10篇代表作學術論文: (*為通訊作者) 1. Y Lv, F Cai, X Zhao, X Zhu, F Wei, Y Zheng, X Shi*, J Yang*, Bioinspired microstructured Janus bioadhesive for the prevention of abdominal and intrauterine adhesions. Advanced Functional Materials 2024, 2314402. 2. X Zhao, Y Zhuang, Y Cao, F Cai, Y Lv, Y Zheng, J Yang*, X Shi*, Electrospun biomimetic periosteum capable of controlled release of multiple agents for programmed promoting bone regeneration, Advanced Healthcare Materials 2024, 202303134. 3. J Yang, Y He, Z Li, X Yang, Y Gao, M Chen, Y Zheng, S Mao*, X Shi*, Intelligent wound dressing for simultaneous in situ detection and elimination of pathogenic bacteria. Acta Biomaterialia 2024, 174, 177–190. 4. Y Lv, F Cai, Y He, L Li, Y Huang, J Yang*, Y Zheng, X Shi*, Multi-crosslinked hydrogels with strong wet adhesion, self-healing, antibacterial property, reactive oxygen species scavenging activity, and on-demand removability for seawater-immersed wound healing, Acta Biomaterialia 2023, 159, 95?110. 5. Z Fang, Y Lv, H Zhang, Y He, H Gao, C Chen, D Wang, P Chen, S Tang, J Li, Z Qiu, X Shi, L Chen*, J Yang*, X Chen*, A multifunctional hydrogel loaded with two nanoagents improves the pathological microenvironment associated with radiation combined with skin wounds, Acta Biomaterialia 2023, 159, 111?127. 6. W Wang, J Dai, Y Huang, X Li, J Yang*, Y Zheng, X Shi*, Extracellular matrix mimicking dynamic interpenetrating network hydrogel for skin tissue engineering, Chemical Engineering Journal 2023, 457, 141362. 7. C He, B Yu, Y Lv, Y Huang, J Guo, L Li, M Chen, Y Zheng, M Liu, S Guo*, X Shi, J Yang*, Biomimetic Asymmetric Composite Dressing by Electrospinning with Aligned Nanofibrous and Micropatterned Structures for Severe Burn Wound Healing, ACS Applied Materials & Interfaces 2022, 14, 32799–32812. 8. J Yang, Y Huang, J Dai, X Shi, Y Zheng*, A sandwich structure composite wound dressing with firmly anchored silver nanoparticles for severe burn wound healing in a porcine model, Regenerative Biomaterials 2021, 8, rbab037. 9. J Yang, Y Yang, N Kawazoe, G Chen*, Encapsulation of individual living cells with enzyme responsive polymer nanoshell, Biomaterials 2019, 197, 317–326. 10. J Yang, J Li, X Li, X Wang, Y Yang, N Kawazoe, G Chen*, Nanoencapsulation of individual mammalian cells with cytoprotective polymer shell, Biomaterials 2017, 133, 253?262.
授權發明專利: 1. 一種用于組織工程皮膚構建的仿生水凝膠支架及其制備方法, 楊建民, 王偉彬, 石賢愛,何思夢, 專利號:ZL 202111655199.8, 授權時間: 2023-09-29. 2. 一種仿生非對稱海綿敷料及其制備方法, 石賢愛, 趙星凱, 楊建民, 賀晨卉, 專利號:ZL 202210783024.3, 授權時間: 2023-07-18. 3. 一種復合水凝膠傷口敷料及其制備方法, 鄭允權, 馮曉蓮, 石賢愛, 楊建民, 專利號: ZL 202010403896.3, 授權時間: 2022-06-24. 4. 一種可注射抗菌互穿雙網絡水凝膠及其制備方法和應用, 石賢愛, 張梓博, 楊建民, 鄒志鋒, 李兢思, 黃鈺鋒, 專利號:ZL 202011314923.6, 授權時間: 2021-12-17. 5. 一種單個哺乳動物細胞納米封裝方法及所得封裝細胞, 楊建民, 石賢愛, 孫繼敏, 任亞鳳, 鄭允權, 專利號: ZL 201911328017.9, 授權時間: 2021-11-02. 6. 一種具有緩釋作用抗菌敷料的制備方法及其產品, 楊建民, 石賢愛, 胡圣學. 專利號: ZL 201810611217.4, 授權時間: 2021-04-27. 7. 細胞の內包化方法および內包化細胞,陳國平, 楊建民, 川添直輝, JP6786120, 授權時間: 2020-10-30. (日本) 重要學術會議口頭報告: 1. Electrospinning bionic asymmetric medical materials for tissue repair, International Conference on Frontier Materials (ICFM), Qingdao, China, (中國青島), Oct 13?17, 2023. 2. 仿細胞外基質動態互穿網絡水凝膠組織工程支架, 中國材料大會2022-2023, 深圳, 7月7?10, 2023. (邀請報告) 3. Multifunctional hydrogel based on gelatin methacryloyl/oxidized dextran/ε-polylysine for multidrug?resistant bacteria infected wound healing, ACS Fall 2022, Chicago, Aug 21?25, 2022. (Virtual) 4. 單哺乳動物細胞納米封裝系統構建研究, 2021中國生物材料大會, 上海, 10月11?14, 2021. 5. 仿生非對稱結構敷料的制備及其促創面愈合研究, 中國材料大會2021, 廈門, 7月8?12, 2021. (邀請報告) 6. 基于生物相容性反應構建單細胞納米封裝系統, 2019年中國生物材料大會, 大連, 8月22?25, 2019. 7. Nanoencapsulation of individual mammalian cells with biocompatible and cytoprotective polymer shell, International Conference on Regenerative Biomedical Materials (ICRBM 2019), Wuhan, China, (中國武漢) June 12?16, 2019. 8. 單細胞納米封裝系統的構建及其細胞治療作用研究, 中國材料大會2018, 廈門, 7月12?16, 2018. 9. Encapsulation of single mammalian cell with polymer nanoshell, 26th Annual Meeting of MRS-J, Yokohama, Japan, (日本橫濱) Dec 19?22, 2016. 10. A compatible and protective polymer nanoshell for individual mammalian cells encapsulation, Biomaterials International, Kenting, Taiwan, (臺灣墾丁) Oct 30?Nov 3, 2016. 11. Encapsulation of single living cell by a mild polymerization approach, 65th Symposium on Macromolecules, Kanagawa University, Yokohama, Japan, (日本橫濱) Sep 14?16, 2016. |