Journal of Jilin University(Medicine Edition) ›› 2018, Vol. 44 ›› Issue (05): 1086-1089.doi: 10.13481/j.1671-587x.20180537
Previous Articles Next Articles
Received:2018-02-28
Online:2018-09-28
Published:2018-11-20
CLC Number:
| [1] Taura D, Noguchi M, Sone M, et al. Adipogenic differentiation of human induced pluripotent stem cells:comparison with that of human embryonic stem cells[J]. FEBS Lett, 2009, 583(6):1029-1033. [2] Gentile P, Scioli MG, Bielli A, et al. Stem cells from human hair follicles:first mechanical isolation for immediate autologous clinical use in androgenetic alopecia and hair loss[J]. Stem Cell Investig, 2017, 4(58):1-10. [3] Mistriotis P, Andreadis ST. Hair Follicle:A novel source of multipotent stem cells for tissue engineering and regenerative medicine[J].Tissue Eng Part B Rev, 2013, 19(4):265-278. [4] Takahashi K, Yamanaka S. Induction of pluripotent stem cells from mouse embryonic and adult fibroblast cultures by defined factors[J]. Cell, 2006, 126(4):663-676. [5] Okita K, Ichisaka T, Yamanaka S. Generation of germline-competent induced pluripotent stem cells[J]. Nature, 2007, 448(7151):313-317. [6] Yu J, Vodyanik MA, Smuga-Otto K, et al. Induced pluripotent stem cell lines derived from human somatic cells[J]. Science, 2007, 318(5858):1917-1920. [7] 裴雪涛. Ips细胞研究进展及其在造血系统疾病治疗中的应用前景[J]. 中国实验血液学杂志, 2009, 10-11. [8] Muchkaeva IA, Dashinimaev EB, Artyuhov AS, et al. Generation of iPS Cells from Human Hair Follice Dermal Papilla Cells[J]. Acta Naturae, 2014, 6(1):45-53. [9] Wang Y, Liu J, Tan X, et al. Induced pluripotent stem cells from human hair follicle mesenchymal stem cells[J]. Stem Cell Rev, 2013, 9(4):451-460. [10] Shi X, Lv S, He X, et al. Differentiation of hepatocytes from induced pluripotent stem cells derived from human hair follicle mesenchymal stem cells[J]. Cell Tissue Res, 2016, 366(1):89-99. [11] Lako M, Armstrong L, Cairns PM, et al. Hair follicle dermal cells repopulate the mouse haematopoietic system[J]. J Cell Sci, 2002, 115(Pt 20):3967-3974. [12] Jahoda CA, Whitehouse J, Reynolds AJ, et al. Hair follicle dermal cells differentiate into adipogenic and osteogenic lineages[J]. Exp Dermatol, 2003, 12(6):849-859. [13] Bajpai VK, Mistriotis P, Andreadis ST. Clonal multipotency and effect of long-term in vitro expansion on differentiation potential of human hair follicle derived mesenchymal stem cells[J].Stem Cell Res, 2012, 8(1):74-84. [14] Caraceni P, Giannone F, Catani L, et al. Effects of granulocyte colony stimulating-factor in a rat model of acute liver injury[J]. Dig Liver Dis, 2007, 39(10):943-951. [15] Thorgeirsson SS, Grisham JW. Overview of recent experimental studies on liver stem cells[J]. Semin Liver Dis, 2003, 23(4):303-312. [16] Hoogduijn MJ, Gorjup E, Genever PG. Comparative characterization of hair follicle dermal stem cells and bone marrow mesenchymal stem cells[J].Stem Cells Dev, 2006, 15(1):49-60. [17] Liu JY, Peng HF, Andreadis ST. Contractile smooth muscle cells derived from hair-follicle stem cells[J]. Cardiovasc Res, 2008,79(1):24-33. [18] Roh C, Tao Q, Lyle S. Dermal papilla-induced hair differentiation of adult epithelial stem cells from human skin[J]. Physiol Genomics, 2004, 19(2):207-217. [19] Sieber-Blum M, Grim M, Hu YF, et al. Pluripotent neural crest stem cells in the adult hair follicle[J]. Dev Dyn, 2004, 231(2):258-269. [20] Yu H, Fang D, Kumar SM, et al. Isolation of a novel population of multipotent adult stem cells from human hair follicles[J]. Am J Pathol, 2006, 