State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Macau SAR, China.
State Key Laboratory of Pharmaceutical Biotechnology, Nanjing University, Nanjing, 210093, China.
Biomaterials. 2017 Dec;148:54-68. doi: 10.1016/j.biomaterials.2017.09.028. Epub 2017 Sep 23.
Recapitulating the typical features of extracellular matrix (ECM) in engineered biomaterials is crucial for preparing a suitable niche to activate endogenous tissue repair. Here, we report the design and evaluation of an ECM-mimetic scaffold that successfully accelerated wound healing through enriching endogenous platelet-derived growth factor-BB (PDGF-BB). Specifically, we prepared a electrospun hydrogel sponge (EGS) comprising a PDGF-BB-binding polysaccharide (EUP3) and gelatin. The two polymers in concert exerted a 'retention-and-release' function: upon the application of EGS in vivo, EUP3 started to bind and sequester endogenous PDGF-BB at the wound site; gradually, gelatin was degraded to free the PDGF-BB/EUP3 complex that acted on the cells in situ. Our serial in vitro and in vivo tests validated the efficacy of EGS in retaining PDGF-BB, releasing PDGF-BB/EUP3 in response to collagenase, and promoting various PDGF-BB-mediated regenerative activities. Particularly, EGS accelerated the repair of a full-thickness skin wound in mice and induced optimal neo-tissue formation, without the addition of any exogenous GFs, cells or genes. Collectively, our results suggest that, by mimicking the distinctive GF-affinitive feature of ECM, EGS as an engineered biomaterial can effectively harness the endogenous regenerative power of the native tissue. Our investigation may inspire the design of new, effective and safer approaches for tissue regeneration.
重现细胞外基质 (ECM) 的典型特征对于制备合适的微环境以激活内源性组织修复至关重要。在这里,我们报告了一种 ECM 模拟支架的设计和评估,该支架通过丰富内源性血小板衍生生长因子-BB (PDGF-BB) 成功加速了伤口愈合。具体来说,我们制备了一种包含 PDGF-BB 结合多糖 (EUP3) 和明胶的电纺水凝胶海绵 (EGS)。这两种聚合物协同发挥“保留和释放”功能:在体内应用 EGS 时,EUP3 开始在伤口部位结合并隔离内源性 PDGF-BB;逐渐地,明胶被降解以释放 PDGF-BB/EUP3 复合物,该复合物在原位作用于细胞。我们的一系列体外和体内测试验证了 EGS 保留 PDGF-BB、响应胶原酶释放 PDGF-BB/EUP3 以及促进各种 PDGF-BB 介导的再生活性的功效。特别是,EGS 加速了小鼠全层皮肤伤口的修复,并诱导了最佳的新组织形成,而无需添加任何外源性生长因子、细胞或基因。总之,我们的结果表明,通过模拟 ECM 独特的生长因子亲和特性,EGS 作为一种工程生物材料可以有效地利用内源性组织的再生能力。我们的研究可能为组织再生的新的、有效和更安全的方法的设计提供启示。