Chinese Journal of Tissue Engineering Research ›› 2012, Vol. 16 ›› Issue (49): 9301-9305.doi: 10.3969/j.issn.2095-4344.2012.49.032
Previous Articles Next Articles
Xu Mei-mei1, Gao Fu-lai1, Han Ming-zi2, Zheng Yue1, Jin Shi-zhu2, Lü Chun-yan1
Received:
2012-02-17
Revised:
2012-04-27
Online:
2012-12-02
Published:
2013-01-16
Contact:
Xu Mei-mei★, Master, Department of Gastroenterology, First Hospital of Qinhuangdao, Qinhuangdao 066000, Hebei Province, China
About author:
Xu Mei-mei★, Master, Department of Gastroenterology, First Hospital of Qinhuangdao, Qinhuangdao 066000, Hebei Province, China
CLC Number:
Xu Mei-mei, Gao Fu-lai1, Han Ming-zi, Zheng Yue, Jin Shi-zhu, Lü Chun-yan. Identification of bone marrow stem cells[J]. Chinese Journal of Tissue Engineering Research, 2012, 16(49): 9301-9305.
[1] Majumdar MK,Tiede MA,Mosca JD,et al.Phenotypic and functional comparison of cultures of marrow-derived mesenchyInal stem cells(MSCs)and stromal cells.J Cell Physiol.1998;176(1):57-66. [2] 高福来,韩明子,金世柱,等.骨髓干细胞分离技术的探讨[J].胃肠病学和肝病学杂志,2010,19(6):569-572.[3] Gang EJ,Hong SH,Jeong JA,et al.In vitro mesengenic potential of human umbilical cord blood-derived mesenchymal stem cells.Biochem Biophys Res Commun. 2004;321(1):102.[4] 裴雪涛.干细胞生物学[M].北京:科学出版社,2003:220-221.[5] 李正章,程应樟.人骨髓及脐血间充质干细胞的分离培养及鉴定[J].心血管病学进展,2008,29(S1):97-98.[6] Minguell J,Erices A,Conget P.Mesenchymal stem cells.Exp Biol Med(Maywood),2001;226(6):507-520.[7] Phinney DG.Building a consensus regarding the nature and origin of mesenchymal stem cells.J Cell Biochem Suppl. 2002;38:7-12.[8] Dominici M,Le Blanc K,Mueller I,et al.Minimal criteria for defining multipotent mesenchymal stromal cells.The International Society for Cellular Therapy position statement. Cytotherapy.2006;8(4):315-317.[9] Hung SC,Chen NJ,Hsieh SL,et al.Isolation and characterization of size-sieved stem cells from human bone marrow.Stem Cells.2002;20(3):249-258.[10] Delorme B,Charbord P.Culture and characterization of human bone marrow mesenchymal stem cells.Methods Mol Med. 2007;140:67-81.[11] Djalilian AR,Holland EJ,Schwartz GS.Limbal stem cell deficiency. Ophthalmology.2003;110(10):2071. [12] Vitiyakosol S,Kirkland TN.A region of human CD14 required for lipopolysaccharide binding.J Biol Chem.1995;270(1): 361-368.[13] Majumdar MK,Keane-More M,Buyaner D,et al. Characterization and functionality of cell surface molecules on human mesenchymal stem cells.J Biomed Sci.2003;10: 228-241.[14] Wagner W,Wein F,Seckinger A,et al.Comparative characteristics of mesenchymal stem cells from human bone marrow,adipose tissue,and umbilical cord blood.Exp Hematol. 2005;33(11):1402-1416.[15] Rogers I,Yamanaka N,Bielecki R,et al.Identification and analysis of in vitro cultured CD45-positive cells capable of multi-lineage differentiation.Exp Cell Res.2007;313: 1839-1852.[16] Deng ZS,Zhang X,Zou DQ,et al.Senior effect of drynaria rhizome for human bone marrow mesenchymal stem cells.China J Modern Med.2005;15(16):2426-2429.[17] Rebelatto CK,Aguiar AM,Moretao,et al.Dissimilar differentiation of mesenchymaI stem cells from bone marrow,umbillicaI cord blood,and adipose tissue.Exp Biol Med (Maywood).2008;233(7):901-913.[18] Reinisch A,Bartmann C,Rohde E,et aI.Humanized system to propagate cord blood-derived multipotent mesenchymal stromal cells for clinical application.Regen Med.2007;2(4): 371-382.[19] Martin-Rendon E,Sweeney D,Lu F,et al.5-Azacytidine-treated human mesenchymal stem/progenit cells derived from umbilical cord,cord blood and bone marrow do not generate cardiomyocytes in vitro at high frequencies.Vox Sang.2008; 95(2):137-148.[20] Markov V,Kusumi K,Tadesse MG,et al.Identification of cord blood-derived mesenchymal stem/stromal cell populations with distinct growth kinetics,diffrerentiation potentials,and gene expression profiles.Stem Cell Dev.2007;16(1):53-73.[21] Manca MF,Zwart I,Beo J,et al.Characterization of mesenchymal stromal cells derived from full-term umbilical cord blood.Cytotherapy.2008;10(1):54-68.[22] Secco M,Zucconi E,Vieira NM,et al.Multipotent stem cells from umbilical cord:cord is richer than blood.Stem Cells. 2008;26(1):146-150.[23] Barachini S,Trombi L,Danti S,et aI.Morpho-functional characterization of human mesenchymal stem cells from umbilical cord blood for potential uses in regenerative medicine.Stem cells Dev.2009;18(2):293-305.[24] 赵春生,王更银,李俊峡.人脐血间充质干细胞体外分离培养条件的优化及其鉴定[J].中国组织工程研究与临床康复,2009, 13(27): 5326-5330.[25] 朴正福,张海燕,丁淑芹,等.人羊膜间充质干细胞的生物学特性鉴定[J].国际生物医学工程杂志,2010,33(3):157-162.[26] Lei Z,Yongda L,Jun M,et al.Culture and neural differentiation of rat bone marrow mesenchymal stem cells in vitro.Cell Biol Int.2007;31(9):916-923.[27] Shiota M.Heike T,Haruyama M,et al.Isolation and characterization of bone marrow-derived mesenchymal progenitor cells with myogenic and neuronal properties.Exp Cell Res.2007;313(5):1008-1023.[28] Popov BV,Serikov VB,Petrov NS,et al.Lung epithelial cells induce endodermal differentiation in mouse mesenchymal bone marrow stem cells by paracrine mechanism.Tissue Eng.2007;13(10):2441-2450.[29] 陈智超.造血干细胞的生物学特征及其鉴定[J].临床内科杂志, 2000,17(6):325-327.[30] Grzaiano A,d’ Aquino R,Laino G,et al.Human CD34+stem cells produce bone nodules in vivoCell Prolif.2008;41(1):1-11.[31] Gao Z,Fackler JM,Leung W,et al.Human CD34+cell preparations contain over 100-fold greater NOD/SCID mouse engrafting capacity than do CD34 cell preparations.Exp Hematol.2001;29(7):910-921. |
