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March 23, 2026Biomedical Materials0 citationsOpen Access

Rapid endothelialization induced by VEGF-mimetic peptide in small-diameter vascular scaffold

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HWHaifeng WangFGFanyong GongCZChenhui Zhou

Key Points

  • The aim is to evaluate the pro-endothelialization effects of a VEGF-mimetic peptide in small-diameter vascular grafts.
  • Fabrication of a small-diameter vascular graft prototype containing QKCMP.
  • Testing physical and biological properties like tensile performance and encapsulation efficiency.
  • Establishing an in vitro Transwell co-culture system with human umbilical vein endothelial cells.
  • Assessing HUVEC proliferation, apoptosis, and cell adhesion in response to QKCMP.
  • QKCMP-containing grafts enhanced HUVEC growth and adhesion compared to conventional grafts.
  • Reduced apoptosis and induced cell-cycle arrest in the S and G2 phases in HUVECs.
  • RNA sequencing identified VEGFA-VEGFR2 and Hippo signaling pathways linked to rapid endothelialization.

Abstract

In this study, the vascular endothelial growth factor (VEGF)-mimetic peptide QKCMP was employed to develop a prototype small-diameter vascular graft (SDVG) with rapid endothelialization capability, and its pro-endothelialization effects were further elucidated. First, an SDVG prototype containing QKCMP was fabricated, and its physical and biological properties were systematically tested, including tensile performance, encapsulation efficiency, stability, and release profile. The prototype exhibited superior performance compared with conventional SDVGs. Subsequently, a Transwell co-culture system was established in vitro to evaluate the rapid endothelialization of QKCMP by assessing human umbilical vein endothelial cell (HUVEC) proliferation, apoptosis, and adhesion. Compared with other groups, the QKCMP-containing SDVG significantly enhanced HUVEC growth and adhesion, reduced apoptosis, and induced cell-cycle arrest in the S and G2 phases. Finally, RNA sequencing (RNA-seq) revealed that the VEGFA-VEGFR2 and Hippo signaling pathways were associated with QKCMP-mediated rapid endothelialization in vitro. Overall, incorporating QKCMP into the SDVG prototype effectively accelerates rapid endothelialization and reveals the potential molecular and signaling pathways through which QKCMP promotes the rapid proliferation of HUVECs.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69c0de74fddb9876e79c1418https://doi.org/10.1088/1748-605x/ae5582
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