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华南理工大学研究生导师简介-陈晓峰

本站小编 Free考研网/2019-05-05

更新日期:2018年7月24日
姓 名 陈晓峰 性 别 男
出生年月 1956年10月 籍贯 山东东平县
民 族 汉族 政治面貌 党员
最后学历 博士研究生毕业 最后学位 工学博士
技术职称 教授 导师类别 博导
行政职务 系主任 Email chenxf@scut.edu.cn
工作单位 华南理工大学材料科学与工程学院 邮政编码 510640
通讯地址 广州市天河区五山路381号
单位电话 **


个人简介
工学博士,教授,博士生导师。担任华南理工大学生物医学工程系主任、生物医学材料与工程教育部重点实验室主任、国家人体组织功能重建工程技术研究中心副主任。
主要学术兼职:国际生物材料科学与工程联合会Fellow、中国生物医学工程学会生物材料分会主任委员、中国生物材料学会常务理事,全国外科植入物和矫形器械标准化技术委员会委员,教育部生物医学工程专业教学指导委员会委员。
长期从事生物医学材料研究工作,研究方向涉及生物活性玻璃与陶瓷、溶胶-凝胶及纳米仿生合成生物活性材料、材料与细胞的相互作用及其组织修复机制、骨、齿及皮肤创面修复材料及其产品研发等。先后承担了包括国家973、863、支撑计划、国家自然科学基金重点基金、联合基金及面上项目、国家十三五重点专项(课题)、广东省重点科技计划项目等20多项国家和省、市级科研项目。主持研制的医用可切削生物活性微晶玻璃用于椎板置换40余例,植入最长者已达20年,收到良好的治疗效果;主持研制的医用生物活性玻璃微孔材料被临床应用于骨肿瘤切除后的骨缺损填充70余例,使病人切除部位的骨组织得以重建和修复。在生物医学材料领域发表学术论文180余篇。授权国家发明专利20余件。获得包括国家技术发明二等奖、教育部自然科学一等奖、广东省科技发明一等奖在内的国家和省部级奖励5项。
工作经历
1982-1995:山东轻工业学院(现:齐鲁工业大学)材料系 助教、讲师、副教授
1995-1998:美国佛罗里达大学材料学院先进材料研究中心,访问学者
1999-2003:山东轻工业学院(现:齐鲁工业大学)材料系 教授
2003至今:华南理工大学材料学院教授,博士生导师
教育经历
1978-1982 西北轻工业学院(现:陕西科技大学) 材料学 本科生(学士学位)
1987-1990 西北轻工业学院(现:陕西科技大学) 材料学 硕士研究生 (硕士学位)
2000-2003 华南理工大学 材料学 博士研究生 (博士学位)
获奖、荣誉称号
2012年获国际生物医学材料与科学联合会会士(Fellow)称号;
2014年获华南理工大学第六届“我最喜爱的导师”称号;
获得包括国家技术发明二等奖、教育部自然科学一等奖、广东省科技发明一等奖在内的国家和省部级奖励5项。
社会、学会及学术兼职
国际生物医学材料与工程联合会Fellow
中国生物医学工程学会常务理事,生物材料分会主任
中国生物材料学会常务理事,生物陶瓷分会副主任
国家卫计委医管中心3D打印专家委员会副主任
教育部生物医学工程专业教学指导委员会委员
研究领域
(1)具有骨、齿、皮肤创面再生修复特性的新型生物医用材料;
(2)微纳米生物活性玻璃及其复合材料;
(3)新型组织工程支架分子设计及多级结构构建;
(4)支架化学组成及微量添加元素对于介导干(祖)细胞定向分化及增殖作用机制研究。
科研项目
1. 具有基因激活作用的新型生物活性材料关键科学问题研究 (**),国家自然科学基金重点项目,2009年1月至2012年12月;
2. 面向难愈合骨缺损高效修复的新型微纳米生物活性材料基础与应用研究 (U**),国家自然科学基金-广东省联合基金项目,2016年1月至2019年12月;
3. 智能型高生物响应特性骨齿科修复材料的研究(**),国家自然科学基金面上项目,2005年01月至2007年12月;
4. CaO-P2O5-SiO2系统生物活性纳米粉体-胶原基骨修复材料的仿生制备及性能研究(** ),国家自然科学基金面上项目,2007年01 月至 2009年12月;
5. 基因介导型骨修复材料及支架的制备与结构性能研究 (**),国家自然科学基金面上项目,2011年01月至2013年12月;
6. 用于难愈创面修复的新型介孔生物玻璃及其胶原复合型生物医学材料研究(**),国家自然科学基金面上项目,2012年1月-2015年12月;
7. 具有促血管生成功能的牙槽骨再生材料的研究(**),国家自然科学基金面上项目, 2017年1月至2020年12月;
8.复合OGP基因的生物玻璃/PCL骨组织工程支架的研究(**002),教育部博导基金项目,2012年1月至2014年12月。
发表论文
2013年来发表的学术论文:
1.An interpenetrating HA/G/CS biomimic hydrogel via Diels–Alder click chemistry for cartilage tissue engineering; Feng Yu, Xiaodong Cao*, Lei Zeng, Qing Zhang, Xiaofeng Chen*, Carbohydrate Polymers, 2013, 97(1): 188-195
2.Biomimetic and molecular level-based silicate bioactive glass-gelatin hybrid implants for loading-bearing bone fixation and repair; Bo Lei*, Ling Wang, Xiaofeng Chen, ChaeSu-Kyoung, Journal of Materials Chemistry B, 2013, 1(38): 5153-5162;
