Search Results - "Gui, Xingyu"

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  1. 1

    3D printed Nanohydroxyapatite/Polyamide 66 scaffolds with balanced mechanical property and osteogenic ability for bone repair by Zeng, Zhimou, Song, Ping, Gui, Xingyu, Zhang, Boqing, Zhao, Li, Feng, Pin, Deng, Zhipeng, Wang, Linnan, Wei, Wei, Fan, Chen, Wu, Yunhong, Kong, Qingquan, Fan, Yujiang, Zhou, Changchun, Song, Yueming

    Published in Materials & design (01-05-2024)
    “…[Display omitted] •3D printing was used to fabricate Nanohydroxyapatite/Polyamide 66 bone tissue scaffold.•The scaffold shows balanced mechanical property and…”
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    Journal Article
  2. 2

    Biomimetic Methacrylated Gelatin Hydrogel Loaded With Bone Marrow Mesenchymal Stem Cells for Bone Tissue Regeneration by Li, Jun, Wang, Wenzhao, Li, Mingxin, Song, Ping, Lei, Haoyuan, Gui, Xingyu, Zhou, Changchun, Liu, Lei

    “…Large-segment bone defect caused by trauma or tumor is one of the most challenging problems in orthopedic clinics. Biomimetic materials for bone tissue…”
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  3. 3

    3D printing of personalized polylactic acid scaffold laden with GelMA/autologous auricle cartilage to promote ear reconstruction by Gui, Xingyu, Peng, Zhiyu, Song, Ping, Chen, Li, Xu, Xiujuan, Li, Hairui, Tang, Pei, Wang, Yixi, Su, Zixuan, Kong, Qingquan, Zhang, Zhenyu, Li, Zhengyong, Cen, Ying, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in Bio-design and manufacturing (01-07-2023)
    “…At present, the clinical reconstruction of the auricle usually adopts the strategy of taking autologous costal cartilage. This method has great trauma to…”
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  4. 4

    3D‐printed degradable hydroxyapatite bioactive ceramics for skull regeneration by Gui, Xingyu, Zhang, Boqing, Su, Zixuan, Zhou, Zhigang, Dong, Zhihong, Feng, Pin, Fan, Chen, Liu, Ming, Kong, Qingquan, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in MedComm - Biomaterials and applications (01-06-2023)
    “…Hydroxyapatite (HA) bioceramics have been extensively employed as bone tissue scaffolds owing to their biodegradability and osteoinductivity. In our work, HA,…”
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  5. 5

    Synthesis and application of nanometer hydroxyapatite in biomedicine by Gui, Xingyu, Peng, Wei, Xu, Xiujuan, Su, Zixuan, Liu, Gang, Zhou, Zhigang, Liu, Ming, Li, Zhao, Song, Geyang, Zhou, Changchun, Kong, Qingquan

    Published in Nanotechnology reviews (Berlin) (15-06-2022)
    “…Nano-hydroxyapatite (nano-HA) has been widely studied as a promising biomaterial because of its potential mechanical and biological properties. In this…”
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  6. 6

    Apoptotic cell-derived micro/nanosized extracellular vesicles in tissue regeneration by Wang, Yixi, Khan, Haider Mohammed, Zhou, Changchun, Liao, Xiaoxia, Tang, Pei, Song, Ping, Gui, Xingyu, Li, Hairui, Chen, Zhixing, Liu, Shiyu, Cen, Ying, Zhang, Zhenyu, Li, Zhengyong

    Published in Nanotechnology reviews (Berlin) (22-02-2022)
    “…Extracellular vesicles (EVs), products released by cells in multiple biological activities, are currently widely accepted as functional particles and…”
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  7. 7

    DLP fabricating of precision GelMA/HAp porous composite scaffold for bone tissue engineering application by Song, Ping, Li, Mingxin, Zhang, Boqing, Gui, Xingyu, Han, Yanlong, Wang, Li, Zhou, Wenzheng, Guo, Likun, Zhang, Zhenyu, Li, Zhengyong, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in Composites. Part B, Engineering (01-09-2022)
    “…The hydrogel composited hydroxyapatite (HAp) scaffold shown biomimetic extracellular matrix and osteogenic activity, which is a promising bone regeneration…”
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  8. 8

    Three-Dimensional Printing of Large-Scale, High-Resolution Bioceramics with Micronano Inner Porosity and Customized Surface Characterization Design for Bone Regeneration by Zhang, Boqing, Gui, Xingyu, Song, Ping, Xu, Xiujuan, Guo, Likun, Han, Yanlong, Wang, Li, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in ACS applied materials & interfaces (23-02-2022)
    “…Three-dimensional printing technologies have opened up new possibilities for manufacturing bioceramics with complex shapes in a completely digital fabrication…”
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  9. 9

    3D-printed HAp bone regeneration scaffolds enable nano-scale manipulation of cellular mechanotransduction signals by Wu, Lina, Pei, Xuan, Zhang, Boqing, Su, Zixuan, Gui, Xingyu, Gao, Canyu, Guo, Likun, Fan, Hongyuan, Jiang, Qing, Zhao, Li, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    “…[Display omitted] •Sizes of hydroxyapatite nanorods coating were manipulated via a hydrothermal process.•The sizes of nanorods regulates cell adhesion,…”
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  10. 10

    3D printed calcium phosphate scaffolds with controlled release of osteogenic drugs for bone regeneration by Sun, Huan, Zhang, Chenxi, Zhang, Boqing, Song, Ping, Xu, Xiujuan, Gui, Xingyu, Chen, Xinyue, Lu, Gonggong, Li, Xiang, Liang, Jie, Sun, Jianxun, Jiang, Qing, Zhou, Changchun, Fan, Yujiang, Zhou, Xuedong, Zhang, Xingdong

