姓名 |
魏岱旭 |

|
最高学历 |
博士 |
出生年月日 |
1986-1 |
政治面貌 |
无党派人士 |
职称 |
教授 |
学历 |
博士 |
专业 |
生物医学工程、生物力学、微生物学、细胞学、(航天微重力)空间生物学 |
所属院系 |
成都大学临床医学院 |
研究方向 |
生物材料、生物力学与空间生物学、组织工程与再生医学、合成生物学、可降解微塑料毒理、医用纳米技术、衰老和脑科学 |
电话 |
18813085369 |
邮箱 |
daviddxwei@163.com weidaixu@cdu.edu.cn |
个人简介
魏岱旭,成都大学临床医学院教授、学科专业带头人,成都大学机械工程学院、药学院的博士/硕士生导师,入选2024年、2025年度“全球前2%顶尖科学家榜单”、陕西省高校杰出青年人才、陕西产业工匠人才、中国生物材料学会高级会员、中国生物材料学会材料生物力学/烧创伤创面修复材料两个分会的委员、中国颗粒学会青年理事、陕西细胞治疗学会常务委员、西安市科技专家。2018年毕业于清华大学生命科学学院,获博士学位,师从清华大学的陈国强教授。长期从事聚羟基脂肪酸酯(PHA)及其酮体(3HB)衍生物的生物学效应及综合利用,涉及合成生物学、组织工程与再生医学、医用微纳米器件、智能递药系统、医学美容及化妆品、益生菌外泌体、可降解微塑料毒理、脑科学与抗衰老等领域。以一作或通讯作者身份在Advanced Materials、Advanced Functional Materials、Bioactive Materials、Military Medical Research、Biotechnology Advances等国际学术期刊上共发表SCI学术论文54篇,授权中国发明专利18项,主编学术专著2本,参编1本。主持或参与国家级科研项目6项、地方省部级4项,市级4项。担任国际学术期刊Exploration的学术编辑、Smart Materials in Medicine、《合成生物学》、《中国修复重建外科杂志》的 编委,担任Military Medical Research、Asian Journal of Pharmaceutical Sciences、Brian-X和Biomaterials Translational等10余本杂志的青年编委。担任Nature Communications、Science Advanced、Advanced Science、Progress in Materials Science、Advanced Functional Materials、Advanced Science、Bioactive Materials、SMALL、Chemical Engineering Journal等50余本国际学术期刊的审稿人。获中国医促会华夏医学科技奖(省部级)三等奖、国际基因工程机器大赛(iGEM)2019年、2021年金奖,2020年、2022年、2023年银奖,2025年合成生物学创新赛金奖(×2)。曾参与中国航天重大项目“天舟一号”科学实验,相关科研事迹登上《中国日报》海外版(China Daily)、中国中央电视台《早间新闻》和《走近科学》。
【教育工作经历】
2024.8- 今 成都大学临床医学院 教授/特聘研究员
2018.12-2024.7 西北大学生命科学与医学部 医学院 教授
2014.9-2018.10 清华大学生命科学学院(清华-北大生命科学联合中心) 博士
2011.7-2014.7 上海纳米技术及应用国家工程研究中心 工程师
2008.9-2011.7 汕头大学 多学科研究中心 硕士
2004.9-2008.7 四川理工学院(现四川轻化工大学)生物工程学院 本科 学士
【主要研究方向】
1. 智能微纳米医用器件设计及医学组织工程应用:基于膜乳化、微流控、静电纺丝、自组装、3D打印技术等生物制造技术,构建微纳米尺度的水凝胶、纤维、支架、多孔微球等医用器件,探索人工组织工程支架在皮肤、骨骼、肌肉、软骨、神经等多种组织和器官的修复和功能再造,及医学美容的应用。
2. 面向运动医学的生物力学与生物学效应:基于生物力学,系统探究人体骨骼、肌肉、肌腱、韧带等运动组织及关节器官的力学-生物学效应,揭示力学失衡与运动劳损、关节退变、肌肉拉伤等常见运动伤病的关联机理,重点聚焦领域。
3. 极端环境下的纳米医学和组织再生:基于生物材料、组织工程和纳米医学的技术,面对太空微重力环境,高原低氧辐射等极端环境,构建用于预防、治疗相关疾病的组织再生材料和智能药物递送载体,辅助组织修复和器官再生。
4. 生物医用材料的界面功能化:基于医用生物聚酯材料和XpP界面修饰平台,从分子层面构建新型抗菌、抗感染的药物及材料的研发。
5. 天然/活体生物材料的合成及调控:基于合成生物学技术和工程化微生物平台,从分子生物学层面对聚酯类(如PHA)、蛋白类(如重组胶原)和多糖(如细菌纤维素)的医用生物材料进行结构设计;主要针对面向临床诊疗与治疗的生物材料开发。
6. 面向人类大健康的工程化益生菌和功能食品:以合成生物学技术为核心,构建具有治疗功能的工程化益生菌,用于老年痴呆、抑郁症、中风等老年疾病的治疗。
【代表性论文】(他引统计时间截止为2024年8月1日):
1. Daixu Wei#,Jinwei Dao#,Guo-Qiang Chen*. A Micro-Ark for Cells: Highly Open Porous Polyhydroxyalkanoate Microspheres as Injectable Scaffolds for Tissue Regeneration. Advanced Materials. 2018, 30(31): 1802273. (IF= 32.086,第一作者,中科院分区1区,他引167次)