3.Facile synthesis and in vitro bioactivity of monodispersed mesoporous bioactive glass sub-micron spheres; Qing Hu, Xiaofeng Chen*, Naru Zhao, Yuli Li, Materials Letters, 2013, 106(1): 452-455;
4.Investigation of emulsified, acid and acid-alkali catalyzed mesoporous bioactive glass microspheres for bone regeneration and drug delivery; Guohou Miao, Xiaofeng Chen*, Hua Dong, Liming Fang, Cong Mao, Yuli Li, Zhengmao Li, Qing Hu, Materials Science and
5.Silica Aerogel improves the biocompatibility in a Poly-ε-caprolactone composite used as a tissue engineering scaffold, Jianhua Ge, Musen Li, Qingguo Zhang, Christopher Z. Yang, Paul H. Wooley, Xiaofeng Chen, Shang-You Yang*, International Journal of Polymer Science, 2013, 2013: 402859;
6.Stiff macro-porous bioactive glass–ceramic scaffold: Fabrication by rapid prototyping template characterization and in vitro bioactivity; Zhengmao Li, Xiaofeng Chen*, Naru Zhao, Hua Dong, Yuli Li, Cai Lin; Materials Chemistry and Physics, 2013, 141(1): 76-80;
7.An injectable hyaluronic acid/PEG hydrogel for cartilage tissue engineering formed by integrating enzymatic crosslinking and Diels–Alder “click chemistry”; Feng Yu, Xiaodong Cao*, Yuli Li, Lei Zeng, Bo Yuan, Xiaofeng Chen*; Polymer Chemistry, 2014, 5(3): 1082-1090";
8.Diels-Alder crosslinked HA/PEG hydrogels with high elasticity and fatigue resistance for cell encapsulation and articular cartilage tissue repair; Feng Yu, Xiaodong Cao*, Yuli Li, Lei Zeng, Jiehua Zhu, Gang Wang, Xiaofeng Chen*; Polymer Chemistry, 2014, 5(17): 5116-5123;
9.Effect of microcavitary alginate hydrogel with different pore sizes on chondrocyte culture for cartilage tissue engineering"Lei Zeng, Yongchang Yao, Dong-an Wang*, Xiaofeng Chen*; Materials Science and Engineering C, 2014, 34(1): 168-175;
10.Fabrication and characterization of dodecylamine derived monodispersed mesoporous bioactive glass sub-micron spheres; Qing Hu, Xiaofeng Chen*, Naru Zhao, Yuli Li, Cong Mao; Journal of Sol-Gel Science and Technology, 2014, 69(1): 9-16;
11.Facile and green fabrication of biomimetic gelatin–siloxane hybrid hydrogel with highly elastic properties for biomedical applications; Yumeng Xue, Ling Wang, Yongping Shao, Jin Yan, Xiaofeng Chen, Bo Lei*; Chemical Engineering Journal, 2014, 251(1): 158–164;
12.Facile synthesis of hollow mesoporous bioactive glass sub-micron spheres with a tunable cavity size; Qing Hu, Yuli Li, Naru Zhao, Chengyun Ning, Xiaofeng Chen*; Materials Letters, 2014, 134(1): 130-133;
13.Ionic Extraction of a Novel Nano-sized Bioactive Glass Enhances Differentiation and Mineralization of Human Dental Pulp Cells; Weiyu Gong, Zhiwei Huang, Yanmei Dong*, Yehua Gan, Shenglin Li, Xuejun Gao, Xiaofeng Chen; Journal of Endodontics, 2014, 40(1): 83-88;
