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Biodegradable and elastomeric vascular grafts enable vascular remodeling

机译:可生物降解和弹性体血管移植物能够进行血管重塑

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摘要

Implanted grafts, including vascular substitutes, inevitably experience remodeling by host cells. The design of grafts capable of promoting constructive remodeling remains a challenge within regenerative medicine. Here, we used a biodegradable elastic polymer, poly (L-lactide-co-epsilon-caprolactone) (PLCL), to develop a vascular graft with circumferentially aligned microfibers. The grafts exhibited excellent handling properties and resistance to deformation. Upon implantation in rat abdominal aorta, graft-guided neoartery regeneration was achieved in a short period (4 weeks) as evidenced by rapid cell infiltration and alignment, and complete endothelialization. During vascular remodeling, a high ratio of M2/M1 macrophage was detected, and the expression of pro-inflammatory and anti-inflammatory cytokines first increased and then decreased to normal level for the follow-up period. By 12 months, the PLCL grafts were almost completely degraded and a well-integrated neoartery was formed with characteristics comparable to native arteries, such as transparent appearance, synchronous pulsation, dense and orderly extracellular matrix (ECM) arrangement, strong and compliant mechanical properties, and vasomotor response to pharmacologic agents. Taken together, our strategy represents a new avenue for guided tissue regeneration by designing the grafts to promote tissue remodeling via controlling structure, degradation and mechanical properties of the scaffolds.
机译:植入移植物,包括血管替代品,不可避免地经过宿主细胞重塑。能够促进建设性重塑的移植物的设计仍然是再生药物内的挑战。这里,我们使用可生物降解的弹性聚合物,聚(L-丙交酯 - ε-己内酯)(PLCL),以产生具有周向上对准的微纤维的血管移植物。移植物表现出优异的处理性能和抗变形性。在植入大鼠腹部主动脉后,在短时间内(4周)在短时间内(4周)实现接枝引导的新动脉再生,如快速细胞浸润和对准,并完全内皮化。在血管重塑期间,检测到M2 / M1巨噬细胞的高比率,并且促炎和抗炎细胞因子的表达首先增加,然后降低到后续期间的正常水平。 12个月,PLCL移植物几乎完全降解,并形成了与天然动脉相当的特性形成的良好的内膜,例如透明外观,同步脉动,致密和有序细胞外基质(ECM)布置,强大兼容的机械性能,和血管运动器对药物剂的反应。在一起,我们的策略代表了通过设计移植物通过控制结构,降解和支架的机械性能来促进组织再生的引导组织再生的新途径。

著录项

  • 来源
    《Biomaterials》 |2018年第2018期|共13页
  • 作者单位

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Tianjin Univ Tradit Chinese Med Teaching Hosp 1 Tianjin Peoples R China;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

    Chinese Acad Med Sci Inst Radiat Med Tianjin Key Lab Radiat Med &

    Mol Nucl Med Tianjin 300192;

    Stevens Inst Technol Dept Biomed Engn Hoboken NJ 07030 USA;

    Nankai Univ Coll Life Sci Minist Educ State Key Lab Med Chem Biol Key Lab Bioact Mat Tianjin;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

    Tissue remodeling; Vascular grafts; Aligned microfiber; Biodegradable; Elasticity and compliance;

    机译:组织重塑;血管移植物;对齐的超细纤维;可生物降解;弹性和合规性;

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