Skip to Main Content (Press Enter)

Logo UNIMORE
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills

UNI-FIND
Logo UNIMORE

|

UNI-FIND

unimore.it
  • ×
  • Home
  • Degree programmes
  • Modules
  • Jobs
  • People
  • Research Outputs
  • Academic units
  • Third Mission
  • Projects
  • Skills
  1. Research Outputs

Unravelling Heterogeneity of Amplified Human Amniotic Fluid Stem Cells Sub-Populations

Academic Article
Publication Date:
2021
Short description:
Unravelling Heterogeneity of Amplified Human Amniotic Fluid Stem Cells Sub-Populations / Casciaro, Francesca; Zia, Silvia; Forcato, Mattia; Zavatti, Manuela; Beretti, Francesca; Bertucci, Emma; Zattoni, Andrea; Reschiglian, Pierluigi; Alviano, Francesco; Bonsi, Laura; Follo, Matilde Yung; Demaria, Marco; Roda, Barbara; Maraldi, Tullia. - In: CELLS. - ISSN 2073-4409. - 10:1(2021), pp. 158-170. [10.3390/cells10010158]
abstract:
Human amniotic fluid stem cells (hAFSCs) are broadly multipotent immature progenitor cells with high self-renewal and no tumorigenic properties. These cells, even amplified, present very variable morphology, density, intracellular composition and stemness potential, and this heterogeneity can hinder their characterization and potential use in regenerative medicine. Celector® (Stem Sel ltd.) is a new technology that exploits the Non-Equilibrium Earth Gravity Assisted Field Flow Fractionation principles to characterize and label-free sort stem cells based on their solely physical characteristics without any manipulation. Viable cells are collected and used for further studies or direct applications. In order to understand the intrapopulation heterogeneity, various fractions of hAFSCs were isolated using the Celector® profile and live imaging feature. The gene expression profile of each fraction was analysed using whole-transcriptome sequencing (RNAseq). Gene Set Enrichment Analysis identified significant differential expression in pathways related to Stemness, DNA repair, E2F targets, G2M checkpoint, hypoxia, EM transition, mTORC1 signalling, Unfold Protein Response and p53 signalling. These differences were validated by RT-PCR, immunofluorescence and differentiation assays. Interestingly, the different fractions showed distinct and unique stemness properties. These results suggest the existence of deep intra-population differences that can influence the stemness profile of hAFSCs. This study represents a proof-of-concept of the importance of selecting certain cellular fractions with the highest potential to use in regenerative medicine.
Iris type:
Articolo su rivista
Keywords:
amniotic fluid stem cells; sorting; stemness; transcriptome
List of contributors:
Casciaro, Francesca; Zia, Silvia; Forcato, Mattia; Zavatti, Manuela; Beretti, Francesca; Bertucci, Emma; Zattoni, Andrea; Reschiglian, Pierluigi; Alviano, Francesco; Bonsi, Laura; Follo, Matilde Yung; Demaria, Marco; Roda, Barbara; Maraldi, Tullia
Authors of the University:
BERETTI Francesca
BERTUCCI Emma
MARALDI Tullia
ZAVATTI Manuela
Handle:
https://iris.unimore.it/handle/11380/1227496
Full Text:
https://iris.unimore.it//retrieve/handle/11380/1227496/481760/cells-10-00158.pdf
Published in:
CELLS
Journal
  • Use of cookies

Powered by VIVO | Designed by Cineca | 26.5.2.0