14.Redifferentiation of Dedifferentiated Chondrocytes in a Novel 3D Microcavitary Hydrogel; Lei Zeng, Xiaofeng Chen*, Qing Zhang, Feng Yu, Yuli Li, Yongchang Yao*; Journal of Biomedical Materials Research Part A, 2015, 103(5): 1693-1702;
15.Size control and biological properties of monodispersed mesoporous bioactive glass sub-micron spheres; Qing Hu, Yuli Li, Guohou Miao, Naru Zhao, Xiaofeng Chen*; RSC Advances, 2014, 4(43): 22678-22687;
16.Synthesis and characterization of europium-containing luminescent bioactive glasses and evaluation of in vitro bioactivity and cytotoxicity; Guohou Miao, Xiaofeng Chen*, Cong Mao, Xian Li, Yuli Li, Cai Lin; Journal of Sol-Gel Science and Technology; 2014, 69(2): 250-259;
17.A highly bioactive and biodegradable poly(glycerol sebacate)–silica glass hybrid elastomer with tailored mechanical properties for bone tissue regeneration; Xin Zhao, Yaobin Wu, Yuzhang Du, Xiaofeng Chen, Bo Lei*, Yumeng Xue, Peter X. Ma*; Journal of Materials Chemistry B, 2015, 3(16): 3222-3233;
18.Development of Biodegradable Poly(citrate)-Polyhedral Oligomeric Silsesquioxanes Hybrid Elastomers with High Mechanical Properties and Osteogenic Differentiation Activity; Yuzhang Du, Meng Yu, Xiaofeng Chen, Peter X Ma, Bo Lei*; ACS Applied Materials and Interfaces, 2016, 8(5): 3079?3091;
19.Development of silica grafted poly(1,8-octanediolco-citrates) hybrid elastomers with highly tunable mechanical properties and biocompatibility; Yuzhang Du, Juan Ge, Yongping Shao, Peter X. Ma, Xiaofeng Chen, Bo Lei*; Journal of Materials Chemistry B, 2015, 3(15): 2986-3000;
20.Diels-Alder Click-Based Hydrogels for Direct Spatiotemporal Postpatterning via Photoclick Chemistry; Feng Yu, Xiaodong Cao*, Yuli Li, Xiaofeng Chen*; ACS Macro Letters, 2015, 4(3): 289 -292;
21.Investigation of Radial Mesoporous Bioactive Glass Particles as Drug Carriers for Inhibition of Tumor Cells; Xian Li, Guohou Miao, Xiaofeng Chen*, Guang Yuan, Hui Liu, Cong Mao, Xiongjun Shen, Chengyun Ning; Science of Advanced Materials, 2017, 9(3-4): 562-570;
22.Monodisperse photoluminescent and highly biocompatible bioactive glass nanoparticles for controlled drug delivery and cell imaging; Yumeng Xue, Yuzhang Du, Jin Yan, Zhengqing Liu, Peter X. Ma, Xiaofeng Chen, Bo Lei*; Journal of Materials Chemistry B, 2015, 3(18): 3831-3839;
23.The effect of submicron bioactive glass particles on in vitro osteogenesis; Shaoqing Liu, Weiyu Gong, Yanmei Dong*, Qing Hu, Xiaofeng Chen, Xuejun Gao;RSC Advances, 2015, 5(49): 38830-38836;
