Natsume Kazuki, Nakamura Jin, Sato Kazuhide, Ohtsuki Chikara, Sugawara-Narutaki Ayae
Department of Materials Chemistry, Graduate School of Engineering, Nagoya University, Nagoya 464-8603, Japan.
Department of Biological Functions Engineering, Graduate School of Life Science and Systems Engineering, Kyushu Institute of Technology, Fukuoka 808-0196, Japan.
Regen Biomater. 2022 Dec 28;10:rbac111. doi: 10.1093/rb/rbac111. eCollection 2023.
Strategic materials design is essential for the development of small-diameter, tissue-engineered vascular grafts. Self-assembled nanofibers of elastin-like polypeptides represent promising vascular graft components as they replicate the organized elastin structure of native blood vessels. Further, the bioactivity of nanofibers can be modified by the addition of functional peptide motifs. In the present study, we describe the development of a novel nanofiber-forming elastin-like polypeptide (ELP) with an arginine-glutamic acid-aspartic acid-valine (REDV) sequence. The biological characteristics of the REDV-modified ELP nanofibers relevant to applications in vascular grafting were compared to ELP without ligands for integrin, ELP with arginine-glycine-aspartic acid (RGD) sequence, collagen and cell culture glass. Among them, REDV-modified ELP nanofibers met the preferred biological properties for vascular graft materials, i.e. (i) inhibition of platelet adhesion and activation, (ii) endothelial cell adhesion and proliferation and (iii) maintenance of smooth muscle cells in a contractile phenotype to prevent cell overgrowth. The results indicate that REDV-modified ELP nanofibers represent promising candidates for the further development of small-diameter vascular grafts.
战略材料设计对于小口径组织工程血管移植物的开发至关重要。类弹性蛋白多肽的自组装纳米纤维是很有前景的血管移植物组件,因为它们能复制天然血管中有序的弹性蛋白结构。此外,通过添加功能性肽基序可以改变纳米纤维的生物活性。在本研究中,我们描述了一种具有精氨酸-谷氨酸-天冬氨酸-缬氨酸(REDV)序列的新型纳米纤维形成类弹性蛋白多肽(ELP)的开发。将REDV修饰的ELP纳米纤维与无整合素配体的ELP、具有精氨酸-甘氨酸-天冬氨酸(RGD)序列的ELP、胶原蛋白和细胞培养玻璃相比,评估其在血管移植应用中的生物学特性。其中,REDV修饰的ELP纳米纤维符合血管移植材料的理想生物学特性,即:(i)抑制血小板粘附和活化;(ii)内皮细胞粘附和增殖;(iii)维持平滑肌细胞的收缩表型以防止细胞过度生长。结果表明,REDV修饰的ELP纳米纤维是进一步开发小口径血管移植物的有前途的候选材料。