Cargando…

Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment

Regulatory T cells (Tregs) are emerging as a new cell-based therapy in solid organ transplantation. Adoptive transfer of Tregs has been shown preclinically to protect from graft rejection, and the safety of Treg therapy has been demonstrated in clinical trials. Despite these successes, the in vivo d...

Descripción completa

Detalles Bibliográficos
Autores principales: Jacob, Jacinta, Nadkarni, Suchita, Volpe, Alessia, Peng, Qi, Tung, Sim L., Hannen, Rosalind F., Mohseni, Yasmin R., Scotta, Cristiano, Marelli-Berg, Federica M., Lechler, Robert I., Smyth, Lesley A., Fruhwirth, Gilbert O., Lombardi, Giovanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7811063/
https://www.ncbi.nlm.nih.gov/pubmed/33511246
http://dx.doi.org/10.1016/j.omtm.2020.12.003
_version_ 1783637432507301888
author Jacob, Jacinta
Nadkarni, Suchita
Volpe, Alessia
Peng, Qi
Tung, Sim L.
Hannen, Rosalind F.
Mohseni, Yasmin R.
Scotta, Cristiano
Marelli-Berg, Federica M.
Lechler, Robert I.
Smyth, Lesley A.
Fruhwirth, Gilbert O.
Lombardi, Giovanna
author_facet Jacob, Jacinta
Nadkarni, Suchita
Volpe, Alessia
Peng, Qi
Tung, Sim L.
Hannen, Rosalind F.
Mohseni, Yasmin R.
Scotta, Cristiano
Marelli-Berg, Federica M.
Lechler, Robert I.
Smyth, Lesley A.
Fruhwirth, Gilbert O.
Lombardi, Giovanna
author_sort Jacob, Jacinta
collection PubMed
description Regulatory T cells (Tregs) are emerging as a new cell-based therapy in solid organ transplantation. Adoptive transfer of Tregs has been shown preclinically to protect from graft rejection, and the safety of Treg therapy has been demonstrated in clinical trials. Despite these successes, the in vivo distribution and persistence of adoptively transferred Tregs remained elusive, which hampers clinical translation. Here we isolated human Tregs using a GMP-compatible protocol and lentivirally transduced them with the human sodium iodide symporter to render them traceable in vivo by radionuclide imaging. Engineered human Tregs were characterized for phenotype, survival, suppressive capacity, and reporter function. To study their trafficking behavior, they were subsequently administered to humanized mice with human skin transplants. Traceable Tregs were quantified in skin grafts by non-invasive nano-single-photon emission computed tomography (nanoSPECT)/computed tomography (CT) for up to 40 days, and the results were validated ex vivo. Using this approach, we demonstrated that Treg trafficking to skin grafts was regulated by the presence of recipient Gr-1(+) innate immune cells. We demonstrated the utility of radionuclide reporter gene-afforded quantitative Treg in vivo tracking, addressing a fundamental need in Treg therapy development and offering a clinically compatible methodology for future Treg therapy imaging in humans.
format Online
Article
Text
id pubmed-7811063
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher American Society of Gene & Cell Therapy
record_format MEDLINE/PubMed
spelling pubmed-78110632021-01-27 Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment Jacob, Jacinta Nadkarni, Suchita Volpe, Alessia Peng, Qi Tung, Sim L. Hannen, Rosalind F. Mohseni, Yasmin R. Scotta, Cristiano Marelli-Berg, Federica M. Lechler, Robert I. Smyth, Lesley A. Fruhwirth, Gilbert O. Lombardi, Giovanna Mol Ther Methods Clin Dev Original Article Regulatory T cells (Tregs) are emerging as a new cell-based therapy in solid organ transplantation. Adoptive transfer of Tregs has been shown preclinically to protect from graft rejection, and the safety of Treg therapy has been demonstrated in clinical trials. Despite these successes, the in vivo distribution and persistence of adoptively transferred Tregs remained elusive, which hampers clinical translation. Here we isolated human Tregs using a GMP-compatible protocol and lentivirally transduced them with the human sodium iodide symporter to render them traceable in vivo by radionuclide imaging. Engineered human Tregs were characterized for phenotype, survival, suppressive capacity, and reporter function. To study their trafficking behavior, they were subsequently administered to humanized mice with human skin transplants. Traceable Tregs were quantified in skin grafts by non-invasive nano-single-photon emission computed tomography (nanoSPECT)/computed tomography (CT) for up to 40 days, and the results were validated ex vivo. Using this approach, we demonstrated that Treg trafficking to skin grafts was regulated by the presence of recipient Gr-1(+) innate immune cells. We demonstrated the utility of radionuclide reporter gene-afforded quantitative Treg in vivo tracking, addressing a fundamental need in Treg therapy development and offering a clinically compatible methodology for future Treg therapy imaging in humans. American Society of Gene & Cell Therapy 2020-12-10 /pmc/articles/PMC7811063/ /pubmed/33511246 http://dx.doi.org/10.1016/j.omtm.2020.12.003 Text en © 2021 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Jacob, Jacinta
Nadkarni, Suchita
Volpe, Alessia
Peng, Qi
Tung, Sim L.
Hannen, Rosalind F.
Mohseni, Yasmin R.
Scotta, Cristiano
Marelli-Berg, Federica M.
Lechler, Robert I.
Smyth, Lesley A.
Fruhwirth, Gilbert O.
Lombardi, Giovanna
Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title_full Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title_fullStr Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title_full_unstemmed Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title_short Spatiotemporal in vivo tracking of polyclonal human regulatory T cells (Tregs) reveals a role for innate immune cells in Treg transplant recruitment
title_sort spatiotemporal in vivo tracking of polyclonal human regulatory t cells (tregs) reveals a role for innate immune cells in treg transplant recruitment
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7811063/
https://www.ncbi.nlm.nih.gov/pubmed/33511246
http://dx.doi.org/10.1016/j.omtm.2020.12.003
work_keys_str_mv AT jacobjacinta spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT nadkarnisuchita spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT volpealessia spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT pengqi spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT tungsiml spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT hannenrosalindf spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT mohseniyasminr spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT scottacristiano spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT marellibergfedericam spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT lechlerroberti spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT smythlesleya spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT fruhwirthgilberto spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment
AT lombardigiovanna spatiotemporalinvivotrackingofpolyclonalhumanregulatorytcellstregsrevealsaroleforinnateimmunecellsintregtransplantrecruitment