24.Development of a Multifunctional Platform Based on Strong, Intrinsically Photoluminescent and Antimicrobial Silica-Poly(citrates)-Based Hybrid Biodegradable Elastomers for Bone Regeneration; Yuzhang Du, Meng Yu, Juan Ge, Peter X. Ma*, Xiaofeng Chen, Bo Lei *"Advanced Functional Materials, 2015, 25(31): 5016-5029;
25.Chiral Transition of the Supramolecular Assembly by Concentration Modulation at the Liquid/Solid Interface; Li Xu, Xinrui Miao*, Lihua Cui, Pei Liu, Kai Miao, XiaoFeng Chen*, Wenli Deng*; Journal of Physical Chemistry C, 2015, 119(31): 17920-17929;
26.hMSCs bridging across micro-patterned grooves; Qing Zhang, Yuli Li, Hao Sun, Lei Zeng, Xian Li, Bo Yuan, Chengyun Ning, Hua Dong*, Xiaofeng Chen*; RSC advances, 2015, 5(59): 47975–47982;
27.A facile synthesis of novel mesoporous bioactive glass nanoparticles with various morphologies and tunable mesostructure by sacrificial liquid template method; Qiming Liang, Qing Hu, Guohou Miao, Bo Yuan, Xiaofeng Chen*; Materials Letters, 2015, 148: 45–49;
28.Angiogenesis stimulated by novel nanoscale bioactive glasses; Cong Mao, Xiaofeng Chen*, Guohou Miao, Cai Lin; Biomedical Materials, 2015, 10(2): 025005;
29.The synthesis of calcium carbonate microparticles with multiple morphologies through self-assembly method; Guang Yuan, Xiaofeng Chen*, Xian Li, Qiming Liang, Guohou Miao, Bo Yuan; Powder Technology, 2015, 284: 253–256;
30.Combining amphiphilic chitosan and bioglass for mediating cellular osteogenic growth peptide gene; Jie Luo, You Ling, Xian Li, Bo Yuan, Feng Yu, Weihan Xie and Xiaofeng Chen*;RSC Advances, 2015, 5(97): 79239-79248;
31.Facile synthesis of mesoporous bioactive glasses with controlled shapes; Yuli Li, Xiaofeng Chen*, Chengyun Ning, Bo Yuan, Qing Hu*; Materials Letters, 2015, 161: 605–608;
32.Multifunctional Hydrogel with Good Structure Integrity, Self-Healing, and Tissue-Adhesive Property Formed by Combining Diels–Alder Click Reaction and Acylhydrazone Bond; Feng Yu,Xiaodong Cao*, Jie Du,Gang Wang, and Xiaofeng Chen*; ACS Applied Materials and Interfaces, 2015, 7(43): 24023-24031;
33.Microgrooved Polymer Substrates Promote Collective Cell Migration To Accelerate Fracture Healing in anin Vitro Model; Qing Zhang, Hua Dong, Yuli Li, Ye Zhu, Lei Zeng, Huichang Gao, Bo Yuan, Xiaofeng Chen*, Chuanbin Mao*; ACS Applied Materials and Interfaces, 2015, 7(41): 23336-23345;
34.Acute toxicity and in vivo biodistribution of monodispersed mesoporous bioactive glass spheres in intravenously exposed mice; Cong Mao, Xiaofeng Chen*, Qing Hu, Guohou Miao, Cai Lin;Materials Science and Engineering C, 2016, 58: 682–691;
