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姓名: 罗丙红 部门: 化学与材料学院 性别: 女 职务: 职称: 教授 学位: 博士 毕业院校: 中山大学 联系电话: 电子邮箱: tluobh@jnu.edu.cn 办公地址: 通讯地址: 邮编: 传真: 荣誉奖励: |
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个人简介罗丙红,教授,博导 近年一直从事生物医用材料的设计与应用开发研究,为“人工器官及材料”教育部工程中心和“广东省教育厅生物材料重点实验室”的骨干成员之一。近年主持国家自然科学基金4项、省部级项目13项;获得第24届国家发明专利优秀奖1项(2023),教育部科学技术奖二等奖1项(2006),广东省自然科学奖二等奖1项(2021),广东省科学技术奖二等奖3项(2006,2012,2024),中华医学科技奖1项(2023);申报国家发明专利29项,已获授权专利26项,成功转让专利2项;在ACS Nano, Bioactive Materials, Chemical Engineering Journal, Composites Part B: Engineering等期刊发表学术论文100余篇。 学习经历1998-9至2003-6, 中山大学, 高分子化学与物理, 博士 1994-9至1998-6, 湘潭大学, 化学, 学士 工作经历2011-10至现在, 暨南大学, 材料科学与工程系, 教授 2005-10至2011-9, 暨南大学, 材料科学与工程系, 副教授 2003-7至2005-9, 暨南大学, 材料科学与工程系, 讲师 研究方向1. 医用组织修复材料的研究与开发 2. 新型功能材料的仿生设计 3. 3D打印墨水的设计与应用 主要论文近三年发表的主要论文: 2. Kun Liu, Lin Li, Jingsheng Chen, Yizhi Li, Wei Wen, Lu Lu, Lihua Li, Hong Li, Mingxian Liu, Changren Zhou, Binghong Luo*. Bone ECM-like 3D printing scaffold with liquid crystalline and viscoelastic microenvironment for bone regeneration, ACS Nano, 2022, 16(12): 21020-21035. 3. Lin Li, Kun Liu, Yating Lin, Wei Wen, Shan Ding, Mingxian Liu, Changren Zhou, Binghong Luo*. Abundant nucleation sites-available liquid crystal hydrogel mimics bone ECM mineralization to boost osteogenesis, Composites Part B: Engineering, 2024, 275: 111340. 4. Tianyi Sun, Chunhua Chen, Kun Liu, Lin Li, Ruixi Zhang, Wei Wen, Shan Ding, Mingxian Liu, Changren Zhou, Binghong Luo*. A wood-derived periosteum for spatiotemporal drug release: Boosting bone repair through anisotropic structure and multiple functions, Advanced Healthcare Materials, Advanced Healthcare Materials,2024, 2400707 5. Yizhi Li, Shengyue Tang, Ziang Luo, Kun Liu, Yiting Luo, Wei Wen, Shan Ding, Lihua Li, Mingxian Liu, Changren Zhou, Binghong Luo*. Chitin whisker/chitosan liquid crystal hydrogel assisted scaffolds with bone-like ECM microenvironment for bone regeneration, Carbohydrate Polymers, 2024, 332:121927. 6. Lin Li, Yating Lin, Kun Liu, Runshan Huang, Wei Wen, Yadong Huang, Mingxian Liu, Changren Zhou, Shan Ding*, Binghong Luo*. Multiple-Effect Combined Hydrogels: “Temporal Regulation” Treatment of Osteosarcoma-Associated Bone Defects with Switchable Hyperthermia and Bioactive Agents, Advanced Healthcare Materials, 2024, 2402505. 7. Jingsheng Chen, Zelin Zhu, Jiaqing Chen, Yiting Luo, Lin Li, Kun Liu, Shan Ding, Hong Li, Mingxian Liu, Changren Zhou, Binghong Luo*. Photocurable liquid crystal hydrogels with different chargeability and tunable viscoelasticity based on chitin whiskers, Carbohydrate Polymers, 2023, 301: 120299. 8. Kun Liu, Xiangheng He, Zhaoyu Zhange, Tianyi Sun, Jiaqing Chen, Chunhua Chen, Wei Wen, Shan Ding, Mingxian Liu, Changren Zhou, Binghong Luo*. Highly anisotropic and elastic cellulosic scaffold guiding cell orientation and osteogenic differentiation via topological and mechanical cues, Carbohydrate Polymers, 2023, 321: 121292. 