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SBS/粒化物复合沥青的储存稳定性研究 被引量:2
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作者 李晓娟 李渊 +1 位作者 李兵 赵兵伟 《中外公路》 北大核心 2014年第6期249-252,共4页
为了制备储存稳定性能优良的SBS/粒化物复合改性沥青,该文首先采用荧光显微镜对SBS/粒化物复合改性沥青的工程相容性进行研究。结果表明:采用合适的加工工艺,复合改性沥青的工程相容性良好,接着研究了不同稳定剂及改性剂掺量对改性沥青... 为了制备储存稳定性能优良的SBS/粒化物复合改性沥青,该文首先采用荧光显微镜对SBS/粒化物复合改性沥青的工程相容性进行研究。结果表明:采用合适的加工工艺,复合改性沥青的工程相容性良好,接着研究了不同稳定剂及改性剂掺量对改性沥青指标的影响,为制备储存稳定性能优良的SBS/粒化物复合改性沥青提供理论指导及试验基础。 展开更多
关键词 复合沥青 储存稳定 工程相容性 稳定剂
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Study on biocompatibility of PDLLA/HA/DBM with co-cultured human osteoblasts in vitro
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作者 郭乔楠 赵建华 卢佳友 《Journal of Medical Colleges of PLA(China)》 CAS 2003年第5期277-282,共6页
Objective: To evaluate the osteocompatibility of D, L-polylactic/hydroxyapatite/decalcifying bone matrix (PDLLA/HA/DBM), and compare with PDLLA and DBM. Methods: Human primary osteoblasts isolated from the femoral hea... Objective: To evaluate the osteocompatibility of D, L-polylactic/hydroxyapatite/decalcifying bone matrix (PDLLA/HA/DBM), and compare with PDLLA and DBM. Methods: Human primary osteoblasts isolated from the femoral head of patients were inoculated onto PDLLA/HA/DBM, PLA and DBM respectively. The proliferation rate and collagen Ⅰ expression were detected. The interface between biomaterial and osteoblasts was investigated with phase contrast microscopy and electron scanning microscopy. Results: Best proliferation rate was observed with the PDLLA/HA/DBM and followed by DBM and PLA, suggesting that PDLLA/HA/DBM satisfying most requirements for the cultivation of human osteoblasts. Scanning electron microscopy showed the morphology of osteoblasts was correlated with the proliferation data. The cells, well spread and flattened, were attached closely on the surface of biomaterial with an arched structure and had normal morphology. The extracellular collagenous matrixs covered the surface of biomaterial and packed the granules of biomaterial. Conclusion: PDLLA/HA/DBM can form osteointerface early and have a good biocompability. 展开更多
关键词 biomaterial OSTEOBLASTS BIOCOMPATIBILITY cell culture D L-polylactic/hydroxyapatite/decalcifying bone matrix(PDLLA/HA/DBM)
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Preparation and Biocompatibility of Porous Poly(vinylalcohol)-Glycosaminoglycan-Collagen Scaffold 被引量:1
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作者 LI Qin-hua MO Xiao-hui 《Chinese Journal of Biomedical Engineering(English Edition)》 2013年第1期15-22,共8页
This paper aims to prepare a PVA-GAG-COL composite with polyvinyl alcohol (PVA), glycosaminoglycan (GAG) and collagen (COL) by the method of freeze drying and to investigate the feasibility as a tissue engineering sca... This paper aims to prepare a PVA-GAG-COL composite with polyvinyl alcohol (PVA), glycosaminoglycan (GAG) and collagen (COL) by the method of freeze drying and to investigate the feasibility as a tissue engineering scaffold for tissue or organ repairing. In this study, SEM was used to observe the morphology. Biocompatibility was tested by cell culture with the extracted fluid of composite materials. Different proportional scaffolds could be obtained with different concentrations and alcoholysis degree of PVA. Different proportional scaffolds also had different porous structures. SEM proved that large amount of porous structure could be formed. Biocompatibility test showed that the extracted fluid of composite materials was nontoxic, which could promote the adhesion and proliferation of the fibroblast. Fibroblast could grow on the scaffold normally.A porous scaffold for tissue engineering with high water content can be fabricated by PVA, GAG and COL, which has excellent cell biocompatibility. The porous structure shows potential in tissue engineering and cell culture. 展开更多
关键词 poly(vinylalcohol) glycosaminoglycan collagen porous composite scaffold biocompatibility
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Novel three-dimensional nerve tissue engineering scaffolds and its biocompatibility with Schwann cells 被引量:10
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作者 袁健东 聂闻博 +3 位作者 傅强 连小峰 侯铁胜 郯志清 《Chinese Journal of Traumatology》 CAS 2009年第3期133-137,共5页
Objective: To develop a novel scaffolding method for the copolymers poly lactide-co-glycolide acid (PLGA) to construct a three-dimensional (3-D) scaffold and explore its biocompatibility through culturing Schwann... Objective: To develop a novel scaffolding method for the copolymers poly lactide-co-glycolide acid (PLGA) to construct a three-dimensional (3-D) scaffold and explore its biocompatibility through culturing Schwann cells (SCs) on it. Methods: The 3-D scaffolds were made by means of melt spinning, extension and weaving. The queueing discipline of the micro-channels were observed under a scanning electronic microscope (SEM).The sizes of the micropores and the factors of porosity were also measured. Sciatic nerves were harvested from 3-day-old Sprague Dawley (SD) rats for culture of SCs. SCs were separated, purified, and then implanted on PLGA scaffolds, gelatin sponge and poly-L-lysine (PLL)-coated tissue culture poly-styrene (TCPS) were used as biomaterial and cell-supportive controls, respectively. The effect of PLGA on the adherence, proliferation and apoptosis of SCs were examined in vitro in comparison with gelatin sponge and TCPS. Results: The micro-channels arrayed in parallel manners, and the pore sizes of the channels were uniform. No significant difference was found in the activity of Schwann cells cultured on PLGA and those on TCPS (P〉0.05), and the DNA of PLGA scaffolds was not damaged. Conclusion: The 3-D scaffolds developed in this study have excellent structure and biocompatibility, which may be taken as a novel scaffold candidate for nerve-tissue engineering. 展开更多
关键词 Schwann cell Tissue engineering Biocompatible materials
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