2. Yan-Wen Ding, Yang Li, Zhi-Wei Zhang, Jin-Wei Dao, Dai-XuWei*, Hydrogel forming microneedles loaded with VEGF and Ritlecitinib polyhydroxyalkanoates nanoparticles for mini-invasive androgenetic alopecia treatment. Bioactive Materials. 2024, 8 95-108 (IF= 18.6,通讯作者,中科院分区1区)
3. Mamateli Rahman#, Xue-Liang Peng#, Xiao-Hong Zhao, Hai-Lun Gong, Xiao-Dan Sun, Qiong Wu*, Dai-XuWei*. 3D bioactive cell-free-scaffolds for in-vitro/in-vivo capture and directed osteoinduction of stem cells for bone tissue regeneration.Bioactive Materials. 2021, 6(11) 4083-4095(IF= 16.874,通讯作者,中科院分区1区,他引28次 )
4. Daixu Wei#,Ruirui Qiao#,Jinwei Dao,Jing Su,Chengmin Jiang,Xichang Wang,Mingyuan Gao,Jian Zhong*. Soybean Lecithin-Mediated Nanoporous PLGA Microspheres with Highly Entrapped and Controlled Released BMP-2 as a Stem Cell Platform. SMALL. 2018. 14(22): 1800063. (IF= 15.153,第一作者,中科院分区1区,他引73次)
5. Ding, Y. W., Zhang, Z. W., Cui, X. Y., Hu, R. Y., Li, Y., Huang, S. D., ... & Wei, D. X.* ZnCur nanoparticle-enhanced multifunctional hydrogel platform: Synergistic antibacterial and immunoregulatory effects for infected diabetic wound healing. Chemical Engineering Journal, (2024) 158387.
6. Zhou, X. X., Huang, X. Y., Zhang, M., Ma, X. Y., Yang, H., Xu, T., ... & Dai-Xu Wei* (2025). A BMP6 supply system based on PBVHx nanoparticles promotes the osteogenic differentiation of human stem cells in simulated microgravity. Int J Biol Macromol, 145444. 骨 纳米颗粒
7. Huang XY, Zhou XX, Yang H, Xu T, Dao JW, Bian L, Dai-Xu Wei*. Directed osteogenic differentiation of human bone marrow mesenchymal stem cells via sustained release of BMP4 from PBVHx-based nanoparticles. Int J Biol Macromol 2024: 130649. (IF= 8.2,通讯作者,中科院分区1区)骨 纳米颗粒
8. Dai-Xu Wei*, Cai D, Tan Y, et al. Poly (3-hydroxybutyrate-co-3-hydroxyvalerate-co-3-hydroxyhexanoate)-based microspheres as a sustained platform for Huperzine A delivery for alzheimer's disease therapy. International Journal of Biological Macromolecules, 282 (2024): 136582 神经修复 纳米颗粒
9. Wei D X*, Chen Z*. Current situation and challenge of exogenous 3-hydroxybutyrate derived from polyhydroxyalkanoates for elderly health: A review[J]. International Journal of Biological Macromolecules, 2024: 138328. 3HB 解释PHA的生物相容性
10. Chen, Y., Qi, Z. D., Ji, R., Shi, N., Chen, H., & Wei D X* (2025). Synthetic biology for scalable production of medical polyhydroxyalkanoates: Advances and applications. Biotechnology Advances, 108722.