[1] | Sun Lei, Zhang Qi, Zhang Yu. Pro-osteoblastic effect of chlorogenic acid protein microsphere/polycaprolactone electrospinning membrane [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1877-1884. |
[2] | Wu Yanting, Li Yu, Liao Jinfeng. Magnesium oxide nanoparticles regulate osteogenesis- and angiogenesis-related gene expressions to promote bone defect healing [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1885-1895. |
[3] | Li Qingbin, Lin Jianhui, Huang Wenjie, Wang Mingshuang, Du Jiankai, Lao Yongqiang. Bone cement filling after enlarged curettage of giant cell tumor around the knee joint: a comparison of subchondral bone grafting and non-grafting [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1896-1902. |
[4] | Jiang Xinghai, Song Yulin, Li Dejin, Shao Jianmin, Xu Junzhi, Liu Huakai, Wu Yingguo, Shen Yuehui, Feng Sicheng. Vascular endothelial growth factor 165 genes transfected into bone marrow mesenchymal stem cells to construct a vascularized amphiphilic peptide gel module [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1903-1911. |
[5] | Gao Yanguo, Guo Xu, Li Xiaohan, Chen Shiqi, Zhu Haitao, Huang Liangyong, Ye Fang, Lu Wei Wang Qibin, Zheng Tao, Chen Li. Optimization of prescription ratio of “Honghuangbai” gel by orthogonal test in diabetic skin wound mouse models [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1921-1928. |
[6] | Min Changqin, Huang Ying. Construction of pH/near-infrared laser stimuli-responsive drug delivery system and its application in treatment of oral squamous cell carcinoma [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1940-1951. |
[7] | Shao Ziyu, Li Qian, Qumanguli·Abudukelimu, Han Youjun, Hu Yang. Preparation and characterization properties of three different ratios of biphasic calcium phosphate [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1952-1961. |
[8] | Xu Chang, Jiang Mingzhu, Liu Xin, Yan Weijun. Three-dimensional finite element analysis of implant anchorage combined with torque auxiliary arch to lower anterior teeth [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1971-1978. |
[9] | Zheng Xuying, Hu Hongcheng, Xu Libing, Han Jianmin, Di Ping. Stress magnitude and distribution in two-piece cement-retained zirconia implants under different loading conditions and with varying internal connection shapes [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1979-1987. |
[10] | Zhou Hongli, Wang Xiaolong, Guo Rui, Yao Xuanxuan, Guo Ru, Zhou Xiongtao, He Xiangyi. Fabrication and characterization of nanohydroxyapatite/sodium alginate/polycaprolactone/alendronate scaffold [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1962-1970. |
[11] | Liu Hongjie, Mu Qiuju, Shen Yuxue, Liang Fei, Zhu Lili. Metal organic framework/carboxymethyl chitosan-oxidized sodium alginate/platelet-rich plasma hydrogel promotes healing of diabetic infected wounds [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1929-1939. |
[12] | Yang Lixia, Diao Liqin, Li Hua, Feng Yachan, Liu Xin, Yu Yuexin, Dou Xixi, Gu Huifeng, Xu Lanju. Regulatory mechanism of recombinant type III humanized collagen protein improving photoaging skin in rats [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 1988-2000. |
[13] |
Dong Chunyang, Zhou Tianen, Mo Mengxue, Lyu Wenquan, Gao Ming, Zhu Ruikai, Gao Zhiwei.
Action mechanism of metformin combined with Eomecon chionantha Hance dressing in treatment of deep second-degree burn wounds#br#
#br#
[J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 2001-2013.
|
[14] | Tan Jing, Li Li, Wang Liangliang, Qin Xiangyu. Bionic functional coating improves the integration of titanium implants and skin tissue interface [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 2014-2022. |
[15] | Pan Zhiyi, Huang Jiawen, Xue Wenjun, Xu Jianda. Advantages of MXene-based flexible electronic sensors and their application in monitoring diabetic foot wounds [J]. Chinese Journal of Tissue Engineering Research, 2026, 30(8): 2023-2032. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||