Early Impairment of Paracrine and Phenotypic Features in Resident Cardiac Mesenchymal Stromal Cells after Thoracic Radiotherapy

Author:

Picchio Vittorio1ORCID,Gaetani Roberto2ORCID,Pagano Francesca3ORCID,Derevyanchuk Yuriy2,Pagliarosi Olivia2,Floris Erica4,Cozzolino Claudia4,Bernava Giacomo5,Bordin Antonella4ORCID,Rocha Filipe6ORCID,Pereira Ana Rita Simões6ORCID,Ministro Augusto6ORCID,Pinto Ana Teresa6ORCID,De Falco Elena47ORCID,Serino Gianpaolo8ORCID,Massai Diana89ORCID,Tamarat Radia10,Pesce Maurizio5ORCID,Santos Susana Constantino Rosa6ORCID,Messina Elisa2ORCID,Chimenti Isotta47ORCID

Affiliation:

1. Department of Angio Cardio Neurology, IRCCS Neuromed, 86077 Pozzilli, Italy

2. Department of Molecular Medicine, Sapienza University, 00161 Roma, Italy

3. Institute of Biochemistry and Cell Biology, National Council of Research (IBBC-CNR), 00015 Monterotondo, Italy

4. Department of Medical Surgical Sciences and Biotechnologies, Sapienza University, 04100 Latina, Italy

5. Centro Cardiologico Monzino, IRCCS, 20138 Milano, Italy

6. Centro Cardiovascular da Universidade de Lisboa (CCUL@RISE), Lisbon School of Medicine, Universidade de Lisboa, 1649-028 Lisbon, Portugal

7. Mediterranea Cardiocentro, 80122 Napoli, Italy

8. Department of Mechanical and Aerospace Engineering, Politecnico di Torino, 10129 Torino, Italy

9. Interuniversity Center for the Promotion of the 3Rs Principles in Teaching and Research, 10129 Torino, Italy

10. Institut de Radioprotection et de Sûreté Nucléaire (IRSN), 92260 Fontenay-aux-Roses, France

Abstract

Radiotherapy-induced cardiac toxicity and consequent diseases still represent potential severe late complications for many cancer survivors who undergo therapeutic thoracic irradiation. We aimed to assess the phenotypic and paracrine features of resident cardiac mesenchymal stromal cells (CMSCs) at early follow-up after the end of thoracic irradiation of the heart as an early sign and/or mechanism of cardiac toxicity anticipating late organ dysfunction. Resident CMSCs were isolated from a rat model of fractionated thoracic irradiation with accurate and clinically relevant heart dosimetry that developed delayed dose-dependent cardiac dysfunction after 1 year. Cells were isolated 6 and 12 weeks after the end of radiotherapy and fully characterized at the transcriptional, paracrine, and functional levels. CMSCs displayed several altered features in a dose- and time-dependent trend, with the most impaired characteristics observed in those exposed in situ to the highest radiation dose with time. In particular, altered features included impaired cell migration and 3D growth and a and significant association of transcriptomic data with GO terms related to altered cytokine and growth factor signaling. Indeed, the altered paracrine profile of CMSCs derived from the group at the highest dose at the 12-week follow-up gave significantly reduced angiogenic support to endothelial cells and polarized macrophages toward a pro-inflammatory profile. Data collected in a clinically relevant rat model of heart irradiation simulating thoracic radiotherapy suggest that early paracrine and transcriptional alterations of the cardiac stroma may represent a dose- and time-dependent biological substrate for the delayed cardiac dysfunction phenotype observed in vivo.

Publisher

MDPI AG

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