168(6):1879-1888. [21] Peng HF, Liu JY, Andreadis ST, et al. Hair follicle-derived smooth muscle cells and small intestinal submucosa for engineering mechanically robust and vasoreactive vascular media[J]. Tissue Eng Part A, 2011, 17(7/8):981-990. [22] Liu, JY, Peng HF, Gopinath S, et al. Derivation of functional smooth muscle cells from multipotent human hair follicle mesenchymal stem cells[J]. Tissue Eng Part A, 2010,16(8):2553-2564. [23] Liu, JY, Peng HF, Andreadis ST. Contractile smooth muscle cells derived from hair-follicle stem cells[J]. Cardiovasc Res, 2008, 79(1):24-33. [24] Liu X, Song L, Liu J, et al. miR-18b inhibits TGF-β1-induced differentiation of hair follicle stem cells into smooth muscle cells by targeting SMAD2[J]. Biochem Biophys Res Commun,2013, 438(3):551-556. [25] Lee CI, Kohn DB, Ekert JE, et al. Morphological analysis and lentiviral transduction of fetal monkey bone marrow-derived mesenchymal stem cells[J]. Mol Ther, 2004, 9(1):112-123. [26] Mizuno H. Adipose-derived stem and stromal cells for cell-based therapy:current status of preclinical studies and clinical trials[J]. Curr Opin Mol Ther, 2010, 12(4):442-449. [27] Ankrum J, Karp JM. Mesenchymal stem cell therapy:Two steps forward, one step back[J]. Trends Mol Med, 2010, 16(5):203-209. [28] Song H, Song BW, Cha MJ, et al. Modification of mesenchymal stem cells for cardiac regeneration[J]. Expert Opin Biol Ther, 2010, 10(3):309-319. [29] Si YL, Zhao YL, Hao HJ, et al. MSCs:Biological characteristics, clinical applications and their outstanding concerns[J]. Ageing Res Rev, 2011, 10(1):93-103. [30] Wu C, Liu F, Li P, et al. Engineered hair follicle mesenchymal stem cells overexpressing controlled-release insulin reverse hyperglycemia in mice with type L diabetes[J]. Cell Transplant, 2015, 24(5):891-907. [31] Zhou D, Cheng H, Liu J, et al. Establishment of human hair follicle mesenchymal stem cells with overexpressed human hepatocyte growth factor[J]. Iran J Basic Med Sci, 2017, 20(6):662-675. [32] Li P, Liu F, Wu C, et al. Feasibility of human hair follicle-derived mesenchymal stem cells/CultiSpher(®)-G constructs in regenerative medicine[J]. Cell Tissue Res, 2015, 362(1):69-86. [33] Son S, Liang MS, Lei P, et al. Magnetofection mediated transient NANOG overexpression enhances proliferation and myogenic differentiation of human hair follicle derived mesenchymal stem cells[J]. Bioconjug Chem, 2015, 26(7):1314-1327. [34] Bai T, Liu F, Zou F, et al. Epidermal growth factor induces proliferation of hair follicle-derived mesenchymal stem cells through epidermal growth factor receptor-mediated activation of ERK and AKT signaling pathways associated with upregulation of cyclin D1 and downregulation of p16[J]. Stem Cells Dev, 2017, 26(2):113-122. [35] Coelho de Oliveira VC, Silva Dos Santos D, Vairo L, et al. Hair follicle-derived mesenchymal cells support undifferentiated growth of embryonic stem cells[J].Exp Ther Med, 2017, 13(5):1779-1788. |
| [1] | Moujie LIU,Jing ZHANG,Huihui WU,Juhua XIE. Improvement effect of metformin on myocardial hypertrophy in spontaneously hypertensive rats and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2026, 52(2): 391-397. |
| [2] | Huiying YANG,Weihong LIANG,Xinru XU,Haodan SUN,Xin JIAO,Haiping WANG. Research progress in effect of bone marrow mesenchymal stem cells on differentiation induction of cardiomyocyte-like cells, protection of cardiomyocytes, and myocardial-related diseases [J]. Journal of Jilin University(Medicine Edition), 2026, 52(1): 281-289. |
