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Alkyne-azide "click" chemistry in designing nanocarriers for applications in biology.


ABSTRACT: The alkyne-azide cycloaddition, popularly known as the "click" reaction, has been extensively exploited in molecule/macromolecule build-up, and has offered tremendous potential in the design of nanomaterials for applications in a diverse range of disciplines, including biology. Some advantageous characteristics of this coupling include high efficiency, and adaptability to the environment in which the desired covalent linking of the alkyne and azide terminated moieties needs to be carried out. The efficient delivery of active pharmaceutical agents to specific organelles, employing nanocarriers developed through the use of "click" chemistry, constitutes a continuing topical area of research. In this review, we highlight important contributions click chemistry has made in the design of macromolecule-based nanomaterials for therapeutic intervention in mitochondria and lipid droplets.

SUBMITTER: Avti PK 

PROVIDER: S-EPMC6270461 | biostudies-literature | 2013 Aug

REPOSITORIES: biostudies-literature

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Alkyne-azide "click" chemistry in designing nanocarriers for applications in biology.

Avti Pramod K PK   Maysinger Dusica D   Kakkar Ashok A  

Molecules (Basel, Switzerland) 20130808 8


The alkyne-azide cycloaddition, popularly known as the "click" reaction, has been extensively exploited in molecule/macromolecule build-up, and has offered tremendous potential in the design of nanomaterials for applications in a diverse range of disciplines, including biology. Some advantageous characteristics of this coupling include high efficiency, and adaptability to the environment in which the desired covalent linking of the alkyne and azide terminated moieties needs to be carried out. Th  ...[more]

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