35.Size-Dependent Mechanism of Intracellular Localization and Cytotoxicity of Mono-disperse Spherical Mesoporous Nano- and Micron- Bioactive Glass Particles; Yuli Li, Qing Hu, Guohou Miao, Qing Zhang, Bo Yuan, Ye Zhu, Xiaoling Fu, Xiaofeng Chen*, and Chuanbin Mao*; Journal of Biomedical Nanotechnology, 2016, 12(5): 863-877;
36.Synthesis of radial mesoporous bioactive glass particles to deliver osteoactivin gene; Xian Li, Xiaofeng Chen*, Guohou Miao, Hui Liu, Cong Mao, Guang Yuan, Qiming Liang, Xiongjun Shen, Chengyun Ning, Xiaoling Fu; Journal of Materials Chemistry B, 2014, 2(40): 7045-7054;
37.Subcellular localization of chitosan oligosaccharides in living cells; Xian Li, Changren Zhou*, Xiaofeng Chen, Mingyan Zhao; Chinese Science Bulletin, 2014, 59(20): 2449–2454;
38.Fabrication and characterization of bioactive glass/alginate composite scaffolds by a self-crosslinking processing for bone regeneration; Fujian Zhao, Wen Zhang, Xiaoling Fu, Weihan Xie and Xiaofeng Chen*; RSC Advances, 2016, 6(94): 91201-91208;
39.Strontium-Substituted Submicrometer Bioactive Glasses Modulate Macrophage Responses for Improved Bone Regeneration; Wen Zhang, Fujian Zhao, Deqiu Huang, Xiaoling Fu, Xian Li, Xiaofeng Chen*; ACS Applied Materials and Interfaces, 2016, 8(45): 30747–30758;
40.Regulation of cellular behaviors of fibroblasts related to wound healing by sol–gel derived bioactive glass particles; Weihan Xie, Xiaofeng Chen*, Guohou Miao, Jieying Tang, Xiaoling Fu*; Journal of Biomedical Materials Research Part A, 2016, 104(10): 2420–2429;
41.Cationic Polyarginine Conjugated Mesoporous Bioactive Glass Nanoparticles with Polyglycerol Coating for Efficient DNA Delivery; Xian Li, Li Zhao, Qiming Liang, Jiandong Ye, Naoki Komatsu*, Qing Zhang, Wendong Gao, Meiyun Xu, Xiaofeng Chen*; Journal of Biomedical Nanotechnology, 2017, 13(3): 280-289;
42.Controlled synthesis of bismuth oxyiodide toward optimization of photocatalytic performance; Chenxing Liao, Zhijun Ma, Xiaofeng Chen*, Xin Hec, Jianrong Qiu*; Applied Surface Science, 2016, 387: 1247–1256;
43.Facile synthesis of hollow mesoporous bioactive glasses with tunable shell thickness and good monodispersity by micro-emulsion method; Yudong Wang, Xiaofeng Chen*; Materials Letters, 2017, 189: 325-328;
44.Facile synthesis and characterization of novel rapid-setting spherical sub-micron bioactive glasses cements and their biocompatibility in vitro; Yuli Li*, Qiming Liang, Cai Lin, Xian Li, Xiaofeng Chen*, Qing Hu*; Materials Science and Engineering C, 2017, 75: 646-652;