| [3] | Xun LU,Chengxin MA,Jianan YANG,Xinxin GUO,Xiaobei XIE,Binghai ZHAO,Hongzhi LI. Research progress in mechanism of podocyte injury and its potential therapeutic strategies for diabetic nephropathy [J]. Journal of Jilin University(Medicine Edition), 2025, 51(5): 1415-1422. |
| [4] | Desheng HUANG,Yanan ZHAO,Yun CHEN,Yiyao SUN,Weilin QIN,Moujie LIU,Juhua XIE. Improvement effect of metformin on hypertrophy of H9C2 cardiomyocytes and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2023, 49(3): 675-681. |
| [5] | Yuanyu TANG,Haiqin LIU,Huagen MA. Establishment of cultural method of primary SD rat aortic endothelial cells and their identification [J]. Journal of Jilin University(Medicine Edition), 2021, 47(4): 1038-1042. |
| [6] | Xining LI, Wei WENG, Zheyuan SHEN, Xiaojie DOU, Yu ZHAO, Jikang MIN. Effect of mTOR phosphorylation level on proliferation,autophagy,and differentiation of MC3T3-E1 osteoblasts and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2021, 47(3): 575-586. |
| [7] | Zhanqi ZHAO,Chengjin ZHANG,Juan TIAN. Inhibitory effect of Ndfip1 on ferrion-induced neuronal apoptosis and its neuroprotective mechanism [J]. Journal of Jilin University(Medicine Edition), 2021, 47(2): 338-343. |
| [8] | Mengran XU,Jiaqi WANG,Jingwen GAO,Junhong GE,Junyu HOU,Minghui LI,Yanbo LIU,Xin SUN. Protective effect of Bupleurum chinense polysaccharide on aging model mice induced by D-galactose and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2020, 46(6): 1215-1220. |
| [9] | Xi ZHAO,Mingyuan LIU,Meng LI,Haiyan LUAN,Yu YANG,Chunyan MA,Baocheng ZHANG,Jincheng ZHAO,Guangyuan YANG. Regulation of ranolazine preconditioning on autophagy of H9C2 cardiomyocytes injured by hypoxia/reoxygenation and its protective effect on cardiomyocytes [J]. Journal of Jilin University(Medicine Edition), 2020, 46(6): 1254-1259. |
| [10] | ZENG Ruixia, ZHANG Yibo. Promotion effect of p62 gene deletion on adipogenesis of human adipose-derived stromal cells [J]. Journal of Jilin University(Medicine Edition), 2020, 46(05): 979-984. |
| [11] | SUI Xin, XU Yan, ZHOU Jia, WANG Weinan, ZHANG Mingtian, HAN Dong, LI Na, YANG Qing, QU Xiaobo, HUANG Xiaowei. Effects of velvet antler collagen typeⅠ on proliferation of bone marrow mesenchymal stem cells and its relationships with type Ⅱ collagen and aggrecan expressions [J]. Journal of Jilin University(Medicine Edition), 2020, 46(05): 992-997. |
| [12] | WANG Yingying, SUN Lijuan, FAN Ziwei, GU Hong, YOU Xianmei, GUAN Tianhao, ZHANG Chengyi, CHEN Xi. Inhibitory effect of baicalin on autophagy of synovial RSC-364 cells of rats induced by lipopolysaccharide [J]. Journal of Jilin University(Medicine Edition), 2020, 46(03): 498-503. |
| [13] | XU Jianguo, CAO Hongtao, ZHANG Zilong, JI Baoyan, WANG Chunqiu, LI Shengdong, LIU Guoqing. Effects of LincRNA-p21 knockdown on growth and metastasis of gastric cancer cells and their mechanisms [J]. Journal of Jilin University(Medicine Edition), 2020, 46(02): 266-273. |
| [14] | WANG Yazhou, HE Peng, WANG Danhong. Effects of montelukast on proliferation and apoptosis of airway smooth muscle cells in asthmatic rats by inhibiting TLR4/NF-κB signaling pathway [J]. Journal of Jilin University(Medicine Edition), 2020, 46(02): 274-279. |
| [15] | WU Yujie, XING Xuenong. Regulatory effect of NIPA2 on high glucose-induced osteoblast apoptosis via JAK/STAT signaling pathway and its mechanism [J]. Journal of Jilin University(Medicine Edition), 2020, 46(02): 280-285. |
|