Extracellular Vesicles from Skeletal Muscle Cells Efficiently Promote Myogenesis in Induced Pluripotent Stem Cells

被引:19
作者
Baci, Denisa [1 ,2 ]
Chirivi, Maila [1 ]
Pace, Valentina [1 ]
Maiullari, Fabio [3 ]
Milan, Marika [1 ]
Rampin, Andrea [1 ]
Somma, Paolo [4 ]
Presutti, Dario [1 ]
Garavelli, Silvia [5 ]
Bruno, Antonino [6 ]
Cannata, Stefano [7 ]
Lanzuolo, Chiara [8 ,9 ]
Gargioli, Cesare [7 ]
Rizzi, Roberto [8 ,9 ]
Bearzi, Claudia [1 ,9 ]
机构
[1] CNR, Inst Biochem & Cell Biol, I-00015 Rome, Italy
[2] Univ Insubria, Dept Biotechnol & Life Sci, I-21100 Varese, Italy
[3] Gemelli Molise Hosp, I-86100 Campobasso, Italy
[4] Humanitas Clin & Res Ctr, Flow Cytometry Core, I-20089 Milan, Italy
[5] CNR, Inst Endocrinol & Oncol Gaetano Salvatore, I-80131 Naples, Italy
[6] IRCCS MultiMed, I-20138 Milan, Italy
[7] Univ Roma Tor Vergata, Dept Biol, I-00133 Rome, Italy
[8] CNR, Inst Biomed Technol, I-20090 Milan, Italy
[9] Fdn Ist Nazl Genet Mol, I-20122 Milan, Italy
关键词
iPSC; extracellular vesicles; pericytes; skeletal muscle; IPS CELLS; DIFFERENTIATION; MYOBLASTS; EXOSOMES; PRECURSORS; DERIVATION; MICRORNAS; PERICYTES; IDENTIFICATION; PROGENITORS;
D O I
10.3390/cells9061527
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The recent advances, offered by cell therapy in the regenerative medicine field, offer a revolutionary potential for the development of innovative cures to restore compromised physiological functions or organs. Adult myogenic precursors, such as myoblasts or satellite cells, possess a marked regenerative capacity, but the exploitation of this potential still encounters significant challenges in clinical application, due to low rate of proliferation in vitro, as well as a reduced self-renewal capacity. In this scenario, induced pluripotent stem cells (iPSCs) can offer not only an inexhaustible source of cells for regenerative therapeutic approaches, but also a valuable alternative for in vitro modeling of patient-specific diseases. In this study we established a reliable protocol to induce the myogenic differentiation of iPSCs, generated from pericytes and fibroblasts, exploiting skeletal muscle-derived extracellular vesicles (EVs), in combination with chemically defined factors. This genetic integration-free approach generates functional skeletal myotubes maintaining the engraftment ability in vivo. Our results demonstrate evidence that EVs can act as biological "shuttles" to deliver specific bioactive molecules for a successful transgene-free differentiation offering new opportunities for disease modeling and regenerative approaches.
引用
收藏
页码:1 / 21
页数:21
相关论文
共 66 条
[1]   Myogenic specification of side population cells in skeletal muscle [J].
Asakura, A ;
Seale, P ;
Girgis-Gabardo, A ;
Rudnicki, MA .
JOURNAL OF CELL BIOLOGY, 2002, 159 (01) :123-134
[2]   Selective Development of Myogenic Mesenchymal Cells from Human Embryonic and Induced Pluripotent Stem Cells [J].
Awaya, Tomonari ;
Kato, Takeo ;
Mizuno, Yuta ;
Chang, Hsi ;
Niwa, Akira ;
Umeda, Katsutsugu ;
Nakahata, Tatsutoshi ;
Heike, Toshio .
PLOS ONE, 2012, 7 (12)
[3]   PlGF-MMP9-engineered iPS cells supported on a PEG-fibrinogen hydrogel scaffold possess an enhanced capacity to repair damaged myocardium [J].
Bearzi, C. ;
Gargioli, C. ;
Baci, D. ;
Fortunato, O. ;
Shapira-Schweitzer, K. ;
Kossover, O. ;
Latronico, M. V. G. ;
Seliktar, D. ;
Condorelli, G. ;
Rizzi, R. .
CELL DEATH & DISEASE, 2014, 5 :e1053-e1053
[4]   Dysfunctional polycomb transcriptional repression contributes to lamin A/C-dependent muscular dystrophy [J].
Bianchi, Andrea ;
Mozzetta, Chiara ;
Pegoli, Gloria ;
Lucini, Federica ;
Valsoni, Sara ;
Rosti, Valentina ;
Petrini, Cristiano ;
Cortesi, Alice ;
Gregoretti, Francesco ;
Antonelli, Laura ;
Oliva, Gennaro ;
De Bardi, Marco ;
Rizzi, Roberto ;
Bodega, Beatrice ;
Pasini, Diego ;
Ferrari, Francesco ;
Bearzi, Claudia ;
Lanzuolo, Chiara .
JOURNAL OF CLINICAL INVESTIGATION, 2020, 130 (05) :2408-2421
[5]   Skeletal muscle pericyte subtypes differ in their differentiation potential [J].
Birbrair, Alexander ;
Zhang, Tan ;
Wang, Zhong-Min ;
Messi, Maria Laura ;
Enikolopov, Grigori N. ;
Mintz, Akiva ;
Delbono, Osvaldo .
STEM CELL RESEARCH, 2013, 10 (01) :67-84
[6]   Derivation and FACS-Mediated Purification of PAX3+/PAX7+Skeletal Muscle Precursors from Human Pluripotent Stem Cells [J].
Borchin, Bianca ;
Chen, Joseph ;
Barberi, Tiziano .
STEM CELL REPORTS, 2013, 1 (06) :620-631
[7]   Pericytes in Development and Pathology of Skeletal Muscle [J].
Cappellari, Ornella ;
Cossu, Giulio .
CIRCULATION RESEARCH, 2013, 113 (03) :341-347
[8]   Differentiation of pluripotent stem cells to muscle fiber to model Duchenne muscular dystrophy [J].
Chal, Jerome ;
Oginuma, Masayuki ;
Al Tanoury, Ziad ;
Gobert, Benedicte ;
Sumara, Olga ;
Hick, Aurore ;
Bousson, Fanny ;
Zidouni, Yasmine ;
Mursch, Caroline ;
Moncuquet, Philippe ;
Tassy, Olivier ;
Vincent, Stephane ;
Miyanari, Ayako ;
Bera, Agata ;
Garnier, Jean-Marie ;
Guevara, Getzabel ;
Hestin, Marie ;
Kennedy, Leif ;
Hayashi, Shinichiro ;
Drayton, Bernadette ;
Cherrier, Thomas ;
Gayraud-Morel, Barbara ;
Gussoni, Emanuela ;
Relaix, Frederic ;
Tajbakhsh, Shahragim ;
Pourquie, Olivier .
NATURE BIOTECHNOLOGY, 2015, 33 (09) :962-U207
[9]   VASCULAR DEVELOPMENT-GENETIC MECHANISMS AND LINKS TO VASCULAR DISEASE [J].
Chappell, John C. ;
Bautch, Victoria L. .
ORGANOGENESIS IN DEVELOPMENT, 2010, 90 :43-72
[10]   Neural cell adhesion molecule (NCAM) and myoblast fusion [J].
Charlton, CA ;
Mohler, WA ;
Blau, HM .
DEVELOPMENTAL BIOLOGY, 2000, 221 (01) :112-119