91. A conductive photothermal non-swelling nanocomposite hydrogel patch accelerating bone defect repair. (1st February 2022) Authors: Li, Yongwei; He, Jiahui; Zhou, Junpeng; Li, Zhenlong; Liu, Liying; Hu, Shugang; Guo, Baolin; Wang, Wei Journal: Biomaterials science Issue: Volume 10:Number 5(2022) Page Start: 1326 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
92. A confined crosslinking strategy towards an intelligent organosilica–micellar hybrid drug delivery system. (14th December 2021) Authors: Qin, Xing; Qin, Limei; He, Jianping; Wang, Qinghua; Li, Yongsheng; Niu, Dechao Journal: Biomaterials science Issue: Volume 10:Number 2(2022) Page Start: 524 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
93. A controllable local drug delivery system based on porous fibers for synergistic treatment of melanoma and promoting wound healing. (30th September 2019) Authors: Yuan, Zhipeng; Zhang, Kexin; Jiao, Xiangyu; Cheng, Yaru; Zhang, Yiyi; Zhang, Peixun; Zhang, Xueji; Wen, Yongqiang Journal: Biomaterials science Issue: Volume 7:Number 12(2019) Page Start: 5084 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
94. A convenient process to fabricate gelatin modified porous PLLA materials with high hydrophilicity and strength. (16th November 2015) Authors: Yin, Guangzhong; Zhao, Donglin; Ren, Ye; Zhang, Lianwei; Zhou, Zheng; Li, Qifang Journal: Biomaterials science Issue: Volume 4:Number 2(2016:Feb.) Page Start: 310 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
95. A coordination strategy to achieve instant dissolution of a biomedical polymer in water via manual shaking. (6th July 2022) Authors: Tang, Jingyu; Cai, Caiyun; Cao, Dinglingge; Rao, Weihan; Guo, Wen; Yu, Lin; Ding, Jiandong Journal: Biomaterials science Issue: Volume 10:Number 16(2022) Page Start: 4561 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
96. A core–shell liquid metal-Cu nanoparticle with glutathione consumption via an in situ replacement strategy for tumor combination treatment of chemodynamic, microwave dynamic and microwave thermal therapy. (20th May 2022) Authors: Yu, Yongnian; Wu, Qiong; Niu, Meng; Gou, Li; Tan, Longfei; Fu, Changhui; Ren, Xiangling; Ren, Jun; Zheng, Yongfa; Meng, Xianwei Journal: Biomaterials science Issue: Volume 10:Number 13(2022) Page Start: 3503 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
97. A curcumin-loaded polymeric micelle as a carrier of a microRNA-21 antisense-oligonucleotide for enhanced anti-tumor effects in a glioblastoma animal model. (17th January 2018) Authors: Tan, Xiaonan; Kim, Gyeungyun; Lee, Dahee; Oh, Jungju; Kim, Minkyung; Piao, Chunxian; Lee, Jaewon; Lee, Min Sang; Jeong, Ji Hoon; Lee, Minhyung Journal: Biomaterials science Issue: Volume 6:Number 2(2018) Page Start: 407 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
98. A database on the stability of silver and gold nanostructures for applications in biology and biomolecular sciences. (8th November 2016) Authors: Weerasekera, Hasitha de Alwis; Silvero, María Jazmín; Regis Correa da Silva, Daliane; Scaiano, Juan C. Journal: Biomaterials science Issue: Volume 5:Number 1(2017:Jan.) Page Start: 89 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
99. A decellularized extracellular matrix derived from keratinocytes can suppress cellular senescence induced by replicative and oxidative stresses. (1st November 2022) Authors: Hoshiba, Takashi Journal: Biomaterials science Issue: Volume 10:Number 23(2022) Page Start: 6828 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗
100. A defined heat pretreatment of gelatin enables control of hydrolytic stability, stiffness, and microstructural architecture of fibrin–gelatin hydrogel blends. (15th August 2022) Authors: Wachendörfer, Mattis; Schräder, Philipp; Buhl, Eva Miriam; Palkowitz, Alena L.; Ben Messaoud, Ghazi; Richtering, Walter; Fischer, Horst Journal: Biomaterials science Issue: Volume 10:Number 19(2022) Page Start: 5552 Record Type: Journal Article View Content: Available online (eLD content is only available in our Reading Rooms) ↗