医学文献 >>
  • 检索发现
  • 增强检索
知识库 >>
  • 临床诊疗知识库
  • 中医药知识库
评价分析 >>
  • 机构
  • 作者
默认
×
热搜词:
换一批
论文 期刊
取消
高级检索

检索历史 清除

Mechanical regulation and 3D bioprinting of native tissue-inspired granular composite hydrogels

摘要Granular composite(GC)hydrogels have attracted considerable interest in biomedical applications due to their versatile printability and exceptional mechanical properties.However,the lack of comprehensive design guidelines has limited their optimal engineering,as the factors influencing their mechanical performance and printability remain largely unexamined.In this study,we developed GC hydrogels by integrating microgels with interstitial matrices of photocrosslinkable gelatin meth-acrylate(GelMA).We utilized confocal microscopy and nanoindentation analyses to investigate the spatial distribution and mechanical behavior of these hydrogels.Our findings indicate that the mechanical and rheological properties of GC hydrogels can be precisely tailored by adjusting the volume fraction and size of the microgels.Furthermore,hydrogen bonds were iden-tified as significant contributors to compressive performance,although they had minimal effect on cyclic mechanical behav-ior.Compared to bulk GelMA hydrogels,GC hydrogels demonstrated enhanced printability and remarkable superelasticity.As a proof of concept,we illustrated their dual printability in embedded printing to create prosthetic liver models for preop-erative planning.This study provides valuable insights into the design and optimization of GC hydrogels for advanced bio-medical applications.

更多
广告
作者 Heyuan Deng [1] Yongcong Fang [2] Zhengxun Gao [1] Bingyan Wu [1] Ting Zhang [3] Zhuo Xiong [4] 学术成果认领
作者单位 Biomanufacturing Center,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China;Biomanufacturing and Rapid Forming Technology Key Laboratory of Beijing,Beijing 100084,China;"Biomanufacturing and Engineering Living Systems"Innovation International Talents Base(111 Base),Beijing 100084,China [1] Biomanufacturing Center,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China;Biomanufacturing and Rapid Forming Technology Key Laboratory of Beijing,Beijing 100084,China;"Biomanufacturing and Engineering Living Systems"Innovation International Talents Base(111 Base),Beijing 100084,China;State Key Laboratory of Tribology in Advanced Equipment,Tsinghua University,Beijing 100084,China;State Key Laboratory of Clean and Efficient Turbomachinery Power Equipment,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China [2] Biomanufacturing Center,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China;Biomanufacturing and Rapid Forming Technology Key Laboratory of Beijing,Beijing 100084,China;"Biomanufacturing and Engineering Living Systems"Innovation International Talents Base(111 Base),Beijing 100084,China;State Key Laboratory of Tribology in Advanced Equipment,Tsinghua University,Beijing 100084,China [3] Biomanufacturing Center,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China;Biomanufacturing and Rapid Forming Technology Key Laboratory of Beijing,Beijing 100084,China;"Biomanufacturing and Engineering Living Systems"Innovation International Talents Base(111 Base),Beijing 100084,China;State Key Laboratory of Clean and Efficient Turbomachinery Power Equipment,Department of Mechanical Engineering,Tsinghua University,Beijing 100084,China [4]
栏目名称
DOI 10.1631/bdm.2500018
发布时间 2025-07-31(万方平台首次上网日期,不代表论文的发表时间)
提交
  • 浏览0
  • 下载0
生物设计与制造(英文版)

加载中!

相似文献

  • 中文期刊
  • 外文期刊
  • 学位论文
  • 会议论文

加载中!

加载中!

加载中!

加载中!

法律状态公告日 法律状态 法律状态信息

特别提示:本网站仅提供医学学术资源服务,不销售任何药品和器械,有关药品和器械的销售信息,请查阅其他网站。

  • 客服热线:4000-115-888 转3 (周一至周五:8:00至17:00)

  • |
  • 客服邮箱:yiyao@wanfangdata.com.cn

  • 违法和不良信息举报电话:4000-115-888,举报邮箱:problem@wanfangdata.com.cn,举报专区

官方微信
万方医学小程序
new医文AI 翻译 充值 订阅 收藏 移动端

官方微信

万方医学小程序

使用
帮助
Alternate Text
调查问卷