CXCL14 and MCP1 are potent trophic factors associated with cell migration and angiogenesis leading to higher regenerative potential of dental pulp side population cells

被引:71
作者
Hayashi, Y. [1 ,2 ]
Murakami, M. [1 ]
Kawamura, R. [1 ,3 ]
Ishizaka, R. [2 ]
Fukuta, O. [2 ]
Nakashima, M. [1 ]
机构
[1] Natl Ctr Geriatr & Gerontol, Ctr Adv Med Dent & Oral Dis, Dept Dent Regenerat Med, Res Inst, Obu, Aichi 4748511, Japan
[2] Aichi Gakuin Univ, Sch Dent, Dept Pediat Dent, Nagoya, Aichi 4648651, Japan
[3] Aichi Gakuin Univ, Sch Dent, Dept Gerodontol, Nagoya, Aichi 4648651, Japan
基金
日本学术振兴会;
关键词
MESENCHYMAL STEM-CELLS; CONDITIONED MEDIUM; ENDOTHELIAL-CELLS; ADIPOSE-TISSUE; TRANSPLANTATION; APOPTOSIS; INJURY; PROTECTION; RESPONSES; BIOLOGY;
D O I
10.1186/s13287-015-0088-z
中图分类号
Q813 [细胞工程];
学科分类号
100113 [医学细胞生物学];
摘要
Introduction: The release of trophic factors from mesenchymal stem cells (MSCs) is critical for tissue regeneration. A systematic investigation of the regenerative potential of trophic factors from different MSCs, however, has not been performed. Thus, in the present study, the regenerative potential of conditioned medium (CM) from dental pulp, bone marrow, and adipose tissue-derived CD31(-) side population (SP) cells from an individual source was compared in an ectopic tooth transplantation model. Methods: The tooth root transplantation in an ectopic site model was used for investigation of the regenerative potential and trophic effects in vivo. Either pulp CD31(-) SP cell populations (1x10(6) cells) at the third to fourth passage or 5 mu g/ml of CM from dental pulp, bone marrow, and adipose stem cells from four different individuals were injected into the root with collagen TE. Each root was transplanted subcutaneously in 5-week-old severe combined immunodeficiency mice. Each root with surrounding tissue was harvested for histology on days 7, 21, and 28 and for Western blot analysis and real-time reverse transcription-polymerase chain reaction (RT-PCR) analysis on day 28. Furthermore, the trophic factors responsible for the regenerative potential were identified as the upregulated genes present in pulp CD31(-) SP cells when compared with the genes in both bone marrow and adipose CD31(-) SP cells by using microarray analysis, real-time RT-PCR, and Western blot analysis. Results: Transplantation of pulp CM yielded increased volume of pulp regeneration, more bromodeoxyuridine (BrdU)-positive migrated cells, and fewer caspase 3-positive cells in the regenerated pulp compared with the others. Pulp CM also demonstrated significantly increased cell migration, anti-apoptosis, and angiogenesis in C2C12 cells. Higher expression of CXCL14 and MCP1 in pulp SP cells suggested candidate trophic factors. The stimulatory effects on both migration and angiogenesis of CXCL14 and MCP1 were demonstrated in vitro. In the regenerated tissue, BrdU-positive migrated cells expressed CXCR4 and CCR2, receptors for CXCL14 and MCP1, respectively. Conclusions: The higher regenerative potential of pulp SP cells may be due to potent trophic factors, including CXCL14 and MCP1, which promote migration and angiogenesis.
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页数:19
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共 55 条
[21]
Iohara K, 2009, REGEN MED, V4, P377, DOI [10.2217/rme.09.5, 10.2217/RME.09.5]
[22]
Stem cell conditioned medium improves acute lung injury in mice: in vivo evidence for stem cell paracrine action [J].
Ionescu, Lavinia ;
Byrne, Roisin N. ;
van Haaften, Tim ;
Vadivel, Arul ;
Alphonse, Rajesh S. ;
Rey-Parra, Gloria J. ;
Weissmann, Gaia ;
Hall, Adam ;
Eaton, Farah ;
Thebaud, Bernard .
AMERICAN JOURNAL OF PHYSIOLOGY-LUNG CELLULAR AND MOLECULAR PHYSIOLOGY, 2012, 303 (11) :L967-L977
[23]
Stimulation of angiogenesis, neurogenesis and regeneration by side population cells from dental pulp [J].
Ishizaka, Ryo ;
Hayashi, Yuki ;
Iohara, Koichiro ;
Sugiyama, Masahiko ;
Murakami, Masashi ;
Yamamoto, Tsubasa ;
Fukuta, Osamu ;
Nakashima, Misako .
BIOMATERIALS, 2013, 34 (08) :1888-1897
[24]
VEGFR2-dependent Angiogenic Capacity of Pericyte-like Dental Pulp Stem Cells [J].
Janebodin, K. ;
Zeng, Y. ;
Buranaphatthana, W. ;
Ieronimakis, N. ;
Reyes, M. .
JOURNAL OF DENTAL RESEARCH, 2013, 92 (06) :524-531
[25]
Kim JY, 2010, TISSUE ENG PT A, V16, P3023, DOI [10.1089/ten.tea.2010.0181, 10.1089/ten.TEA.2010.0181]
[26]
Adult SVZ Lineage Cells Home to and Leave the Vascular Niche via Differential Responses to SDF1/CXCR4 Signaling [J].
Kokovay, Erzsebet ;
Goderie, Susan ;
Wang, Yue ;
Lotz, Steve ;
Lin, Gang ;
Sun, Yu ;
Roysam, Badrinath ;
Shen, Qin ;
Temple, Sally .
CELL STEM CELL, 2010, 7 (02) :163-173
[27]
Lai Ruenn Chai, 2012, Int J Proteomics, V2012, P971907, DOI 10.1155/2012/971907
[28]
Proteomic Analysis of Tumor Necrosis Factor-α-Induced Secretome of Human Adipose Tissue-Derived Mesenchymal Stem Cells [J].
Lee, Mi Jeong ;
Kim, Jaeyoon ;
Kim, Min Young ;
Bae, Yoe-Sik ;
Ryu, Sung Ho ;
Lee, Taehoon G. ;
Kim, Jae Ho .
JOURNAL OF PROTEOME RESEARCH, 2010, 9 (04) :1754-1762
[29]
Direct comparison of the potency of human mesenchymal stem cells derived from amnion tissue, bone marrow and adipose tissue at inducing dermal fibroblast responses to cutaneous wounds [J].
Liu, Xiaoyu ;
Wang, Zhe ;
Wang, Rui ;
Zhao, Feng ;
Shi, Ping ;
Jiang, Yide ;
Pang, Xining .
INTERNATIONAL JOURNAL OF MOLECULAR MEDICINE, 2013, 31 (02) :407-415
[30]
The protection of MSCs from apoptosis in nerve regeneration by TGFβ1 through reducing inflammation and promoting VEGF-dependent angiogenesis [J].
Luo, Hailang ;
Zhang, Yongjie ;
Zhang, Ziqiang ;
Jin, Yan .
BIOMATERIALS, 2012, 33 (17) :4277-4287