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蛋白聚糖和糖胺聚糖:血管生成、血管发生及血管化组织工程中的关键调节因子

Proteoglycans and glycosaminoglycans: critical regulators in angiogenesis, vasculogenesis, and vascularized tissue engineering.

作者信息

Lin Binbin, Sun Tianyu, Feng Yiqi, Liu Hongyu, Zhang Lingling, Wu Buling, Wu Jingyi

机构信息

Shenzhen Clinical College of Stomatology, School of Stomatology, Southern Medical University, Shenzhen, Guangdong, China.

Department of Endodontics, Shenzhen Stomatology Hospital (Pingshan) of Southern Medical University, No. 143, Dongzong Road, Pingshan District, Shenzhen, 518118, Guangdong, China.

出版信息

Angiogenesis. 2025 Jun 25;28(3):37. doi: 10.1007/s10456-025-09995-3.

Abstract

Reconstruction of the microvascular network is essential for tissue regeneration and functional repair. However, inadequate vascularization remains an arduous challenge, hindering graft survival in wound healing and regenerative medicine. Although neovascularization and vascularized tissue engineering have received considerable attention, current investigations into the regulatory mechanisms of microvascular regeneration have primarily focused on intracellular signaling entities, leaving the extracellular molecular-level regulatory mechanisms unclear. Proteoglycans (PGs), ubiquitously distributed in the extracellular matrix and on cell membranes, consist of glycosaminoglycan (GAG) chains covalently linked to core proteins. Their spatiotemporal heterogeneity enables precise modulation of neovascularization; however, the structural complexity of PGs/GAGs obscures their mechanistic roles in vascular remodeling. This review systematically analyzes the regulatory roles of PGs/GAGs in the distinct phases of angiogenesis and vasculogenesis, which are two fundamental neovascularization processes. Additionally, we explored the emerging applications of PGs/GAGs in vascularized tissue engineering and regenerative medicine (VTERM), focusing on PG/GAG-functionalized biomaterials designed to mimic the native extracellular microenvironment and enhance specific signaling. This article critically evaluates the latest advances in optimizing these composite materials, and highlights the challenges associated with achieving spatiotemporal control over vascularization. By integrating profound molecular insights into innovative translational practices, this study establishes a theoretical framework for leveraging PGs/GAGs as multifunctional regulators in next-generation VTERM strategies.

摘要

微血管网络的重建对于组织再生和功能修复至关重要。然而,血管化不足仍然是一项艰巨的挑战,阻碍了伤口愈合和再生医学中移植物的存活。尽管新生血管形成和血管化组织工程已受到广泛关注,但目前对微血管再生调控机制的研究主要集中在细胞内信号传导实体上,细胞外分子水平的调控机制尚不清楚。蛋白聚糖(PGs)广泛分布于细胞外基质和细胞膜上,由共价连接到核心蛋白的糖胺聚糖(GAG)链组成。它们的时空异质性能够精确调节新生血管形成;然而,PGs/GAGs的结构复杂性掩盖了它们在血管重塑中的作用机制。本综述系统分析了PGs/GAGs在血管生成和血管发生这两个基本的新生血管形成过程的不同阶段中的调控作用。此外,我们探讨了PGs/GAGs在血管化组织工程和再生医学(VTERM)中的新兴应用,重点关注旨在模拟天然细胞外微环境并增强特定信号传导的PG/GAG功能化生物材料。本文批判性地评估了优化这些复合材料的最新进展,并强调了在实现血管化的时空控制方面所面临的挑战。通过将深入的分子见解整合到创新的转化实践中,本研究建立了一个理论框架,以便在下一代VTERM策略中利用PGs/GAGs作为多功能调节剂。

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