Summary
In recent years, combinatorial chemistry has emerged as a powerful tool for accelerating drug discovery. While industry is rapidly embracing the technology, researchers continue to develop novel library methods including resins, linkers, tagging and deconvolution techniques. Newer strategies involving computer-customized combinatorial libraries offer enormous potential for the design of more “focused” and “smart” chemical libraries with maximal diversity. In addition, miniaturized systems for synthesizing chemical libraries are also being developed, which has made it possible to carry out reactions at submicroliter volumes.
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Abbreviations
- GC:
-
gas chromatography
- ESMS:
-
electrospray mass spectrometry
- ELISA:
-
enzyme linked immunoadsorbent assay
- HPLC:
-
high pressure liquid chromatography
- TG:
-
tentagel resin
- PyBrOP:
-
bromo-tris-pyrrolidino-phsosphonium hexafluorophosphate
- DCR:
-
divide couple and recombine
- TFA:
-
triflouroacetic acid
- NK:
-
neurokinin
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Kundu, B., Khare, S.K., Rastogi, S.K. (1999). Combinatorial chemistry: Polymer supported synthesis of peptide and non-peptide libraries. In: Jucker, E. (eds) Progress in Drug Research. Progress in Drug Research, vol 53. Birkhäuser, Basel. https://doi.org/10.1007/978-3-0348-8735-9_3
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