Effect of Composition of Lung Biomimetic Niche on the Mesenchymal Stem Cell Differentiation toward Alveolar Type II Pneumocytes

Author:

Della Sala Francesca1ORCID,di Gennaro Mario12,Lista Gianluca3,Messina Francesco4,Valente Teodoro1,Borzacchiello Assunta1ORCID

Affiliation:

1. Institute of Polymers, Composite and Biomaterials (IPCB) National Research Council (CNR) Viale J.F. Kennedy 54 Naples 80125 Italy

2. Department of Environmental, Biological and Pharmaceutical Sciences and Technologies University of Campania “Luigi Vanvitelli” Via Vivaldi 43 Caserta 81100 Italy

3. Neonatologia e Terapia Intensiva Neonatale Ospedale dei Bambini “Vittore Buzzi” Via Lodovico Castelvetro, 32 Milan 20154 Italy

4. Ospedale Evangelico Betania Via Argine, 604 Naples 80147 Italy

Abstract

AbstractPulmonary niche dynamically orchestrates the signals, such as proliferation or differentiation of mesenchymal stem cells (MSCs), which allows inducing tissue repair. Lung niche includes extracellular matrix (ECM), comprising hyaluronic acid (HA) and collagen (COLL), and several types of MSCs. Impaired ECM, in lung pathologies, makes the promising therapies based on MSCs ineffective, as it results in a reduced attachment and homing of MSCs, precluding their differentiation and viability. To overcome this problem, in this study a pulmonary biomimetic niche based on HA and COLL hydrogel is developed, with the specific aim to elucidate the role of COLL and HA/COLL semi‐interpenetrating polymer networks (SIPNs) in directing the differentiation of MSCs into Alveolar Type II (ATII) cells. The effect of low (L), medium (M), and high (H) molecular weight (MW) HA is investigated, both like structural component of the SIPNs hydrogel and like trophic factor in cell culture media solution. HA in the culture media significantly improves surfactant protein (SP)‐C expression (≈2 ng mL−1), without showing difference in the MW tested, compared to control only (≈1 ng mL−1). Furthermore, LMWHA/COLL hydrogel promotes the SPC expression (approximately two times) compared to COLL, MMWHA/COLL, and HMWHA/COLL hydrogels.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Biomaterials,Bioengineering,Biotechnology

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