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Bioactive glasses - When glass science and technology meet regenerative medicine

机译:生物活性眼镜 - 玻璃科学和技术符合再生医学时

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Over the millennia, men have continuously potentiated their abilities through developing and applying new materials and technologies. A number of metallic, ceramic and polymeric implants have been experimented as "spare parts" to restore lost functions or organs in the body. Till the 1960s, the selection of potentially suitable prosthetic materials was based on the criterion of maximum biological and biochemical inertness in contact with body fluids. Fifty years ago, the invention of the first bioactive glass, which was able to create a strong bond with living bone, radically changed this concept and paved the way for the advent of the modern era of biomaterials science. Since then, a number of bioactive glass-based products, such as small solid blocks, fine particles, granules, porous scaffolds and injectable putties, have been implanted in millions of patients primarily to repair bone and dental defects. Over the last decade, bioactive glasses have also shown promise in highly fascinating, emerging applications that involve angiogenesis (e.g. wound healing), interfacial hard-soft tissue engineering and controlled drug delivery. This review offers the reader a "guided tour" in the field of bioactive glass science and technology, also highlighting the future challenges to be met by materials scientists, bioengineers and clinicians to further exploit the benefits associated to these ever-surprising materials, which were unthinkable when research began.
机译:在千年内,男子通过开发和应用新材料和技术而持续调强他们的能力。已经尝试了许多金属,陶瓷和聚合物植入物作为“备件”,以恢复体内丢失的功能或器官。直到20世纪60年代,选择潜在合适的假体材料是基于与体液接触的最大生物和生化惰性的标准。五十年前,本发明能够与生物骨骼产生强大的粘接,从根本上改变了这一概念,并为生物材料的现代时代的出现铺平了道路。从那时起,许多生物活性玻璃基产品,例如小固体块,细颗粒,颗粒,多孔支架和可注射粘性粘液,这些产品主要是在数百万患者中植入,主要是修复骨骼和牙齿缺陷。在过去十年中,生物活性玻璃也在高度迷人的新兴应用中显示出涉及血管生成(例如伤口愈合),界面硬软组织工程和受控药物递送的许可。本次审查提供了读者在生物活性玻璃科学和技术领域的“导游”,还突出了材料科学家,生物工程和临床医生的未来挑战,以进一步利用与这些令人惊讶的材料相关的益处,这是研究开始时不可思议。

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