Fujian Key Laboratory of Oral Diseases, School and Hospital of Stomatology, Fujian Medical University, Fuzhou, China.
Department of Preventive Dentistry, School and Hospital of Stomatology, Fujian Medical University, Fuzhou, China.
J Nanobiotechnology. 2023 Nov 24;21(1):445. doi: 10.1186/s12951-023-02193-7.
Tissue damage and aging lead to dysfunction, disfigurement, and trauma, posing significant global challenges. Creating a regenerative microenvironment to resist external stimuli and induce stem cell differentiation is essential. Plant-derived nanovesicles (PDNVs) are naturally bioactive lipid bilayer nanovesicles that contain proteins, lipids, ribonucleic acid, and metabolites. They have shown potential in promoting cell growth, migration, and differentiation into various types of tissues. With immunomodulatory, microbiota regulatory, antioxidant, and anti-aging bioactivities, PDNVs are valuable in resisting external stimuli and facilitating tissue repair. The unique structure of PDNVs provides an optimal platform for drug encapsulation, and surface modifications enhance their stability and specificity. Moreover, by employing synergistic administration strategies, PDNVs can maximize their therapeutic potential. This review summarized the progress and prospects of PDNVs as regenerative tools, provided insights into their selection for repair activities based on existing studies, considered the key challenge for clinical application, and anticipated their continued prominent role in the field of biomedicine.
组织损伤和衰老导致功能障碍、畸形和创伤,构成了重大的全球挑战。创建一个抵抗外部刺激并诱导干细胞分化的再生微环境至关重要。植物衍生的纳米囊泡(PDNVs)是天然的生物活性脂质双层纳米囊泡,其中包含蛋白质、脂质、核糖核酸和代谢物。它们在促进细胞生长、迁移和分化为各种类型的组织方面显示出潜力。PDNVs 具有免疫调节、微生物组调节、抗氧化和抗衰老的生物活性,有助于抵抗外部刺激和促进组织修复。PDNVs 的独特结构为药物封装提供了最佳平台,而表面修饰则增强了它们的稳定性和特异性。此外,通过采用协同给药策略,可以最大限度地发挥 PDNVs 的治疗潜力。本综述总结了 PDNVs 作为再生工具的进展和前景,根据现有研究深入了解了它们在修复活动中的选择,考虑了临床应用的关键挑战,并预计它们将在生物医学领域继续发挥突出作用。