PLGA造句
1、Study of PLGA Based Magnetic Microspheres
2、Electrospinning of PLGA/Gt Blend System
3、Experimental Study on the Preventive Effect of PLGA and PLGA+Chitosan Film on Peripheral Nerve Adhesion;
4、Synthesis, Characterization and Application of Triblock Thermosensitive Copolymers PLGA-PEG-PLGA
5、Preparation, Degradation and Cytocompatability of Nest-like Patterned Electrospun PLGA and PLGA/β-TCP Scaffolds
6、Study on Electrospun PLGA/Chitosan Composite Membranes for Artificial Skin;
7、Research on Sustained Releasable Chitosan Scaffolds with PLGA Microspheres Embedded
8、Preparation and Biocompatibility Research of PLGA/PLLA/HA Synthetic Material
9、Research on Embryonic Stem Cells and PLGA Biocompatibility
10、Studies on PLGA Microspheres Containing Methotrexate for Intra-articular Injection;
11、Experiment Study on Cytocompatibility of Rabbit Vascular Smooth Cells and a New Type of Coronary Biodegradable Polymer-PLGA and PLGA-PEG;
12、Methods with chloroform as the solvent, the PLGA fiber scaffolds with different surface morphology were produced altering PLGA solution concentration and the flowing rate.
13、A Comparature Research of Acellular Nerve Allografts and PLGA Conduits in Repairing Rat Sciatic Nerve Defects
14、Preparation of cyclosporine A loaded mPEG-PLGA copolymer micelles and study its pharmacokinetics in rats
15、Repairing Effects of Olfactory Ensheathing Cells Combined with PLGA Conduit on Rat Sciatic Nerve Defect;
16、Perfusion Culture of Human Mensenchymal Stem Cells Seeded on PLGA Scaffold and Osteogenic Differention;
17、Preparation and in vitro release characteristics of vincristine sulfate-loaded PLGA microcapsules
18、PLGA-Nanoparticles as A Valid Vector for Carrying Antisense Oligonucleotide of Epidermal Growth Factor Receptor in SCCⅦ Cell Lines
19、Therapeutic effect of local implantation with temozolomide/PLGA microsphere in treatment of rat C6 glioma in vivo
20、Experimental research on the biocompatibility of PLGA-type-Ⅰcollagen-Chitosan composite membrane as artificial spinal dura mater
21、Experimental Study on Replacement of Canine Cervical Esophagus with Tissue-engineered Esophagus Constructed by Seeding Autologous Cells on PLGA Scaffolds;
22、Repair of Different Sizes of Articular Cartilage Defects in the Knees of Rabbits Using bFGF/PLGA Sustained Release Microspheres;
23、Conclusion: It suggested SP-PLGA can promote the proliferation of human periodontal ligament fibroblasts through a long period of controlled release of SP.
24、目的制备并检测CPC -PLGA复合物,为骨组织工程研究提供新的支架材料。
25、Effects of PLGA-inorganic Composite Biomaterials on the Proliferation and Differentiation of Mouse Tooth Germ Cells and Postnatal Human Dental Pulp Stem Cells;
26、Conclusion: Human oral mucosa can be developed successfully with tissue-engineering methods, and PLGA can be used as scaffold for tissue-engineered oral mucosa.
27、对于PLGA涂层,由于其成孔*能比PU差,湿度较低时容易出现岛状结构。
28、结论:SP -PLGA纳米微球通过持续释放活*SP,可在较长时间内促进牙周膜成纤维细胞的增殖。
29、将由此而来的混合亚微粒的组分和表面*质与不含铁氧体的PLGA亚微粒进行了对比研究。
31、目的研究仿生矿化的聚乳*-羟基乙*共聚物(PLGA)作为骨组织工程支架材料的可行*。
32、方法将鼠胚皮质神经元细胞种在PLGA生物膜支架上,用自制的神经轴突延长装置对其延长。
33、方法取大鼠颅盖骨成骨细胞与PLGA材料联合培养,采用倒置显微镜及环境扫描电镜观察成骨细胞生长情况
34、目的以聚乳*-羟基乙*共聚物(PLGA)为材料,采用静电纺丝方法制备纤维支架,考察制备参数对纤维支架结构及纤维直径的影响规律。
35、雷帕霉素是一种抗增生型*物,*烯*树脂是一种通用的非降解型医用高分子材料,而PLGA是一种常用的可降解医用高分子材料。
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