336 Results for "

PEG modification

" in MedChemExpress (MCE) Product Catalog:
Products (336)

336 Results for "PEG modification" in MCE Product Catalog:

Cat. No.: HY-183161
Synonyms: Glucose-PEG1000-Azide
Glucose-PEG1000-N3 (Glucose-PEG1000-Azide) is a conjugate composed of glucose, PEG chains, and an azide group (-N3). Glucose-PEG1000-N3 combines the targeted recognition ability of glucose with the azide group that can undergo click chemistry, making it suitable for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183161A
Synonyms: Glucose-PEG2000-Azide
Glucose-PEG2000-N3 (Glucose-PEG2000-Azide) is a conjugate composed of glucose, PEG chains, and an azide group (-N3). Glucose-PEG2000-N3 combines the targeted recognition ability of glucose with the azide group that can undergo click chemistry, making it suitable for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183161B
Synonyms: Glucose-PEG3400-Azide
Glucose-PEG3400-N3 (Glucose-PEG3400-Azide) is a conjugate composed of glucose, PEG chains, and an azide group (-N3). Glucose-PEG3400-N3 combines the targeted recognition ability of glucose with the azide group that can undergo click chemistry, making it suitable for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183161C
Synonyms: Glucose-PEG5000-Azide
Glucose-PEG5000-N3 (Glucose-PEG5000-Azide) is a conjugate composed of glucose, PEG chains, and an azide group (-N3). Glucose-PEG5000-N3 combines the targeted recognition ability of glucose with the azide group that can undergo click chemistry, making it suitable for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183161D
Synonyms: Glucose-PEG10000-Azide
Glucose-PEG10000-N3 (Glucose-PEG10000-Azide) is a conjugate composed of glucose, PEG chains, and an azide group (-N3). Glucose-PEG10000-N3 combines the targeted recognition ability of glucose with the azide group that can undergo click chemistry, making it suitable for applications such as constructing targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-187402A
Research Areas:  

Cancer

DOPE-PEG2000-CSTSMLKAC is an amphiphilic lipid-PEG-peptide conjugate composed of DOPE (1,2-dioleoyl-sn-glycero-3-phosphoethanolamine), PEG2000, and the CSTSMLKAC peptide, a cyclic tumor-homing peptide with a disulfide bond formed by flanking cysteine residues. DOPE-PEG2000-CSTSMLKAC is used for tumor-targeted drug delivery through liposome and nanoparticle surface modification.
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Cat. No.: HY-187493A
Synonyms: DOPE-PEG2000-Mal-Cys-DHLASLWWGTEL
Research Areas:  

Others

DOPE-PEG2000-DHLASLWWGTEL (DOPE-PEG2000-Mal-Cys-DHLASLWWGTEL) is an amphiphilic lipid-PEG-peptide conjugate composed of DOPE (1,2-dioleoyl-sn-glycero-3-phosphoethanolamine), PEG2000, and the DHLASLWWGTEL peptide, a 12-amino-acid tissue-targeting peptide identified through phage display. DOPE-PEG2000-DHLASLWWGTEL is used for targeted drug delivery through liposome and nanoparticle surface modification.
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Cat. No.: HY-W1052523
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG2000-NH2 is a conjugate composed of DPPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DPPE-PEG2000-NH2 can be covalently linked to functional groups such as carboxylic acids, NHS esters, and isocyanates for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-W1052523A
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG3400-NH2 is a conjugate composed of DPPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DPPE-PEG3400-NH2 can be covalently linked to functional groups such as carboxylic acids, NHS esters, and isocyanates for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-W1052523B
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG5000-NH2 is a conjugate composed of DPPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DPPE-PEG5000-NH2 can be covalently linked to functional groups such as carboxylic acids, NHS esters, and isocyanates for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-W1052523C
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG1000-NH2 is a conjugate composed of DPPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DPPE-PEG1000-NH2 can be covalently linked to functional groups such as carboxylic acids, NHS esters, and isocyanates for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-W1052523D
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG10000-NH2 is a conjugate composed of DPPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DPPE-PEG10000-NH2 can be covalently linked to functional groups such as carboxylic acids, NHS esters, and isocyanates for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-D2854E
FITC-PEG10000-CL is a fluorescent dye composed of FITC (HY-66019), PEG and chlorine (-Cl). The chlorine group is an electrophilic active group that can be used for nucleophilic substitution reactions and facilitate subsequent chemical modification (Ex/Em = 488/525 nm).
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Cat. No.: HY-182833
CAS No.: 355150-30-0
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG1000-NHS is a conjugate composed of DPPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG1000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-182833A
CAS No.: 355150-30-0
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG2000-NHS is a conjugate composed of DPPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG2000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-182833B
CAS No.: 355150-30-0
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG3400-NHS is a conjugate composed of DPPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG3400-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-182833C
CAS No.: 355150-30-0
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG5000-NHS is a conjugate composed of DPPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG5000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-182833D
CAS No.: 355150-30-0
Target:  

Liposome

Research Areas:  

Others

DPPE-PEG10000-NHS is a conjugate composed of DPPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG10000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-183016
DMPE-PEG1000-NHS is a conjugate composed of DMPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG1000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-183016A
DMPE-PEG2000-NHS is a conjugate composed of DMPE, PEG chains, and terminal active esters (NHS). The NHS ester in DMPE-PEG2000-NHS can rapidly covalently react with molecules containing primary amines (such as proteins, peptides, and small molecules modified with amino groups) to form stable amide bonds, enabling targeted modification of liposomes/nanoparticles.
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