45.Characterization of the mechanical behaviors and bioactivity of tetrapod ZnO whiskers reinforced bioactive glass/gelatin composite scaffolds; Weihuang Guo, Fujian Zhao, Yudong Wang, Jieyin Tang, Xiaofeng Chen*; Journal of the Mechanical Behavior of Biomedical Materials, 2017, 68: 8-15;
46.A novel nano-sized bioactive glass stimulates osteogenesis via the MAPK pathway; Weiyu Gong, Yanmei Dong*, Sainan Wang, Xuejun Gao and Xiaofeng Chen; RSC Advances, 2017, 7(23): 13760-13767;
47.Facile synthesis of mesoporous bioactive glass nanospheres with large mesopore via biphase delamination method; Jieyin Tang , Xiaofeng Chen*, Yanmei Dong, Xiaoling Fu , Qing Hu; Materials Letters, 2017,209:626-629;
48.Facile synthesis and in vitro bioactivity of radial mesoporous bioactive glasses; Yudong Wang, Tianshun Liao, Miao Shi, Cong Liu, Xiaofeng Chen*; Materials Letters, 2017, 206: 205–209;
49.The effects of Sr concentration on physicochemical properties, bioactivity and biocompatibility of sub-micron bioactive glasses spheres; Qing Hu*, Weihui Jiang*, Xiaofeng Chen, Yuli Li*, Qiming Liang; Advanced Powder Technology, 2017,28: 2713–2722;
50.Evaluation of Pulp Response to Novel Bioactive Glass Pulp Capping Materials; Yunzi Long, Siyi Liu, Lin Zhu, Qiming Liang, Xiaofeng Chen, Yanmei Dong*; Journal of Endodontics, 2017,43(10):1647-1650;
51.A highly bioactive bone extracellular matrix-biomimetic nanofibrous system with rapid angiogenesis promotes diabetic wound healing; Wendong Gao, Wanwan Jin, Yannan Li, Li Wan,Chenggui Wang, Cai Lin, Xiaofeng Chen*, Bo Lei*, Cong Mao*; Journal of Materials Chemistry B, 2017, 5(35): 7285-7296;
52.Bio-inspired bioactive glasses for efficient microRNA and drug delivery; Xian Li, Qiming Liang, Wen Zhang, Yuli Li, Jiandong Ye, Fujian Zhao, Xiaofeng Chen*, hiren Wang*; Journal of Materials Chemistry B; 2017, 5(31), 6376-6384;
53.A 13-year retrospective study evaluating the efficacy of using air-fluidised beds for toxic epidermal necrolysis patients; Weidong Xia, Cong Mao, Xu Luo, Jianjun Xu, Xiaofeng Chen, Cai Lin*; Australasian Journal of Dermatology, 2016, 3(57). 205-209;
54.Preparation and characterization of bioactive glass tablets and evaluation of bioactivity and cytotoxicity in vitro; Jianhui Chen, Lei Zeng, Xiaofeng Chen*, Tianshun Liao, Jiafu Zheng; Bioactive Materials, 2018, 3(3), 315-321;
55.Enhanced wound healing in diabetic rats by nanofibrous scaffolds mimicking the basketweave pattern of collagen fibrils in native skin; Luyao Sun, Wendong Gao, Xiaoling Fu*, Miao Shi, Weihan Xie, Wen Zhang, Fujian Zhao, and Xiaofeng Chen*; Biomaterials Science, 2018,6(2), 340-349;
