1 |
Böttcher-Haberzeth S,Biedermann T,Reichmann E. Tissue engineering of skin [J]. Burns, 2010, 36(4): 450-460.
|
2 |
Groeber F,Holeiter M,Hampel M, et al. Skin tissue engineering-in vivo and in vitro applications [J]. Adv Drug Deliv Rev, 2011, 63(4/5): 352-366.
|
3 |
张志雄,奚廷斐. 冷静反思组织工程应该如何发展[J]. 中国修复重建外科杂志, 2009, 23(2): 131-135.
|
4 |
Advancing tissue science and engineering: a foundation for the future. A multi-agency strategic plan [J]. Tissue Eng, 2007, 13(12): 2825-2826.
|
5 |
Sun X,Fu X,Han W, et al. Dedifferentiation of human terminally differentiating keratinocytes into their precursor cells induced by basic fibroblast growth factor [J]. Biol Pharm Bull, 2011, 34(7): 1037-1045.
|
6 |
Sorrell JM,Caplan AI. Fibroblast heterogeneity: more than skin deep [J]. J Cell Sci, 2004, 117(Pt 5): 667-675.
|
7 |
Yannas IV,Kwan MD,Longaker MT. Early fetal healing as a model for adult organ regeneration [J]. Tissue Eng, 2007, 13(8): 1789-1798.
|
8 |
Yannas IV,Orgill DP,Burke JF. Template for skin regeneration [J]. Plast Reconstr Surg, 2011, 127 Suppl 1: 60S-70S.
|
9 |
刘伟. 瘢痕研究的新策略[J]. 中华医学杂志, 2009, 89(16): 1081-1083.
|
10 |
陆树良,青春,刘英开, 等. 瘢痕形成机制的研究:真皮"模板缺损"学说[J]. 中华烧伤杂志, 2007, 23(1): 6-12.
|
11 |
Larouche D,Cuffley K,Paquet C, et al. Tissue-engineered skin preserving the potential of epithelial cells to differentiate into hair after grafting [J]. Tissue Eng Part A, 2011, 17(5/6): 819-830.
|
12 |
Huang S,Xu Y,Wu C, et al. In vitro constitution and in vivo implantation of engineered skin constructs with sweat glands [J]. Biomaterials, 2010, 31(21): 5520-5525.
|
13 |
Xu Y,Huang S,Ma K, et al. Promising new potential for mesenchymal stem cells derived from human umbilical cord Wharton's jelly: sweat gland cell-like differentiative capacity [J]. J Tissue Eng Regen Med, 2012, 6(8): 645-654.
|
14 |
Yoo BY,Shin YH,Yoon HH, et al. Hair follicular cell/organ culture in tissue engineering and regenerative medicine [J]. Bioch Eng J, 2010, 48(3): 323-331.
|
15 |
Zhou H,You C,Wang X, et al. The progress and challenges for dermal regeneration in tissue engineering [J]. J Biomed Mater Res A, 2017, 105(4): 1208-1218.
|
16 |
Xie J,Yao B,Han Y, et al. Skin appendage-derived stem cells: cell biology and potential for wound repair [J]. Burns Trauma, 2016, 4: 38.
|
17 |
Maranda EL,Rodriguez-Menocal L,Badiavas EV. Role of Mesenchymal Stem Cells in Dermal Repair in Burns and Diabetic Wounds [J]. Curr Stem Cell Res Ther, 2017, 12(1): 61-70.
|
18 |
Bernerd F. Human skin reconstructed in vitro as a model to study the keratinocyte, the fibroblast and their interactions: photodamage and repair processes [J]. J Soc Biol, 2005, 199(4): 313-320.
|
19 |
Elia R,Fuegy PW,VanDelden A, et al. Stimulation of in vivo angiogenesis by in situ crosslinked, dual growth factor-loaded, glycosaminoglycan hydrogels [J]. Biomaterials, 2010, 31(17): 4630-4638.
|
20 |
Hudon V,Berthod F,Black AF, et al. A tissue-engineered endothelialized dermis to study the modulation of angiogenic and angiostatic molecules on capillary-like tube formation in vitro [J]. Br J Dermatol, 2003, 148(6): 1094-1104.
|
21 |
Wang X,You C,Hu X, et al. The roles of knitted mesh-reinforced collagen-chitosan hybrid scaffold in the one-step repair of full-thickness skin defects in rats [J]. Acta Biomater, 2013, 9(8): 7822-7832.
|
22 |
Wang X,Wu P,Hu X, et al. Polyurethane membrane/knitted mesh-reinforced collagen-chitosan bilayer dermal substitute for the repair of full-thickness skin defects via a two-step procedure [J]. J Mech Behav Biomed Mater, 2016, 56: 120-133.
|
23 |
Frueh FS,Menger MD,Lindenblatt N, et al. Current and emerging vascularization strategies in skin tissue engineering [J]. Crit Rev Biotechnol, 2017, 37(5): 613-625.
|
24 |
Hendrickx B,Vranckx JJ,Luttun A. Cell-based vascularization strategies for skin tissue engineering [J]. Tissue Eng Part B Rev, 2011, 17(1): 13-24.
|
25 |
Kilarski WW,Samolov B,Petersson L, et al. Biomechanical regulation of blood vessel growth during tissue vascularization [J]. Nat Med, 2009, 15(6): 657-664.
|
26 |
Nomi M,Miyake H,Sugita Y, et al. Role of growth factors and endothelial cells in therapeutic angiogenesis and tissue engineering [J]. Curr Stem Cell Res Ther, 2006, 1(3): 333-343.
|
27 |
Golub JS,Kim YT,Duvall CL, et al. Sustained VEGF delivery via PLGA nanoparticles promotes vascular growth [J]. Am J Physiol Heart Circ Physiol, 2010, 298(6): H1959-H1965.
|
28 |
Sun H,Wang X,Hu X, et al. Promotion of angiogenesis by sustained release of rhGM-CSF from heparinized collagen/chitosan scaffolds [J]. J Biomed Mater Res B Appl Biomater, 2012, 100(3): 788-798.
|
29 |
Huang S,Fu X. Tissue-engineered skin: bottleneck or breakthrough [J]. Int J Burns Trauma, 2011, 1(1): 1-10.
|