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Preclinical in vivo Performance of Novel Biodegradable Electrospun Poly(lactic acid) and Poly(lactic-co-glycolic acid) Nanocomposites: A Review

机译:新型可生物降解的静电纺丝聚乳酸和聚乳酸-乙醇酸纳米复合材料的临床前体内性能:综述

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摘要

Bone substitute materials have witnessed tremendous development over the past decades and autogenous bone may still be considered the gold standard for many clinicians and clinical approaches in order to rebuild and restore bone defects. However, a plethora of novel xenogenic and synthetic bone substitute materials have been introduced in recent years in the field of bone regeneration. As the development of bone is actually a calcification process within a collagen fiber arrangement, the use of scaffolds in the formation of fibers may offer some advantages, along with additional handling characteristics. This review focuses on material characteristics and degradation behavior of electrospun biodegradable polyester scaffolds. Furthermore, we concentrated on the preclinical in vivo performance with regard to bone regeneration in preclinical studies. The major findings are as follows: Scaffold composition and architecture determine its biological behavior and degradation characteristics; The incorporation of inorganic substances and/or organic substances within composite scaffolds enhances new bone formation; L-poly(lactic acid) and poly(lactic-co-glycolic acid) composite scaffolds, especially when combined with basic substances like hydroxyapatite, tricalcium phosphate or demineralized bone powder, seem not to induce inflammatory tissue reactions in vivo.
机译:在过去的几十年中,骨替代材料得到了巨大的发展,自体骨仍然可以被视为许多临床医生和临床方法的金标准,以重建和修复骨缺损。然而,近年来,在骨再生领域中已经引入了许多新颖的异种和合成骨替代材料。由于骨骼的发育实际上是胶原纤维排列中的钙化过程,因此在纤维形成中使用支架可能会带来一些优势,同时还具有其他处理特性。这项审查侧重于电纺可生物降解聚酯支架的材料特性和降解行为。此外,在临床前研究中,我们集中于有关骨再生的临床前体内性能。主要发现如下:支架的组成和结构决定其生物学行为和降解特性。将无机物质和/或有机物质掺入复合支架中可增强新的骨骼形成。 L-聚乳酸和聚乳酸-乙醇酸复合材料支架,特别是与诸如羟基磷灰石,磷酸三钙或脱钙骨粉之类的碱性物质结合使用时,似乎不会在体内引起炎症性组织反应。

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