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时空免疫调节和双相骨血管对齐电纺膜用于糖尿病骨膜再生。

Spatiotemporal Immunomodulation and Biphasic Osteo-Vascular Aligned Electrospun Membrane for Diabetic Periosteum Regeneration.

机构信息

Department of Orthopedics, The First Affiliated Hospital of Soochow University, 188 Shizi Road, Suzhou, Jiangsu, 215006, China.

Department of Orthopedic Surgery, Rush University Medical Center, Chicago, IL, 60612, USA.

出版信息

Adv Sci (Weinh). 2023 Dec;10(36):e2302874. doi: 10.1002/advs.202302874. Epub 2023 Nov 16.

Abstract

Under diabetic conditions, blood glucose fluctuations and exacerbated immunopathological inflammatory environments pose significant challenges to periosteal regenerative repair strategies. Responsive immune regulation in damaged tissues is critical for the immune microenvironment, osteogenesis, and angiogenesis stabilization. Considering the high-glucose microenvironment of such acute injury sites, a functional glucose-responsive immunomodulation-assisted periosteal regeneration composite material-PLA(Polylactic Acid)/COLI(Collagen I)/Lipo(Liposome)-APY29 (PCLA)-is constructed. Aside from stimulating osteogenic differentiation, owing to the presence of surface self-assembled type I collagen in the scaffolds, PCLA can directly respond to focal area high-glucose microenvironments. The PCLA scaffolds trigger the release of APY29-loaded liposomes, shifting the macrophages toward the M2 phenotype, inhibiting the release of inflammatory cytokines, improving the bone immune microenvironment, and promoting osteogenic differentiation and angiogenesis. Bioinformatics analyses show that PCLA enhances bone repair by inhibiting the inflammatory signal pathway regulating the polarization direction and promoting osteogenic and angiogenic gene expression. In the calvarial periosteal defect model of diabetic rats, PCLA scaffolds induce M2 macrophage polarization and improve the inflammatory microenvironment, significantly accelerating periosteal repair. Overall, the PCLA scaffold material regulates immunity in fluctuating high-glucose inflammatory microenvironments, achieves relatively stable and favorable osteogenic microenvironments, and facilitates the effective design of functionalized biomaterials for bone regeneration therapy in patients with diabetes.

摘要

在糖尿病条件下,血糖波动和加剧的免疫病理炎症环境对骨膜再生修复策略构成了重大挑战。受损组织中的响应性免疫调节对于免疫微环境、成骨和血管生成的稳定至关重要。考虑到急性损伤部位的高血糖微环境,构建了一种功能性葡萄糖响应性免疫调节辅助骨膜再生复合材料-PLA(聚乳酸)/COLI(胶原 I)/Lipo(脂质体)-APY29(PCLA)。除了刺激成骨分化外,由于支架中存在表面自组装的 I 型胶原,PCLA 可以直接响应局灶性高血糖微环境。PCLA 支架触发负载 APY29 的脂质体的释放,使巨噬细胞向 M2 表型转变,抑制炎症细胞因子的释放,改善骨免疫微环境,促进成骨分化和血管生成。生物信息学分析表明,PCLA 通过抑制调节极化方向的炎症信号通路,促进成骨和血管生成基因的表达,增强骨修复。在糖尿病大鼠颅骨骨膜缺损模型中,PCLA 支架诱导 M2 巨噬细胞极化并改善炎症微环境,显著加速骨膜修复。总体而言,PCLA 支架材料调节波动高血糖炎症微环境中的免疫,实现相对稳定和有利的成骨微环境,并有助于有效设计用于糖尿病患者骨再生治疗的功能化生物材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/90a8/10754081/948ce48adefd/ADVS-10-2302874-g004.jpg

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