工程 MAP 支架的微观结构和空间生物活性指导血管生成 in vitro 和修改血管形成 in vivo
Alexa R Anderson1, Eleanor L P Caston1, Lindsay Riley1
1Department of Biomedical Engineering, Duke University, Durham, NC 27705, USA.
概括
研究人员优化了微孔凝固颗粒 (MAP) 支架,以促进血管形成. 这些生物材料引导细胞生长,促进组织修复和血管化,在伤口愈合和瘤环境中发挥作用.
科学领域:
- 生物材料科学 生物材料科学
- 组织工程是组织工程.
- 再生医学是一种再生医学.
背景情况:
- 血管化对于组织修复至关重要,但在无血管或异常组织中具有挑战性.
- 生物材料提供了一种促进新血管形成 (血管生成) 和改善组织再生的策略.
研究的目的:
- 优化微孔制颗粒 (MAP) 支架,以引导内皮前代细胞组合进入功能性血管系统.
- 确定理想的支架微观结构和生物活性,以促进体外和体内新血管形成.
主要方法:
- 在形特征和体外实验中用于调整MAP支架属性.
- 研究了毛孔体积,细胞扩散和连接体呈现 (整合素参与,肝素纳米颗粒) 对细胞行为的作用.
- 在小鼠伤口愈合模型和瘤微环境中评估了脚手架的性能.
主要成果:
- 具有细胞大小毛孔的MAP支架促进了细胞生长和真空的形成.
- 通过在异质支架内使用粘合性微凝实现了细胞扩散的空间控制.
- 加入氨酸纳米颗粒装载的微凝导致血管管在3天内形成.
- 在体内研究表明,在伤口愈合和瘤中血管发育差异方面,血管成熟的增强.
结论:
- 确定了最佳的MAP支架微观结构和连接体呈现,用于在体外生成血管结构.
- 开发的支架配方有效地促进体内血管形成和成熟,显示治疗应用的希望.
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