11. Xu, T., Huang, X. Y., Dao, J. W., Xiao, D., & Wei D X* (2025). Synthetic biology for medical biomaterials. Interdisciplinary Medicine, e20240087. 合成生物学 合成PHA
12. Huang, X. Y., Qi, Z. D., Dao, J. W., & Wei, D. X. Current Situation and Challenges of Polyhydroxyalkanoates-Derived Nanocarriers for Cancer Therapy. Smart Materials in Medicine. (2024) 纳米颗粒 抗癌药物 PHA
13. Xue-Liang Peng, Ji-Si-Yu Cheng, Hai-Lun Gong, Meng-Di Yuan, Xiao-Hong Zhao, Zi-Biao Li, Dai-Xu Wei*, Advances in the design and development of SARS-CoV-2 vaccines, Military Medical Research, 8(1) (2021) 1-31.(IF= 34.915,通讯作者,中科院分区1区,他引41次)
14. Shuai Liu, Jiang-Ming Yu, Yan-Chang Gan, Xiao-Zhong Qiu, Zhe-Chen Gao, Huan Wang*, Shi-Xuan Chen*, Yuan Xiong, Guo-Hui Liu, Si-En Lin, Alec McCarthy, Johnson V. John, Dai-Xu Wei* & Hong-Hao Hou*. Biomimetic natural biomaterials for tissue engineering and regenerative medicine: new biosynthesis methods, recent advances, and emerging applications. Military Medical Research. 2023, 10(1): 16.(IF= 34.915,通讯作者,中科院分区1区)
15. Jin Hu, Min Wang, Xinyue Xiao, Bo Zhang, Qiu Xie, Xinjie Xu, Shengjie Li, Zhifa Zheng, Daixu Wei* and Xuan Zhang*. A novel long-acting azathioprine polyhydroxyalkanoate nanoparticle enhances treatment efficacy for systemic lupus erythematosus with reduced side effects. Nanoscale. 2020, 12(19): 10799-10808. (IF=8.307,通讯作者,中科院分区1区,他引23次)
16. Zhang S Q, Yuan H Z, Ma X, et al. Carbon Cycle of Polyhydroxyalkanoates (CCP): Biosynthesis and Biodegradation[J]. Environmental Research, 2025: 120904.
17. Ren, Z. W., Wang, Z. Y., Ding, Y., Dao, J. W., Li, H. R., Ma, X., ... & Wei, D.* (2023). Polyhydroxyalkanoates: the natural biopolyester for future medical innovations. Biomaterials Science. 2023, 11(18): 6013-6034.
18. Wei D X*, Zhang X W. Biosynthesis, Bioactivity, Biotoxicity and Applications of Antimicrobial Peptides for Human Health. Biosafety and Health, 2022, 4(02): 118-134
19. Ding, Y. W., Wang, Z. Y., Ren, Z. W., Zhang, X. W., & Wei, D. X.* (2022). Advances in modified hyaluronic acid-based hydrogels for skin wound healing. Biomaterials Science. 2022, 10(13):3393-3409.
20. Wang, Z. Y., Zhang, X. W., Ding, Y. W., Ren, Z. W., & Wei D X* (2022). Natural biopolyester microspheres with diverse structures and surface topologies as micro-devices for biomedical applications. Smart Materials in Medicine. 2023, 4: 15-36 doi.org/10.1016/j.smaim.2022.07.004
21. Ding, Y. W., Zhang, X. W., Mi, C. H., Qi, X. Y., Zhou, J., & Wei, D. X.* (2022). Recent advances in hyaluronic acid-based hydrogels for 3D bioprinting in tissue engineering applications. Smart Materials in Medicine. 2022, 4:59-68.
