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Catalog Number:
02770
Resina Merrifield de N α -Boc- N ε -2-cloro-ZD-lisina (0,25 - 1,0 meq/g, 100 - 200 mesh)
Synonym(s):
Resina Boc-D-Lys(2-Cl-Z)-Merrifield
Documents
$52.88 /1G
Tamaño
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Información del producto

Na-Boc-Ne-2-chloro-Z-D-lysine Merrifield is a versatile amino acid derivative that plays a crucial role in peptide synthesis and drug development. This compound is particularly valued in the field of medicinal chemistry for its ability to facilitate the introduction of specific functional groups into peptides, enhancing their biological activity and selectivity. Its unique Boc (tert-butyloxycarbonyl) protecting group allows for easy manipulation during synthesis, making it an ideal choice for researchers looking to streamline their workflows.

In addition to its applications in peptide synthesis, Na-Boc-Ne-2-chloro-Z-D-lysine Merrifield is also utilized in the development of targeted therapies and biologically active compounds. Its structural properties enable the creation of complex molecules that can interact with biological targets, paving the way for innovative treatments in various therapeutic areas. Researchers and industry professionals can leverage this compound to improve the efficacy of their products, ultimately leading to advancements in drug discovery and development.

Número MDL
MFCD00801181
Sustitución
0,25 - 1,0 meq/g
Tamaño de malla
Malla 100 - 200
Condiciones
Conservar entre 0 y 8 °C.
Información general
Número MDL
MFCD00801181
Sustitución
0,25 - 1,0 meq/g
Tamaño de malla
Malla 100 - 200
Condiciones
Conservar entre 0 y 8 °C.
Propiedades
¡Pronto habrá más información sobre la propiedad!
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Seguridad y normativas
Materiales peligrosos
-
Antibiótico
-
Regulado por la DEA
No
Advertencias
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Aplicaciones

Na-Boc-Ne-2-chloro-Z-D-lysine Merrifield is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a key building block in the synthesis of peptides, enabling researchers to create complex structures for drug development.
  • Drug Development: Its unique properties make it valuable in medicinal chemistry for designing new pharmaceuticals, particularly those targeting specific biological pathways.
  • Bioconjugation: The compound is used to modify biomolecules, enhancing their stability and functionality, which is crucial in developing targeted therapies.
  • Protein Engineering: It aids in the design of modified proteins with enhanced properties, allowing for advancements in biotechnology and therapeutic applications.
  • Research in Neuroscience: This chemical can be instrumental in studying neurotransmitter systems, providing insights into neurological disorders and potential treatments.

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