    “…[Display omitted] •Calcium phosphate scaffolds with accuracy porosity were fabricated by 3D printing.•Icariin served as a controlled release of osteogenic drug…”
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  11. 11

    Fabrication of customized Ti6AI4V heterogeneous scaffolds with selective laser melting: Optimization of the architecture for orthopedic implant applications by Pei, Xuan, Wu, Lina, Lei, Haoyuan, Zhou, Changchun, Fan, Hongyuan, Li, Zhengyong, Zhang, Boqing, Sun, Huan, Gui, Xingyu, Jiang, Qing, Fan, Yujiang, Zhang, Xingdong

    Published in Acta biomaterialia (01-05-2021)
    “…Orthopedic implants with heterogeneous porous structures were known as ideal bone osteointegration. This research introduced the selective laser melting (SLM),…”
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  12. 12

    Fused Deposition Modeling Printed PLA/Nano [beta]-TCP Composite Bone Tissue Engineering Scaffolds for Promoting Osteogenic Induction Function by Wang, Wenzhao, Liu, Pan, Zhang, Boqing, Gui, Xingyu, Pei, Xuan, Song, Ping, Yu, Xia, Zhang, Zhengdong, Zhou, Changchun

    Published in International journal of nanomedicine (31-10-2023)
    “…Purpose: Large bone defects caused by congenital defects, infections, degenerative diseases, trauma, and tumors often require personalized shapes and rapid…”
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  13. 13

    Enhanced osteogenesis and inflammation suppression in 3D printed n-HA/PA66 composite scaffolds with PTH(1-34)-loaded nPDA coatings by Zeng, Zhimou, Wang, Linnan, Qu, Bo, Gui, Xingyu, Zhang, Boqing, Deng, Zhipeng, Qin, Yuxiang, Li, Zhuangzhuang, Li, Qiujiang, Wang, Lei, Fan, Yujiang, Zhou, Changchun, Song, Yueming

    Published in Composites. Part B, Engineering (01-08-2024)
    “…In current clinical applications, spinal fusion predominantly are mostly inertness biomaterials with dense structures, which restrict the interface for new…”
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  14. 14

    DLP Fabrication of Multiple Hierarchical Biomimetic GelMA/SilMA/HAp Scaffolds for Enhancing Bone Regeneration by Song, Ping, Gui, Xingyu, Wu, Lina, Su, Xinyu, Zhou, Wenzheng, Luo, Zeyu, Zhang, Boqing, Feng, Pin, Wei, Wei, Fan, Chen, Wu, Yunhong, Zeng, Weinan, Zhou, Changchun, Fan, Yujiang, Zhou, Zongke

    Published in Biomacromolecules (11-03-2024)
    “…Severe bone defects resulting from trauma and diseases remain a persistent clinical challenge. In this study, a hierarchical biomimetic microporous hydrogel…”
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  15. 15

    Natural loofah sponge inspired 3D printed bionic scaffolds promote personalized bone defect regeneration by Gui, Xingyu, Song, Ping, Zhang, Boqing, Lei, Haoyuan, Wu, Lina, Sun, Jiayi, Tang, Rong, Zhang, Hui, Qin, Yuxiang, Su, Zixuan, Sun, Jianxun, Zhao, Zhihe, Han, Min, Wei, Wei, Fan, Yujiang, Zhou, Changchun

    Published in Composites. Part B, Engineering (01-01-2025)
    “…Critical-sized bone defects pose serious health concerns for patients. Clinically, the use of functionalized bone implants has emerged as an effective…”
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  16. 16

    Fused Deposition Modeling Printed PLA/Nano β-TCP Composite Bone Tissue Engineering Scaffolds for Promoting Osteogenic Induction Function by Wang, Wenzhao, Liu, Pan, Zhang, Boqing, Gui, Xingyu, Pei, Xuan, Song, Ping, Yu, Xia, Zhang, Zhengdong, Zhou, Changchun

    Published in International journal of nanomedicine (01-10-2023)
    “…PurposeLarge bone defects caused by congenital defects, infections, degenerative diseases, trauma, and tumors often require personalized shapes and rapid…”
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  17. 17

    3D printing of customized key biomaterials genomics for bone regeneration by Zhang, Boqing, Wang, Wenzhao, Gui, Xingyu, Song, Ping, Lei, Haoyuan, Li, Zhengyong, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in Applied materials today (01-03-2022)
    “…•High throughput chip to screen the biomaterials genomics for regenerative medicine.•Distinguishing osteoinduction from osteoconduction in an orthotopic…”
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  18. 18

    3D-Printed Bioceramic Scaffolds Reinforced by the In Situ Oriented Growth of Grains for Supercritical Bone Defect Reconstruction by Zhang, Boqing, Wang, Kaixin, Gui, Xingyu, Wang, Wenzhao, Song, Ping, Wu, Lina, Guo, Likun, Zhou, Changchun, Fan, Yujiang, Zhang, Xingdong

    Published in Advanced science (13-11-2024)
    “…Porous calcium phosphate ceramics have attracted widespread attention owing to their excellent bioactivity. However, their poor mechanical properties severely…”
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  19. 19

    3D printing of biomimetic hierarchical porous architecture scaffold with dual osteoinduction and osteoconduction biofunctions for large size bone defect repair by Gui, Xingyu, Zhang, Boqing, Song, Ping, Su, Zixuan, Gao, Canyu, Xing, Fei, Liu, Lei, Wei, Wei, Hui, David, Gu, Linxia, Liu, Ming, Wu, Yunhong, Zhou, Changchun, Fan, Yujiang

    Published in Applied materials today (01-04-2024)
    “…•The dual biological functional scaffold with outer osteoinduction and inner osteoconduction properties.•The gradient porous scaffold designed with reference…”
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