22. Xiang, Y., Wang, Q. Q., Lan, X. Q., Zhang, H. J., & Wei, D. X.* (2022). Function and treatment strategies of β-hydroxybutyrate in aging. doi.org/10.1016/j.smaim.2022.09.003
23. Xiao-Hong Zhao, Xue-Liang Peng, Hai-Lun Gong, Dai-Xu Wei*. Osteogenic differentiation system based on biopolymer nanoparticles for stem cells in simulated microgravity. Biomedical Materials. 2021, 16(4): 044102.(IF=4.103,通讯作者,中科院分区2区)
24. Liu, J., Zhou, Z., Li, H., Yang, X., Wang, Z., Xiao, J., & Wei, D. X*. Current status and challenges in the application of microbial PHA particles. Particuology., 2024, 87: 286-302 (IF=3.5,通讯作者,中科院分区2区)
25. Fan, Ling#; Xie, Jinliang#; Zheng, Yaping*; Wei, Dai-Xu*; Yao, Dongdong; Zhang, Jing; Zhang, Tuodi. An Antibacterial, Self-adhesive, Recyclable and Tough Conductive Composite Hydrogel for Ultrasensitive Strain Sensing. ACS Appl. Mater. Interfaces. 2020, 12(19): 22225-22236. (IF=10.383,中科院分区1区,他引83次)
26. Ling Fan, Lizhen Hu, Jinliang Xie, Zhongjie He, Yaping Zheng*, Dai-Xu Wei*, Dongdong Yao and Fangfang Su. Biosafe, self-adhesive, recyclable, tough, and conductive hydrogels for multifunctional sensors, Biomaterials Science 9(17) (2021) 5884-5896. Doi: 10.1039/D1BM00665G (IF= 7.59,中科院分区2区,他引9次)
27. Mi, C. H., Qi, X. Y., Ding, Y. W., Zhou, J., Dao, J. W., & Dai-Xu Wei* (2023). Recent advances of medical polyhydroxyalkanoates in musculoskeletal system. Biomaterials Translational, 4(4), 234.
28. L. Fan, Z. He, X. Peng, J. Xie, F. Su, D.X. Wei*, Y. Zheng, D. Yao*, Injectable, Intrinsically Antibacterial Conductive Hydrogels with Self-Healing and pH Stimulus Responsiveness for Epidermal Sensors and Wound Healing, ACS applied materials & interfaces 13(45) (2021) 53541-53552. https://doi.org/10.1021/acsami.1c14216.
29. Mi, C. H., Qi, X. Y., Zhou, Y. W., Ding, Y. W., Dai-Xu Wei*, & Wang, Y. (2024). Advances in medical polyesters for vascular tissue engineering. Discover Nano, 19(1), 1-29.
30. Li, H. R., Zhou, J., Zhou, Y. W., Dao, J. W., Dai-Xu Wei*, & Wang, Y*. Advances in photocrosslinked natural hydrogel‐based microspheres for bone repair. Journal of Polymer Science. 2024
31. Yang, D., Chen, H., Wei, H., Liu, A., Wei, D. X., & Chen, J. (2023). Hydrogel wound dressings containing bioactive compounds originated from traditional Chinese herbs: A review. Smart Materials in Medicine. Volume 5, Issue 1, March 2024, Pages 153-165.
32. Dai-Xu Wei,Chong-Bo Chen,Guo Fang,Shi-Yan Li,Guo-Qiang Chen*. Application of polyhydroxyalkanoate binding protein PhaP as a bio-surfactant. Appl Microbiol Biotechnol. 2011;91:1037-47. (IF= 5.56,中科院分区2区)
33. Yunsong Yan#,Daixu Wei#,*,Jiayan Li,Jinhong Zheng,Ganggang Shi,Wenhong Luo,Ying Pan,Jinzhi Wang,Lumian Zhang,Xiaoying He,Daojun Liu,A poly(L-lysine)-based hydrophilic star block co-polymer as a protein nanocarrier with facile encapsulation and pH-responsive release. Acta biomaterialia. 2012;8:2113-20. (IF=10.633,中科院分区1区)
34. Ning Xu†,1, Xue-Liang Peng†,2, Hao-Ru Li†,2, Jia-Xuan Liu2, Ji-Si-Yu Cheng2, Xin-Ya Qi2, Shao-Jie Ye2, Hai-Lun Gong2, Xiao-Hong Zhao2, Jiangming Yu*,3, Guohua Xu*,1, Dai-Xu Wei*,2. Marine-Derived Collagen as Biomaterials for Human Health. Frontiers in Nutrition. 2021. 8: 493. Doi: 10.3389/fnut.2021.702108 (IF=6.59, 共通讯作者,中科院分区2区)
35. Xiao-Hong Zhao, Yi-Nuo Niu, Chen-Hui Mi, Hai-Lun Gong, Xin-Yu Yang, Ji-Si-Yu Cheng, Zi-Qi Zhou, Jia-Xuan Liu, Xue-Liang Peng, Dai-Xu Wei*. Electrospinning Nanofibers of Microbial Polyhydroxyalkanoates (PHAs) for Applications in Medical Tissue Engineering. Journal of Polymer Science. 59(18), 2021,1994-2013 DOI: 10.1002/pol.20210418. (IF= 3.046,通讯作者,中科院分区3区)
36. Wang, B. L., Wu, J. F., Xiao, D., Wu, B., & Wei, D. X.* (2023). 3-hydroxybutyrate in the brain: Biosynthesis, function, and disease therapy. Brain-X, 1(1), e6.
