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Effect of RGD-modified Silk Material on the Adhesion and Proliferation of Bone Marrow-derived Mesenchymal Stem Cells 被引量:5

Effect of RGD-modified Silk Material on the Adhesion and Proliferation of Bone Marrow-derived Mesenchymal Stem Cells
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摘要 In order to investigate the effect ofArg-Gly-Asp (RGD) peptide-modified silk biomaterial on the adhesion and proliferation of bone marrow-derived mesenchymal stem cells (MSCs), MSCs of third generation were seeded onto the surface of RGD-decorated silk (silk-RGD group), silk alone (silk group) or tissue culture plate (TCP group). After incubation for 4 or 12 h, MSCs were examined quantitatively by using precipitation method for cell attachment. The cell proliferation, which was defined as cell density, was compared among the three groups after culture for 1, 2, 3, and 4 days. Cell skeleton, which was labeled fluorescently, was observed under laser confocal microscope after 24 h of culture. The results showed that cell adhesion rate in silk-RGD group was higher than in silk group (P〈0.05), but similar to that in TCP group after incubation for 4 or 12 h (P〉0.05). There were no sig- nificant differences in the cell proliferation among the three groups at different time points (P〉0.05 for all). Laser confocal microscopy revealed that in silk-RGD group, MSCs, strongly fluorescently stained, spread fully, with stress fibers clearly seen, while in silk group, actin filaments were sparsely aligned and less stress fibers were found. It was concluded that RGD peptide could improve the ad- hesion of MSCs to the silk scaffold, but had no impact on the proliferation of the cells. In order to investigate the effect ofArg-Gly-Asp (RGD) peptide-modified silk biomaterial on the adhesion and proliferation of bone marrow-derived mesenchymal stem cells (MSCs), MSCs of third generation were seeded onto the surface of RGD-decorated silk (silk-RGD group), silk alone (silk group) or tissue culture plate (TCP group). After incubation for 4 or 12 h, MSCs were examined quantitatively by using precipitation method for cell attachment. The cell proliferation, which was defined as cell density, was compared among the three groups after culture for 1, 2, 3, and 4 days. Cell skeleton, which was labeled fluorescently, was observed under laser confocal microscope after 24 h of culture. The results showed that cell adhesion rate in silk-RGD group was higher than in silk group (P〈0.05), but similar to that in TCP group after incubation for 4 or 12 h (P〉0.05). There were no sig- nificant differences in the cell proliferation among the three groups at different time points (P〉0.05 for all). Laser confocal microscopy revealed that in silk-RGD group, MSCs, strongly fluorescently stained, spread fully, with stress fibers clearly seen, while in silk group, actin filaments were sparsely aligned and less stress fibers were found. It was concluded that RGD peptide could improve the ad- hesion of MSCs to the silk scaffold, but had no impact on the proliferation of the cells.
出处 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2009年第1期80-83,共4页 华中科技大学学报(医学英德文版)
关键词 RGD peptide silk scaffold mesenchymal stem cell ADHESION PROLIFERATION RGD peptide silk scaffold mesenchymal stem cell adhesion proliferation
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  • 1Butler DL,Juncosa-Melvin N,Boivin GP, et al.Func- tional tissue engineering for tendon repair: A multidisci- plinary strategy using mesenchymal stem cells, bioscaf- folds, and mechanical stimulation[].Journal of Orthoptera Research.2008 被引量:1
  • 2Vitte J,Benoliel AM,Pierres A, et al.Regulation of cell adhesion[].Clinical Hemorheology and Microcirculation.2005 被引量:1
  • 3Zhao C.H,Yao J.M,Masuda H.Structural Characterization and Artificial Fiber Formation of Bombyx mori Silk Fibroin in Hexafluoro-Iso-Propanol Solvent System[].Biopolymers.2003 被引量:1
  • 4Sofia S,McCarthy MB,Gronowicz G,et al.Functionalized silk.Based biomaterials for bone formation[].Journal of Biomedical Materials Research.2001 被引量:1
  • 5Anderson K,Seneviratne AM,Izawa K,et al.Augmentation of tendon healing in an intra-articular bone tunnel with use of a bone growth factor[].American Journal of Sports Medicine.2001 被引量:1
  • 6Shu XZ,Ghosh K,Liu P,et al.Attachment and spreading of fibroblastson an RGD peptidemodified injectable hyaluronan hydrogel[].J BiomedMater Res Part A.2004 被引量:1
  • 7Rezania A,Healy KE.Biomimetic peptide surfaces that regulate adhesion,spreading,cytoskeletal organization,and mineralization of the matrix deposited by osteoblast-like cells[].Biotechnology Progress.1999 被引量:1
  • 8Wang Y,Kim HJ,Vunjak-Novakovic G,et al.Stem cell-based tissueengineering with silk biomaterials[].Biomaterials.2006 被引量:1
  • 9Rebecca L. Horan Adam L. Collette Christopher Lee Kathryn Antle Jingsong Chen and Gregory H. Altman.Yarn design for functional tissue engineering[].Journal of Biomechanics.2006 被引量:1
  • 10Haider M,Megeed Z,Ghandehari H.Genetically engineered polymers:status and prospects for controlled release[].Journal of Controlled Release.2004 被引量:1

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