56.Enhanced diabetic wound healing by electrospun core–sheath fibers loaded with dimethyloxalylglycine; Wendong Gao, Luyao Sun, Xiaoling Fu*, Zefeng Lin, Weihan Xie, Wen Zhang, Fujian Zhao, Xiaofeng Chen*; Journal of Materials Chemistry B, 2018, 6(2), 277-288;
57.Sequentially-crosslinked biomimetic bioactive glass/gelatin methacryloyl composites hydrogels for bone regeneration; Jiafu Zheng, Fujian Zhao, Wen Zhang, Yunfei Mo, Lei Zeng, Xian Li, Xiaofeng Chen*; Materials Science and Engineering C, 2018, 89, 119–127;
58.ynergistic effect of strontium and silicon in strontium-substituted sub-micron bioactive glass for enhanced osteogenesis; Wen Zhang, Deqiu Huang, Fujian Zhao, Wendong Gao, Luyao Sun, Xian Li, Xiaofeng Chen*; Materials Science and Engineering C, 2018, 89, 245-255;
59.Alginate based antimicrobial hydrogels formed by ntegrating Diels–Alder “click chemistry” and the thiol–ene reaction; Gang Wang, Jiehua Zhu, Xiaofeng Chen, Hua Dong, Qingtao Li, Lei Zeng, Xiaodong Cao*; RSC Advances,2018, 8, 11036;
60.Preparation and properties of poly(ε-caprolactone)/bioactive glass nanofibre membranes for skin tissue engineering; Zefeng Lin, Wendong Gao, Limin Ma, Hong Xia, Weihan Xie, Yu Zhang*, Xiaofeng Chen*; Journal of Bioactive and Compatible Polymers, 2018, 33(2), 195–209;
61.The effects of morphology on physicochemical properties, bioactivity and biocompatibility of micro-/nano-bioactive glasses; Qing Hu*, Weihui Jiang*, Yuli Li, Xiaofeng Chen, Jianmin Liu, Ting Chen, Guohou Miao; Advanced Powder Technology, 2018, 29(8), 1812-1819;
62.Highly efficient local delivery of endothelial progenitor cells significantly potentiates angiogenesis and full-thickness wound healing; Chenggui Wang, Qingqing Wang, Wendong Gao, Zengjie Zhang, Yiting Lou, Haiming Jin, Xiaofeng Chen, Bo Lei, Huazi Xu*, Cong Ma*; Acta Biomaterialia, 2018, 69, 156–169;
63.Promoting in vivo early angiogenesis with sub-micrometer strontium-contained bioactive microspheres through modulating macrophage phenotypes; Fujian Zhao, Bo Lei*, Xian Li, Yunfei Mo, Renxian Wang, Dafu Cheng*, Xiaofeng Chen*; Biomaterials, 2018, 178, 36-47;
64.3D Printing Nanoscale Bioactive Glass Scaffolds Enhance Osteoblast Migration and Extramembranous Osteogenesis through Stimulating Immunomodulation; Fujian Zhao, Weihan Xie, Wen Zhang, Xiaoling Fu, Wendong Gao, Bo Lei*, Xiaofeng Chen*; Advanced Healthcare Materials, 2018 (in pressed);
出版专著和教材
主编:
1.《生物医学材料学-制备与性能》,人民卫生出版社,(基本完稿)预计出版时间:2018年12月;
2.《医用生物玻璃》,科学出版社,(编写中)预计出版时间:2019年。
参编:
1.王迎军. 生物医用陶瓷材料[M]. 华南理工大学出版社, 2010;
