Molecular Therapy: Methods & Clinical Development (Mar 2023)

Comparison of busulfan and total body irradiation conditioning on hematopoietic clonal dynamics following lentiviral gene transfer in rhesus macaques

  • Diana M. Abraham,
  • Richard J. Lozano,
  • Xavi Guitart,
  • Jialiu A. Liang,
  • Ryland D. Mortlock,
  • Diego A. Espinoza,
  • Xing Fan,
  • Allen Krouse,
  • Aylin Bonifacino,
  • So Gun Hong,
  • Komudi Singh,
  • John F. Tisdale,
  • Chuanfeng Wu,
  • Cynthia E. Dunbar

Journal volume & issue
Vol. 28
pp. 62 – 75

Abstract

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The clonal dynamics following hematopoietic stem progenitor cell (HSPC) transplantation with busulfan conditioning are of great interest to the development of HSPC gene therapies. Compared with total body irradiation (TBI), busulfan is less toxic and more clinically relevant. We used a genetic barcoded HSPC autologous transplantation model to investigate the impact of busulfan conditioning on hematopoietic reconstitution in rhesus macaques. Two animals received lower busulfan dose and demonstrated lower vector marking levels compared with the third animal given a higher busulfan dose, despite similar busulfan pharmacokinetic analysis. We observed uni-lineage clonal engraftment at 1 month post-transplant, replaced by multilineage clones by 2 to 3 months in all animals. The initial multilineage clones in the first two animals were replaced by a second multilineage wave at 9 months; this clonal pattern disappeared at 13 months in the first animal, though was maintained in the second animal. The third animal maintained stable multilineage clones from 3 months to the most recent time point. In addition, busulfan animals exhibit more rapid HSPC clonal mixing across bone marrow sites and less CD16+ NK-biased clonal expansion compared with TBI animals. Therefore, busulfan conditioning regimens can variably impact the marrow niche, resulting in differences in clonal patterns with implications for HSPC gene therapies.

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