The Neuro-Glial Properties of Adipose-Derived Adult Stromal (ADAS) Cells Are Not Regulated by Notch 1 and Are Not Derived from Neural Crest Lineage

被引:26
作者
Wrage, Philip C. [2 ]
Tran, Thi [2 ]
To, Khai [2 ]
Keefer, Edward W. [1 ]
Ruhn, Kelly A. [2 ]
Hong, John [2 ]
Hattangadi, Supriya [2 ]
Trevino, Isaac [2 ]
Tansey, Malu G.
机构
[1] Univ Texas SW Med Ctr, Dept Plastic Surg, Dallas, TX USA
[2] Univ Texas SW Med Ctr, Dept Physiol, Dallas, TX 75390 USA
来源
PLOS ONE | 2008年 / 3卷 / 01期
基金
美国国家卫生研究院;
关键词
D O I
10.1371/journal.pone.0001453
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
We investigated whether adipose-derived adult stromal ( ADAS) are of neural crest origin and the extent to which Notch 1 regulates their growth and differentiation. Mouse ADAS cells cultured in media formulated for neural stem cells (NSC) displayed limited capacity for self-renewal, clonogenicity, and neurosphere formation compared to NSC from the subventricular zone in the hippocampus. Although ADAS cells expressed Nestin, GFAP, NSE and Tuj1 in vitro, exposure to NSC differentiation supplements did not induce mature neuronal marker expression. In contrast, in mesenchymal stem cell (MSC) media, ADAS cells retained their ability to proliferate and differentiate beyond 20 passages and expressed high levels of Nestin. In neuritizing cocktails, ADAS cells extended processes, downregulated Nestin expression, and displayed depolarization-induced Ca2+ transients but no spontaneous or evoked neural network activity on Multi-Electrode Arrays. Deletion of Notch 1 in ADAS cell cultures grown in NSC proliferation medium did not significantly alter their proliferative potential in vitro or the differentiation-induced downregulation of Nestin. Co-culture of ADAS cells with fibroblasts that stably expressed the Notch ligand Jagged 1 or overexpression of the Notch intracellular domain (NICD) did not alter ADAS cell growth, morphology, or cellular marker expression. ADAS cells did not display robust expression of neural crest transcription factors or genes (Sox, CRABP2, and TH); and lineage tracing analyses using Wnt1-Cre; Rosa26R-lacZ or -EYFP reporter mice confirmed that fewer than 2% of the ADAS cell population derived from a Wnt1-positive population during development. In summary, although media formulations optimized for MSCs or NSCs enable expansion of mouse ADAS cells in vitro, we find no evidence that these cells are of neural crest origin, that they can undergo robust terminal differentiation into functionally mature neurons, and that Notch 1 is likely to be a key regulator of their cellular and molecular characteristics.
引用
收藏
页数:13
相关论文
共 45 条
[1]   Notch signaling: Cell fate control and signal integration in development [J].
Artavanis-Tsakonas, S ;
Rand, MD ;
Lake, RJ .
SCIENCE, 1999, 284 (5415) :770-776
[2]   In vitro differentiation of human processed lipoaspirate cells into early neural progenitors [J].
Ashjian, PH ;
Elbarbary, AS ;
Edmonds, B ;
DeUgarte, D ;
Zhu, M ;
Zuk, PA ;
Lorenz, HP ;
Benhaim, P ;
Hedrick, MH .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2003, 111 (06) :1922-1931
[3]   Neuro-glial differentiation of human bone marrow stem cells in vitro [J].
Bossolasco, P ;
Cova, L ;
Calzarossa, C ;
Rimoldi, SG ;
Borsotti, C ;
Deliliers, GL ;
Silani, V ;
Soligo, D ;
Polli, E .
EXPERIMENTAL NEUROLOGY, 2005, 193 (02) :312-325
[4]   Canonical Wnt activity regulates trunk neural crest delamination linking BMP/noggin signaling with G1/S transition [J].
Burstyn-Cohen, T ;
Stanleigh, J ;
Sela-Donenfeld, D ;
Kalcheim, C .
DEVELOPMENT, 2004, 131 (21) :5327-5339
[5]   Notch in the pathway: The roles of Notch signaling in neural crest development [J].
Cornell, RA ;
Eisen, JS .
SEMINARS IN CELL & DEVELOPMENTAL BIOLOGY, 2005, 16 (06) :663-672
[6]   Generation of neuroprogenitor-like cells from adult mammalian bone marrow stromal cells in vitro [J].
Croft, AP ;
Przyborski, SA .
STEM CELLS AND DEVELOPMENT, 2004, 13 (04) :409-420
[7]   Essential role of non-canonical Wnt signalling in neural crest migration [J].
De Calisto, J ;
Araya, C ;
Marchant, L ;
Riaz, CF ;
Mayor, R .
DEVELOPMENT, 2005, 132 (11) :2587-2597
[8]   Cellular localization and signaling activity of β-catenin in migrating neural crest cells [J].
de Melker, AA ;
Desban, N ;
Duband, JL .
DEVELOPMENTAL DYNAMICS, 2004, 230 (04) :708-726
[9]   Specific induction of neuronal cells from bone marrow stromal cells and application for autologous transplantation [J].
Dezawa, M ;
Kanno, H ;
Hoshino, M ;
Cho, H ;
Matsumoto, N ;
Itokazu, Y ;
Tajima, N ;
Yamada, H ;
Sawada, H ;
Ishikawa, H ;
Mimura, T ;
Kitada, M ;
Suzuki, Y ;
Ide, C .
JOURNAL OF CLINICAL INVESTIGATION, 2004, 113 (12) :1701-1710
[10]   Analysis of the neurogenic potential of multipotent skin-derived precursors [J].
Fernandes, Karl J. L. ;
Kobayashi, Nao R. ;
Gallagher, Conor J. ;
Barnabe-Heider, Fanie ;
Aumont, Anne ;
Kaplan, David R. ;
Miller, Freda D. .
EXPERIMENTAL NEUROLOGY, 2006, 201 (01) :32-48