Cargando…

Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis

Allogeneic hematopoietic stem cell transplantation is the treatment of choice for autosomal recessive osteopetrosis caused by defects in the TCIRG1 gene. Despite recent progress in conditioning, an important number of patients are not eligible for allogeneic stem cell transplantation because of the...

Descripción completa

Detalles Bibliográficos
Autores principales: Capo, Valentina, Penna, Sara, Merelli, Ivan, Barcella, Matteo, Scala, Serena, Basso-Ricci, Luca, Draghici, Elena, Palagano, Eleonora, Zonari, Erika, Desantis, Giacomo, Uva, Paolo, Cusano, Roberto, Sergi, Lucia Sergi, Crisafulli, Laura, Moshous, Despina, Stepensky, Polina, Drabko, Katarzyna, Kaya, Zühre, Unal, Ekrem, Gezdiric, Alper, Menna, Giuseppe, Serafini, Marta, Aiuti, Alessandro, Locatelli, Silvia Laura, Carlo-Stella, Carmelo, Schulz, Ansgar S., Ficara, Francesca, Sobacchi, Cristina, Gentner, Bernhard, Villa, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Fondazione Ferrata Storti 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7776247/
https://www.ncbi.nlm.nih.gov/pubmed/31949009
http://dx.doi.org/10.3324/haematol.2019.238261
_version_ 1783630637661421568
author Capo, Valentina
Penna, Sara
Merelli, Ivan
Barcella, Matteo
Scala, Serena
Basso-Ricci, Luca
Draghici, Elena
Palagano, Eleonora
Zonari, Erika
Desantis, Giacomo
Uva, Paolo
Cusano, Roberto
Sergi, Lucia Sergi
Crisafulli, Laura
Moshous, Despina
Stepensky, Polina
Drabko, Katarzyna
Kaya, Zühre
Unal, Ekrem
Gezdiric, Alper
Menna, Giuseppe
Serafini, Marta
Aiuti, Alessandro
Locatelli, Silvia Laura
Carlo-Stella, Carmelo
Schulz, Ansgar S.
Ficara, Francesca
Sobacchi, Cristina
Gentner, Bernhard
Villa, Anna
author_facet Capo, Valentina
Penna, Sara
Merelli, Ivan
Barcella, Matteo
Scala, Serena
Basso-Ricci, Luca
Draghici, Elena
Palagano, Eleonora
Zonari, Erika
Desantis, Giacomo
Uva, Paolo
Cusano, Roberto
Sergi, Lucia Sergi
Crisafulli, Laura
Moshous, Despina
Stepensky, Polina
Drabko, Katarzyna
Kaya, Zühre
Unal, Ekrem
Gezdiric, Alper
Menna, Giuseppe
Serafini, Marta
Aiuti, Alessandro
Locatelli, Silvia Laura
Carlo-Stella, Carmelo
Schulz, Ansgar S.
Ficara, Francesca
Sobacchi, Cristina
Gentner, Bernhard
Villa, Anna
author_sort Capo, Valentina
collection PubMed
description Allogeneic hematopoietic stem cell transplantation is the treatment of choice for autosomal recessive osteopetrosis caused by defects in the TCIRG1 gene. Despite recent progress in conditioning, an important number of patients are not eligible for allogeneic stem cell transplantation because of the severity of the disease and significant transplant-related morbidity. We exploited peripheral CD34(+) cells, known to circulate at high frequency in the peripheral blood of TCIRG1-deficient patients, as a novel cell source for autologous transplantation of gene corrected cells. Detailed phenotypical analysis showed that circulating CD34(+) cells have a cellular composition that resembles bone marrow (BM), supporting their use in gene therapy protocols. Transcriptomic profile revealed enrichment in genes expressed by hematopoietic stem and progenitor cells (HSPC). To overcome the limit of BM harvest/HSPC mobilization and serial blood drawings in TCIRG1 patients, we applied UM171-based ex vivo expansion of HSPC coupled with lentiviral gene transfer. Circulating CD34(+) cells from TCIRG1- defective patients were transduced with a clinically-optimized lentiviral vector expressing TCIRG1 under the control of phosphoglycerate promoter and expanded ex vivo. Expanded cells maintained long-term engraftment capacity and multi-lineage repopulating potential when transplanted in vivo both in primary and secondary NOD scid gamma common chain (NSG) recipients. Moreover, when CD34(+) cells were differentiated in vitro, genetically corrected osteoclasts resorbed the bone efficiently. Overall, we provide evidence that expansion of circulating HSPC coupled to gene therapy can overcome the limit of stem cell harvest in osteopetrotic patients, thus opening the way to future gene-based treatment of skeletal diseases caused by BM fibrosis.
format Online
Article
Text
id pubmed-7776247
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Fondazione Ferrata Storti
record_format MEDLINE/PubMed
spelling pubmed-77762472021-01-07 Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis Capo, Valentina Penna, Sara Merelli, Ivan Barcella, Matteo Scala, Serena Basso-Ricci, Luca Draghici, Elena Palagano, Eleonora Zonari, Erika Desantis, Giacomo Uva, Paolo Cusano, Roberto Sergi, Lucia Sergi Crisafulli, Laura Moshous, Despina Stepensky, Polina Drabko, Katarzyna Kaya, Zühre Unal, Ekrem Gezdiric, Alper Menna, Giuseppe Serafini, Marta Aiuti, Alessandro Locatelli, Silvia Laura Carlo-Stella, Carmelo Schulz, Ansgar S. Ficara, Francesca Sobacchi, Cristina Gentner, Bernhard Villa, Anna Haematologica Article Allogeneic hematopoietic stem cell transplantation is the treatment of choice for autosomal recessive osteopetrosis caused by defects in the TCIRG1 gene. Despite recent progress in conditioning, an important number of patients are not eligible for allogeneic stem cell transplantation because of the severity