Centro de Medicina Regenerativa, Facultad de Medicina Clínica Alemana, Universidad del Desarrollo, Santiago 7710162, Chile
Consorcio Regenero, Chilean Consortium for Regenerative Medicine, Santiago 7620157, Chile.
J Exp Biol. 2019 Oct 16;222(Pt 20):jeb208702. doi: 10.1242/jeb.208702.
Microvesicles are key players in cellular communication. As glandular secretions present a rich source of active exosomes, we hypothesized that exosome-like vesicles are present in hypopharyngeal gland secretomal products (honey, royal jelly and bee pollen), and participate in their known antibacterial and pro-regenerative effects. We developed an isolation protocol based on serial centrifugation and ultracentrifugation steps and demonstrated the presence of protein-containing exosome-like vesicles in all three bee-derived products. Assessing their antibacterial properties, we found that exosome-like vesicles had bacteriostatic, bactericidal and biofilm-inhibiting effects on Furthermore, we demonstrated that mesenchymal stem cells (MSCs) internalize bee-derived exosome-like vesicles and that these vesicles influence the migration potential of the MSCs. In an wound-healing assay, honey and royal jelly exosome-like vesicles increased migration of human MSCs, demonstrating their inter-kingdom activity. In summary, we have discovered exosome-like vesicles as a new, active compound in bee pollen, honey and royal jelly.
微泡是细胞通讯的关键参与者。由于腺分泌物是活性外泌体的丰富来源,我们假设在咽腺分泌产物(蜂蜜、蜂王浆和蜂花粉)中存在类外泌体小泡,并参与它们已知的抗菌和促再生作用。我们开发了一种基于连续离心和超速离心步骤的分离方案,并证明了所有三种蜜蜂衍生产品中都存在含有蛋白质的类外泌体小泡。评估它们的抗菌特性时,我们发现类外泌体小泡对具有抑菌、杀菌和生物膜抑制作用。此外,我们证明间充质干细胞 (MSC) 可以内化蜜蜂衍生的类外泌体小泡,并且这些小泡影响 MSC 的迁移潜力。在伤口愈合试验中,蜂蜜和蜂王浆的类外泌体小泡增加了人 MSC 的迁移,证明了它们在不同王国的活性。总之,我们发现类外泌体小泡是蜂花粉、蜂蜜和蜂王浆中的一种新的活性化合物。