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Identification of a Murine Erythroblast Subpopulation Enriched in Enucleating Events by Multi-spectral Imaging Flow Cytometry
Published on: June 6, 2014
Identification and characterization of planarian multinucleated cells in Schmidtea mediterranea using imaging flow
Annasha Dutta1, Anna Samelak-Czajka1, Magdalena Trybus1
1Laboratory of Single Cell Analyses, Institute of Bioorganic Chemistry Polish Academy of Sciences, Poznań, Poland.
Abstract:
Cellular polyploidy plays critical roles in both pathological and physiological processes. While extensively studied in organisms like Drosophila and zebrafish, and mammalian tissues such as the liver, kidney and heart, the existence of multinucleated polyploid cells in planarians, particularly asexual species, remains poorly understood. Here, we describe a novel approach combining imaging flow cytometry and fluorescence-activated cell sorting, to identify and characterize a stable population of presumed multinucleated cells in Schmidtea mediterranea under both regenerating and non-regenerating conditions. Insights into nuclearity, along with cell and nuclear size, suggest that these cells are formed through mechanisms involving cell fusion and/or endomitosis. Furthermore, analysis of marker gene expression patterns in the population containing multinucleated cells, upon neoblast depletion, suggests that they are likely undifferentiated. In addition, knockdown of the late epidermal progenitor marker Agat-1 followed by AGAT-1 custom antibody-based staining of cell populations indicates that the majority of MuNs are possibly late epidermal progenitor cells. Overall, the new findings presented here pave the way for further exploration into the biological significance of multinucleated cells in planarian regeneration and tissue maintenance.
Insights
Researchers identified multinucleated cells in planarians using advanced techniques. These cells, potentially involved in regeneration, may be undifferentiated or late epidermal progenitors.
Area of Science:
- Cell biology
- Regenerative medicine
- Invertebrate zoology
Background:
- Cellular polyploidy is crucial in various physiological and pathological processes.
- Multinucleated cells are well-studied in model organisms and mammalian tissues, but poorly understood in planarians.
Purpose of the Study:
- To identify and characterize multinucleated cells in the planarian *Schmidtea mediterranea*.
- To investigate the potential origin and cell fate of these multinucleated cells.
Main Methods:
- Imaging flow cytometry and fluorescence-activated cell sorting (FACS) were employed.
- Analysis of nuclearity, cell/nuclear size, marker gene expression, and knockdown of *Agat-1* were performed.
Main Results:
- A stable population of presumed multinucleated cells was identified in *S. mediterranea*.
- These cells likely originate from cell fusion and/or endomitosis.
- The multinucleated cells appear to be undifferentiated and potentially late epidermal progenitor cells.
Conclusions:
- This study presents a novel method for identifying multinucleated cells in planarians.
- The findings offer insights into the biological significance of multinucleated cells in planarian regeneration and tissue maintenance.

