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Protocols for Oligonucleotides and Analogs : Synthesis and Properties / edited by Sudhir Agrawal

Material type: materialTypeLabelE-bookSeries: (Methods in Molecular Biology, 1940-6029; 20).Publisher: Totowa, NJ : Humana Press, 1993Edition: 1st edition 1993.Description: 1 recurso en línea (XIV, 502 páginas).ISBN: 9781592595075.Subject: Ácidos nucleicosOnline resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
A Brief History of Oligonucleotide Synthesis -- Oligonucleotide Synthesis -- Oligodeoxyribonucleotides Synthesis -- Oligodeoxynucleotide Synthesis -- Oligoribonucleotide Synthesis -- Synthesis of 2?-O-Alkyloligoribonucleotides -- An Improved Method for the Synthesis and Deprotection of Methylphosphonate Oligonucleotides -- Oligonucleoside Phosphorothioates -- Synthesis and Purification of Phosphorodithioate DNA -- Oligodeoxyribonucleotide Phosphotriesters -- Oligonucleoside Boranophosphate (Borane Phosphonate) -- Oligonucleotide Phosphorofluoridates and Fluoridites -- ?-Oligodeoxynucleotides -- Stereospecific Synthesis of P-Chiral Analogs of Oligonucleotides -- Oligonucleotide Analogs with Dimethylenesulfide, -sulfoxide, and -sulfone Groups Replacing Phosphodiester Linkages -- Oligonucleotide Analogs Containing Dephospho-Internucleoside Linkages -- Scale-Up of Oligonucleotide Synthesis -- Large-Scale Oligonucleotide Synthesis Using the Solid-Phase Approach -- Solid-Phase Supports for Oligonucleotide Synthesis.
Summary: When first conceived, not only was the aim of Protocols for Oligo­ nucleotides and Analogs to provide wide coverage of the ohgonuc- otide chemistry field for readers who are well versed within the field, but also to give investigators just entering into the field a new perspective. The very first book on this topic was edited and published by Michael Gait in 1984, in whose laboratory I encountered the newer aspects of oligonucleotide chemistry. Since then, oligonucleotide research has developed to such an extent that its uses extend far beyond basic studies, and now find wide application throughout clinical science as well. Until recently, the major application of oligonucleotides has been in the area of DNA-based diagnostic and "antisense oligonucleotid- based therapeutic approaches. However, oligonucleotides are now also being used as therapeutic agents and are thus frequently found in clinical trials in humans. Synthesis of unmodified oligonucleotides using automated synthe­ sizers has become a common practice in numerous laboratories. How­ ever, improvements on the existing techniques and the introduction of ever newer methods for oligonucleotide synthesis is constantly driving ahead in the leading research laboratories. And several new oligonucle­ otide analogs have been synthesized and studied for their individual prop­ erties in recent years. The present volume strives to bring the readers the most up-to-date information on the newest aspects of synthesis of oligo­ nucleotides and their analogs. A separate volume covers synthesis of oligonucleotide conjugates, along with most of the analytical techniques presently used for analysis of oligonucleotides.
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Item type Current library Collection Call number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias de la Salud QP625.O47 1993 EB (Browse shelf(Opens below)) Acceso electrónico eBook.20123528
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A Brief History of Oligonucleotide Synthesis -- Oligonucleotide Synthesis -- Oligodeoxyribonucleotides Synthesis -- Oligodeoxynucleotide Synthesis -- Oligoribonucleotide Synthesis -- Synthesis of 2?-O-Alkyloligoribonucleotides -- An Improved Method for the Synthesis and Deprotection of Methylphosphonate Oligonucleotides -- Oligonucleoside Phosphorothioates -- Synthesis and Purification of Phosphorodithioate DNA -- Oligodeoxyribonucleotide Phosphotriesters -- Oligonucleoside Boranophosphate (Borane Phosphonate) -- Oligonucleotide Phosphorofluoridates and Fluoridites -- ?-Oligodeoxynucleotides -- Stereospecific Synthesis of P-Chiral Analogs of Oligonucleotides -- Oligonucleotide Analogs with Dimethylenesulfide, -sulfoxide, and -sulfone Groups Replacing Phosphodiester Linkages -- Oligonucleotide Analogs Containing Dephospho-Internucleoside Linkages -- Scale-Up of Oligonucleotide Synthesis -- Large-Scale Oligonucleotide Synthesis Using the Solid-Phase Approach -- Solid-Phase Supports for Oligonucleotide Synthesis.

When first conceived, not only was the aim of Protocols for Oligo­ nucleotides and Analogs to provide wide coverage of the ohgonuc- otide chemistry field for readers who are well versed within the field, but also to give investigators just entering into the field a new perspective. The very first book on this topic was edited and published by Michael Gait in 1984, in whose laboratory I encountered the newer aspects of oligonucleotide chemistry. Since then, oligonucleotide research has developed to such an extent that its uses extend far beyond basic studies, and now find wide application throughout clinical science as well. Until recently, the major application of oligonucleotides has been in the area of DNA-based diagnostic and "antisense oligonucleotid- based therapeutic approaches. However, oligonucleotides are now also being used as therapeutic agents and are thus frequently found in clinical trials in humans. Synthesis of unmodified oligonucleotides using automated synthe­ sizers has become a common practice in numerous laboratories. How­ ever, improvements on the existing techniques and the introduction of ever newer methods for oligonucleotide synthesis is constantly driving ahead in the leading research laboratories. And several new oligonucle­ otide analogs have been synthesized and studied for their individual prop­ erties in recent years. The present volume strives to bring the readers the most up-to-date information on the newest aspects of synthesis of oligo­ nucleotides and their analogs. A separate volume covers synthesis of oligonucleotide conjugates, along with most of the analytical techniques presently used for analysis of oligonucleotides.

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