Epigenetic modulators promote mesenchymal stem cell phenotype switches

被引:11
作者
Alexanian, Arshak R. [1 ]
机构
[1] Cell Reprogramming & Therapeut LLC, Waukesha, WI 53186 USA
关键词
Plasticity; Reprogramming; Epigenetics; Chromatin; Transdifferentiation; NEURAL-LIKE CELLS; CHROMATIN MODIFYING ENZYMES; BONE-MARROW; FAT-CELLS; TRANSDIFFERENTIATION; DEDIFFERENTIATION; DIFFERENTIATION; INHIBITION; GENERATION; PLASTICITY;
D O I
10.1016/j.biocel.2015.04.010
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Discoveries in recent years have suggested that some tissue specific adult stem cells in mammals might have the ability to differentiate into cell types from different germ layers. This phenomenon has been referred to as stem cell transdifferentiation or plasticity. Despite controversy, the current consensus holds that transdifferentiation does occur in mammals, but only within a limited range. Understanding the mechanisms that underlie the switches in phenotype and development of the methods that will promote such type of conversions can open up endless possibilities for regenerative medicine. Epigenetic control contributes to various processes that lead to cellular plasticity and DNA and histone covalent modifications play a key role in these processes. Recently, we have been able to convert human mesenchymal stem cells (hMSCs) into neural-like cells by exposing cells to epigenetic modifiers and neural inducing factors. The goal of this study was to investigate the stability and plasticity of these transdifferentiated cells. To this end, neurally induced MSCs (NI-hMSCs) were exposed to adipocyte inducing factors. Grown for 24-48 h in fat induction media NI-hMSCs reversed their morphology into fibroblast-like cells and regained their proliferative properties. After 3 weeks approximately 6% of hMSCs differentiated into multilocular or plurivacuolar adipocyte cells that demonstrated by Oil Red 0 staining. Re-exposure of these cultures or the purified adipocytes to neural induction medium induced the cells to re-differentiate into neuronal-like cells. These data suggest that cell plasticity can be manipulated by the combination of small molecule modulators of chromatin modifying enzymes and specific cell signaling pathways. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:190 / 194
页数:5
相关论文
共 35 条
[1]   Epigenetic modifiers promote efficient generation of neural-like cells from bone marrow-derived mesenchymal cells grown in neural environment [J].
Alexanian, Arshak R. .
JOURNAL OF CELLULAR BIOCHEMISTRY, 2007, 100 (02) :362-371
[2]   Enhancing the efficiency of direct reprogramming of human mesenchymal stem cells into mature neuronal-like cells with the combination of small molecule modulators of chromatin modifying enzymes, SMAD signaling and cyclic adenosine monophosphate levels [J].
Alexanian, Arshak R. ;
Liu, Qing-song ;
Zhang, Zhiying .
INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2013, 45 (08) :1633-1638
[3]   An efficient method for generation of neural-like cells from adult human bone marrow-derived mesenchymal stem cells [J].
Alexanian, Arshak R. .
REGENERATIVE MEDICINE, 2010, 5 (06) :891-900
[4]   Highly efficient neural conversion of human ES and iPS cells by dual inhibition of SMAD signaling [J].
Chambers, Stuart M. ;
Fasano, Christopher A. ;
Papapetrou, Eirini P. ;
Tomishima, Mark ;
Sadelain, Michel ;
Studer, Lorenz .
NATURE BIOTECHNOLOGY, 2009, 27 (03) :275-280
[5]   Induction of hepatic differentiation of mouse bone marrow stromal stem cells by the histone deacetylase inhibitor VPA [J].
Chen, Ye ;
Pan, Ruo-Lang ;
Zhang, Xiao-Lei ;
Shao, Jian-Zhong ;
Xiang, Li-Xin ;
Dong, Xue-Jun ;
Zhang, Guo-Rong .
JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2009, 13 (8B) :2582-2592
[6]   Ectoderm to mesoderm lineage switching during axolotl tail regeneration [J].
Echeverri, K ;
Tanaka, EM .
SCIENCE, 2002, 298 (5600) :1993-1996
[7]   Dedifferentiation, Transdifferentiation, and Reprogramming: Future Directions in Regenerative Medicine [J].
Eguizabal, Cristina ;
Montserrat, Nuria ;
Veiga, Anna ;
Belmonte, Juan Carlos Izpisua .
SEMINARS IN REPRODUCTIVE MEDICINE, 2013, 31 (01) :82-94
[8]   Enhanced dopamine release by mesenchymal stem cells reprogrammed neuronally by the modulators of SMAD signaling, chromatin modifying enzymes, and cyclic adenosine monophosphate levels [J].
Funk, Ryan T. ;
Alexanian, Arshak R. .
TRANSLATIONAL RESEARCH, 2013, 162 (05) :317-323
[9]   Transformation of Human Mesenchymal Cells and Skin Fibroblasts into Hematopoietic Cells [J].
Harris, David M. ;
Hazan-Haley, Inbal ;
Coombes, Kevin ;
Bueso-Ramos, Carlos ;
Liu, Jie ;
Liu, Zhiming ;
Li, Ping ;
Ravoori, Murali ;
Abruzzo, Lynne ;
Han, Lin ;
Singh, Sheela ;
Sun, Michael ;
Kundra, Vikas ;
Kurzrock, Razelle ;
Estrov, Zeev .
PLOS ONE, 2011, 6 (06)
[10]   Molecular and cellular aspects of amphibian lens regeneration [J].
Henry, Jonathan J. ;
Tsonis, Panagiotis A. .
PROGRESS IN RETINAL AND EYE RESEARCH, 2010, 29 (06) :543-555