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Challenges and Innovations in Osteochondral Regeneration: Insights from Biology and Inputs from Bioengineering toward the Optimization of Tissue Engineering Strategies

机译:骨质色再生中的挑战与创新:生物学与生物工程的洞察力与生物工程策略的优化

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摘要

Due to the extremely high incidence of lesions and diseases in aging population, it is critical to put all efforts into developing a successful implant for osteochondral tissue regeneration. Many of the patients undergoing surgery present osteochondral fissure extending until the subchondral bone (corresponding to a IV grade according to the conventional radiographic classification by Berndt and Harty). Therefore, strategies for functional tissue regeneration should also aim at healing the subchondral bone and joint interface, besides hyaline cartilage. With the ambition of contributing to solving this problem, several research groups have been working intensively on the development of tailored implants that could promote that complex osteochondral regeneration. These implants may be manufactured through a wide variety of processes and use a wide variety of (bio)materials. This review aimed to examine the state of the art regarding the challenges, advantages, and drawbacks of the current strategies for osteochondral regeneration. One of the most promising approaches relies on the principles of additive manufacturing, where technologies are used that allow for the production of complex 3D structures with a high level of control, intended and predefined geometry, size, and interconnected pores, in a reproducible way. However, not all materials are suitable for these processes, and their features should be examined, targeting a successful regeneration.
机译:由于人口衰老和疾病的病变和疾病的极高发生率,这一切都是为开发成功的植入骨质组织再生而努力。许多接受手术的患者呈现出骨细胞裂隙延伸,直至子骨髓骨(根据伯恩特和Harty的传统放射线分类对应IV等级)。因此,除了透明软骨之外,功能组织再生的策略还应该旨在愈合骨髓内骨和关节界面。随着有助于解决这一问题的雄心,一些研究小组一直在积极地努力发展量身定制的植入物,这可以促进复杂的骨质体再生。这些植入物可以通过各种过程制造,并使用各种各样的(生物)材料。本综述旨在审查关于骨质色素再生策略的挑战,优势和缺点的艺术状态。最有希望的方法之一依赖于添加剂制造的原理,其中技术的使用方法,其允许以可再现的方式生产具有高水平的控制,预期和预定的几何形状,尺寸和相互连接的孔的复杂3D结构。然而,并非所有材料都适用于这些过程,应检查它们的特征,靶向成功的再生。

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