首页> 外文期刊>Acta biomaterialia >Silk scaffolds in bone tissue engineering: An overview
【24h】

Silk scaffolds in bone tissue engineering: An overview

机译:骨骼组织工程中的丝绸支架:概述

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Graphical abstract Display Omitted Abstract Bone tissue plays multiple roles in our day-to-day functionality. The frequency of accidental bone damage and disorder is increasing worldwide. Moreover, as the world population continues to grow, the percentage of the elderly population continues to grow, which results in an increased number of bone degenerative diseases. This increased elderly population pushes the need for artificial bone implants that specifically employ biocompatible materials. A vast body of literature is available on the use of silk in bone tissue engineering. The current work presents an overview of this literature from materials and fabrication perspective. As silk is an easy-to-process biopolymer; this allows silk-based biomaterials to be molded into diverse forms and architectures, which further affects the degradability. This makes silk-based scaffolds suitable for treating a variety of bone reconstruction and regeneration objectives. Silk surfaces offer active sites that aid the mineralization and/or bonding of bioactive molecules that facilitate bone regeneration. Silk has also been blended with a variety of polymers and minerals to enhance its advantageous properties or introduce new ones. Several successful works, both in vitro and in vivo, have been reported using silk-based scaffolds to regenerate bone tissues or other parts of the skeletal system such as cartilage and ligament. A growing trend is observed toward the use of mineralized and nanofibrous scaffolds along with the development of technology that allows to control scaffold architecture, its biodegradability and the sustained releasing property of scaffolds. Further development of silk-based scaffolds for bone tissue engineering, taking them up to and beyond the stage of human trials, is hoped to be achieved in the near future through a cross-disciplinary coalition of tissue engineers, material scientists and manufacturing engineers. Statement of Significance The state-of-art of silk biomaterials in bone tissue engineering, covering their wide applications as cell scaffolding matrices to micro-nano carriers for delivering bone growth factors and therapeutic molecules to diseased or damaged sites to facilitate bone regeneration, is emphasized here. The review rationalizes that the choice of silk protein as a biomaterial is not only because of its natural polymeric nature, mechanical robustness, flexibility and wide range of cell compatibility but also because of its ability to template the growth of hydroxyapatite, the chief inorganic component of bone mineral matrix, resulting in improved osteointegration. The discussion extends to the role of inorganic ions such as Si and Ca as matrix components in combination with silk to influence bone regrowth. The effect of ions or growth factor-loaded vehicle incorporation into regenerative matrix, nanotopography is also considered.
机译:图形摘要显示省略摘要骨组织在我们日常功能中发挥多种作用。全世界意外骨损伤和疾病的频率正在增加。此外,随着世界人口持续增长,老年人口的百分比持续增长,这导致骨退行性疾病的数量增加。这种老年人的人口增加了对人造骨植入物的需要,特别采用生物相容性材料。在骨组织工程中使用丝绸,可以获得庞大的文献。目前的工作提出了从材料和制造角度来看这种文献的概述。丝绸是一种易于过程的生物聚合物;这使得丝基生物材料待成型为不同的形式和架构,这进一步影响了降解性。这使得基于丝绸的支架适用于治疗各种骨重建和再生目标。丝绸表面提供有效的部位,有助于促进骨再生的生物活性分子的矿化和/或粘合。丝绸也与各种聚合物和矿物混合,以增强其有利的性质或引入新的性质。据报道,在体外和体内的几种成功作品,据报道,使用丝绸的支架来再生骨组织或骨骼系统的其他部分,如软骨和韧带。朝着使用矿化和纳米纤维支架的使用以及允许控制支架架构的技术,其生物降解性和支架的持续释放性能,观察到不断增长的趋势。进一步开发丝绸组织工程的丝绸组织工程的脚手架,将它们带到人类试验的阶段,希望通过组织工程师,材料科学家和制造工程师的跨学科联盟在不久的将来实现。骨组织工程中丝绸生物材料的最新技术陈述,涵盖其广泛应用作为细胞支架矩阵,用于将骨生长因子和治疗分子输送到患病或受损部位以促进骨再生的微纳米载体,以便于骨再生。这里。审查合理化了丝蛋白作为生物材料的选择不仅是因为它的天然聚合物性质,机械稳健性,灵活性和广泛的细胞相容性,而且因此是因为它模板羟基磷灰石生长的能力,骨矿物质基质,导致改善的骨整折。讨论延伸到无机离子如Si和Ca,如矩阵组分与丝绸组合影响骨再生。还考虑了离子或生长因子加载的载体掺入再生基质,纳米复印件的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号