首页> 外文会议>International Symposium on Advanced Materials >Next-Generation Biomaterials for Bone-Tissue Regeneration: Mg-Alloys on the Move
【24h】

Next-Generation Biomaterials for Bone-Tissue Regeneration: Mg-Alloys on the Move

机译:用于骨组织再生的下一代生物材料:Mg-合金上的移动

获取原文

摘要

Disorders related to the bone health are becoming a significant concern due to subsequent rise in ageing human population. It is estimated that more than two million bone-surgeries are performed worldwide with an annual cost of $2.5 billion. In order to replace damaged bone-tissues and restore their function, biomaterials consisting of stainless steels, cobalt-chromium and titanium alloys are implanted. However, these permanent (non-biodegradable) implants often lead to stress-shielding effects and ions release as they interact with the cells and fluids in the body. It is required to overcome these issues by improving the quality of implant materials and increasing their service life. Recently, research in biodegradable materials, consisting of magnesium alloys in particular, has received global attention owning to their biocompatibility and closer mechanical properties to the natural bone. However, due to their rapid corrosion rate in the body fluids, clinical applications of mg-alloys as viable bone-implants have been restricted. A number of mg-alloys have been tested since (both in-vivo and in-vitro) to optimize their biodegradation rare and corrosion properties. The present review summarizes the most recent developments in Mg-alloys designed with biodegradation tailored to the bone-cells growth and highlights the most successful ways to optimize their surface properties for optimum cell/material interaction.
机译:涉及到骨骼健康的疾病正在成为一个显著关注由于老龄化人口后续上升。据估计,超过两百万骨手术与$ 2.5的十亿每年全球成本进行。为了更换损坏的骨组织,恢复其功能,包括不锈钢,钴铬和钛合金生物材料植入。然而,这些永久的(非生物可降解)植入物常常会导致应力屏蔽效果和离子释放,因为它们与在体内的细胞和液体相互作用。这需要通过提高植入材料的质量,提高其使用寿命,以克服这些问题。最近,研究生物降解材料,特别是由镁合金,受到全球关注拥有它们的生物相容性和更密切的机械性能天然骨。然而,由于体液的快速腐蚀速率,MG-合金作为可行的骨植入物的临床应用受到限制。许多毫克基合金已经被测试,因为(无论是在体内和体外)来优化他们的生物降解稀有和腐蚀特性。本综述了设计为与针对骨细胞生长和亮点的最成功的方法,以优化最佳的细胞/材料相互作用其表面性质的生物降解的Mg基合金的最新发展。

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