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含齐墩果酸、常春藤皂苷元、丝石竹皂苷元苷元的单糖苷皂苷及一些C-28酯衍生物的合成、制剂及佐剂活性

Synthesis, Formulation, and Adjuvanticity of Monodesmosidic Saponins with Olenanolic Acid, Hederagenin and Gypsogenin Aglycones, and some C-28 Ester Derivatives.

作者信息

Greatrex Ben W, Daines Alison M, Hook Sarah, Lenz Dirk H, McBurney Warren, Rades Thomas, Rendle Phillip M

机构信息

Ferrier Research Institute Victoria University of Wellington Gracefield Rd Lower Hutt 5010 New Zealand; School of Science & Technology University of New England Armidale NSW 2351 Australia.

Ferrier Research Institute Victoria University of Wellington Gracefield Rd Lower Hutt 5010 New Zealand.

出版信息

ChemistryOpen. 2015 Sep 30;4(6):740-55. doi: 10.1002/open.201500149. eCollection 2015 Dec.

Abstract

In an attempt to discover a new synthetic vaccine adjuvant, the glycosylation of hederagenin, gypsogenin, and oleanolic acid acceptors with di- and trisaccharide donors to generate a range of mimics of natural product QS-21 was carried out. The saponins were formulated with phosphatidylcholine and cholesterol, and the structures analyzed by transmission electron microscopy. 3-O-(Manp(1→3)Glcp)hederagenin was found to produce numerous ring-like micelles when formulated, while C-28 choline ester derivatives preferred self-assembly and did not interact with the liposomes. When alone and in the presence of cholesterol and phospholipid, the choline ester derivatives produced nanocrystalline rods or helical micelles. The effects of modifying sugar stereochemistry and the aglycone on the immunostimulatory effects of the saponins was then evaluated using the activation markers MHC class II and CD86 in murine bone marrow dendritic cells. The most active saponin, 3-O-(Manp(1→3)Glcp)hederagenin, was stimulatory at high concentrations in cell culture, but this did not translate to strong responses in vivo.

摘要

为了发现一种新的合成疫苗佐剂,开展了用二糖和三糖供体对常春藤皂苷元、绞股蓝皂苷元及齐墩果酸受体进行糖基化反应,以生成一系列天然产物QS-21模拟物的研究。将皂苷与磷脂酰胆碱和胆固醇配制成制剂,并用透射电子显微镜分析其结构。发现3-O-(甘露糖基(1→3)葡萄糖基)常春藤皂苷元在制成制剂时会产生大量环状胶束,而C-28胆碱酯衍生物则倾向于自组装,且不与脂质体相互作用。胆碱酯衍生物单独以及在胆固醇和磷脂存在的情况下会产生纳米晶棒或螺旋胶束。随后,利用小鼠骨髓树突状细胞中的活化标志物MHC II类分子和CD86评估了糖立体化学和苷元修饰对皂苷免疫刺激作用的影响。活性最强的皂苷3-O-(甘露糖基(1→3)葡萄糖基)常春藤皂苷元在细胞培养中高浓度时具有刺激作用,但在体内并未转化为强烈反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a710/4906508/2d339d468876/OPEN-4-740-g001.jpg

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