Zhang Qiong, Huang Lixin, Zhang Caihong, Xie Pujun, Zhang Yaolei, Ding Shasha, Xu Feng
Institute of Chemical Industry of Forest Products, CAF, Nanjing, Jiangsu Province 210042, China; National Engineering Lab. for Biomass Chemical Utilization, Key and Open lab. of Forest Chemical Engineering, SFA, Nanjing, Jiangsu Province 210042, China; Key Lab. of Biomass Energy and Material, Nanjing, Jiangsu Province 210042, China; Beijing Forestry University, Beijing 100083, China.
Institute of Chemical Industry of Forest Products, CAF, Nanjing, Jiangsu Province 210042, China; National Engineering Lab. for Biomass Chemical Utilization, Key and Open lab. of Forest Chemical Engineering, SFA, Nanjing, Jiangsu Province 210042, China; Key Lab. of Biomass Energy and Material, Nanjing, Jiangsu Province 210042, China.
Fitoterapia. 2015 Oct;106:184-93. doi: 10.1016/j.fitote.2015.09.008. Epub 2015 Sep 8.
The polyprenols and their derivatives are highlighted in this study. These lipid linear polymers of isoprenoid residues are widespread in nature from bacteria to human cells. This review primarily presents the synthesis and biological activities of polyprenyl derivatives. Attention is focused on the synthesis and biological activity of dolichols, polyprenyl ester derivatives and polyprenyl amines. Other polyprenyl derivatives, such as oxides of polyprenols, aromatic polyprenols, polyprenyl bromide and polyprenyl sulphates, are mentioned. It is noted that polyprenyl phosphates and polyprenyl-linked glycosylation have better antibacterial, gene therapy and immunomodulating performance, whereas polyprenyl amines have better for antibacterial and antithrombotic activity. Dolichols, polyprenyl acetic esters, polyprenyl phosphates and polyprenyl-linked glycosylation have pharmacological anti-tumour effects. Finally, the postulated prospect of polyprenols and their derivatives are discussed. Further in vivo studies on the above derivatives are needed. The compatibility of polyprenols and their derivatives with other drugs should be studied, and new preparations of polyprenyl derivatives, such as hydrogel glue and release-controlled drugs, are suggested for future research and development.
本研究重点关注了聚戊烯醇及其衍生物。这些由类异戊二烯残基组成的脂质线性聚合物在自然界中广泛存在,从细菌到人类细胞都有。本综述主要介绍了聚戊烯基衍生物的合成及生物活性。重点关注了多萜醇、聚戊烯基酯衍生物和聚戊烯基胺的合成及生物活性。还提到了其他聚戊烯基衍生物,如聚戊烯醇的氧化物、芳香族聚戊烯醇、聚戊烯基溴和聚戊烯基硫酸盐。值得注意的是,聚戊烯基磷酸盐和聚戊烯基连接的糖基化具有更好的抗菌、基因治疗和免疫调节性能,而聚戊烯基胺具有更好的抗菌和抗血栓活性。多萜醇、聚戊烯基乙酸酯、聚戊烯基磷酸盐和聚戊烯基连接的糖基化具有药理抗肿瘤作用。最后,讨论了聚戊烯醇及其衍生物的假定前景。需要对上述衍生物进行进一步的体内研究。应研究聚戊烯醇及其衍生物与其他药物的相容性,并建议将聚戊烯基衍生物的新制剂,如水凝胶胶水和控释药物,用于未来的研发。