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. 2020 Sep 29;15(9):e0240148. doi: 10.1371/journal.pone.0240148

Correction: Higher naloxone dosing in a quantitative systems pharmacology model that predicts naloxone-fentanyl competition at the opioid mu receptor level

The PLOS ONE Staff
PMCID: PMC7523997  PMID: 32991627

Fig 1 is incorrect. The publisher apologizes for the error. Please see the correct Fig 1 here.

Fig 1. Graphical depiction of the mu receptor submodel.

Fig 1

The model accounts for mu receptor synthesis and degradation, competitive binding to the receptor, internalization, recycling, and clearance.

Reference

  • 1.Moss RB, Pryor MM, Baillie R, Kudrycki K, Friedrich C, Reed M, et al. (2020) Higher naloxone dosing in a quantitative systems pharmacology model that predicts naloxone-fentanyl competition at the opioid mu receptor level. PLoS ONE 15(6): e0234683 10.1371/journal.pone.0234683 [DOI] [PMC free article] [PubMed] [Google Scholar]

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