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Therapeutic siRNA Loaded to RISC as Single and Double Strands Requires an Appropriate Quantitative Assay for RISC PK Assessment.
Xu, Rui; Njumbe Ediage, Emmanuel; Verhaeghe, Tom; Snoeys, Jan; Dillen, Lieve.
Affiliation
  • Xu R; Bioanalytical Discovery & Development Sciences (BDDS), Preclinical Sciences & Translational Safety (PSTS), Research & Development (R&D), Janssen Pharmaceutica NV, A Johnson & Johnson Company, Beerse, Belgium.
  • Njumbe Ediage E; Bioanalytical Discovery & Development Sciences (BDDS), Preclinical Sciences & Translational Safety (PSTS), Research & Development (R&D), Janssen Pharmaceutica NV, A Johnson & Johnson Company, Beerse, Belgium.
  • Verhaeghe T; Bioanalytical Discovery & Development Sciences (BDDS), Preclinical Sciences & Translational Safety (PSTS), Research & Development (R&D), Janssen Pharmaceutica NV, A Johnson & Johnson Company, Beerse, Belgium.
  • Snoeys J; Translational Pharmacokinetics/ Pharmacodynamics & Investigative Toxicology (TPPIT), Preclinical Sciences & Translational Safety (PSTS), Research & Development (R&D), Janssen Pharmaceutica NV, A Johnson & Johnson Company, Beerse, Belgium.
  • Dillen L; Bioanalytical Discovery & Development Sciences (BDDS), Preclinical Sciences & Translational Safety (PSTS), Research & Development (R&D), Janssen Pharmaceutica NV, A Johnson & Johnson Company, Beerse, Belgium.
Nucleic Acid Ther ; 34(4): 199-210, 2024 08.
Article in En | MEDLINE | ID: mdl-38638105
ABSTRACT
In recent years, therapeutic siRNA projects are booming in the biotech and pharmaceutical industries. As these drugs act by silencing the target gene expression, a critical step is the binding of antisense strands of siRNA to RNA-induced silencing complex (RISC) and then degrading their target mRNA. However, data that we recently obtained suggest that double-stranded siRNA can also load to RISC. This brings a new understanding of the mechanism of RISC loading which may have a potential impact on how quantification of RISC loaded siRNA should be performed. By combining RNA immune precipitation and probe-based hybridization LC-fluorescence approach, we have developed a novel assay that can accurately quantify the RISC-bound antisense strand, irrespective of which form (double-stranded or single-stranded) is loaded on RISC. In addition, this novel assay can discriminate between the 5'-phosphorylated antisense (5'p-AS) and the nonphosphorylated forms, therefore specifically quantifying the RISC bound 5'p-AS. In comparison, stem-loop qPCR assay does not provide discrimination and accurate quantification when the oligonucleotide analyte exists as a mixture of double and single-stranded forms. Taking together, RISC loading assay with probe-hybridization LC-fluorescence technique would be a more accurate and specific quantitative approach for RISC-associated pharmacokinetic assessment.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: RNA-Induced Silencing Complex / RNA, Small Interfering Limits: Humans Language: En Journal: Nucleic Acid Ther / Nucleic acid ther. (Online) / Nucleic acid therapeutics (Online) Year: 2024 Document type: Article Affiliation country: Country of publication:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: RNA-Induced Silencing Complex / RNA, Small Interfering Limits: Humans Language: En Journal: Nucleic Acid Ther / Nucleic acid ther. (Online) / Nucleic acid therapeutics (Online) Year: 2024 Document type: Article Affiliation country: Country of publication: