Utilize este identificador para referenciar este registo: http://hdl.handle.net/10362/116404
Título: Characterization of Coelomic Fluid Cell Types in the Starfish Marthasterias glacialis Using a Flow Cytometry/Imaging Combined Approach
Autor: Andrade, Claúdia
Oliveira, Bárbara
Guatelli, Silvia
Martinez, Pedro
Simões, Beatriz
Bispo, Claúdia
Ferrario, Cinzia
Bonasoro, Francesco
Rino, José
Sugni, Michela
Gardner, Rui
Zilhão, Rita
Coelho, Ana Varela
Palavras-chave: coelomocytes
echinoderms
flow cytometry and imaging flow cytometry
fluorescence and transmission electron microscopy
Marthasterias glacialis
Immunology and Allergy
Immunology
Data: 18-Mar-2021
Resumo: Coelomocytes is the generic name for a collection of cellular morphotypes, present in many coelomate animals, and highly variable among echinoderm classes. The roles attributed to the major types of these free circulating cells present in the coelomic fluid of echinoderms include immune response, phagocytic digestion and clotting. Our main aim in this study was to characterize coelomocytes found in the coelomic fluid of Marthasterias glacialis (class Asteroidea) by using a combination of flow cytometry (FC), imaging flow cytometry (IFC) and fluorescence plus transmission electron microscopy (TEM). Two coelomocyte populations (P1 and P2) identified through flow cytometry were subsequently studied in terms of abundance, morphology, ultrastructure, cell viability and cell cycle profiles. Ultrastructurally, P2 diploid cells were present as two main morphotypes, similar to phagocytes and vertebrate thrombocytes, whereas the smaller P1 cellular population was characterized by low mitotic activity, a relatively undifferentiated cytotype and a high nucleus/cytoplasm ratio. In the present study we could not rule out possible similarities between haploid P1 cells and stem-cell types in other animals. Additionally, we report the presence of two other morphotypes in P2 that could only be detected by fluorescence microscopy, as well as a morphotype revealed via combined microscopy/FC. This integrative experimental workflow combined cells physical separation with different microscopic image capture technologies, enabling us to better tackle the characterization of the heterogeneous composition of coelomocytes populations.
Descrição: Funding: To the “Maristem COST Action” (CA16203), supported by COST (European Cooperation in Science and Technology), for funding PM STSM visits (February 2019 and November 2020) to the AVC Laboratory.
Peer review: yes
URI: http://hdl.handle.net/10362/116404
DOI: https://doi.org/10.3389/fimmu.2021.641664
ISSN: 1664-3224
Aparece nas colecções:NMS: CEDOC - Artigos em revista internacional com arbitragem científica

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