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Whole-Body Disposition and Physiologically Based Pharmacokinetic Modeling of Adeno-Associated Viruses and the Transgene Product

  • Shufang Liu
  • , Ekram Ahmed Chowdhury
  • , Vivian Xu
  • , Anthony Jerez
  • , Leeha Mahmood
  • , Bao Quoc Ly
  • , Huyen Khanh Le
  • , Anne Nguyen
  • , Aneesh Rajwade
  • , Guy Meno-Tetang
  • , Dhaval K. Shah
  • SUNY Buffalo
  • AstraZeneca

Research output: Contribution to journalArticlepeer-review

11 Scopus citations

Abstract

To facilitate model-informed drug development (MIDD) of adeno-associated virus (AAV) therapy, here we have developed a physiologically based pharmacokinetic (PBPK) model for AAVs following preclinical investigation in mice. After 2E11 Vg/mouse dose of AAV8 and AAV9 encoding a monoclonal antibody (mAb) gene, whole-body disposition of both the vector and the transgene mAb was evaluated over 3 weeks. At steady-state, the following tissue-to-blood (T/B) concentration ratios were found for AAV8/9: ∼50 for liver; ∼10 for heart and muscle; ∼2 for brain, lung, kidney, adipose, and spleen; ≤1 for bone, skin, and pancreas. T/B values for mAb were compared with the antibody biodistribution coefficients, and five different clusters of organs were identified based on their transgene expression profile. All the biodistribution data were used to develop a novel AAV PBPK model that incorporates: (i) whole-body distribution of the vector; (ii) binding, internalization, and intracellular processing of the vector; (iii) transgene expression and secretion; and (iv) whole-body disposition of the secreted transgene product. The model was able to capture systemic and tissue PK of the vector and the transgene-produced mAb reasonably well. Pathway analysis of the PBPK model suggested that liver, muscle, and heart are the main contributors for the secreted transgene mAb. Unprecedented PK data and the novel PBPK model developed here provide the foundation for quantitative systems pharmacology (QSP) investigations of AAV-mediated gene therapies. The PBPK model can also serve as a quantitative tool for preclinical study design and preclinical-to-clinical translation of AAV-based gene therapies.

Original languageEnglish
Pages (from-to)141-157
Number of pages17
JournalJournal of Pharmaceutical Sciences
Volume113
Issue number1
DOIs
StatePublished - Jan 2024

Keywords

  • Adeno-Associated virus (AAV)
  • Monoclonal antibody
  • Pharmacokinetics (PK)
  • Physiologically based pharmacokinetic (PBPK) modeling
  • Transgene expression

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