9526 Results for "

targeted modification

" in MedChemExpress (MCE) Product Catalog:
Products (9526)

9526 Results for "targeted modification" in MCE Product Catalog:

Cat. No.: HY-183160D
Glucose-PEG10000-Biotin is a conjugate composed of glucose, PEG chains, and biotin. Glucose-PEG10000-Biotin combines the targeted recognition capabilities of glucose with the high-affinity binding ability of biotin to avidin/streptavidin, enabling applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183003
Mannose-PEG1000-COOH is a conjugate composed of mannose, PEG chains, and carboxyl groups (COOH). Mannose-PEG-COOH combines the targeting recognition ability of mannose with the carboxyl group, which can undergo condensation or esterification reactions with amino and hydroxyl groups, for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183003A
Mannose-PEG2000-COOH is a conjugate composed of mannose, PEG chains, and carboxyl groups (COOH). Mannose-PEG-COOH combines the targeting recognition ability of mannose with the carboxyl group, which can undergo condensation or esterification reactions with amino and hydroxyl groups, for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183003B
Mannose-PEG3400-COOH is a conjugate composed of mannose, PEG chains, and carboxyl groups (COOH). Mannose-PEG-COOH combines the targeting recognition ability of mannose with the carboxyl group, which can undergo condensation or esterification reactions with amino and hydroxyl groups, for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183003C
Mannose-PEG5000-COOH is a conjugate composed of mannose, PEG chains, and carboxyl groups (COOH). Mannose-PEG-COOH combines the targeting recognition ability of mannose with the carboxyl group, which can undergo condensation or esterification reactions with amino and hydroxyl groups, for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183003D
Mannose-PEG10000-COOH is a conjugate composed of mannose, PEG chains, and carboxyl groups (COOH). Mannose-PEG-COOH combines the targeting recognition ability of mannose with the carboxyl group, which can undergo condensation or esterification reactions with amino and hydroxyl groups, for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015
Mannose-PEG1000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015A
Mannose-PEG2000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015B
Mannose-PEG3400-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015C
Mannose-PEG5000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183015D
Mannose-PEG10000-NH2 is composed of mannose, PEG chains, and terminal amino groups (–NH2). Mannose-PEG-NH2 combines the targeting recognition ability of mannose with the chemical modifiability of amino groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183163
Glucose-PEG1000-COOH is a conjugate composed of glucose, PEG chains, and carboxyl groups (COOH). Glucose-PEG1000-COOH combines the targeting recognition ability of glucose with the carboxyl groups capable of condensation or esterification reactions with amino and hydroxyl groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183163A
Glucose-PEG2000-COOH is a conjugate composed of glucose, PEG chains, and carboxyl groups (COOH). Glucose-PEG2000-COOH combines the targeting recognition ability of glucose with the carboxyl groups capable of condensation or esterification reactions with amino and hydroxyl groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183163B
Glucose-PEG3400-COOH is a conjugate composed of glucose, PEG chains, and carboxyl groups (COOH). Glucose-PEG3400-COOH combines the targeting recognition ability of glucose with the carboxyl groups capable of condensation or esterification reactions with amino and hydroxyl groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183163C
Glucose-PEG5000-COOH is a conjugate composed of glucose, PEG chains, and carboxyl groups (COOH). Glucose-PEG5000-COOH combines the targeting recognition ability of glucose with the carboxyl groups capable of condensation or esterification reactions with amino and hydroxyl groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-183163D
Glucose-PEG10000-COOH is a conjugate composed of glucose, PEG chains, and carboxyl groups (COOH). Glucose-PEG10000-COOH combines the targeting recognition ability of glucose with the carboxyl groups capable of condensation or esterification reactions with amino and hydroxyl groups, making it suitable for applications such as targeted drug delivery systems and nanoparticle modification.
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Cat. No.: HY-P1654A
CAS No.: 3107375-56-1
Target:  

Integrin

Research Areas:  

Cancer

A20FMDV2-Cys is a cysteine-containing 20-mer peptide that targets integrin αvβ6 with high affinity. A20FMDV2-Cys can be used for targeted liposome modification to enhance liver and bile duct targeting. A20FMDV2-Cys is applicable for research in drug delivery .
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Cat. No.: HY-L226
3,693 compounds

Post-translational modifications (PTMs) refer to chemical modifications that occur on amino acid residues of proteins after translation, involving the addition or removal of specific functional groups. These modifications regulate protein activity, localization, folding, and interactions with other biomolecules. By influencing protein function, PTMs play a crucial role in various pathophysiological processes. Common types of PTMs include protein phosphorylation, methylation, acetylation, ubiquitination, glycosylation, and more.

MCE offers 3,693 PTM-targeting compounds, which can be used for drug screening in cancer, neurodegenerative diseases, metabolic disorders, etc.

Cat. No.: HY-183175
CAS No.: 3101670-37-2
Target:  

Liposome

Research Areas:  

Others

DSG-PEG1000-N3 is a conjugate composed of DSG, PEG chains, and terminal azido groups (-N3). DSG-PEG1000-Azide is a click chemistry reagent used for the targeted modification of liposomes/nanoparticles.
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Cat. No.: HY-183175A
CAS No.: 3101670-37-2
Target:  

Liposome

Research Areas:  

Others

DSG-PEG2000-N3 is a conjugate composed of DSG, PEG chains, and terminal azido groups (-N3). DSG-PEG2000-Azide is a click chemistry reagent used for the targeted modification of liposomes/nanoparticles.
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