首页> 外文期刊>Molecular pharmaceutics >Synthesis and Functional Characterization of Novel Sialyl LewisX Mimic-Decorated Liposomes for E-selectin-Mediated Targeting to Inflamed Endothelial Cells
【24h】

Synthesis and Functional Characterization of Novel Sialyl LewisX Mimic-Decorated Liposomes for E-selectin-Mediated Targeting to Inflamed Endothelial Cells

机译:新型SiaLyl Lewisx的合成和功能表征用于E-Selectin介导的靶向靶向发炎内皮细胞的血型瘤

获取原文
获取原文并翻译 | 示例
       

摘要

Sialyl LewisX (sLeX) is a natural ligand of E-selectin that is overexpressed by inflamed and tumor endothelium. Although sLeX is a potential ligand for drug targeting, synthesis of the tetrasaccharide is complicated with many reaction steps. In this study, structurally simplified novel sLeX analogues were designed and linked with 1,2-distearoylsn-glycero-3-phosphoethanolamine-polyethylene glycol-2000 (DSPE-PEG) for E-selectin-mediated liposomal delivery. The sLeX structural simplification strategies include (1) replacement of the Gal-G1cNAc disaccharide unit with lactose to reduce many initial steps and (2) substitution of neuraminic acid with a negatively charged group, i.e., 3'-sulfo, 3'-carboxymethyl (3'-CM), or 3'-(1-carboxy)ethyl (3'-CE). While all the liposomes developed were similar in particle size and charge, the 3'-CE sLeX mimic liposome demonstrated the highest uptake in inflammatory cytokine-treated human umbilical vein endothelial cells (HUVECs), being even more potent than native sLeX-decorated liposomes. Inhibition studies using antiselectin antibodies revealed that their uptake was mediated primarily by overexpressed E-sdectin on inflamed HUVECs. Molecular dynamics simulations were performed to gain mechanistic insight into the E-selectin binding differences among native and mimic sLeX. The terminally branched methyl group of the 3'-CE sLeX mimic oriented and faced the bulk hydrophilic solution during. E-selectin binding. Since this state is entropically unfavorable, the 3'-CE sLeX mimic molecule might be pushed toward the binding, pocket of E-selectin by a hydrophobic effect, leading to a higher probability of hydrogen-bond' formation than native sLeX and the 3'-CM sLeX mimic. This corresponded with the fact that the 3'-CE sLeX mimic liposome exhibited much greater uptake than the 3'-CM sLeX mimic liposome.
机译:SiaLyl Lewisx(Slex)是通过发炎和肿瘤内皮过表达的e-Selectin的天然配体。虽然Slex是药物靶向的潜在配体,但四糖的合成复杂于许多反应步骤。在该研究中,设计并将结构简化的新型Slex类似物与1,2-羟基酰基 - 甘油-3-磷乙醇胺 - 聚乙二醇-2000(DSPE-PEG)设计并连接,用于E-Selectin介导的脂质体递送。 Slex结构简化策略包括(1)用乳糖替换加仑G1CNAC二糖单元,以减少许多初始步骤和(2)用带负电荷的基团取代神经酰胺酸,即3'-磺砜,3'-羧甲基( 3'-cm),或3' - (1-羧基)乙基(3'-Ce)。虽然开发的所有脂质体在粒度和电荷中相似,但是3'-Ce Slex模拟脂质体在炎性细胞因子处理的人脐静脉内皮细胞(HUVEC)中表现出最高摄取,比天然单轴装饰脂质体更有效。使用反凝胶蛋白抗体的抑制研究表明,它们的摄取主要通过发炎的Huvecs上的过表达的E-Sdectin介导。进行分子动力学模拟,以获得对天然和模拟Slex之间的E-Selectin结合差异的机械洞察。 3'-Ce Slex的末端支链甲基取向成定向并面向体积亲水溶液。 E-SELETEIN绑定。由于该状态熵不利,因此可以通过疏水效果将3'-Ce Slex模拟分子推向e-Selectin的备用袋,导致氢键的形成比本土Slex和3'更高的概率。 -cm slex模仿。这对应于3'-Ce Slex模拟脂质体表现出比3'-cm Slex模拟脂质体更大的吸收。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号