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Template-directed synthesis combinatorial libraries

The head-to-tail-coupling reactions described above are potentially useful in the design of dynamic combinatorial libraries. Features of these reactions include the rapid and reversible formation of carbon-carbon bonds, multifunctional ene-imine building blocks, and formation of stereo centers upon ene-imine linkage. Support for template-directed synthesis utilizing ene-imine building blocks is the formation of a poly ene-imine species that could recognize 3 -GGA-5 sequences of DNA.48 It is noteworthy that some polyene-imines are helical and could form a triple helix with DNA. [Pg.229]

Another recent concept is the template-directed synthesis from dynamic combinatorial libraries. Here, one or several building blocks that are prone... [Pg.149]

Template-directed synthesis has also been exploited for combinatorial purposes in which a reversible reaction and the use of thermodynamic templates have been used. Two different processes have been envisaged and validated, both of which consider the dynamic optimization of a receptor-ligand interaction where one of the partners is the template that drives the self-assembly of a reversible library of other partners from which the best binder for the template is selected (Fig. 8.53). If the receptor is a template, a library made using a reversible reaction is incubated with the receptor and... [Pg.405]


See other pages where Template-directed synthesis combinatorial libraries is mentioned: [Pg.119]    [Pg.120]    [Pg.17]    [Pg.204]    [Pg.317]    [Pg.335]    [Pg.262]    [Pg.253]   


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Combinatorial library

Combinatorial library synthesis

Combinatorial synthesis

Combinatorial template

Directed combinatorial libraries

Directed library

Directed syntheses

Synthesis directive

Synthesis templated

Template directed

Template direction

Template synthesis

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