of phospholipids with the high reactivity of the DBCO group in copper-free click chemistry, making it suitable for research in biomaterial construction and drug delivery.
August 31
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DMG-PEG5000-DBCO is a conjugate composed of dimyristic glycerol (DMG), a PEG chain, and a terminal dibenzocyclooctylene (DBCO). DMG-PEG5000-DBCO combines the membrane compatibility of phospholipids with the high reactivity of the DBCO group in copper-free click chemistry, making it suitable for research in biomaterial construction and drug delivery.
August 31
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DMG-PEG3400-DBCO is a conjugate composed of dimyristic glycerol (DMG), a PEG chain, and a terminal dibenzocyclooctylene (DBCO). DMG-PEG3400-DBCO combines the membrane compatibility of phospholipids with the high reactivity of the DBCO group in copper-free click chemistry, making it suitable for research in biomaterial construction and drug delivery.
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- Formula: C56H90N3O10P
- Molecular Weight: 996.30
16:0 DBCO PE ammonium is a functionalized lipid that combines the biocompatible properties of phosphatidylethanolamine (PE) with the reactive dibenzocyclooctyne (DBCO) group. 16:0 DBCO PE ammonium is a click chemistry reagent, it contains a DBCO group that can undergo strain-promoted alkyne-azide cycloaddition (SPAAC) with molecules containing Azide groups.
August 31
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- Molecular Weight: 10000 (Average)
DSPE-PEG10000-DBCO is a phospholipid PEG polymer that combines a hydrophobic phospholipid (DSPE), a hydrophilic polyethylene glycol spacer with a molecular weight of 10000 Da, and a reactive click chemistry terminal group (DBCO). DSPE-PEG-DBCO migrates to lymph nodes via the endogenous albumin transport system, implants bioorthogonal DBCO docking sites, and enables the enrichment of azide-functionalized vesicles in lymph nodes mediated by click chemistry. DSPE-PEG-DBCO can be used in studies related to atherosclerosis.
August 31
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- Molecular Weight: 3400 (Average)
DSPE-PEG3400-DBCO is a phospholipid PEG polymer that combines a hydrophobic phospholipid (DSPE), a hydrophilic polyethylene glycol spacer with a molecular weight of 3400 Da, and a reactive click chemistry terminal group (DBCO). DSPE-PEG-DBCO migrates to lymph nodes via the endogenous albumin transport system, implants bioorthogonal DBCO docking sites, and enables the enrichment of azide-functionalized vesicles in lymph nodes mediated by click chemistry. DSPE-PEG-DBCO can be used in studies related to atherosclerosis.
August 31
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- Molecular Weight: 1000 (Average)
DSPE-PEG1000-DBCO is a phospholipid PEG polymer that combines a hydrophobic phospholipid (DSPE), a hydrophilic polyethylene glycol spacer with a molecular weight of 1000 Da, and a reactive click chemistry terminal group (DBCO). DSPE-PEG-DBCO migrates to lymph nodes via the endogenous albumin transport system, implants bioorthogonal DBCO docking sites, and enables the enrichment of azide-functionalized vesicles in lymph nodes mediated by click chemistry. DSPE-PEG-DBCO can be used in studies related to atherosclerosis.
August 31
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