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个人简介

李明忠,1963年5月生,教授,博士生导师,工学博士,全国百篇优秀博士学位论文奖获得者,江苏省青蓝工程中青年学术带头人,苏州大学“东吴学者”、苏州大学“丝蛋白生物材料”科技创新团队带头人。中国生物材料学会高分子材料分会委员,江苏省生物技术协会常务理事。长期从事蚕丝蛋白材料及生物医用材料的研究,涉及蚕丝丝素材料的制备、结构、理化性能、生物学性能及其生物医学应用研究及开发。主持完成国家863计划、国家973计划子课题、国家自然科学基金项目、江苏省重大科技成果转化资金等科研项目20多项。现主持国家重点研发计划“生物医用材料研发与组织器官修复替代”重点专项项目、国家自然科学基金等科研项目。发表学术论文200余篇,完成科技成果5项,获得国家发明专利30多项,获得科技进步奖4项。 荣誉: 1. 江苏省青蓝工程中青年学术带头人 2. 江苏省高校先进科研工作者 3. 苏州市优秀教育工作者 4. 苏州大学中青年学术带头人 5. 苏州大学“东吴学者计划”首批高层次人才 获奖: 1. 全国优秀博士学位论文 2. 中国纺织工业联合会科学技术进步二等奖 3. 中国纺织工业协会科学技术三等奖 4. 苏州市科学技术进步二等奖 5 . 江苏纺织技术创新奖 6. 苏州大学北美校友会杰出成就奖 7. 周氏医学教育科研基金科研优秀奖

研究领域

(1)丝蛋白生物材料;(2)纺织功能材料

近期论文

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[1] Luo Z, Li J, Qu J, Sheng W, Yang J, Li M. Cationized Bombyx mori silk fibroin as a delivery carrier of VEGF165-Ang-1 coexpression plasmid for dermal tissue regeneration. Journal of Materials Chenistry B,2019,7: 80-94. [2] Li X, You R, Luo Z, Chen G, Li M. Silk fibroin scaffolds with micro/nano fibrous architecture for dermal regeneration. Journal of Materials Chenistry B, 2016,4:2903-2912. [3] Yan S, Zhang Q, Wang J, Liu Y, Lu S, Li M, Kaplan DL. Silk fibroin/chondroitin sulfate/hyaluronic acid ternary scaffolds for dermal tissue reconstruction. Acta Biomaterialia, 2013,9:6771-6782. [4] Zhang Q, Zhao Y, Yan S, Yang Y, Zhao H, Li M, Lu S, Kaplan DL. Preparation of uniaxial multichannel silk fibroin scaffolds for guiding primary neurons. Acta Biomaterialia , 2012, 8(7):2628-2638. [5] Wu X, Hou J, Li M, Wang J, Kaplan DL, Lu SZ. Sodium dodecyl sulfate-induced rapid gelation of silk fibroin. Acta Biomaterialia, 2012,8(6):2185-2192. [6] Yu Y, Hu Y, Li X, Liu Y, Li M, Yang J, Sheng W. Spermine-modified Antheraea pernyi silk fibroin as a gene delivery carrier. International Journal of Nanomedicine, 2016,11:1013–1023. [7] Wang W, Yu Y, Jiang Y, Qu J, Niu L, Yang J, Li M. Silk fibroin scaffolds loaded with angiogenic genes in adenovirus vectors for tissue regeneration. Journal of Tissue Engineering and Regenerative Medicine, 2019,13:715-728. [8] Luo H, Chen Y, Niu L, Liang A, Yang J, Li M. Hepatoma cell-targeted cationized silk fibroin as a carrier for the inhibitor of growth 4-interleukin-24 double gene plasmid. Journal of Biomedical Nanotechnology, 2019, 15: 1622–1635. [9] You R, Xu Y, Liu Y, Li X, Li M. Comparison of the in vitro and in vivo degradations of silk fibroin scaffolds from mulberry and nonmulberry silkworms. Biomed. Mater. 2015,10:015003. [10] You R, Li X, Luo Z, Qu J, Li M. Directional cell elongation through filopodia-steered lamellipodial extension on patterned silk fibroin films. Biointerphases, 2015,10(1):011005. [11] Ma C, Lv L, Liu Y, Yu Y, You R, Yang J, Li M. Antheraea pernyi silk fibroin for targeted gene delivery of VEGF165-Ang-1 with PEI. Biomed. Mater. 2014,9:035015. [12] You R, Li X, Xu Y, Liu Y, Lu S, Li M. The micropillar structure on silk fibroin film influence intercellular connection mediated by nanotubular structures. Materials, 2014,7:4628-4639. [13] Qu J, Liu Y, Yu Y, Li J, Luo J, Li M. Silk fibroin nanoparticles prepared by electrospray as controlled release carriers of cisplatin. Materials Science and Engineering C, 2014, 44: 166–174. [14] You R, Li X, Liu Y, Liu G, Lu S, Li M. Response of filopodia and lamellipodia to surface topography on micropatterned silk fibroin films. Journal of Biomedical Materials Research Part A, 2014:102A:4206–4212. [15] Zhang Y, Liu Y, Li M, Lu S, Wang J. The effect of iron incorporation on the in vitro bioactivity and drug release of mesoporous bioactive glasses. Ceramics International, 2013, 39, 6591–6598.

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