日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Skin-mimetic bilayer hydrogel enhances spatiotemporal coordination of neuro-immune-vascular interactions to accelerate diabetic wound healing

仿皮肤双层水凝胶增强神经-免疫-血管相互作用的时空协调性,从而加速糖尿病伤口愈合

Wang, Haomin; Yang, Lei; Jiang, Hao; Li, Zheng; Zhou, Xiaojun; Wang, Baokun; Zhang, Zheyu; Wang, Guoqing; Chen, Shuo; He, Chuanglong

Skin-mimetic bilayer hydrogel normalizes diabetic wound healing by orchestrating inflammatory cell dynamics: An early intervention strategy.

类皮肤双层水凝胶通过调控炎症细胞动态来促进糖尿病伤口愈合:一种早期干预策略。

Cui Mingrui, He Hongtao, Lu Hanzhi, Yang Xuexia, Chen Shuo, Zhou Xiaojun, Li Fulun, He Chuanglong, Yang Guang

Bioinspired Engineering of Streamlined Skeletal Interoception: Neural Bioprinted Piezoelectric Scaffolds for Neuro-Vascularized Bone Regeneration

仿生工程构建流线型骨骼内感受:用于神经血管化骨再生的神经生物打印压电支架

Su, Yingze; Wang, Haomin; Liu, Weixi; Chen, Kangming; Min, Yiyang; Zhu, Jinbo; Li, Xueyang; Su, Anning; Yang, Hao; Yang, Lei; Ji, Yun; Zhang, Yuxin; Zheng, Jisi; Yang, Chi; He, Chuanglong; Li, Tao; Chen, Shuo; Wu, Tao; Chen, Xiaodong

Programmed regulation of microenvironment remodeling and bone regeneration for bone repair by coaxial hydrogel scaffold with ultrasound-activated drug delivery

利用超声激活药物递送的同轴水凝胶支架,实现对骨修复中微环境重塑和骨再生的程序化调控

Yu, Yiyi; Sun, Xin; Yue, Xiaokun; Zhang, Huyue; Chen, Shuo; Yang, Guang; Luo, Qian; He, Chuanglong; Zhou, Xiaojun

Synergistic 3D-bioprinted scaffold with multi-level adaptability for vascularized bone regeneration via osteogenesis-angiogenesis coupling

具有多级适应性的协同3D生物打印支架,可通过成骨-血管生成耦合促进血管化骨再生。

Yin, Ji; Mao, Xiaojun; Shang, Panpan; Chen, Shuo; Yang, Guang; He, Hongtao; He, Chuanglong; Zhou, Xiaojun

Stimuli-responsive hydrogels for radiation-induced skin injury: from passive barriers to autonomous drug delivery systems

用于辐射诱导皮肤损伤的刺激响应型水凝胶:从被动屏障到自主药物递送系统

Zhang, Kai; Xiao, Chulan; Wang, Yuanyuan; Zhao, Caitong; Dong, Zhenghang; Li, Zhihui; Song, Xinmao; He, Chuanglong; Li, Yi

Corrigendum to "Construction of nanofibrous scaffolds with interconnected perfusable microchannel networks for engineering of vascularized bone tissue" [Bioact. Mater. 6 (2021),3254-3268]

对“用于血管化骨组织工程的具有互连灌注微通道网络的纳米纤维支架的构建”的更正[Bioact. Mater. 6 (2021),3254-3268]

Gu, Jiani; Zhang, Qiangian; Geng, Mengru; Wang, Weizhong; Yang, Jin; Khan, Atta Ur Rehman; Du, Haibo; Sha, Zhou; Zhou, Xiaojun; He, Chuanglong

TME-responsive nanocomposite hydrogel with targeted capacity for enhanced synergistic chemoimmunotherapy of MYC-amplified osteosarcoma

TME 响应性纳米复合水凝胶具有增强 MYC 扩增骨肉瘤协同化学免疫治疗的靶向能力

Yichao Ma, Peng Lai, Zhou Sha, Bing Li, Jiangpeng Wu, Xiaojun Zhou, Chuanglong He, Xiaojun Ma

3D printed shape-memory piezoelectric scaffolds with in-situ self-power properties for bone defect repair

用于骨缺损修复的具有原位自供电特性的3D打印形状记忆压电支架

Li, Bing; Ma, Yichao; Fatima, Kanwal; Zhou, Xiaojun; Gu, Xin; Chen, Shuo; He, Chuanglong

3D printed scaffolds with multistage osteogenic activity for bone defect repair

用于骨缺损修复的具有多阶段成骨活性的3D打印支架

Li, Bing; Ma, Yichao; Fatima, Kanwal; Zhou, Xiaojun; Chen, Shuo; He, Chuanglong