Zentralinstitut für Laboratoriumsmedizin und Pathobiochemie, Charité-Universitätsmedizin, 12203 Berlin, Germany.
Proc Natl Acad Sci U S A. 2010 Nov 16;107(46):19679-84. doi: 10.1073/pnas.1003103107. Epub 2010 Nov 1.
Adhesive interactions of leukocytes and endothelial cells initiate leukocyte migration to inflamed tissue and are important for immune surveillance. Acute and chronic inflammatory diseases show a dysregulated immune response and result in a massive efflux of leukocytes that contributes to further tissue damage. Therefore, targeting leukocyte trafficking may provide a potent form of anti-inflammatory therapy. Leukocyte migration is initiated by interactions of the cell adhesion molecules E-, L-, and P-selectin and their corresponding carbohydrate ligands. Compounds that efficiently address these interactions are therefore of high therapeutic interest. Based on this rationale we investigated synthetic dendritic polyglycerol sulfates (dPGS) as macromolecular inhibitors that operate via a multivalent binding mechanism mimicking naturally occurring ligands. dPGS inhibited both leukocytic L-selectin and endothelial P-selectin with high efficacy. Size and degree of sulfation of the polymer core determined selectin binding affinity. Administration of dPGS in a contact dermatitis mouse model dampened leukocyte extravasation as effectively as glucocorticoids did and edema formation was significantly reduced. In addition, dPGS interacted with the complement factors C3 and C5 as was shown in vitro and reduced C5a levels in a mouse model of complement activation. Thus, dPGS represent an innovative class of a fully synthetic polymer therapeutics that may be used for the treatment of inflammatory diseases.
白细胞和内皮细胞的黏附相互作用启动了白细胞向炎症组织的迁移,这对于免疫监视至关重要。急性和慢性炎症性疾病表现出失调的免疫反应,导致大量白细胞外流,进而导致进一步的组织损伤。因此,靶向白细胞迁移可能提供一种有效的抗炎治疗形式。白细胞迁移是由细胞黏附分子 E、L 和 P-选择素及其相应的碳水化合物配体相互作用引发的。因此,能够有效解决这些相互作用的化合物具有很高的治疗意义。基于这一原理,我们研究了合成的树枝状多聚甘油硫酸盐(dPGS)作为通过模拟天然配体的多价结合机制起作用的大分子抑制剂。dPGS 高效抑制白细胞 L-选择素和内皮 P-选择素。聚合物核心的大小和硫酸化程度决定了选择素结合亲和力。在接触性皮炎小鼠模型中给予 dPGS,可像糖皮质激素一样有效地抑制白细胞渗出,显著减少水肿形成。此外,dPGS 与补体因子 C3 和 C5 相互作用,如在体外所示,并降低了补体激活小鼠模型中的 C5a 水平。因此,dPGS 代表了一类全新的完全合成聚合物治疗剂,可用于治疗炎症性疾病。