[1] Melcher AH. On the repair potential of periodontal tissues [J]. J Periodontol, 1976, 47(5): 256-260.
[2] Gottlow J, Nyman S, Lindhe J, et al. New attachment formation in the human periodontium by guided tissue regeneration. Case reports [J]. J Clin Periodontol, 1986, 13(6): 604-616.
[3] Izumi Y, Aoki A, Yamada Y, et al. Current and future periodontal tissue engineering [J]. Periodontol 2000, 2011, 56(1): 166-187.
[4] Aspriello SD, Zizzi A, Spazzafumo L, et al. Effects of enamel matrix derivative on vascular endothelial growth factor expression and microvessel density in gingival tissues of periodontal pocket: a comparative study [J]. J Periodontol, 2011, 82(4): 606-612.
[5] Bertl K, An N, Bruckmann C, et al. Effect of enamel matrix derivative on proliferation/viability, migration, and expression of angiogenic factor and adhesion molecules in endothelial cells in vitro[J]. J Periodontol, 2009, 80(10): 1622-1630.
[6] Artese L, Piattelli A, de Gouveia Cardoso LA, et al. Immunoexpression of angiogenesis, nitric oxide synthase, and proliferation markers in gingival samples of patients with aggressive and chronic periodontitis[J]. J Periodontol, 2010, 81(5): 718-726.
[7] Sato E, Hashimoto H, Kamoi H, et al. Proliferation and tube formation of periodontal endothelial cells[J]. Hum Cell, 2005, 18(2): 83-91.
[8] DeCarlo AA, Cohen JA, Aguado A, et al. Isolation and characterization of human gingival microvascular endothelial cells[J]. J Periodontal Res, 2008, 43(2): 246-254.
[9] Kauvar AS, Thoma DS, Carnes DL, et al. In vivo angiogenic activity of enamel matrix derivative[J]. J Periodontol, 2010, 81(8): 1196-1201.
[10] Marx RE, Carlson ER, Eichstaedt RM, et al. Platelet-rich plasma: growth factor enhancement for bone grafts [J]. Oral Surg Oral Med Oral Pathol Oral Radiol, 1998, 85(6): 638-646.
[11] Bertrand-Duchesne MP, Grenier D, Gagnon G. Epidermal growth factor released from platelet-rich plasma promotes endothelial cell proliferation in vitro[J]. J Periodontal Res, 2010, 45(1):87-93.
[12] Berthod F, Germain L, Tremblay N, et al. Extracellular matrix deposition by fibroblasts is necessary to promote capillary-like tube formation in vitro [J]. J Cell Physiol, 2006, 207(2): 491-498.
[13] Schlueter SR, Carnes DL, Cochran DL. In vitro effects of enamel matrix derivative on microvascular cells[J]. J Periodontol, 2007, 78(1): 141-151.
[14] Nagai N, Hirakawa A, Otani N, et al. Development of tissue-engineered human periodontal ligament constructs with intrinsic angiogenic potential [J]. Cells Tissues Organs, 2009, 190(6): 303-312.
[15] Distler JH, Hirth A, Kurowska-Stolarska M, et al. Angiogenic and angiostatic factors in the molecular control of angiogenesis[J]. Q J Nucl Med, 2003, 47(3): 149-161.
[16] Nanci A, Bosshardt DD. Structure of periodontal tissues in health and disease [J]. Periodontol 2000, 2006, 40: 11-28.
[17] 尹元正, 沈弛晶, 王丽珍, 等. 一种牙周细胞体外创面愈合模型的构建 [J]. 牙体牙髓牙周病学杂志, 2007, 17(9): 499-502.
[18] Rincon JC, Haase HR, Bartold PM. Effect of Emdogain on human periodontal fibroblasts in an in vitro wound-healing model [J]. J Periodontal Res, 2003, 38(3): 290-295.
[19] Yamamoto N, Maeda H, Tomokiyo A, et al. Expression and effects of glial cell line-derived neurotrophic factor on periodontal ligament cells [J]. J Clin Periodontol, 2012, 39(6): 556-564. |