37. Jiangming Yu, Ning Xu, Yanhai Xi, Mintao Xue, Weiheng Wang, Xiaodong Huang, Changkun Zheng, Dai-xu Wei*, Kai Li*, Xiaojian Ye* (2018). Adhesion Behavior of Escherichia coli on Plasma-Sprayed Zn and Ag Co-incorporated Calcium Silicate Coatings with Varying Surface Roughness. J Thermal Spray Technology, 27(8), 1428-1435. (IF=2.839,中科院分区3区)
38. Yamin Li#, Lan Xiao#, Daixu Wei#, Shengyang Liu, Zeren Zhang, Ruixian Lian, Liren Wang, Yunsu Chen, Jia Jiang, Yin Xiao. Injectable Biomimetic Hydrogel Guided Functional Bone Regeneration by Adapting Material Degradation to Tissue Healing [J]. Advanced Functional Materials, 2023: 2213047.(IF= 19.924/中科院一区)
39. Chi Wang, Han-Shi Zeng, Kai-Xuan Liu, Yi-Na Lin, Hao Yang, Xin-Ying Xie, Dai-Xu Wei*, Jian-Wen Ye. Biosensor-based therapy powered by synthetic biology. Smart Materials in Medicine 4(0), 212 (2022).
40. Zhou, Jian; Lei, Miao; Peng, Xue-Liang; Wei, Dai-Xu*; Yan, Lu-Ke. Fenton Reaction Induced by Fe-Based Nanoparticles for Tumor Therapy. Journal of Biomedical Nanotechnology, 17(8), (2021). 1510-1524. DOI: https://doi.org/10.1166/jbn.2021.3130 (IF= 3.953,通讯作者,中科院分区2区)
41. R. Chen, J. Yu, H.L. Gong, Y. Jiang, M. Xue, N. Xu, D.X. Wei*, C. Shi*, An easy long-acting BMP7 release system based on biopolymer nanoparticles for inducing osteogenic differentiation of adipose mesenchymal stem cells, Journal of tissue engineering and regenerative medicine 14(7) (2020) 964-972. (IF= 4.323,中科院分区2区)
42. Liu X#,Wei D#,Zhong J,Ma M,Zhou J,Peng X,et al. Electrospun Nanofibrous P (DLLA–CL) Balloons as Calcium Phosphate Cement Filled Containers for Bone Repair: in Vitro and in Vivo Studies. ACS applied materials & interfaces. 2015;7:18540-52.(IF= 10.383,共同第一作者,中科院分区1区)
43. Gang Sun#,Daixu Wei#,Xunwei Liu,Yuyun Chen,Min Li,Dannong He,Jian Zhong. Novel Biodegradable Electrospun Nanofibrous P(DLLA-CL) Balloons for the Treatment of Vertebral Compression Fractures. Nanomedicine. 2013;9(6):829-38. (IF= 6.096,中科院分区2区)
44. Pei P#,Wei D#,Zhu M,Du X,Zhu Y. The effect of calcium sulfate incorporation on physiochemical and biological properties of 3D-printed mesoporous calcium silicate cement scaffolds. Microporous and Mesoporous Materials. 2016. 241: 11-20. (IF=5.876,共同第一作者,中科院分区2区 )
45. Du X#, Wei D#, Huang L, et al. 3D printing of mesoporous bioactive glass/silk fibroin composite scaffolds for bone tissue engineering[J]. Materials Science and Engineering: C, 2019, 103: 109731. (IF=7.457,共同第一作者,中科院分区2区)
46. S. Fu, X. Du, M. Zhu, Z. Tian, D. Wei,* Y. Zhu, 3D printing of layered mesoporous bioactive glass/sodium alginate-sodium alginate scaffolds with controllable dual-drug release behaviors, Biomedical materials 14(6) (2019) 065011.
