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Systemic administration of enzyme-responsive growth factor nanocapsules for promoting bone repair

机译:全身施用酶响应生长因子纳米胶囊,促进骨修复

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摘要

Accelerating the healing of bone fractures by local delivery of growth factors possessing osteoinductive activity has been extensively demonstrated. Unfortunately, for some complex clinical fractures, such as osteoporotic vertebral compression fracture, it is not possible to adopt such a strategy because of access restrictions. Systemic administration of growth factors is considered to be an appropriate alternative method due to its easy operability and precise spatiotemporal compatibility at fracture sites. But this therapy method was hampered by the poor in vivo stability, inefficient distribution at the fracture site and potential side effects of growth factors. To address these challenges, we conceived a systemic delivery platform of growth factors based on nanocapsules, taking advantage of the unique physiological character of bone fracture, i.e., the malformed blood vessels and the over-expression of matrix metalloproteinases (MMPs). In this work, bone morphogenetic protein-2 (BMP-2), 2-(methacryloyloxy)ethyl phosphorylcholine (MPC) and the bisacryloylated VPLGVRTK peptide were respectively used as the model growth factor, monomer, and MMP-cleavable crosslinker. Nanocapsules were formed by in situ free radical polymerization on the surface of BMP-2 with MPC and peptides. The structure and function of BMP-2 were well maintained during the preparation process. BMP-2 nanocapsules (n(BMP-2)) were of uniform small size (approximate to 30 nm) possessing a long circulation time (half-life is approximate to 48 h) and could be passively targeted to the fracture site through malformed blood vessels after systemic administration. Once accumulated at the fracture site, the shells of nanocapsules could be degraded by MMP and thus BMP-2 was released. Animal experiments proved that n(BMP-2) showed a better ability of bone repair than native BMP-2. In addition, n(BMP-2) showed a much lower inflammatory irritation. The results demonstrated that the systemic administration of growth factor nanocapsules could enhance their in vivo stability and fracture site delivery efficiency, realizing the efficient repair of a bone fracture. This rational delivery system may expand the bone repair types which can be administered with growth factors. Furthermore, the concept of taking advantage of the malformed vascular structure to deliver drugs potentially inspires researchers for the therapy of other diseases, especially sudden disease (such as cerebral hemorrhage).
机译:通过局部递送具有骨诱导活性的局部生长因子的局部递送加速骨折的愈合已得到广泛。遗憾的是,对于一些复杂的临床骨折,例如骨质疏松椎体压缩骨折,由于访问限制,不可能采用这种策略。由于其在骨折位点的易于操作性和精确的时空相容性,因此,生长因子的系统性施用被认为是适当的替代方法。但这种治疗方法受到差的体内稳定性,骨折位点的低效率分布以及生长因子的潜在副作用。为了解决这些挑战,我们构思了基于纳米胶囊的生长因子的全身递送平台,利用骨骨折的独特生理特性,即畸形血管和基质金属蛋白酶(MMPS)的过表达。在这项工作中,骨形态发生蛋白-2(BMP-2),2-(甲基丙烯酰氧基)乙基磷胆碱(MPC)和双丙烯酰基化VPLGVRTK肽分别用作模型生长因子,单体和MMP可切割的交联剂。用MPC和肽在BMP-2表面上原位自由基聚合形成纳米胶囊。在制备过程中,BMP-2的结构和功能良好。 BMP-2纳米胶囊(N(BMP-2))具有均匀的小尺寸(近似为30nm),具有长循环时间(半衰期为48小时,可以通过畸形血液被动地靶向骨折部位系统管理后的船只。一旦在骨折部位积累,纳米胶囊的壳可以通过MMP降解,因此释放BMP-2。动物实验证明,N(BMP-2)显示出比天然BMP-2的骨修复更好的能力。此外,N(BMP-2)显示出更低的炎症刺激。结果表明,生长因子纳米胶囊的全身施用可以增强其体内稳定性和骨折位点输送效率,实现骨折的有效修复。该合理的递送系统可以扩大可以用生长因子施用的骨修复类型。此外,利用畸形血管结构的概念潜在潜在激发研究人员,研究其他疾病的治疗,尤其是突发性疾病(如脑出血)。

著录项

  • 来源
    《Biomaterials Science》 |2019年第4期|共11页
  • 作者单位

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Qingdao Univ Sci &

    Technol Coll Mat Sci &

    Engn Qingdao 266042 Shandong Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

    Tianjin Univ Sch Mat Sci &

    Engn Tianjin Key Lab Composite &

    Funct Mat Tianjin 300072 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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