of the disease and significant transplant-related morbidity. We exploited peripheral CD34(+) cells, known to circulate at high frequency in the peripheral blood of TCIRG1-deficient patients, as a novel cell source for autologous transplantation of gene corrected cells. Detailed phenotypical analysis showed that circulating CD34(+) cells have a cellular composition that resembles bone marrow (BM), supporting their use in gene therapy protocols. Transcriptomic profile revealed enrichment in genes expressed by hematopoietic stem and progenitor cells (HSPC). To overcome the limit of BM harvest/HSPC mobilization and serial blood drawings in TCIRG1 patients, we applied UM171-based ex vivo expansion of HSPC coupled with lentiviral gene transfer. Circulating CD34(+) cells from TCIRG1- defective patients were transduced with a clinically-optimized lentiviral vector expressing TCIRG1 under the control of phosphoglycerate promoter and expanded ex vivo. Expanded cells maintained long-term engraftment capacity and multi-lineage repopulating potential when transplanted in vivo both in primary and secondary NOD scid gamma common chain (NSG) recipients. Moreover, when CD34(+) cells were differentiated in vitro, genetically corrected osteoclasts resorbed the bone efficiently. Overall, we provide evidence that expansion of circulating HSPC coupled to gene therapy can overcome the limit of stem cell harvest in osteopetrotic patients, thus opening the way to future gene-based treatment of skeletal diseases caused by BM fibrosis. Fondazione Ferrata Storti 2020-01-16 /pmc/articles/PMC7776247/ /pubmed/31949009 http://dx.doi.org/10.3324/haematol.2019.238261 Text en Copyright© 2021 Ferrata Storti Foundation http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License (by-nc 4.0) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
Capo, Valentina
Penna, Sara
Merelli, Ivan
Barcella, Matteo
Scala, Serena
Basso-Ricci, Luca
Draghici, Elena
Palagano, Eleonora
Zonari, Erika
Desantis, Giacomo
Uva, Paolo
Cusano, Roberto
Sergi, Lucia Sergi
Crisafulli, Laura
Moshous, Despina
Stepensky, Polina
Drabko, Katarzyna
Kaya, Zühre
Unal, Ekrem
Gezdiric, Alper
Menna, Giuseppe
Serafini, Marta
Aiuti, Alessandro
Locatelli, Silvia Laura
Carlo-Stella, Carmelo
Schulz, Ansgar S.
Ficara, Francesca
Sobacchi, Cristina
Gentner, Bernhard
Villa, Anna
Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title_full Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title_fullStr Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title_full_unstemmed Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title_short Expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of TCIRG1 osteopetrosis
title_sort expanded circulating hematopoietic stem/ progenitor cells as novel cell source for the treatment of tcirg1 osteopetrosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7776247/
https://www.ncbi.nlm.nih.gov/pubmed/31949009
http://dx.doi.org/10.3324/haematol.2019.238261
work_keys_str_mv AT capovalentina expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT pennasara expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT merelliivan expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT barcellamatteo expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT scalaserena expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT bassoricciluca expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT draghicielena expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT palaganoeleonora expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT zonarierika expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT desantisgiacomo expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT uvapaolo expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT cusanoroberto expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT sergiluciasergi expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT crisafullilaura expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT moshousdespina expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT stepenskypolina expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT drabkokatarzyna expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT kayazuhre expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT unalekrem expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT gezdiricalper expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT mennagiuseppe expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT serafinimarta expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT aiutialessandro expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT locatellisilvialaura expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT carlostellacarmelo expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT schulzansgars expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT ficarafrancesca expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT sobacchicristina expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT gentnerbernhard expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis
AT villaanna expandedcirculatinghematopoieticstemprogenitorcellsasnovelcellsourceforthetreatmentoftcirg1osteopetrosis