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Related Experiment Video

Updated: Jun 21, 2026

Combinatorial Synthesis of and High-throughput Protein Release from Polymer Film and Nanoparticle Libraries
10:58

Combinatorial Synthesis of and High-throughput Protein Release from Polymer Film and Nanoparticle Libraries

Published on: September 6, 2012

Solid-phase synthesis of combinatorial libraries.

M Lebl1

  • 1Spyder Instruments Inc, San Diego, CA 92121, USA. michal@5z.com

Current Opinion in Drug Discovery & Development
|August 4, 2009
PubMed
Summary
This summary is machine-generated.

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Solid-phase synthesis advanced in 1998 with faster library creation and improved analysis. Emerging fluorous-phase synthesis offers a potential alternative for future molecular entity construction.

Area of Science:

  • Organic Chemistry
  • Medicinal Chemistry
  • Synthetic Chemistry

Background:

  • Solid-phase synthesis (SPS) revolutionized combinatorial library generation.
  • The year 1998 saw significant advancements in SPS methodologies.

Purpose of the Study:

  • To review developments in solid-phase synthesis during 1998.
  • To highlight new techniques and applications in library synthesis.
  • To introduce emerging alternative synthetic strategies.

Main Methods:

  • Review of literature published in 1998 concerning SPS.
  • Emphasis on rapid synthesis techniques.
  • Discussion of analytical methods for reaction monitoring.
  • Exploration of solid-phase reagents.

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Related Experiment Videos

Last Updated: Jun 21, 2026

Combinatorial Synthesis of and High-throughput Protein Release from Polymer Film and Nanoparticle Libraries
10:58

Combinatorial Synthesis of and High-throughput Protein Release from Polymer Film and Nanoparticle Libraries

Published on: September 6, 2012

Solid-phase Synthesis of [4.4] Spirocyclic Oximes
05:15

Solid-phase Synthesis of [4.4] Spirocyclic Oximes

Published on: February 6, 2019

Synthesis of a Water-soluble Metal–Organic Complex Array
06:40

Synthesis of a Water-soluble Metal–Organic Complex Array

Published on: October 8, 2016

  • Synthesis of specific molecular targets.
  • Main Results:

    • Accelerated synthesis of combinatorial libraries.
    • Novel analytical techniques for assessing reaction progress and outcomes.
    • Innovative uses of solid-phase supports as reagents.
    • Successful synthesis of diverse molecular entities.
    • Introduction of fluorous-phase synthesis as a developing alternative.

    Conclusions:

    • Solid-phase synthesis continued to evolve rapidly in 1998.
    • New methods enhance efficiency and analytical capabilities in library synthesis.
    • Fluorous-phase synthesis presents a promising future alternative to traditional SPS.