Wang Xiaolin, Tan Hong, Gunawardena Harsha P, Cao Jin, Dang Lu, Deng Hongbing, Li Xueyong, Wang Hongjun, Li Jinqing, Cui Caibin, Gerber David A
Department of Burn/Plastic Surgery and Wound Repair, The Second Affiliated Hospital of Xi'an Jiaotong University, Xi'an, China.
Northwest University School of Medicine, Xi'an, China.
J Tissue Eng. 2025 Jan 28;16:20417314251315523. doi: 10.1177/20417314251315523. eCollection 2025 Jan-Dec.
Mural cells are essential for maintaining the proper functions of microvasculatures. However, a key challenge of microvascular tissue engineering is identifying a cellular source for mural cells. We showed that , circulating fibrocytes (CFs) can (1) shear and stabilize the microvasculatures formed by vascular endothelial cells (VECs) in a collagen gel, (2) form gap junctions with VECs and (3) induce basement membrane formation. CFs transplanted into nude mice along with VECs in either collagen gel or Matrigel exhibited activities similar to those mentioned above, that is, sheathing microvasculatures formed by VECs, inducing basement membrane formation and facilitating the connection of the engineered microvasculatures with the host circulation. Interestingly, the behaviour of CFs also differs from that of human brain vascular pericytes (HBVPs) , which often infiltrate the lumen of capillary-like structures in a mosaic pattern, actively proliferate and exhibit lower endocytosis and migration capacities. We concluded that CFs are a suitable cellular source for mural cells in the construction of tissue-engineered microvasculatures.
壁细胞对于维持微血管的正常功能至关重要。然而,微血管组织工程的一个关键挑战是确定壁细胞的细胞来源。我们发现,循环纤维细胞(CFs)能够(1)剪切并稳定胶原凝胶中血管内皮细胞(VECs)形成的微血管,(2)与VECs形成缝隙连接,以及(3)诱导基底膜形成。与VECs一起在胶原凝胶或基质胶中移植到裸鼠体内的CFs表现出与上述类似的活性,即包裹VECs形成的微血管、诱导基底膜形成并促进工程化微血管与宿主循环的连接。有趣的是,CFs的行为也不同于人脑血管周细胞(HBVPs),后者常常以镶嵌模式浸润类毛细血管结构的管腔,积极增殖并表现出较低的内吞作用和迁移能力。我们得出结论,CFs是组织工程微血管构建中壁细胞的合适细胞来源。