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One or more keywords matched the following items that are connected to Agrawal, Sudhir
Item TypeName
Concept CpG Islands
Academic Article Medicinal chemistry and therapeutic potential of CpG DNA.
Academic Article Secondary structures in CpG oligonucleotides affect immunostimulatory activity.
Academic Article Chemistry of CpG DNA.
Academic Article Immunopharmacological and antitumor effects of second-generation immunomodulatory oligonucleotides containing synthetic CpR motifs.
Academic Article Requirement of nucleobase proximal to CpG dinucleotide for immunostimulatory activity of synthetic CpG DNA.
Academic Article Self-stabilized CpG DNAs optimally activate human B cells and plasmacytoid dendritic cells.
Academic Article Potent CpG oligonucleotides containing phosphodiester linkages: in vitro and in vivo immunostimulatory properties.
Academic Article Oligodeoxynucleotides containing synthetic immunostimulatory motifs augment potent Th1 immune responses to HBsAg in mice.
Academic Article Impact of site-specific nucleobase deletions on the arthritogenicity of DNA.
Academic Article Impact of secondary structure of toll-like receptor 9 agonists on interferon alpha induction.
Academic Article Novel oligodeoxynucleotide agonists of TLR9 containing N3-Me-dC or N1-Me-dG modifications.
Academic Article Agonists of Toll-like receptor 9 containing synthetic dinucleotide motifs.
Academic Article Immunomodulatory oligonucleotides containing a cytosine-phosphate-2'-deoxy-7-deazaguanosine motif as potent toll-like receptor 9 agonists.
Academic Article Modifications incorporated in CpG motifs of oligodeoxynucleotides lead to antagonist activity of toll-like receptors 7 and 9.
Academic Article Design, synthesis, and immunostimulatory properties of CpG DNAs containing alkyl-linker substitutions: role of nucleosides in the flanking sequences.
Academic Article Immunostimulatory properties of phosphorothioate CpG DNA containing both 3'-5'- and 2'-5'-internucleotide linkages.
Academic Article Modulation of Toll-like Receptor 9 Responses through Synthetic Immunostimulatory Motifs of DNA.
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  • CpG Islands