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Deconvolution of spatial sequencing provides accurate characterization of hESC-derived DA transplants in vivo.
Rájová, Jana; Davidsson, Marcus; Avallone, Martino; Hartnor, Morgan; Aldrin-Kirk, Patrick; Cardoso, Tiago; Nolbrant, Sara; Mollbrink, Annelie; Storm, Petter; Heuer, Andreas; Parmar, Malin; Björklund, Tomas.
Afiliação
  • Rájová J; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Davidsson M; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Avallone M; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Hartnor M; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Aldrin-Kirk P; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Cardoso T; Developmental and Regenerative Neurobiology, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Nolbrant S; Developmental and Regenerative Neurobiology, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Mollbrink A; Science for Life Laboratory, Division of Gene Technology, KTH Royal Institute of Technology, 106 91 Stockholm, Sweden.
  • Storm P; Developmental and Regenerative Neurobiology, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Heuer A; Behavioural Neuroscience Laboratory, Department of Experimental Medical Sciences, Lund University, 221 84 Lund, Sweden.
  • Parmar M; Developmental and Regenerative Neurobiology, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
  • Björklund T; Molecular Neuromodulation, Department of Experimental Medical Science, Lund University, 221 84 Lund, Sweden.
Mol Ther Methods Clin Dev ; 29: 381-394, 2023 Jun 08.
Article em En | MEDLINE | ID: mdl-37251982
ABSTRACT
Cell therapy for Parkinson's disease has experienced substantial growth in the past decades with several ongoing clinical trials. Despite increasing refinement of differentiation protocols and standardization of the transplanted neural precursors, the transcriptomic analysis of cells in the transplant after its full maturation in vivo has not been thoroughly investigated. Here, we present spatial transcriptomics analysis of fully differentiated grafts in their host tissue. Unlike earlier transcriptomics analyses using single-cell technologies, we observe that cells derived from human embryonic stem cells (hESCs) in the grafts adopt mature dopaminergic signatures. We show that the presence of phenotypic dopaminergic genes, which were found to be differentially expressed in the transplants, is concentrated toward the edges of the grafts, in agreement with the immunohistochemical analyses. Deconvolution shows dopamine neurons being the dominating cell type in many features beneath the graft area. These findings further support the preferred environmental niche of TH-positive cells and confirm their dopaminergic phenotype through the presence of multiple dopaminergic markers.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Guideline / Prognostic_studies Idioma: En Revista: Mol Ther Methods Clin Dev Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Suécia País de publicação: EEUU / ESTADOS UNIDOS / ESTADOS UNIDOS DA AMERICA / EUA / UNITED STATES / UNITED STATES OF AMERICA / US / USA

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Tipo de estudo: Guideline / Prognostic_studies Idioma: En Revista: Mol Ther Methods Clin Dev Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Suécia País de publicação: EEUU / ESTADOS UNIDOS / ESTADOS UNIDOS DA AMERICA / EUA / UNITED STATES / UNITED STATES OF AMERICA / US / USA