During the phase of proliferation needed for hematopoietic reconstitution following transplantation, hematopoietic stem/progenitor cells (HSPC) must express genes involved in stem cell self-renewal. We investigated the expression of genes relevant for self-renewal and expansion of HSPC (operationally defined as CD34+ cells) in steady state and after transplantation. Specifically, we evaluated the expression of ninety-one genes that were analyzed by real-time PCR in CD34+ cells isolated from (i) 12 samples from umbilical cord blood (UCB); (ii) 15 samples from bone marrow healthy donors; (iii) 13 samples from bone marrow after umbilical cord blood hematopoietic cells. The results show that transplanted CD34+ cells from adult cells acquire an asset very different from transplanted CD34+ cells from cord blood. Multivariate machine learning analysis (MMLA) showed that four specific gene signatures can be obtained by comparing the four types of CD34+ cells. In several, but not all cases, transplanted HSPC from UCB overexpress reprogramming genes. However, these remarkable changes do not alter the commitment to hematopoietic lineage. Overall, these results reveal undisclosed aspects of transplantation biology.

Cilloni, D., Petiti, J., Campia, V., Podesta, M., Squillario, M., Montserrat, N., Bertaina, A., Sabatini, F., Carturan, S., Berger, M., Saglio, F., Bandini, G., Bonifazi, F., Fagioli, F., Moretta, L., Saglio, G., Verri, A., Barla, A., Locatelli, F., Frassoni, F., Transplantation induces profound changes in the transcriptional asset of hematopoietic stem cells: Identification of specific signatures using machine learning techniques, <<JOURNAL OF CLINICAL MEDICINE>>, 2020; 9 (6): 1-16. [doi:10.3390/jcm9061670] [https://hdl.handle.net/10807/228171]

Transplantation induces profound changes in the transcriptional asset of hematopoietic stem cells: Identification of specific signatures using machine learning techniques

Locatelli, Franco
Writing – Review & Editing
;
2020

Abstract

During the phase of proliferation needed for hematopoietic reconstitution following transplantation, hematopoietic stem/progenitor cells (HSPC) must express genes involved in stem cell self-renewal. We investigated the expression of genes relevant for self-renewal and expansion of HSPC (operationally defined as CD34+ cells) in steady state and after transplantation. Specifically, we evaluated the expression of ninety-one genes that were analyzed by real-time PCR in CD34+ cells isolated from (i) 12 samples from umbilical cord blood (UCB); (ii) 15 samples from bone marrow healthy donors; (iii) 13 samples from bone marrow after umbilical cord blood hematopoietic cells. The results show that transplanted CD34+ cells from adult cells acquire an asset very different from transplanted CD34+ cells from cord blood. Multivariate machine learning analysis (MMLA) showed that four specific gene signatures can be obtained by comparing the four types of CD34+ cells. In several, but not all cases, transplanted HSPC from UCB overexpress reprogramming genes. However, these remarkable changes do not alter the commitment to hematopoietic lineage. Overall, these results reveal undisclosed aspects of transplantation biology.
2020
AREA06 - SCIENZE MEDICHE
Pubblicazione su rivista con Impact Factor
Inglese
Articolo in rivista
Inglese
Cord blood
Hematopoietic stem/progenitor cell
Stem cell transplantation
Settore MED/38 - PEDIATRIA GENERALE E SPECIALISTICA
MDPI
9
6
2020
1
16
16
1670
info:eu-repo/semantics/article
Cilloni, D., Petiti, J., Campia, V., Podesta, M., Squillario, M., Montserrat, N., Bertaina, A., Sabatini, F., Carturan, S., Berger, M., Saglio, F., Bandini, G., Bonifazi, F., Fagioli, F., Moretta, L., Saglio, G., Verri, A., Barla, A., Locatelli, F., Frassoni, F., Transplantation induces profound changes in the transcriptional asset of hematopoietic stem cells: Identification of specific signatures using machine learning techniques, <<JOURNAL OF CLINICAL MEDICINE>>, 2020; 9 (6): 1-16. [doi:10.3390/jcm9061670] [https://hdl.handle.net/10807/228171]
open
262
Cilloni, D.; Petiti, J.; Campia, V.; Podesta, M.; Squillario, M.; Montserrat, N.; Bertaina, A.; Sabatini, F.; Carturan, S.; Berger, M.; Saglio, F.; Ba...espandi
20
art_per_29
03. Contributo in rivista::Articolo in rivista, Nota a sentenza
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