47. Dai-Xu Wei#,Jin-wei Dao#, Hua-wei Liu* Guo-Qiang Chen*. Suspended Polyhydroxyalkanoate Microspheres as 3D Carriers for Mammalian Cell Growth. 2018: 1-11. Artificial Cells Nanomedicine and Biotechnology. 2018, 46(sup2): 473-483. (IF=6.355,中科院分区2区)
48. Hua-wei LIU#,Dai-xu WEI#,*,Ming NI,Yong-gang ZHOU*,Combined antibacterial and osteogenic in situ effects of a bifunctional titanium alloy with nanoscale hydroxyapatite coating. 2018, Artificial Cells Nanomedicine and Biotechnology. (IF= 6.355,通讯作者,中科院分区2区)
49. YueFeng Rui,Jingquan Liu*,Bin Yang,Chunsheng Yang,Daixu Wei*. Mechanical and electrical stability of parylene-based platinum-black coated wire microelectrode for implantable applications. J Appl Electrochem. 2013;43(3):301-308. (IF= 2.925,中科院分区3区)
50. 魏岱旭*, 龚海伦, 张旭维. 抗菌肽的生物合成及医学应用[J]. 合成生物学, 2022: 1.
51. 魏岱旭*,谭友果. (2023). 聚羟基脂肪酸酯医用器件在骨科领域应用的研究进展[J]. 中国修复与重建外科杂志, 37(8), 909.
52. 邬建飞, 王丙龙,刘宇,魏岱旭* (2023). 功能化聚羟基脂肪酸酯微球的制备及其抗菌, 促成骨分化功能评价,修复重建外科杂志 2023; 37 (8): 929–936.
53. 魏岱旭*, 刘宇, 周文辉,刘召平. (2023). 外源性补充酮体 3 羟基丁酸用于疾病治疗的研究进展[J],实用医学杂志. 2023, Vol 39, Issue 24, p3290
【科研项目】
1. 四川省自然科学基金(面上项目),2026NSFSC0143,天然聚酯PHA基组织工程的再生评估及机制研究,15万元,2026/01-2027/12,在研,主持
2. 四川省卫生健康委员会科技项目,24WSXT106,载抗衰药PHBVHHx开放式多孔微球系统用于老年骨质疏松骨折治疗, 2025/06-2027/05,10万元,在研,主持
3. 国家自然科学基金(青年项目),3190095,可注射天然聚酯支架的仿生功能设计及医美微整形骨修复研究,23万元,2020/01-2022/12,已结题,主持
4. 陕西省自然科学基础研究计划(面上项目),2024JC-YBMS-706,可注射多功能PHA球形支架对微整形过程中的组织协同再生的机制探索,2024/01-2025/12,已结题,主持
5. PHBHHx微球的制备及应用,横向,2021/08-2025/07,25万元,在研,负责人
6. 2022年自贡市科技计划重点项目,批准号:2022ZCNKY07,2024/01-2025/12,10万,结题,主持
7. 2024年自贡市科技计划重点项目,批准号: 2024-NKY-01-01,2024/01-2025/12,8万,结题,主持
【人才/获奖/荣誉】
1. 陕西省高校杰出青年人才
2. 陕西产业工匠人才
3. 云南“兴滇人才”
4. 华夏医学科技奖三等奖
5. BMT 生物材料与转化医学优秀青年学者
6. 国际基因工程机器大赛(iGEM)2019年 金奖
7. 国际基因工程机器大赛(iGEM)2021年 金奖
8. 国际基因工程机器大赛(iGEM)2020年 银奖
9. 国际基因工程机器大赛(iGEM)2022年 金奖
10. 国际基因工程机器大赛(iGEM)2023年 银奖
