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首页> 外文期刊>Acta biomaterialia >Diversification and enrichment of clinical biomaterials inspired by Darwinian evolution
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Diversification and enrichment of clinical biomaterials inspired by Darwinian evolution

机译:受达尔文进化论启发,临床生物材料的多样化和丰富化

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Regenerative medicine and biomaterials design are driven by biomimicry. There is the essential requirement to emulate human cell, tissue, organ and physiological complexity to ensure long-lasting clinical success. Biomimicry projects for biomaterials innovation can be re-invigorated with evolutionary insights and perspectives, since Darwinian evolution is the original dynamic process for biological organisation and complexity. Many existing human inspired regenerative biomaterials (defined as a nature generated, nature derived and nature mimicking structure, produced within a biological system, which can deputise for, or replace human tissues for which it closely matches) are without important elements of biological complexity such as, hierarchy and autonomous actions. It is possible to engineer these essential elements into clinical biomaterials via bioinspired implementation of concepts, processes and mechanisms played out during Darwinian evolution: mechanisms such as, directed, computational, accelerated evolutions and artificial selection contrived in the laboratory. These dynamos for innovation can be used during biomaterials fabrication, but also to choose optimal designs in the regeneration process. Further evolutionary information can help at the design stage: gleaned from the historical evolution of material adaptations compared across phylogenies to changes in their environment and habitats. Taken together, harnessing evolutionary mechanisms and evolutionary pathways, leading to ideal adaptations, will eventually provide a new class of Darwinian and evolutionary biomaterials. This will provide bioengineers with a more diversified and more efficient innovation tool for biomaterial design, synthesis and function than currently achieved with synthetic materials chemistry programmes and rational based materials design approach, which require reasoned logic. It will also inject further creativity, diversity and richness into the biomedical technologies that we make. All of which are based on biological principles. Such evolution-inspired biomaterials have the potential to generate innovative solutions, which match with existing bioengineering problems, in vital areas of clinical materials translation that include tissue engineering, gene delivery, drug delivery, immunity modulation, and scar-less wound healing.
机译:再生医学和生物材料的设计是由仿生技术驱动的。模仿人类细胞,组织,器官和生理复杂性以确保长期的临床成功是基本要求。由于达尔文式的进化是生物组织和复杂性的原始动态过程,因此可以用进化的见解和观点重新激发生物模拟项目。许多现有的人类启发性再生生物材料(定义为在生物系统中产生的自然产生的,自然衍生的和模仿自然结构的生物,可以代表或替代与其紧密匹配的人体组织)没有重要的生物复杂性元素,例如,等级制度和自主行动。通过对达尔文进化过程中出现的概念,过程和机制进行生物启发式实施,可以将这些基本元素工程化为临床生物材料:在实验室中人为设计的诸如定向,计算,加速进化和人工选择等机制。这些创新的动力可以在生物材料制造过程中使用,也可以在再生过程中选择最佳设计。进一步的进化信息可以在设计阶段提供帮助:从跨系统进化论的物质适应的历史进化中收集到环境和栖息地的变化。综上所述,利用进化机制和进化途径,导致理想的适应,最终将提供一类新的达尔文和进化生物材料。与目前需要合理逻辑的合成材料化学程序和基于理性的材料设计方法相比,这将为生物工程师提供用于生物材料设计,合成和功能的更多样化和更有效的创新工具。它还将为我们制造的生物医学技术注入更多的创造力,多样性和丰富性。所有这些都是基于生物学原理的。这种受进化启发的生物材料具有潜力,可以在包括组织工程,基因传递,药物传递,免疫调节和无疤痕伤口愈合在内的临床材料翻译的重要领域中,产生与现有生物工程问题相匹配的创新解决方案。

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