Mesenchymal adipose stem cells maintain the capacity for differentiation and survival in culture beyond the long term

被引:4
作者
Trejo-Iriarte, Cynthia G. [1 ]
Ortega, Miguel A. [2 ,3 ]
Asunsolo, Angel [3 ,4 ]
Gomez-Clavel, Jose F. [5 ]
Munoz, Alejandro Garcia [1 ]
Alvarez-Mon, Melchor [2 ,3 ,6 ]
Bujan, Julia [2 ,3 ]
Acero, Julio [3 ,7 ]
Garcia-Honduvilla, Natalio [2 ,3 ]
机构
[1] Univ Nacl Autonoma Mexico, Iztacala Higher Studies Sch, Almaraz Dent Res Lab, Res Grp Stem Cells & Tissue Engn,Dentist Surg Stu, Mexico City, DF, Mexico
[2] Univ Alcala, Fac Med & Hlth, Dept Med & Med Special, Alcala De Henares, Spain
[3] Ramon Y Cajal Inst Healthcare Res IRYCIS, Madrid, Spain
[4] Univ Alcala, Fac Med & Hlth Sci, Dept Surg Med & Social Sci, Alcala De Henares, Spain
[5] Univ Nacl Autonoma Mexico, Sch Higher Studies Iztacala, Lab Res Educ & Dent, Dentist Surg Studies, Mexico City, DF, Mexico
[6] Univ Hosp Principe Asturias, Immune Syst Dis Rheumatol & Oncol Serv, CIBEREHD, Alcala De Henares, Spain
[7] Alcala Univ, Ramon Y Cajal Univ Hosp, Dept Oral & Maxillofacial Surg, Madrid, Spain
关键词
Mesenchymal adipose stem cells; autophagy; adipogenic; chondrogenic; osteogenic differentiation; rat; cell culture; Alcala de Henares; DERMAL PAPILLA CELLS; STROMAL CELLS; TISSUE; AUTOPHAGY; GROWTH; BONE; ORIGIN; FETAL;
D O I
10.1080/01478885.2021.1953248
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Mesenchymal cells (MSCs) are considered to be cellular populations of common embryological origin. For clinical research applications, MSCs are expanded and increased with cells obtained from a primary culture. By extracting cells from tissue and encouraging them to reproduce, the stem cell population ends up dominating the culture due to a high proliferation rate and self-renewal. The first subcultures between the third and sixth are chosen in order to obtain the maximum number of cells with optimal differentiation capacity. However, few studies have reported long-term cultivation of MSCs. The objective of this study was to advance the knowledge on the characteristics of MSCs by assessing their capacity for self-renewal and phenotypic maintenance beyond 50 cell subcultures, which is defined as the normal limit for cellular survival. Rat subcutaneous adipose tissue was the source of mesenchymal adipose stem cells (MASCs) cultured over 175 subcultures. Early 1 to 5 and late 25 to 30 subcultures were used to induce cellular differentiation to become adipogenic, chondrogenic and osteogenic connective tissue cells. MASCs characteristics were studied using flow cytometry, transmission electron microscopy (TEM), and immunohistochemical and reverse transcription polymerase chain reaction (RT-qPCR) assays. The MASCs maintained cell differentiation capacity for more than 30 subcultures but lost potentiality starting at 60 up to 175 subcultures. MASCs showed the embryonic phenotypes OCT3/4 and Nanog indefinitely, and developed compensatory mechanisms, such as autophagy, to achieve cell survival over a long time period. Therefore, long-term subcultures showed that MASCs could maintain their potential for clinical research use.
引用
收藏
页码:217 / 233
页数:17
相关论文
共 49 条
[1]   Characterization of human embryonic stem cell lines by the International Stem Cell Initiative [J].
