Abstract / Summary
In vitro models of vascular disease have focused primarily on the pathophysiology of smooth muscle cell (SMC) or endothelial cell (EC). Adventitial fibroblasts can contribute to disease progression, but their specific influence is not well understood in different disease contexts. To elucidate fibroblast’s impact on vascular pathology, we developed trilayer tissue-engineered blood vessels (TEBVs) with SMCs, ECs, and fibroblasts. We modeled atherosclerosis in the accelerated aging disease, Hutchinson-Gilford progeria syndrome (HGPS). HGPS fibroblasts substantially elevated several features of the vascular pathology. Correcting the HGPS-associated mutation using base editing returned many disease characteristics to healthy levels. By generating TEBVs with different combinations of vascular cells with or without the HGPS mutation, we found that fibroblasts contributed to extracellular matrix dysregulation and fibrotic signaling, SMCs to collagen accumulation, and ECs to inflammation. These results clarify the poorly understood influence of fibroblasts in progression of HGPS vascular pathology. The trilayer TEBV model could enable further mechanistic insights or therapeutic discovery for other vascular diseases.