Nanofiber-hydrogel composite–mediated angiogenesis for soft tissue reconstruction

软组织 细胞外基质 透明质酸 血管生成 纤维化 再生医学 组织工程 生物医学工程 再生(生物学) 化学 材料科学 医学 病理 解剖 干细胞 癌症研究 细胞生物学 生物 生物化学
作者
Xiaowei Li,Brian Cho,Russell Martin,Michelle Seu,Chi Zhang,Zhengbing Zhou,Ji Suk Choi,Xuesong Jiang,Long Chen,Gurjot S. Walia,Jerry Yan,Megan Callanan,Huanhuan Liu,Kevin Colbert,Justin Morrissette‐McAlmon,Warren L. Grayson,Sashank Reddy,Justin M. Sacks,Hai‐Quan Mao
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:11 (490) 被引量:241
标识
DOI:10.1126/scitranslmed.aau6210
摘要

Soft tissue losses from tumor removal, trauma, aging, and congenital malformation affect millions of people each year. Existing options for soft tissue restoration have several drawbacks: Surgical options such as the use of autologous tissue flaps lead to donor site defects, prosthetic implants are prone to foreign body response leading to fibrosis, and fat grafting and dermal fillers are limited to small-volume defects and only provide transient volume restoration. In addition, large-volume fat grafting and other tissue-engineering attempts are hampered by poor vascular ingrowth. Currently, there are no off-the-shelf materials that can fill the volume lost in soft tissue defects while promoting early angiogenesis. Here, we report a nanofiber-hydrogel composite that addresses these issues. By incorporating interfacial bonding between electrospun poly(ε-caprolactone) fibers and a hyaluronic acid hydrogel network, we generated a composite that mimics the microarchitecture and mechanical properties of soft tissue extracellular matrix. Upon subcutaneous injection in a rat model, this composite permitted infiltration of host macrophages and conditioned them into the pro-regenerative phenotype. By secreting pro-angiogenic cytokines and growth factors, these polarized macrophages enabled gradual remodeling and replacement of the composite with vascularized soft tissue. Such host cell infiltration and angiogenesis were also observed in a rabbit model for repairing a soft tissue defect filled with the composite. This injectable nanofiber-hydrogel composite augments native tissue regenerative responses, thus enabling durable soft tissue restoration outcomes.
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