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13篇 您的检索式:作者名="Correlo"
    题名 作者 年代 出处 被引量
1Chitosan-poly(buylenesuccinate)scaffolds and human bone marrow stromal cells inducebone repair in a mouse calvaria model显示文摘Costa-Pinto AR Correlo VM Sol PC 2012J Tissue Eng RegenMed2012,6,1:1
2Properties of melt processed chitosan and aliphatic polyester blends 显示文摘Correlo V M Boesel L F Bhattacharya M 2005Materials Science and Engineering A2005,403,12:1
3Biodegradable nanofibers - reinforced mierofibrous composite scaffolds for bone tissue engineer- ing显示文摘Martins A Pinho ED Correlo VM 2010Tiss Eng Part A2010,16,:1
4Micro/nano replication and 3D assembling techniques for scaffold fabrication显示文摘M.J. Lima V.M. Correlo Rui L. Reis 2014Materials Science & Engineering C2014,,:1
5Development and characterization of a PHB-HV-based 3D scaffold for a tissue engi- neering and cell-therapy combinatorial approach for spinal cord injury regeneration显示文摘Pdbeire-Samy S Silva NA Correlo VM 2013Macromol Biosci2013,13,11:1
6Osteogenic differenti- ation of human bone marrow mesenchymal stem cells seeded on meh based chitosan scaffolds for bone tissue engineering applica- tions 显示文摘Costa-Pinto AR Correlo VM Sol PC 2009Biomacromolecules2009,10,8:1
7Osteogenic Differ- entiation of Human Bone Marrow Mesenchymat Stem Cells Seeded on Melt Based Chitosan Scaffolds for Bone Tissue Engineering Applications显示文摘Costa-Pinto A R Correlo V M Sol P C 2009Biomacromolecules2009,10,:1
8Adhesion,proliferation,and osteogenic differentiation of a mouse mesenchymal stem cell line (BMC9) seeded on novel melt-based chitosan/polyester 3D porous scaffolds显示文摘Costa-Pinto AR Salgado AJ Correlo VM 2008Tissue Eng Part A2008,14,6:1
9Properties of meh processed chitosan and aliphatic polyester blends 显示文摘CORRELO V BOESEL L BHATFACHARYA M 2005Materials Science and Engineering: Structural Materials Properties Microstructure and Processing2005,403,12:1
10Assessment of the suitability of chitosan/poly butylene succinate scaffolds seeded with mouse mesenehymal progenitor cells for a cartilage tis- sueengineering approach显示文摘Oliveira J T Correlo V M Sol P C 2008Tissue Engineering:Part A2008,14,:1
11Adhesion, pro- liferation,and osteogenic differentiation of a mouse mesenchy- mal stem cell line (BMC9) seeded on novel melt-based chi- tosan/polyester 3D porous scaffolds 显示文摘Costa-Pinto AR Salgado A J Correlo V M etal 2008Tissue Engineering: Part A2008,14,:1
12显示文摘Vitor M Correlo Luciano F Boesel Mrinal Bhattacharya 2005Macromolecular Materials and Engineering2005,290,12:1
13Evaluation of Novel 3D Architectures Based on Knitting Technologies for Engineering Biological Tissues显示文摘Textile-based technologies are considered as potential routes for the production of 3D porous architectures for tissue engineering( TE) applications. We describe the use of two polymers,namely polybutylene succinate( PBS) and silk fibroin(SF) to produce fiber-based finely tuned porous architectures by weft and warp knittings. The obtained knitted constructs are described in terms of their morphology, mechanical properties,swelling ability,degradation behaviour,and cytotoxicity. Each type of polymer fibers allows for the processing of a very reproducible intra-architectural scaffold geometry,with distinct characteristics in terms of the surface physicochemistry,mechanical performance,and degradation capability,which has an impact on the resulting cell behaviour at the surface of the respective biotextiles. Preliminary cytotoxicity screening shows that both materials can support cell adhesion and proliferation. Furthermore, different surface modifications were performed( acid /alkaline treatment, UV radiation,and plasma) for modulating cell behavior. An increase of cell-material interactions were observed,indicating the important role of materials surface in the first hours of culturing. Human adipose-derived stem cells( hASCs) became an emerging possibility for regenerative medicine and tissue replacement therapies. The potential of the recently developed silk-based biotextile structures to promote hASCs adhesion,proliferation,and differentiation is also evaluated. The obtained results validate the developed constructs as viable matrices for TE applications. Given the processing efficacy and versatility of the knitting technology, and the interesting structural and surface properties of the proposed polymer fibers,it is foreseen that our developed systems can be attractive for the functional engineering of tissues such as bone,skin,ligaments or cartilage and also for develop more complex systems for further industrialization of TE products.RIBEIRO Viviana Pinto RIBEIRO Ana Soares SILVA Carla Joana DURES Nelson Feio BONIFCIO Graa CORRELO Vitor Manuel MARQUES Alexandra Pinto SOUSA Rui Amandi OLIVEIRA Ana Leite REIS Rui Luís 2013Journal of Donghua University(English Edition)2013,30,5:0
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