Ultrastructural Assessment of the Differentiation Potential of Human Multipotent Mesenchymal Stromal Cells

被引:4
作者
Pasquinelli, Gianandrea [1 ]
Valente, Sabrina [1 ]
机构
[1] Univ Bologna, DIMES Dept Specialist Diagnost & Expt Med, I-40138 Bologna, Italy
关键词
Artery; differentiation; electron microscopy; mesenchymal stem cells; multipotent; STEM-CELLS; PROGENITOR CELLS; CORD BLOOD;
D O I
10.3109/01913123.2013.810683
中图分类号
TH742 [显微镜];
学科分类号
摘要
Mesenchymal stromal (stem) cells (MSCs) are defined by plastic adherent growth, multiple phenotype expressions, and tripotential mesodermal capability. The authors report examples where electron microscopy (EM) plays a role in stem cell research. MSCs isolated from human arteries are ultrastructurally heterogeneous and become more homogenous after plastic adhesion. EM shows a moderate complement of organelles, mainly mitochondria, rough endoplasmic reticulum, and glycogen aggregates. Clear vacuoles and vesicles are prominent when cells are recovered from plates using an enzymatic method. Since the mesengenic plasticity is the single most important criterion to define a cell as mesenchymal stromal, the authors induced experimentally adipogenic, leiomyogenic, cardiomyogenic, osteo-chondrogenic differentiations. In no case did EM reveal the achievement of complete differentiation. The authors obtained multivacuolated pre-adipocytes and never univacuolated adipocytes typical of mature white fat; myofibroblast and rhabdomyoblast morphotypes, where contractile filaments were not organized to form functional complexes, i.e., dense bodies and sarcomeres. Chondrogenesis and osteogenesis assays resulted in extracellular matrix changes. Collagen and proteoglycan filament/particle deposition was seen when chondrogenesis was promoted. Hydroxyapatite crystals, psammoma bodies, and plaque-like calcified matrix deposits were found in the osteogenic matrix. EM provides detailed structural information on the degree of differentiation induced in stem cells and demonstrates that the methods so far developed are not able to promote complete cell differentiation. These observations contribute to explain why clinical applications with hMSCs have produced results far lower than initial expectations.
引用
收藏
页码:318 / 327
页数:10
相关论文
共 28 条
[1]   Assay validation for the assessment of adipogenesis of multipotential stromal cells-a direct comparison of four different methods [J].
Aldridge, Andrew ;
Kouroupis, Dimitrios ;
Churchman, Sarah ;
English, Anne ;
Ingham, Eileen ;
Jones, Elena .
CYTOTHERAPY, 2013, 15 (01) :89-101
[2]   Mesenchymal stem cells: Isolation and therapeutics [J].
Alhadlaq, A ;
Mao, JJ .
STEM CELLS AND DEVELOPMENT, 2004, 13 (04) :436-448
[3]   Term amniotic membrane is a high throughput source for multipotent mesenchymal stem cells with the ability to differentiate into endothelial cells in vitro [J].
Alviano, Francesco ;
Fossati, Valentina ;
Marchionni, Cosetta ;
Arpinati, Mario ;
Bonsi, Laura ;
Franchina, Michele ;
Lanzoni, Giacomo ;
Cantoni, Silvia ;
Cavallini, Claudia ;
Bianchi, Francesca ;
Tazzari, Pier Luigi ;
Pasquinelli, Gianandrea ;
Foroni, Laura ;
Ventura, Carlo ;
Grossi, Alberto ;
Bagnara, Gian Paolo .
BMC DEVELOPMENTAL BIOLOGY, 2007, 7
[4]   Combined Omics Analysis Identifies Transmembrane 4 L6 Family Member 1 as a Surface Protein Marker Specific to Human Mesenchymal Stem Cells [J].
Bae, Sohyun ;
Shim, So Hee ;
Park, Chae Woon ;
Son, Hye Kyung ;
Lee, Hyun Ju ;
Son, Ji Young ;
Jeon, Choonju ;
Kim, Hoeon .
STEM CELLS AND DEVELOPMENT, 2011, 20 (02) :197-203
[5]   Osteoblastic cells regulate the haematopoietic stem cell niche [J].
Calvi, LM ;
Adams, GB ;
Weibrecht, KW ;
Weber, JM ;
Olson, DP ;
Knight, MC ;
Martin, RP ;
Schipani, E ;
Divieti, P ;
Bringhurst, FR ;
Milner, LA ;
Kronenberg, HM ;
Scadden, DT .
NATURE, 2003, 425 (6960) :841-846
[6]  
CAPLAN AI, 1994, CLIN PLAST SURG, V21, P429
[7]   A perivascular origin for mesenchymal stem cells in multiple human organs [J].
Crisan, Mihaela ;
Yap, Solomon ;
Casteilla, Louis ;
Chen, Chien-Wen ;
Corselli, Mirko ;
Park, Tea Soon ;
Andriolo, Gabriella ;
Sun, Bin ;
Zheng, Bo ;
Zhang, Li ;
Norotte, Cyrille ;
Teng, Pang-Ning ;
Traas, Jeremy ;
Schugar, Rebecca ;
Deasy, Bridget M. ;
Badylak, Stephen ;
Buehring, Hans-Joerg ;
Giacobino, Jean-Paul ;
Lazzari, Lorenza ;
Huard, Johnny ;
Peault, Bruno .
CELL STEM CELL, 2008, 3 (03) :301-313
[8]   Mesenchymal stem cells: Biology and potential clinical uses [J].
Deans, RJ ;
Moseley, AB .
EXPERIMENTAL HEMATOLOGY, 2000, 28 (08) :875-884
[9]   Minimal criteria for defining multipotent mesenchymal stromal cells. The International Society for Cellular Therapy position statement [J].
Dominici, M. ;
Le Blanc, K. ;
Mueller, I. ;
Slaper-Cortenbach, I. ;
Marini, F. C. ;
Krause, D. S. ;
Deans, R. J. ;
Keating, A. ;
Prockop, D. J. ;
Horwitz, E. M. .
CYTOTHERAPY, 2006, 8 (04) :315-317
[10]   STROMAL CELLS RESPONSIBLE FOR TRANSFERRING MICROENVIRONMENT OF HEMATOPOIETIC TISSUES - CLONING INVITRO AND RETRANSPLANTATION INVIVO [J].
FRIEDENSTEIN, AJ ;
CHAILAKHYAN, RK ;
LATSINIK, NV ;
PANASYUK, AF ;
KEILISSB.IV .
TRANSPLANTATION, 1974, 17 (04) :331-340