[1] Li C, Littlejohn RP, Corson ID, et al. Effects of testosterone on pedicle formation and its transformation to antler in castrated male, freemartin and normal female red deer(Cervus elaphus)[J]. Gen Comp Endocrinol, 2003, 131(1):21-31. [2] Li C, Suttie JM. Deer antlerogenic periosteum:a piece of postnatally retained embryonic tissue?[J]. Anat Embryol(Berl), 2001, 204(5):375-388. [3] Li C, Mackintosh CG, Martin SK, et al. Identification of key tissue type for antler regeneration through pedicle periosteum deletion[J]. Cell Tissue Res, 2007, 328:65-75. [4] Li C. Development of deer antler model for biomedical research[J]. Recent Adv Res Updates, 2003, 4:256-274. [5] Rolf HJ, Kierdorf U, Kierdorf H, et al. Localization and characterization of stro-1 cells in the deer pedicle and regenerating antler[J]. PLoS One, 2008, 3(4):e2064. [6] Beekman C, Nichane M, De Clercq S, et al. Evolutionarily conserved role of nucleostemin:controlling proliferation of stem/progenitor cells during early vertebrate development[J]. Mol Cell Biol, 2006, 26(24):9291-9301. [7] Maki N, Takechi K, Sano S, et al. Rapid accumulation of nucleostemin in nucleolus during newt regeneration[J]. Dev Dyn, 2007, 236(4):941-950. [8] Berg DK, Li C, Asher G, et al. Red deer cloned from antler stem cells and their differentiated progeny[J]. Biol Reprod, 2007, 77(3):384-394. [9] Li C, Suttie JM. Tissue collection methods for antler research[J]. Eur J Morphol, 2003, 41(1):23-30. [10] Li C, Harper A, Puddick J, et al. Proteomes and signalling pathways of antler stem cells[J]. PLoS One, 2012, 7(1):e30026. [11] 徐代勋. 梅花鹿鹿茸角柄骨膜不同部位差异蛋白的筛选[D]. 镇江:江苏科技大学, 2011. [12] 徐代勋, 王桂武, 赵海平, 等. 梅花鹿角柄骨膜蛋白质组学初步研究[J]. 特产研究, 2011, 33(1):1-4. [13] 赵东. 梅花鹿鹿茸双向电泳体系建立及蛋白质组学的研究[D]. 镇江:江苏科技大学, 2012. [14] Gao L, Tao D, Shan Y, et al. HPLC-MS/MS shotgun proteomic research of deer antlers with multiparallel protein extraction methods[J]. Journal of Chromatography B, 2010, 878(32):3370-3374. [15] Li C, Suttie JM, Clark DE. Morphological observation of antler regeneration in red deer(Cervus elaphus)[J]. J Morphol, 2004, 262(3):731-740. [16] Park HJ, Lee DH, Park SG, et al. Proteome analysis of red deer antlers[J]. Proteomics, 2004, 4(11):3642-3653. [17] Farberov S, Meidan R. Functions and transcriptional regulation of thrombospondins and their interrelationship with fibroblast growth factor-2 in bovine luteal cells[J]. Biol Reprod, 2014, 91(3):58. [18] Lai AK, Hou WL, Verdon DJ, et al. The distribution of the growth factors FGF-2 and VEGF, and their receptors, in growing red deer antler[J]. Tissue and Cell, 2007, 39(1):35-46. [19] Maa HC, Chao TT, Wang CY, et al. VEGF-D as a Marker in the aid of malignant metastatic pleural effusion diagnosis[J]. Appl Immunohistochem Mol Morphol, 2014, 23(3):209-214. [20] Istvanffy R, Kröger M, Eckl C, et al. Stromal pleiotrophin regulates repopulation behavior of hematopoietic stem cells[J]. Blood, 2011, 118(10):2712-2722. [21] Besse S, Comte R, Fréchault S, et al. Pleiotrophin promotes capillary-like sprouting from senescent aortic rings[J]. Cytokine, 2013, 62(1):44-47. [22] Clark DE, Lord EA, Suttie JM. Expression of VEGF and pleiotrophin in deer antler[J]. Anat Rec, 2006, 288A:1281-1293. [23] Li R, Beebe T, Jen N, et al. Shear stress-activated wnt-angiopoietin-2 signaling recapitulates vascular repair in zebrafish embryos[J]. Arterioscler Thromb Vasc Biol, 2014, 34(10):2268-2275. [24] Sinnathamby T, Yun TJ, Clavet-Lanthier ME, et al. VEGF and angiopoietins promote inflammatory cell recruitment and mature blood vessel formation in murine sponge/Matrigel model[J]. J Cell Biochem, 2014, 116(1):45-57. [25] Kronenberg HM. Developmental regulation of the growth plate[J]. Nature, 2003, 423:332-336. [26] Scheel C, Eaton EN, Li SH. Paracrine and autocrine signals induce and maintain mesenchymal and stem cell states in the breast[J]. Cell, 2011, 145(6):926-940. [27] Jortikka L, Marttinen A, Lindholm TS. Partially purified reindeer(Rangifer tarandus)bone morphogenetic protein has a high bone-forming activity compared with some other artiodactyls[J]. Clin Orthop Relat Res, 1993, 207:31-35. [28] Pekkarinen T, Jämsä T, Määttä M, et al. Reindeer BMP extract in the healing of critical-size bone defects in the radius of the rabbit[J]. Acta Orthop, 2006, 77(6):952-959. [29] 郝林琳, 刘松财, 张明军, 等. 鲜马鹿茸不同部位多肽的提取及含量比较[J]. 吉林农业大学学报, 2007, 29(4):378-80, 383. [30] Garcial RL. Expression of NT-3 in the growing valver antler of the red deer cervus elaphus[J]. J Mol Endocrinol, 1997, 19(2):173-182. [31] Li C, Stanton JA, Robertson TM, et al. Nerve growth factor mRNA expression in the regenerating antler tip of red deer(Cervus elaphus)[J]. PLoS One, 2007, 2(1):e148-155. [32] Garcia-Gutierrez P, Juarez-Vicente F, Wolgemuth DJ, et al. Pleiotrophin antagonizes Brd2 during neuronal differentiation[J]. J Cell Sci, 2014, 127(11):2554-2564. [33] Harper A, Li C. Identifying ligands for S100A4 and galectin-1 in antler stem cells. Queenstown Molecular Biology Meetings:Q35[C]. New Zealand:The Queenstown Molecular Biology Meeting Society Inc, 2009. [34] Boudignon BM, Bikle DD, Kurimoto P, et al. lnsulin-like growth factor 1 stimulates recovery of bone lost after a period of skeletal unloading[J]. J Appl Physiol, 2007, 103(1):125-131. [35] Sadighi M. Effect of insulin-like growth factor-I(IGF-I)and IGF-II on the growth of antler cells in vitro[J]. J Endocrinal, 1994, 143(3):461-469. [36] Lord EA, Martin SK, Gray JP, et al. Cell cycle genes PEDF and CDKN1C in growing deer antlers[J]. The Anatomical Record, 2007, 290:994-1004. [37] Hong H, Zhou T, Fang S, et al. Pigment epithelium-derived factor(PEDF)inhibits breast cancer metastasis by down-regulating fibronectin[J]. Breast Cancer Res Treat, 2014, 148(1):61-72.
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