Bujoli Bruno, Scimeca Jean-Claude, Verron Elise
Chemical and Interdisciplinarity, Synthesis, Analysis, Modelisation, CEISAM UMR CNRS 6230, University of Nantes, 44300 Nantes, France.
Université Côte d'Azur, CNRS, Inserm, iBV, 06107 Nice, France.
Pharmaceutics. 2019 Oct 28;11(11):556. doi: 10.3390/pharmaceutics11110556.
Although bone graft is still considered as the gold standard method, bone tissue engineering offers promising alternatives designed to mimic the extracellular matrix (ECM) and to guide bone regeneration process. In this attempt, due to their similarity to the ECM and their low toxicity/immunogenicity properties, growing attention is paid to natural polymers. In particular, considering the early critical role of fracture hematoma for bone healing, fibrin, which constitutes blood clot, is a candidate of choice. Indeed, in addition to its physiological roles in bone healing cascade, fibrin biochemical characteristics make it suitable to be used as a multipurpose platform for bioactive agents' delivery. Thus, taking advantage of these key assets, researchers and clinicians have the opportunity to develop composite systems that might further improve bone tissue reconstruction, and more generally prevent/treat skeletal disorders.
尽管骨移植仍被视为金标准方法,但骨组织工程提供了有前景的替代方案,旨在模拟细胞外基质(ECM)并引导骨再生过程。在这一尝试中,由于天然聚合物与ECM相似且具有低毒性/免疫原性特性,它们越来越受到关注。特别是,考虑到骨折血肿在骨愈合早期的关键作用,构成血凝块的纤维蛋白是一个首选候选物。事实上,除了其在骨愈合级联反应中的生理作用外,纤维蛋白的生化特性使其适合用作生物活性剂递送的多功能平台。因此,利用这些关键特性,研究人员和临床医生有机会开发复合系统,这可能进一步改善骨组织重建,更广泛地预防/治疗骨骼疾病。