Mapping of the Human Amniotic Membrane:In SituDetection of Microvesicles Secreted by Amniotic Epithelial Cells

Author:

Basile Mariangela12ORCID,Centurione Lucia1,Passaretta Francesca1,Stati Gianmarco12ORCID,Soritau Olga3,Susman Sergiu45,Gindraux Florelle67,Silini Antonietta8,Parolini Ornella910,Di Pietro Roberta12

Affiliation:

1. Department of Medicine and Aging Sciences, G. d’Annunzio University of Chieti-Pescara, Chieti, Italy

2. StemTeCh Group, Fondazione G. d’Annunzio, University of Chieti-Pescara, Chieti, Italy

3. The Oncology Institute “Prof. Dr. Ion Chiricuta,” Cluj-Napoca, Romania

4. Department of Morphological Sciences-Histology, Iuliu Haţieganu University of Medicine and Pharmacy, Cluj-Napoca, Romania

5. Department of Pathology, IMOGEN Research Center, Cluj-Napoca, Romania

6. Service de Chirurgie Orthopédique, Traumatologique et Plastique, CHU Besançon, Besançon, France

7. Laboratoire de Nanomédecine, Imagerie, Thérapeutique EA 4662, Université Bourgogne Franche-Comté, Besançon, France

8. Centro di Ricerca E. Menni, Fondazione Poliambulanza-Istituto Ospedaliero, Brescia, Italy

9. Department of Life Sciences and Public Health, Università Cattolica del Sacro Cuore, Rome, Italy

10. Fondazione Policlinico Universitario “Agostino Gemelli” IRCCS, Rome, Italy

Abstract

The potential clinical applications of human amniotic membrane (hAM) and human amniotic epithelial cells (hAECs) in the field of regenerative medicine have been known in literature since long. However, it has yet to be elucidated whether hAM contains different anatomical regions with different plasticity and differentiation potential. Recently, for the first time, we highlighted many differences in terms of morphology, marker expression, and differentiation capabilities among four distinct anatomical regions of hAM, demonstrating peculiar functional features in hAEC populations. The aim of this study was to investigate in situ the ultrastructure of the four different regions of hAM by means of transmission electron microscopy (TEM) to deeply understand their peculiar characteristics and to investigate the presence and localization of secretory products because to our knowledge, there are no similar studies in the literature. The results of this study confirm our previous observations of hAM heterogeneity and highlight for the first time that hAM can produce extracellular vesicles (EVs) in a heterogeneous manner. These findings should be considered to increase efficiency of hAM applications within a therapeutic context.

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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