Akiyama Mari
Department of Biomaterials/Osaka Dental University, 8-1, Kuzuhahanazono-cho, Osaka, 573-1121, Japan.
Cell Biochem Biophys. 2025 Jun;83(2):2365-2378. doi: 10.1007/s12013-024-01647-5. Epub 2024 Dec 28.
Elastic fibers of the internal and external elastic laminae maintain blood vessel shapes. Impairment of smooth muscle cell function leads to vascular disease development. F-box and WD-40 domain-containing protein 2 (FBXW2) is associated with elastic fibers and osteocalcin expression for bone regeneration in the periosteum. Here, it is hypothesized that FBXW2 has different roles in periosteum and blood vessels. Furthermore, if FBXW2 would be a component of elastic fiber of blood vessels, FBXW2 would be expressed where the well-known components elastin and fibrillin-1 are expressed. For this purpose, explant culture of blood vessels from bovine legs were performed for 5 weeks. It was found that elastin and FBXW2 were expressed within the elastic laminae, whereas fibrillin-1 was expressed around them. After explant culture, elastin and FBXW2 sustained the shape of the elastic fibers in the elastic lamina, whereas the fibrillin-1-rich layer became wide range and encompass toward intima and adventitia layers. Hematoxylin Eosin staining and immunohistochemistry of alpha-smooth muscle actin (α-SMA) revealed weakened media layer after 5 weeks culture. Although fibrillin-1 is a well-known component of elastic fibers and elastin, this study revealed that the location of fibrillin-1 is different from that of elastin, whereas FBXW2 is present in the same region as elastin from day 0 to week 5. In blood vessels, fibrillin-1 fibers around the elastic lamina may be oxytalan fibers. Thus, the proposed 3D in vitro model in this study is useful for identifying the mechanisms of vascular degradation.
内、外弹性膜的弹性纤维维持血管形状。平滑肌细胞功能受损会导致血管疾病的发展。含F-box和WD-40结构域蛋白2(FBXW2)与弹性纤维以及骨膜中骨再生的骨钙素表达相关。在此,推测FBXW2在骨膜和血管中具有不同作用。此外,如果FBXW2是血管弹性纤维的一个组成部分,那么FBXW2将在众所周知的弹性蛋白和原纤维蛋白-1表达的部位表达。为此,对牛腿部血管进行了5周的外植体培养。结果发现,弹性蛋白和FBXW2在弹性膜内表达,而原纤维蛋白-1在其周围表达。外植体培养后,弹性蛋白和FBXW2维持了弹性膜中弹性纤维的形状,而富含原纤维蛋白-1的层范围变宽并向内膜和外膜层延伸。苏木精伊红染色和α-平滑肌肌动蛋白(α-SMA)免疫组织化学显示,培养5周后中膜层变弱。尽管原纤维蛋白-1是弹性纤维和弹性蛋白的一个众所周知的组成部分,但本研究表明原纤维蛋白-1的位置与弹性蛋白不同,而从第0天到第5周,FBXW2与弹性蛋白存在于同一区域。在血管中,弹性膜周围的原纤维蛋白-1纤维可能是氧化弹力纤维。因此,本研究中提出的三维体外模型有助于确定血管退化的机制。