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采用熔融法和溶胶-凝胶法分别制备了生物活性玻璃45S5和SGBG,通过SEM、BET及XRD等方法对它们的微观结构进行了表征,并建立了SD大鼠糖尿病皮肤创面模型,通过对创面愈合时间、创面愈合率以及HE染色分析,探讨了生物活性玻璃对促进糖尿病难愈创面愈合的效果.结果表明,与凡士林组相比,生物活性玻璃组能加速创面愈合,且SGBG具有纳米结构,其比表面积更大,与45S5相比能缩短糖尿病创面的愈合时间,提高愈合速度.组织学分析表明生物活性玻璃能促进肉芽组织的生长.由此表明生物活性玻璃能促进大鼠糖尿病创面的修复,且具有纳米结构的SGBG效果更好.

参考文献

[1] Brem Harold,Tomic-canic Marjana.Cellular and molecular basis of wound healing in diabetes.Journal of Clinical Investigation,2007,117(5):1219-1222.
[2] Hench L L.Bioactive materials:the potential for tissue regeneration.Journal of Biomedical Materials Research,1998,41(4):511-518.
[3] Hencl L L,Splinter R J,Allen W C,et al.Bonding mechanisms at the interface of ceramic prosthetic materials.Journal of Biomedical Materials Research,1971,5(6):117-141.
[4] Gatti A,Valdr G,Andersson H.Analysis of the in vivo reactions of a bioactive glass in soft and hard tissue.Biomaterials,1994,15(3):208-212.
[5] Verrier S,Blaker J J,Hench L L,et al.PDLLA/Bioglass(R) composites for soft-tissue and hard-tissue engineering:an in vitro cell biology assessment.Biomaterials,2004,25(15):3013-3021.
[6] Day R M.Bioactive glass stimulates the secretion of angiogenic growth factors and angiogenesis in vitro.Tissue Engeering,2005,11(5):768-777.
[7] Day R M,Boccaccini A R,Hench L L,et al.Assessment of polyglycolic acid mesh and bioactive glass for soft-tissue engineering scaffolds.Biomaterials,2004,25(27):5857-5966.
[8] Keshaw H,Forbes A,Day R M.Release of angiogenic growth factors from cells encapsulated in alginate beads with bioactive glass.Biomaterials,2005,26(19):4171-4179.
[9] Xynos I D,Edgar A J,Buttery L D K,et al.Gene-expression profiling of human osteoblasts following treatment with the ionic products of Bioglass(R) 45S5 dissolution.Journal of Biomedical Materials Research,2001,55(2):151-157.
[10] Mortazavi V,Naahrkhalaji M M,Fathi M H,et al.Antibacterial effects of Sol-Gel-derived bioactive glass nanoparticle on aerobic bacteria.Journal of Biomedical Materials Research Part A,2010,94A(1):160-168.
[11] Hench L L.Genetic design of bioactive glass.Journal of the European Ceramic Society,2009,29(7):1257-1265.
[12] Chen Xiao-feng,Meng Yong-chun,Li Yu-li,et al.Investigation on bio-mineralization of melt and Sol-Gel derived bioactive glasses.Applied Surface Science,2008,255(2):562-564.
[13] Hench L L,West J K.The Sol-Gel process.Chemical Reviews,1990,90(1):33-72.
[14] Hench L L.Bioceramics:from concept to clinic.Journal of the American Ceramic Society,1991,74(7):1487-1510.
[15] Ye Yue-Li,Wang Shi-Hui,Sun Ju-Mei,et al.Healing effect of inorganic elements on second degree burn wounds.Clinical Medicine,2007,27(7):48-49.
[16] Zhou Lai-sheng,Liao Zhen-jiang,Zhang Qin,et al.Bio-inductive effects of inorganic elements on skin wound healing.Chinese Journal of Burns,2005,21(5):363-366.
[17] Epstein F H,Singer A J,Clark R A F.Cutaneous wound healing.New England Journal of Medicine,1999,341(10):738-746.
[18] Blakytny R,Jude E.The molecular biology of chronic wounds and delayed healing in diabetes.Diabetic Medicine,2006,23(6):594-608.
[19] Maruyama K,Asai J,Li M,et al.Decreased macrophage number and activation lead to reduced lymphatic vessel formation and contribute to impaired diabetic wound healing.The American Journal of Pathology,2007,170(4):1178-1191.
[20] Gurtner G C,Werner S,Barrandon Y,et al.Wound repair and regeneration.Nature,2008,453(7193):314-321.
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