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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Artificial small-diameter blood vessels: materials, fabrication, surface modification, mechanical properties, and bioactive functionalities
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Artificial small-diameter blood vessels: materials, fabrication, surface modification, mechanical properties, and bioactive functionalities

机译:人造小直径血管:材料,制造,表面改性,机械性能和生物活性功能

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Cardiovascular diseases, especially ones involving narrowed or blocked blood vessels with diameters smaller than 6 millimeters, are the leading cause of death globally. Vascular grafts have been used in bypass surgery to replace damaged native blood vessels for treating severe cardio- and peripheral vascular diseases. However, autologous replacement grafts are not often available due to prior harvesting or the patient's health. Furthermore, autologous harvesting causes secondary injury to the patient at the harvest site. Therefore, artificial blood vessels have been widely investigated in the last several decades. In this review, the progress and potential outlook of small-diameter blood vessels (SDBVs) engineered in vitro are highlighted and summarized, including material selection and development, fabrication techniques, surface modification, mechanical properties, and bioactive functionalities. Several kinds of natural and synthetic polymers for artificial SDBVs are presented here. Commonly used fabrication techniques, such as extrusion and expansion, electrospinning, thermally induced phase separation (TIPS), braiding, 3D printing, hydrogel tubing, gas foaming, and a combination of these methods, are analyzed and compared. Different surface modification methods, such as physical immobilization, surface adsorption, plasma treatment, and chemical immobilization, are investigated and are compared here as well. Mechanical requirements of SDBVs are also reviewed for long-term service. In vitro biological functions of artificial blood vessels, including oxygen consumption, nitric oxide (NO) production, shear stress response, leukocyte adhesion, and anticoagulation, are also discussed. Finally, we draw conclusions regarding current challenges and attempts to identify future directions for the optimal combination of materials, fabrication methods, surface modifications, and biofunctionalities. We hope that this review can assist with the design, fabrication, and application of SDBVs engineered in vitro and promote future advancements in this emerging research field.
机译:心血管疾病,尤其是涉及大于6毫米的狭窄或阻塞血管的血管,是全球死亡的主要原因。血管移植物已用于旁路手术,以替代受损的原生血管用于治疗严重的心脏和外周血管疾病。然而,由于事先收获或患者的健康,自体更换移植术通常不会常用。此外,自体收获使患者在收获场所导致继发性损伤。因此,在过去几十年中已被广泛研究人工血管。在本文中,体外工程化工程(SDBVs)的进展和潜在前景被突出显示并总结,包括材料选择和开发,制造技术,表面改性,机械性能和生物活性功能。这里给出了用于人造SDBV的几种天然和合成聚合物。分析并比较了常用的制造技术,例如挤出和膨胀,静电纺丝,热诱导的相分离(提示),编织,3D印刷,水凝胶管,气体发泡和这些方法的组合。研究了不同的表面改性方法,例如物理固定,表面吸附,等离子体处理和化学固定化,并在此处进行比较。 SDBVS的机械要求也被审查了长期服务。还讨论了人造血管的体外生物功能,包括氧消耗,一氧化氮(NO)生产,剪切应力反应,白细胞粘附和抗凝。最后,我们得出关于当前挑战的结论,并试图确定最佳的材料,制造方法,表面修饰和生物功能的未来方向。我们希望本次审查可以协助在体外设计,制造和应用SDBVs,促进该新兴研究领域的未来进步。

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