234 Results for "

nanoparticles modification

" in MedChemExpress (MCE) Product Catalog:
Products (234)

234 Results for "nanoparticles modification" in MCE Product Catalog:

Cat. No.: HY-183104
Target:  

Liposome

Research Areas:  

Others

DSG-PEG1000-NHS is a conjugate composed of DSG, PEG chains, and terminal active esters (NHS). The NHS ester in DSG-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-183104A
Target:  

Liposome

Research Areas:  

Others

DSG-PEG2000-NHS is a conjugate composed of DSG, PEG chains, and terminal active esters (NHS). The NHS ester in DSG-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-183104B
Target:  

Liposome

Research Areas:  

Others

DSG-PEG3400-NHS is a conjugate composed of DSG, PEG chains, and terminal active esters (NHS). The NHS ester in DSG-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-183104C
Target:  

Liposome

Research Areas:  

Others

DSG-PEG5000-NHS is a conjugate composed of DSG, PEG chains, and terminal active esters (NHS). The NHS ester in DSG-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-183104D
Target:  

Liposome

Research Areas:  

Others

DSG-PEG10000-NHS is a conjugate composed of DSG, PEG chains, and terminal active esters (NHS). The NHS ester in DSG-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-W1053112B
Synonyms: DOPE-PEG10000-NH2
Target:  

Liposome

Research Areas:  

Others

DOPE-PEG10000-Amine (DOPE-PEG1000-NH2) is a conjugate composed of dioleoylphosphatidylethanolamine (DOPE), a PEG chain, and a terminal amino group (-NH2). The amino group in DOPE-PEG10000-Amine can chemically react with carboxyl groups, activated esters, etc., participating in various bioconjugation reactions for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-W440990
Synonyms: DOPE-PEG1000-NH2
Target:  

Liposome

Research Areas:  

Others

DOPE-PEG1000-Amine (DOPE-PEG1000-NH2) is a conjugate composed of dioleoylphosphatidylethanolamine (DOPE), a PEG chain, and a terminal amino group (-NH2). The amino group in DOPE-PEG1000-Amine can chemically react with carboxyl groups, activated esters, etc., participating in various bioconjugation reactions for targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-148776
PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) is a degradable amphiphilic polymer nanocarrier of poly (lactic acid-co-glycolic acid)-block-poly (ethylene glycol) (PLGA-PEG-Mal) that allows covalent modification of functional molecules. PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) serves as a core polymer for nanoparticle synthesis, and also acts as a nanoparticle component for site-specific antibody conjugation to construct artificial antigen-presenting cells. PLGA-PEG-MAL (20kDA-5.0kDA, LA:GA ratio 50:50) is applicable for drug delivery-related research .
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Cat. No.: HY-184608
CuS nanoparticles are nanomaterials with unique properties. Their structural characteristics endow them with excellent near-infrared light response, facilitating functional applications through surface modification. This material shows potential in the biomedical field, enabling synergistic photothermal and photodynamic therapies in tumor treatment, as well as precise drug delivery. In the energy sector, it is suitable for the development of novel energy storage devices; in the environmental field, it can participate in photocatalytic degradation processes.
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Cat. No.: HY-187412A
Research Areas:  

Cancer

DOPE-PEG2000-VHPKQHRGGSKGC is an amphiphilic lipid-PEG-peptide conjugate consisting of DOPE (1,2-dioleoyl-sn-glycero-3-phosphoethanolamine), PEG2000, and the VHPKQHRGGSKGC peptide, a tumor-targeting peptide containing a terminal cysteine for conjugation. DOPE-PEG2000-VHPKQHRGGSKGC is used for tumor-targeted drug delivery via liposome and nanoparticle surface modification.
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Cat. No.: HY-W1052298
Synonyms: DMPE-PEG2000-Amine
DMPE-PEG2000-NH2 (DMPE-PEG2000-Amine) is a conjugate composed of DMPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DMPE-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-W1052298A
Synonyms: DMPE-PEG3400-Amine
DMPE-PEG3400-NH2 (DMPE-PEG3400-Amine) is a conjugate composed of DMPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DMPE-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-W1052298B
Synonyms: DMPE-PEG5000-Amine
DMPE-PEG5000-NH2 (DMPE-PEG5000-Amine) is a conjugate composed of DMPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DMPE-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-W1052298C
Synonyms: DMPE-PEG1000-Amine
DMPE-PEG1000-NH2 (DMPE-PEG1000-Amine) is a conjugate composed of DMPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DMPE-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-W1052298D
Synonyms: DMPE-PEG10000-Amine
DMPE-PEG2000-NH2 (DMPE-PEG2000-Amine) is a conjugate composed of DMPE, a PEG chain, and a terminal primary amino group (-NH2). The primary amino group in DMPE-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-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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