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Mice Placental ECM Components May Provide A Three-Dimensional Placental Microenvironment.
Barreto, Rodrigo da Silva Nunes; Carreira, Ana Claudia Oliveira; Silva, Mônica Duarte da; Fernandes, Leticia Alves; Ribeiro, Rafaela Rodrigues; Almeida, Gustavo Henrique Doná Rodrigues; Pantoja, Bruna Tassia Dos Santos; Nishiyama Junior, Milton Yutaka; Miglino, Maria Angelica.
Afiliação
  • Barreto RDSN; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Carreira ACO; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Silva MDD; Center for Natural and Human Sciences (CCNH), Federal University of ABC, Santo André CEP 09210-580, Brazil.
  • Fernandes LA; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Ribeiro RR; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Almeida GHDR; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Pantoja BTDS; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Nishiyama Junior MY; Department of Surgery, School of Veterinary Medicine and Animal Science, University of São Paulo Cidade Universitária, Butantã CEP 05508-270, Brazil.
  • Miglino MA; Laboratory for Applied Toxinology, CeTIS, Butantan Institute, São Paulo CEP 05503-900, Brazil.
Bioengineering (Basel) ; 10(1)2022 Dec 22.
Article em En | MEDLINE | ID: mdl-36671588
ABSTRACT
Bioethical limitations impair deeper studies in human placental physiology, then most studies use human term placentas or murine models. To overcome these challenges, new models have been proposed to mimetize the placental three-dimensional microenvironment. The placental extracellular matrix plays an essential role in several processes, being a part of the establishment of materno-fetal interaction. Regarding these aspects, this study aimed to investigate term mice placental ECM components, highlighting its collagenous and non-collagenous content, and proposing a potential three-dimensional model to mimetize the placental microenvironment. For that, 18.5-day-old mice placenta, both control and decellularized (n = 3 per group) were analyzed on Orbitrap Fusion Lumos spectrometer (ThermoScientific) and LFQ intensity generated on MaxQuant software. Proteomic analysis identified 2317 proteins. Using ECM and cell junction-related ontologies, 118 (5.1%) proteins were filtered. Control and decellularized conditions had no significant differential expression on 76 (64.4%) ECM and cell junction-related proteins. Enriched ontologies in the cellular component domain were related to cell junction, collagen and lipoprotein particles, biological process domain, cell adhesion, vasculature, proteolysis, ECM organization, and molecular function. Enriched pathways were clustered in cell adhesion and invasion, and labyrinthine vasculature regulation. These preserved ECM proteins are responsible for tissue stiffness and could support cell anchoring, modeling a three-dimensional structure that may allow placental microenvironment reconstruction.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article