AI Article Synopsis

  • PRRSV is a virus causing significant issues in pigs, and researchers previously found a DNA-based antisense oligonucleotide (AS-ON) that effectively reduces its replication.
  • The study modified this AS-ON using locked nucleic acids (LNAs) to enhance its effectiveness, testing them in cell cultures infected with PRRSV.
  • Results showed that LNA-modified AS-ONs improved cell viability and significantly reduced viral replication compared to the original DNA-based AS-ON, indicating better potential for controlling PRRS.

Article Abstract

Background: Porcine reproductive and respiratory syndrome virus (PRRSV) causes porcine reproductive and respiratory syndrome (PRRS), which is currently insufficiently controlled. From a previous small-scale screen we identified an effective DNA-based short antisense oligonucleotide (AS-ON) targeting viral NSP9, which could inhibit PRRSV replication in both Marc-145 cells and pulmonary alveolar macrophages (PAMs). The objective of this study was to explore the strategy of incorporating locked nucleic acids (LNAs) to achieve better inhibition of PRRSV replication in vitro.

Methods: The effective DNA-based AS-ON (YN8) was modified with LNAs at both ends as gap-mer (LNA-YN8-A) or as mix-mer (LNA-YN8-B). Marc-145 cells or PAMs were infected with PRRSV and subsequently transfected.

Results: Compared with the DNA-based YN8 control, the two AS-ONs modified with LNAs were found to be significantly more effective in decreasing the cytopathic effect (CPE) induced by PRRSV and thus in maintaining cell viability. LNA modifications conferred longer lifetimes to the AS-ON in the cell culture model. Viral ORF7 levels were more significantly reduced at both RNA and protein levels as shown by quantitative PCR, western blot and indirect immunofluorescence staining. Moreover, transfection with LNA modified AS-ON reduced the PRRSV titer by 10-fold compared with the YN8 control.

Conclusion: Taken together, incorporation of LNA into AS-ON technology holds higher therapeutic promise for PRRS control.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5870238PMC
http://dx.doi.org/10.1186/s12917-018-1432-1DOI Listing

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