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Engineering Anisotropic Meniscus: Zonal Functionality and Spatiotemporal Drug Delivery

机译:工程各向异性半月板:区间功能和时尚药物递送

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Human meniscus is a fibrocartilaginous structure that is crucial for an adequate performance of the human knee joint. Degeneration of the meniscus is often followed by partial or total meniscectomy, which enhances the risk of developing knee osteoarthritis. The lack of a satisfactory treatment for this condition has triggered a major interest in drug delivery (DD) and tissue engineering (TE) strategies intended to restore a bioactive and fully functional meniscal tissue. The aim of this review is to critically discuss the most relevant studies on spatiotemporal DD and TE, aiming for a multizonal meniscal reconstruction. Indeed, the development of meniscal tissue implants should involve a provision for adequate active molecules and scaffold features that take into account the anisotropic ultrastructure of human meniscus. This zonal differentiation is reflected in the meniscus biochemical composition, collagen fiber arrangement, and cell distribution. In this sense, it is expected that a proper combination of advanced DD and zonal TE strategies will play a key role in the future trends in meniscus regeneration.
机译:人类半月板是一种纤维软骨结构,对人类膝关节的充分性能至关重要。半月板退化后通常会进行部分或全部半月板切除术,这会增加患膝骨关节炎的风险。这种疾病缺乏令人满意的治疗方法,这引发了人们对药物递送(DD)和组织工程(TE)策略的兴趣,这些策略旨在恢复具有生物活性和完全功能的半月板组织。这篇综述的目的是批判性地讨论时空DD和TE最相关的研究,旨在实现多区域半月板重建。事实上,半月板组织植入物的开发应该包括提供足够的活性分子和支架功能,考虑到人类半月板的各向异性超微结构。这种带状分化反映在半月板的生化成分、胶原纤维排列和细胞分布上。从这个意义上说,高级DD和带状TE策略的适当组合将在弯月面再生的未来趋势中发挥关键作用。

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