Hierarchically micro-patterned nanofibrous scaffolds with a nanosized bio-glass surface for accelerating wound healing.
暂无分享,去创建一个
Jiang Chang | Zhengfang Yi | Chengtie Wu | Yali Zhang | Mingyao Liu | F. Lv | Z. Yi | Chengtie Wu | Jiang Chang | Q. Ke | He Xu | Mingyao Liu | Qinfei Ke | Yali Zhang | Fang Lv | He Xu
[1] L L Hench,et al. Gene-expression profiling of human osteoblasts following treatment with the ionic products of Bioglass 45S5 dissolution. , 2001, Journal of biomedical materials research.
[2] Jiang Chang,et al. An anisotropically and heterogeneously aligned patterned electrospun scaffold with tailored mechanical property and improved bioactivity for vascular tissue engineering. , 2015, ACS applied materials & interfaces.
[3] Larry L. Hench,et al. The story of Bioglass® , 2006, Journal of materials science. Materials in medicine.
[4] Xiaofeng Chen,et al. Healing effect of bioactive glass ointment on full-thickness skin wounds , 2012, Biomedical materials.
[5] M. Longaker,et al. Calcium-Based Nanoparticles Accelerate Skin Wound Healing , 2011, PloS one.
[6] H. Takita,et al. Pore size of porous hydroxyapatite as the cell-substratum controls BMP-induced osteogenesis. , 1997, Journal of biochemistry.
[7] Alexander Hexemer,et al. Biomimetic self-templating supramolecular structures , 2011, Nature.
[8] Jessica D. Schiffman,et al. Designing electrospun nanofiber mats to promote wound healing - a review. , 2013, Journal of materials chemistry. B.
[9] T. Wilgus,et al. Vascular Endothelial Growth Factor and Angiogenesis in the Regulation of Cutaneous Wound Repair. , 2014, Advances in wound care.
[10] Younan Xia,et al. Nanofiber membranes with controllable microwells and structural cues and their use in forming cell microarrays and neuronal networks. , 2011, Small.
[11] Guoping Chen,et al. Silicate bioceramics induce angiogenesis during bone regeneration. , 2012, Acta biomaterialia.
[12] F. Caruso,et al. Interfacing Materials Science and Biology for Drug Carrier Design , 2015, Advanced materials.
[13] N. Jeon,et al. Multiscale patterned transplantable stem cell patches for bone tissue regeneration. , 2014, Biomaterials.
[14] Zhihui Yao,et al. Novel bilayer wound dressing composed of silicone rubber with particular micropores enhanced wound re-epithelialization and contraction. , 2015, Biomaterials.
[15] Jin-Chul Ahn,et al. Adipose-derived stromal cell cluster with light therapy enhance angiogenesis and skin wound healing in mice. , 2015, Biochemical and biophysical research communications.
[16] Alberto Redaelli,et al. Hierarchical structure and nanomechanics of collagen microfibrils from the atomistic scale up. , 2011, Nano letters.
[17] A. Tehrani‐Bagha,et al. Mesoscopically Ordered Bone‐Mimetic Nanocomposites , 2015, Advanced materials.
[18] C. Wilkinson,et al. The control of human mesenchymal cell differentiation using nanoscale symmetry and disorder. , 2007, Nature materials.
[19] Jiang Chang,et al. Controlled drug release from a polymer matrix by patterned electrospun nanofibers with controllable hydrophobicity. , 2013, Journal of materials chemistry. B.
[20] M. Soleimani,et al. Advances in Skin Regeneration: Application of Electrospun Scaffolds , 2015, Advanced healthcare materials.
[21] Peter Fratzl,et al. Biomimetic materials research: what can we really learn from nature's structural materials? , 2007, Journal of The Royal Society Interface.
[22] Guoping Chen,et al. Stimulatory effects of the ionic products from Ca-Mg-Si bioceramics on both osteogenesis and angiogenesis in vitro. , 2013, Acta biomaterialia.
[23] Evangelia Bellas,et al. Functionalized Silk Biomaterials for Wound Healing , 2013, Advanced healthcare materials.
[24] Xiabin Jing,et al. Fabrication and Drug Delivery of Ultrathin Mesoporous Bioactive Glass Hollow Fibers , 2010 .
[25] Vaclav Svorcik,et al. Modulation of cell adhesion, proliferation and differentiation on materials designed for body implants. , 2011, Biotechnology advances.
[26] Jun Asai,et al. Topical Sonic Hedgehog Gene Therapy Accelerates Wound Healing in Diabetes by Enhancing Endothelial Progenitor Cell–Mediated Microvascular Remodeling , 2006, Circulation.
[27] Delbert E Day,et al. Bioactive glass in tissue engineering. , 2011, Acta biomaterialia.
[28] T. H.,et al. The Journal of Bone and Joint Surgery , 2006 .
[29] H. Maibach,et al. Nanofibrous materials for wound care , 2010, Cutaneous and ocular toxicology.
[30] Yinghong Zhou,et al. Stimulation of osteogenic and angiogenic ability of cells on polymers by pulsed laser deposition of uniform akermanite-glass nanolayer. , 2014, Acta biomaterialia.
[31] Wenhai Huang,et al. Wound dressings composed of copper-doped borate bioactive glass microfibers stimulate angiogenesis and heal full-thickness skin defects in a rodent model. , 2015, Biomaterials.
[32] M. Rémy,et al. Geometrical Microfeature Cues for Directing Tubulogenesis of Endothelial Cells , 2012, PloS one.
[33] D. Kaplan,et al. Porosity of 3D biomaterial scaffolds and osteogenesis. , 2005, Biomaterials.
[34] W. Marsden. I and J , 2012 .
[35] Younan Xia,et al. Radially aligned, electrospun nanofibers as dural substitutes for wound closure and tissue regeneration applications. , 2010, ACS nano.
[36] Kahp-Yang Suh,et al. Effect of orientation and density of nanotopography in dermal wound healing. , 2012, Biomaterials.
[37] W. Saltzman,et al. Biomaterials with hierarchically defined micro- and nanoscale structure. , 2004, Biomaterials.
[38] Aldo R Boccaccini,et al. Bioactive glasses beyond bone and teeth: emerging applications in contact with soft tissues. , 2015, Acta biomaterialia.
[39] Xiaofeng Chen,et al. Angiogenesis stimulated by novel nanoscale bioactive glasses , 2015, Biomedical materials.
[40] M. Yost,et al. A three-dimensional model of vasculogenesis. , 2009, Biomaterials.
[41] R. P. Thompson,et al. Orthosilicic acid stimulates collagen type 1 synthesis and osteoblastic differentiation in human osteoblast-like cells in vitro. , 2003, Bone.
[42] T. Ponrasu,et al. Topical application of Acalypha indica accelerates rat cutaneous wound healing by up-regulating the expression of Type I and III collagen. , 2012, Journal of ethnopharmacology.
[43] Larry L Hench,et al. Third-Generation Biomedical Materials , 2002, Science.
[44] Peter A. George,et al. Hierarchical scaffolds via combined macro- and micro-phase separation. , 2010, Biomaterials.