9. Yiting Luo, Yizhi Li, Kun Liu, Lin Li, Wei Wen, Shan Ding, Yadong Huang, Mingxian Liu, Changren Zhou, Binghong Luo*. Modulating of Bouligand structure and chirality constructed bionically based on the self-assembly of chitin whiskers, Biomacromolecules, 2023, 24 (6): 2942-2954. 10. Lin Li, Kun Liu, Jingsheng Chen, Wei Wen, Hong Li, Lihua Li, Shan Ding, Mingxian Liu, Changren Zhou, Binghong Luo*. Bone ECM-inspired biomineralization chitin whisker liquid crystal hydrogels for bone regeneration, International Journal of Biological Macromolecules, 2023, 231: 123335. 11. Ling Zhu & Shitian Chen, Kun Liu, Wei Wen, Lu Lu, Shan Ding, Changren Zhou, Binghong Luo*. 3D poly (L-lactide)/chitosan micro/nano fibrous scaffolds functionalized with quercetin-polydopamine for enhanced osteogenic and anti-inflammatory activities, Chemical Engineering Journal, 2020, 391: 123524. 12. Xiangheng He, Wenyan Li, Kun Liu, Wei Wen, Lu Lu, Mingxian Liu, Changren Zhou, Binghong Luo*. Anisotropic and robust hydrogels combined osteogenic and angiogenic activity as artificial periosteum, Composites Part B: Engineering, 2022, 233: 10962. 13. Kun Liu, Shengyue Tang, Ling Zhu, Wei Wen, Mingxian Liu, Hong Li, Changren Zhou, Binghong Luo*. Bio-inspired liquid crystal gel with adjustable viscoelasticity to modulate cell behaviors and fate, Composites Part B: Engineering, 2022, 234: 109704. 14. Wenyan Li, Yaoting Lu, Kun Liu, Wei Wen, Mingxian Liu, Hong Li, Changren Zhou, Binghong Luo*. Preparation of HAp whiskers with or without Mg ion and their effects on the mechanical properties and osteogenic activity of the poly(D,L-lactide), Composites Part B: Engineering, 2020, 196: 108137. 15. Kun Liu, Wenyan Li, Shitian Chen, Wei Wen, Lu Lu, Mingxian Liu, Changren Zhou, Binghong Luo*. The design, fabrication and evaluation of 3D printed gHNTs/gMgO whiskers/PLLA composite scaffold with honeycomb microstructure for bone tissue engineering, Composites Part B: Engineering, 2020, 192: 108001. 16. Shengyue Tang, Kun Liu, Jingsheng Chen, Yizhi Li, Mingxian Liu, Lu Lu, Changren Zhou, Binghong Luo*. Dual-crosslinked liquid crystal hydrogels with controllable viscoelasticity for regulating cell behaviors, ACS Applied Materials & Interfaces, 2022, 14(19): 21966-21977. 17. Zelin Zhu, Yating Lin, Lin Li, Kun Liu, Wei Wen, Shan Ding, Mingxian Liu, Lu Lu, Changren Zhou, Binghong Luo*. 3D printing drug-free scaffold with triple-effect combination induced by Cu-LDHs for the treatment of bone defects, ACS Applied Materials & Interfaces, 2023, 15(50): 58196-58211. 