2.Xiaofeng Chen and Qing Hu, Chapter 4: Bioactive Glasses, Volume 3: Design of Bioactive Materials for Bone Repair and Regeneration, The World Scientific Encyclopedia of Nanomedicine and Bioengineering II: Bioimplants, Regenerative Medicine, and Nano-Cancer Diagnosis and Phototherapy [M], World Scientific, 2017: 147-182.
科研创新
国家发明专利:
1.陈晓峰、孟永春、王迎军、赵娜如、吴刚、徐彩霞、苗国厚、张娟娟,一种胶原/生物玻璃/透明质酸组织修复材料的制备方法,中国,申请日:2009.06.23,专利号:ZL **3.X,授权公告日:2013.04.10(已授权);
2.陈晓峰、罗小刚、李玉莉、沈德勇、胡庆,胶原改性的聚己内酯/生物活性玻璃复合材料的制备方法,中国,申请日:2011.01. 28,专利号:ZL **5.4,授权公告日:2013.01.23(已授权);
3.陈晓峰、张海希、李玉莉、苗国厚、罗小刚、韩雪,一种高生物活性的可切削微晶玻璃材料的制备方法,中国,申请日:2011. 09.28 ,专利号:ZL **.3,授权公告日:2013.11.13(已授权);
4.陈晓峰、刘惠、李贤、林泽峰、李玉莉,生物活性玻璃纤维-聚己内酯复合膜及其制备方法与应用,中国,申请日:2014.09.12, 专利号:ZL **3.7 ,授权公告日:2016.10.05(已授权);
5.陈晓峰、胡庆、李玉莉、苗国厚,一种微纳米棒状生物活性玻璃及其制备方法与应用,中国发明专利,申请号:**3.1,申请日:2014年9月12日,专利号:ZL **3.1 ,授权公告日:2017年10月27日(已授权);
6.陈晓峰、梁绮明、胡庆、李玉莉、李贤,一种生物玻璃-海藻酸钠复合生物材料及试剂盒和应用,中国发明专利,申请号:**3.7,申请日期:2015年01月26日;专利号:ZL **3.7 ,授权公告日:2017年10月25日(已授权);
7.陈晓峰、葛倩倩,一种增强型生物活性玻璃支架及其制备方法,中国发明专利,申请号:**4.1,申请日期:2015年11月30日(公开);
8.陈晓峰、赵夫健、张文、王聿栋、葛倩倩,一种3D打印针头和料筒装置,中国发明专利,申请号:**4.1,申请日期:2016年03月25日;专利号:ZL**4.1,授权公告日:2016年10月05日(已授权);
9.陈晓峰、赵夫健、张文、王聿栋、唐洁吟、郭炜煌,自交联生物活性玻璃/海藻酸钠支架的制备方法及应用,中国发明专利,申请号:**2.8,申请日期:2016年07月31日(公开);
10.陈晓峰、孙璐瑶、付晓玲、高文东, 一种结构仿生皮肤细胞外基质的复合纳米纤维膜及其制备方法与应用,中国发明专利,申请号:**7.1,申请日期:2016年09月10日(公开);
11.陈晓峰、郭炜煌、赵夫健、王聿栋、唐洁吟,一种生物活性玻璃复合支架及其制备方法, 中国发明专利,申请号:**3.7,申请日期:2016年11月19日(公开);
12.陈晓峰、赵夫健、唐洁吟、郭炜煌、郑佳富、史淼,一种支架下种植系统及其植入方法,中国发明专利,申请号:**1.0,申请日期:2016年11月07日(公开);
13.陈晓峰、董亮亮,一种改性生物活性玻璃/聚丙烯酰胺/氧化海藻酸钠水凝胶敷料及其制备方法,中国发明专利,申请号:**6.7,申请日期:2016年12月14日(公开);
14.陈晓峰、唐洁吟、赵夫健、王聿栋、刘聪,一种用于治疗牙本质过敏症的脱敏剂及其制备方法,中国发明专利,申请号:**7.X,申请日期:2017年04月14日(公开);
15.陈晓峰、郑佳富,一种生物活性玻璃 改性明胶复合水凝胶及其制备方法,中国发明专利,申请号:**2.1,申请日期:2016年12月31日(公开);
16.陈晓峰、王聿栋、孙璐瑶、莫云飞、陈雪颖、罗曼,一种利用微乳液技术制备的微纳米生物活性玻璃微球及其制备方法,中国发明专利,申请号:**3.4,申请日期:2017年12月13日(公开);
17.陈晓峰、陈建辉、杨峥宇、谭晓君、王佳晨、陈瑶,一种叶酸靶向抗肿瘤药物缓释载体及其制备方法,中国发明专利,申请号:**9.5,申请日期:2017年09月20日(公开);
18.陈晓峰、王聿栋、孙璐瑶、赵夫健、田婷,一种具有表面纳米孔隙结构的微纳米生物活性玻璃微球及其制备方法,中国发明专利,申请号:**9.4,申请日期:2017年7月26日(公开);
19.陈晓峰、孙璐瑶、付晓玲、高文东,一种同轴双层静电纺丝制备具有芯/壳包埋结构的纳米纤维膜的方法及其应用,中国发明专利,申请号:**1.X,申请日期:2017年05月02日(公开);
20.陈晓峰、高文东、付晓玲、孙璐瑶,一种生物活性玻璃复合纳米纤维膜及其制备方法,中国发明专利,申请号:**2.1,申请日期:2017年11月30日(公开);
21.陈晓峰、廖天舜、陈建辉、欧阳鹿、罗曼,一种生物活性玻璃多孔骨修复体材料及其制备方法,中国发明专利,申请号:**5.1,申请日期:2018年02月12日(公开);
22.陈晓峰、杨峥宇、陈建辉,一种掺铒荧光生物活性玻璃及其制备方法,中国发明专利,申请号:**6.2,申请日期:2018年04月24日(受理)。
教学活动
负责生医系本科生的《生物医学工程导论》、《生物医学材料前沿进展》、无机和金属系本科生及材料创新班的《生物材料科学导论》课程;
参与2015材料创新班的《材料科学与工程导论》、生医系本科《材料工艺原理》、《生物医学工程与人类健康》等课程授课;
负责硕士及博士研究生的《医用生物材料及其仿生学》、《生物医学工程前沿进展》等课。
指导学生情况
2013至今:共计培养博士20名,毕业10名;培养硕士20名,毕业14名;博士后9名。博士生余凤获华南理工大学优秀博士论文奖;硕士生郭常亮获广东省优秀硕士论文奖。
我的团队
目前在读研究生共计15名。其中博士生9名,硕士生6名。博士后3名,访问学者1名。本团队在生物活性玻璃及其复合材料的研究,以及材料在骨、齿及皮肤创面修复方面承担了一系列国家和省市的科研项目,发表了100余篇研究论文,申请国家发明专利20余件,取得重要的研究进展。
相关话题/生物 材料 发明专利 授权 生物医学