Adewumi, Oluseun ;
Aflatoonian, Behrouz ;
Ahrlund-Richter, Lars ;
Amit, Michal ;
Andrews, Peter W. ;
Beighton, Gemma ;
Bello, Paul A. ;
Benvenisty, Nissim ;
Berry, Lorraine S. ;
Bevan, Simon ;
Blum, Barak ;
Brooking, Justin ;
Chen, Kevin G. ;
Choo, Andre B. H. ;
Churchill, Gary A. ;
Corbel, Marie ;
Damjanov, Ivan ;
Draper, Jon S. ;
Dvorak, Petr ;
Emanuelsson, Katarina ;
Fleck, Roland A. ;
Ford, Angela ;
Gertow, Karin ;
Gertsenstein, Marina ;
Gokhale, Paul J. ;
Hamilton, Rebecca S. ;
Hampl, Ales ;
Healy, Lyn E. ;
Hovatta, Outi ;
Hyllner, Johan ;
Imreh, Marta P. ;
Itskovitz-Eldor, Joseph ;
Jackson, Jamie ;
Johnson, Jacqueline L. ;
Jones, Mark ;
Kee, Kehkooi ;
King, Benjamin L. ;
Knowles, Barbara B. ;
Lako, Majlinda ;
Lebrin, Franck ;
Mallon, Barbara S. ;
Manning, Daisy ;
Mayshar, Yoav ;
Mckay, Ronald D. G. ;
Michalska, Anna E. ;
Mikkola, Milla ;
Mileikovsky, Masha ;
Minger, Stephen L. ;
Moore, Harry D. ;
Mummery, Christine L. .
NATURE BIOTECHNOLOGY, 2007, 25 (07) :803-816
[2]   Transdifferentiation Potentiality of Human Wharton's Jelly Stem Cells Towards Vascular Endothelial Cells [J].
Alaminos, Miguel ;
Perez-Koehler, Barbara ;
Garzon, Ingrid ;
Garcia-Honduvilla, Natalio ;
Romer, Beatriz ;
Campos, Antonio ;
Bujan, Julia .
JOURNAL OF CELLULAR PHYSIOLOGY, 2010, 223 (03) :640-647
[3]   Pullulan microcarriers for bone tissue regeneration [J].
Aydogdu, Hazal ;
Keskin, Dilek ;
Baran, Erkan Turker ;
Tezcaner, Aysen .
MATERIALS SCIENCE & ENGINEERING C-MATERIALS FOR BIOLOGICAL APPLICATIONS, 2016, 63 :439-449
[4]   Mesenchymal stem cells: Revisiting history, concepts, and assays [J].
Bianco, Paolo ;
Robey, Pamela Gehron ;
Simmons, Paul J. .
CELL STEM CELL, 2008, 2 (04) :313-319
[5]   Primary cell culture and morphological characterization of canine dermal papilla cells and dermal fibroblasts [J].
Bratka-Robia, CB ;
Mitteregger, G ;
Aichinger, A ;
Egerbacher, M ;
Helmreich, M ;
Bamberg, E .
VETERINARY DERMATOLOGY, 2002, 13 (01) :1-6
[6]   Strategies for MSC expansion and MSC-based microtissue for bone regeneration [J].
Bunpetch, Varitsara ;
Zhang, Zhi-Yong ;
Zhang, Xiaoan ;
Han, Shan ;
Pan Zongyou ;
Wu, Haoyu ;
Ouyang Hong-Wei .
BIOMATERIALS, 2019, 196 :67-79
[7]   Nanog safeguards pluripotency and mediates germline development [J].
Chambers, Ian ;
Silva, Jose ;
Colby, Douglas ;
Nichols, Jennifer ;
Nijmeijer, Bianca ;
Robertson, Morag ;
Vrana, Jan ;
Jones, Ken ;
Grotewold, Lars ;
Smith, Austin .
NATURE, 2007, 450 (7173) :1230-U8
[8]   Mechanical stretch induces antioxidant responses and osteogenic differentiation in human mesenchymal stem cells through activation of the AMPK-SIRT1 signaling pathway [J].
Chen, Xi ;
Yan, Jinku ;
He, Fan ;
Zhong, Dongyan ;
Yang, Huilin ;
Pei, Ming ;
Luo, Zong-Ping .
FREE RADICAL BIOLOGY AND MEDICINE, 2018, 126 :187-201
[9]  
DIXONSHANIES D, 1975, P SOC EXP BIOL MED, V149, P541
[10]  
Egger Dominik, 2017, Bioengineering-Basel, V4, DOI 10.3390/bioengineering4020047