19. Jiaqing Chen, Jingsheng Chen, Zelin Zhu, Tianyi Sun, Mingxian Liu, Lu Lu, Changren Zhou, Binghong Luo*. Drug-loaded and anisotropic wood-derived hydrogel periosteum with super antibacterial, anti-inflammatory and osteogenic activities, ACS Applied Materials & Interfaces2022, 14: 50485-50498. 20. Kun Liu, Shengyue Tang, Wenyan Li, Wei Wen, Shan Ding, Mingxian Liu, Hong Li, Changren Zhou, Binghong Luo*. Facile method to create poly(D,L-lactide) composite membranes with sequential chitin whisker layers for tunable strength and cell adhesion. ACS Sustainable Chemistry & Engineering, 2021, 9(12): 4440-4452. 21. Kun Liu, Ling Zhu, Shengyue Tang, Wei Wen, Lu Lu, Mingxian Liu, Changren Zhou, Binghong Luo*. Fabrication and evaluation of a chitin whisker/poly(L-lactide) composite scaffold by the direct trisolvent-ink writing method for bone tissue engineering, Nanoscale, 2020, 12(35): 18225-18239. 22. Wenyan Li, Xiangheng He, Kun Liu, Wei Wen, Lu Lu, Mingxian Liu, Changren Zhou, Binghong Luo*. Creating ultrastrong and osteogenic chitin nanocomposite hydrogel via chitin whiskers with different surface chemistry, ACS Sustainable Chemistry & Engineering, 2020, 8: 17487-17499. 主要著作承担课题
发明专利近年获主要授权专利: 1. 罗丙红,朱泽林,李琳,黎一志,刘坤,文伟。表面修饰载药层状双氢氧化物的聚乳酸复合材料及制备方法与应用,国家发明专利,授权专利号:ZL202210562745.1 2. 罗丙红,陈嘉晴,何湘衡,孙甜艺,罗忆婷。一种高效抗菌剂组合、天然木材基水凝胶骨膜材料及应用,国家发明专利,授权专利号:ZL202210550879.1 3. 罗丙红,刘坤,朱凌,周长忍。一种甲壳素晶须液晶弹性体修饰的聚乳酸复合材料及其制备方法与应用,国家发明专利,授权专利号:ZL202011038862.5 4. 罗丙红,唐盛月,刘坤,周长忍。一种甲壳素晶须液晶弹性体材料及其制备方法与应用,国家发明专利,授权专利号:ZL202011537922.8 5. 罗丙红,李文彦,文伟,周长忍。一种高强度甲壳素复合水凝胶膜材料及其制备方法与应用,授权专利号:ZL202010553045.7 6. 罗丙红,刘坤,文伟,周长忍。一种层层自组装甲壳素晶须修饰的聚乳酸复合材料及其制备方法与应用,授权号:ZL202010436055.2 7. 罗丙红,朱凌,刘文军,文伟,周长忍。一种3D打印复合生物墨水材料及其制备方法与应用,授权专利号:ZL201910533244.9 8. 罗丙红,刘文军,朱凌,马运发,文伟,周长忍。一种表面修饰有序甲壳素晶须层的聚乳酸复合膜及其制备方法与应用。授权专利号:ZL201811374028.6 9. 罗丙红,陈学兴,文伟,周长忍。一种鸡蛋膜/羟基磷灰石复合材料及其制备方法与应用,中国发明专利,授权专利号:ZL201810038767.1 10.罗丙红,刘桦,文伟,周长忍。一种载淫羊藿苷和去铁胺的聚乳酸骨组织支架及制备方法和应用,中国发明专利,授权专利号:ZL201810082736.6 11.罗丙红,罗闯,文伟,周长忍,一种壳寡糖或其衍生物修饰的聚氨酯纤维敷料及制备方法,中国发明专利,授权号:ZL201611199517.3 12.罗丙红,刘桦,文伟,周长忍,一种甲壳素晶须/壳聚糖纳米纤维双重增强生物降解聚酯纤维复合材料及其制备与应用,中国发明专利,授权号:ZL201611041826.8 13.罗丙红,邹子平,李文玲,周长忍,甲壳素晶须/氧化镁晶须/生物降解聚酯复合材料及其制备与应用,中国发明专利,授权号:ZL201610030442.X 14.罗丙红,罗闯,文伟,周长忍,聚多巴胺改性埃洛石纳米管/聚乳酸复合材料及其制备与应用,中国发明专利,授权号:ZL201510988246.9 15.罗丙红,文伟,刘桦,周长忍,氧化镁晶须/生物降解聚酯复合材料及其制备方法与应用,中国,授权号:ZL201310301346.0 16.罗丙红,徐湾,何杰祥,李慧华,周长忍,一种环状生物降解脂肪族聚酯及其制备方法,中国,授权号:ZL201310330299.2 17.罗丙红,文伟,谢伟静,章锦禧,刘明贤,周长忍。改性埃洛石纳米管增强生物降解聚酯复合材料的制备方法,授权号:ZL201210421335.1 18.罗丙红,徐宠恩,杨静,周长忍。生物功能化可降解聚酯及其制备方法,2011.10, 授权号:ZL201110414607.0 荣誉与奖励: 2024年获得广东省科技进步奖二等奖(排名第四) 2023年获得第24届国家发明专利优秀奖(排名第一) 2023年获得中华医学科技奖(排名第四) 2020年获得广东省自然科学奖二等奖(排名第二) 2012年被评为暨南大学优秀教学管理奖 2012年获得广东省科学技术奖二等奖(排名第七) 2009年被评为暨南大学先进科研工作者 2008年被暨南大学遴选为广东省高等学校千百十校级培养对象 2006年获得国家教育部科技发明奖二等奖(排名第四) 2006年获得广东省科学技术奖二等奖(排名第四) 2006年和2008年分别获得暨南大学“理工学院科技新秀”称号 讲授课程·本科生课程:《高分子化学与物理基础》、《高分子材料》、《生物材料》 ·研究生课程:《新型高分子材料》、《功能材料》、《功能材料》 荣誉奖励社会职务 |