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Retrieval of vector integration sites from cell-free DNA

Articolo
Data di Pubblicazione:
2021
Citazione:
Retrieval of vector integration sites from cell-free DNA / Cesana, D.; Calabria, A.; Rudilosso, L.; Gallina, P.; Benedicenti, F.; Spinozzi, G.; Schiroli, G.; Magnani, A.; Acquati, S.; Fumagalli, F.; Calbi, V.; Witzel, M.; Bushman, F. D.; Cantore, A.; Genovese, P.; Klein, C.; Fischer, A.; Cavazzana, M.; Six, E.; Aiuti, A.; Naldini, L.; Montini, E.. - In: NATURE MEDICINE. - ISSN 1078-8956. - 27:8(2021), pp. 1458-1470. [10.1038/s41591-021-01389-4]
Abstract:
Gene therapy (GT) has rapidly attracted renewed interest as a treatment for otherwise incurable diseases, with several GT products already on the market and many more entering clinical testing for selected indications. Clonal tracking techniques based on vector integration enable monitoring of the fate of engineered cells in the blood of patients receiving GT and allow assessment of the safety and efficacy of these procedures. However, owing to the limited number of cells that can be tested and the impracticality of studying cells residing in peripheral organs without performing invasive biopsies, this approach provides only a partial snapshot of the clonal repertoire and dynamics of genetically modified cells and reduces the predictive power as a safety readout. In this study, we developed liquid biopsy integration site sequencing, or LiBIS-seq, a polymerase chain reaction technique optimized to quantitatively retrieve vector integration sites from cell-free DNA released into the bloodstream by dying cells residing in several tissues. This approach enabled longitudinal monitoring of in vivo liver-directed GT and clonal tracking in patients receiving hematopoietic stem cell GT, improving our understanding of the clonal composition and turnover of genetically modified cells in solid tissues and, in contrast to conventional analyses based only on circulating blood cells, enabling earlier detection of vector-marked clones that are aberrantly expanding in peripheral tissues.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Cesana, D.; Calabria, A.; Rudilosso, L.; Gallina, P.; Benedicenti, F.; Spinozzi, G.; Schiroli, G.; Magnani, A.; Acquati, S.; Fumagalli, F.; Calbi, V.; Witzel, M.; Bushman, F. D.; Cantore, A.; Genovese, P.; Klein, C.; Fischer, A.; Cavazzana, M.; Six, E.; Aiuti, A.; Naldini, L.; Montini, E.
Autori di Ateneo:
AIUTI ALESSANDRO
CANTORE ALESSIO
NALDINI LUIGI
Link alla scheda completa:
https://iris.unisr.it/handle/20.500.11768/120628
Pubblicato in:
NATURE MEDICINE
Journal
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URL

https://www.nature.com/articles/s41591-021-01389-4
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