Asakura Tetsuo, Tanaka Takashi
Department of Biotechnology, Tokyo University of Agriculture and Technology, Tokyo 184-8588, Japan.
Department of Veterinary Science, Tokyo University of Agriculture and Technology, Tokyo 183-8509, Japan.
Molecules. 2025 Sep 18;30(18):3800. doi: 10.3390/molecules30183800.
This review discusses the development of small-diameter silk-based vascular grafts, based on insights obtained through solid-state NMR structural analysis. With the increasing prevalence of cardiovascular diseases, the demand for vascular grafts with diameters of less than 6 mm is growing. Although synthetic grafts currently used in clinical settings-such as polyethylene terephthalate and expanded polytetrafluoroethylene-are effective, they tend to cause thrombosis and intimal hyperplasia when used as small-diameter vascular grafts. In response to this issue, research has been advancing on new materials that maintain excellent mechanical properties while improving biocompatibility. This review first describes how the detailed structure of silk fibroin (SF) before and after fiber formation was revealed for the first time through solid-state NMR analysis using stable isotope-labeled samples. Then it outlines design criteria for small-diameter SF-based vascular grafts, focusing on fabrication methods like electrospinning. Special attention is given to knitted SF grafts with SF sponge coatings, analyzed via C solid-state NMR in the dry and hydrated states of the sponges. In vivo performance in rat and canine models is discussed, along with chemically modified SF grafts such as silk-biodegradable polyurethane sponges and their structural and implantation results.
本综述基于通过固态核磁共振结构分析获得的见解,讨论了小直径丝基血管移植物的发展。随着心血管疾病患病率的不断上升,对直径小于6毫米的血管移植物的需求也在增加。尽管目前临床使用的合成移植物,如聚对苯二甲酸乙二酯和膨体聚四氟乙烯,是有效的,但当用作小直径血管移植物时,它们往往会导致血栓形成和内膜增生。针对这一问题,人们一直在研究新型材料,这些材料在提高生物相容性的同时,还能保持优异的机械性能。本综述首先描述了如何通过使用稳定同位素标记样品的固态核磁共振分析,首次揭示了丝素蛋白(SF)在纤维形成前后的详细结构。然后概述了小直径丝基血管移植物的设计标准,重点介绍了如静电纺丝等制造方法。特别关注了带有SF海绵涂层的针织SF移植物,通过对海绵干态和水合态的碳固态核磁共振进行分析。讨论了大鼠和犬类模型中的体内性能,以及化学改性的SF移植物,如丝可生物降解聚氨酯海绵及其结构和植入结果。