11. 热心肠(肠道微生物) 智库专家
12. 西安市科技专家
13. 2025合成生物学创新赛合成细胞赛道 金奖
14. 2025合成生物学创新赛细菌博弈赛道 金奖
15. 参与中国航天重大项目“天舟一号”科学实验,相关科研事迹登上《中国日报》海外版(China Daily)、中国中央电视台《早间新闻》和《走近科学》
【学术/社会兼职】
1. 中国生物材料学会高级会员
2. 中国生物材料学会力学材料分会委员
3. 中国生物材料学会烧创伤创面修料分会委员
4. 中国颗粒学会青年理事
5. 陕西省干细胞学会 常务委员
【专著】
1. 陈国强,魏岱旭 主编,《微生物聚羟基脂肪酸酯》, 化学工业出版社,2014年出版,ISBN:9787122204820,字数:35万字。
2. 黎志东等著,《生物安全概述》,西北大学出版社,2021年,ISBN:9787560447278,字数:31万字(魏岱旭负责第7章)。
【专利】
1. 魏岱旭;李腾;张浩千;谈畅,一种窄粒度分布的聚羟基脂肪酸酯微球及其制备方法,中国,CN202111190328.0,2021.10.13(已授权,已转化)
2. 魏岱旭;李腾;张浩千;谈畅,一种可注射聚羟基脂肪酸酯微球及其制备方法,中国,CN202111187296.9,2021.10.12(已授权,已转化)
3. 魏岱旭;闫志强;钟建;周涓;朱君;何丹农,一种负载羟基磷灰石的聚乳酸多孔微球及制备方法,中国,CN201210396694.6,2014.05.07(已授权)
4. 魏岱旭;闫志强;钟建;何丹农,一种生物可降解高分子多孔尿道修复支架及制备方法,中国,CN201110436651.1,2013.06.26(已授权)
5. 魏岱旭;钟建;闫志强;何丹农,一种多孔膜片及制备方法和应用,中国,CN201110436623.X,2013.06.26(已授权)
6. 激光共聚焦扫描显微镜高分子纤维可视化的制备方法,中国CN201110436614.0,魏岱旭;钟建;闫志强;何丹农,2013.06.26(已授权)
7. 魏岱旭;钟建;何丹农;多层结构的神经修复导管支架及其制备方法,中国CN201310639284.4,2014.03.26(已授权)
8. 魏岱旭;马梦佳;周涓;施丽君;钟建;何丹农,一种混合型蛋白质生物表面活性剂的石化类油乳化方法,中国 CN201310265021.1,2013.10.23(已授权)
9. 陈国强;魏岱旭,两亲性蛋白—聚羟基脂肪酸酯颗粒结合蛋白PhaP的新用途,中国 CN201110007851.5, 2013.09.27(已授权)
10. 马梦佳;魏岱旭;钟建;闫志强;余震;何丹农,一种静电纺丝复合血管支架及其制备方法,中国 CN201210270606.8,2012.11.07(已授权)
11. 钟建;魏岱旭;周涓;何丹农,原子力显微镜配套用卧式材料拉伸压缩试验机,中国,CN201310751692.9,2014.04.30(已授权)
12. 马梦佳;魏岱旭;钟建;闫志强;余震;何丹农;一种新的静电纺丝复合支架及其制备方法,中国 CN201210269929.5,2012.12.26(已授权)
13. 周涓;施丽君;魏岱旭;朱君;何丹农;一种水溶性丝素粉及其制备方法,中国 CN201210397390.1,2014.05.07(已授权)
14. 刘璐;魏岱旭;朱君;王丹,一种低表面张力的载氧脂质体及其制备方法,中国 CN201310438079.1,2014.01.15(已授权)
15. 闫志强;杨一祎;魏岱旭;钟建;刘璐;金彩虹;何丹农,一种聚乳酸-聚乙二醇-肿瘤穿透肽复合物及制备和应用,中国 CN201310437613.7,2014.01.29(已授权)
16. 钟建;马梦佳;魏岱旭;闫志强;周涓;李文英;何丹农;单分子力谱分析用AFM探针和基底功能化修饰方法,中国 CN201210258572.0,2014.02.12(已授权)
17. 闫志强;杨一祎;魏岱旭;钟建;何丹农,一种D型多肽介导的靶向脂质体及其制备方法和应用,中国 CN201210383701.9,2014.04.16(已授权)
18. 马梦佳;李文英;钟建;魏岱旭;闫志强;余震;何丹农,一种简单的磁颗粒功能化修饰方法,中国 CN201210269926.1,2012.07.31(已授权)