- Lipids
- Lipids In Drug Delivery
- Conjugatable Lipids
Conjugatable Lipids
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Conjugatable Lipids (304)
- Molecular Weight: 3400 (Average)
Stearic acid-PEG3400-Mal enables surface modification of various substrate through reaction between hydroxyl and ethoxyl silane. The polymer can be used for click chemistry with alkyne containing molecule.
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- Molecular Weight: 1000 (Average)
Stearic acid-PEG1000-Mal enables surface modification of various substrate through reaction between hydroxyl and ethoxyl silane. The polymer can be used for click chemistry with alkyne containing molecule.
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- Molecular Weight: 3400 (Average)
DSPE-PEG3400-Vinylsulfone is a viniyl sulfone PEG lipid which can be used for bioconjugation with cysteine or other thiol molecule through thiol-ene reaction. The polymer is a self-assembling reagetn which forms lipid bilayer in water and can be used as drug carrier to delivery therapeutic agents, such as mRNA or DNA vaccine.
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- Molecular Weight: 1000 (Average)
DSPE-PEG1000-Vinylsulfone is a viniyl sulfone PEG lipid which can be used for bioconjugation with cysteine or other thiol molecule through thiol-ene reaction. The polymer is a self-assembling reagetn which forms lipid bilayer in water and can be used as drug carrier to delivery therapeutic agents, such as mRNA or DNA vaccine.
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- Molecular Weight: 5000 (Average)
DSPE-PEG5000-IA is a cyclooctyne containing phospholipid PEG polymer. The polymer can self-assemble spontaneously in water to form micelles/lipid bilayer. It can be used to prepare nanoparticles or liposomes as drug carrier in targeted drug delivery system. The DBCO can react with azide molecule via copper free click chemistry to form a stable triazole bond.
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- Molecular Weight: 1000 (Average)
DSPE-PEG1000-SPDP is a thiol reactive PEG lipid. The polymer is amphiphilic and spontaneously forms lipid bilayer in water. It can be used to encapsulate nutrients or therapeutics for targeted drug delivery, for example mRNA or DNA vaccine, liposomal doxorubicin for anti tumor.
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- Molecular Weight: 3400 (Average)
DSPE-PEG3400-SH is a maleimide reactive PEG lipid. The amphiphilic polymer forms lipid bilayer in water and can be used to prepare liposomes for drug nanocarriers to deliver mRNA, DNA or siRNA.
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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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- Molecular Weight: 5000 (Average)
DOPE-PEG5000-COOH is a phospholipid. Phospholipids have good biocompatibility and significant amphiphilic characteristics, making them the main and suitable dosage form or excipient in drug formulations, thereby achieving better therapeutic effects. DOPE-PEG5000-COOHcan be used in drug delivery research.
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- Molecular Weight: 3400 (Average)
DOPE-PEG3400-COOH is a phospholipid. Phospholipids have good biocompatibility and significant amphiphilic characteristics, making them the main and suitable dosage form or excipient in drug formulations, thereby achieving better therapeutic effects. DOPE-PEG3400-COOHcan be used in drug delivery research.
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- Molecular Weight: 1000 (Average)
DOPE-PEG1000-COOH is a phospholipid. Phospholipids have good biocompatibility and significant amphiphilic characteristics, making them the main and suitable dosage form or excipient in drug formulations, thereby achieving better therapeutic effects. DOPE-PEG1000-COOHcan be used in drug delivery research.
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- Molecular Weight: 5000 (Average)
Cholesterol-PEG5000-Vinylsulfone is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG5000-Vinylsulfone can be used in drug delivery research.
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- Molecular Weight: 3400 (Average)
Cholesterol-PEG3400-Vinylsulfone is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG3400-Vinylsulfone can be used in drug delivery research.
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- Molecular Weight: 1000 (Average)
Cholesterol-PEG1000-Vinylsulfone is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG1000-Vinylsulfone can be used in drug delivery research.
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- Molecular Weight: 5000 (Average)
Cholesterol-PEG5000-Thiol is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG5000-Thiol can be used in drug delivery research.
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- Molecular Weight: 2000 (Average)
Cholesterol-PEG2000-Thiol is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG2000-Thiol can be used in drug delivery research.
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- Formula: C42H65N3O7
- Molecular Weight: 10000 (Average)
Cholesterol-PEG10000-Mal is a PEG derivative composed of Cholesterol, PEG units and Maleimide (HY-W007324). Maleimide forms a stable thioether bond with sulfhydryl (-SH) groups.
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- Molecular Weight: 5000 (Average)
Cholesterol-PEG5000-acid is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG5000-acid can be used in drug delivery research.
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- Molecular Weight: 3400 (Average)
Cholesterol-PEG3400-acid is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG3400-acid can be used in drug delivery research.
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- Molecular Weight: 5000 (Average)
Cholesterol-PEG5000-azide is a cholesterol PEG derivative that can form micelles through molecular self-assembly and has a longer half-life in vivo. Cholesterol-PEG5000-azide can be used in drug delivery research.
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