Guo Caiao, Ma Liang, Zhao Yudan, Peng Anlin, Cheng Biao, Zhou Qiaoqiao, Zheng Ling, Huang Kun
Tongji School of Pharmacy, Huazhong University of Science and Technology, Wuhan, Hubei, P. R. China, 430030.
Dept. of Pharmacy, The Third Hospital of Wuhan, Wuhan, Hubei, P. R. China, 430060.
Sci Rep. 2015 Sep 1;5:13556. doi: 10.1038/srep13556.
Amyloid formation is associated with multiple amyloidosis diseases. Human calcitonin (hCT) is a typical amyloidogenic peptide, its aggregation is associated with medullary carcinoma of the thyroid (MTC), and also limits its clinical application. Magnolia officinalis is a traditional Chinese herbal medicine; its two major polyphenol components, magnolol (Mag) and honokiol (Hon), have displayed multiple functions. Polyphenols like flavonoids and their derivatives have been extensively studied as amyloid inhibitors. However, the anti-amyloidogenic property of a biphenyl backbone containing polyphenols such as Mag and Hon has not been reported. In this study, these two compounds were tested for their effects on hCT aggregation. We found that Mag and Hon both inhibited the amyloid formation of hCT, whereas Mag showed a stronger inhibitory effect; moreover, they both dose-dependently disassembled preformed hCT aggregates. Further immuno-dot blot and dynamic light scattering studies suggested Mag and Hon suppressed the aggregation of hCT both at the oligomerization and the fibrillation stages, while MTT-based and dye-leakage assays demonstrated that Mag and Hon effectively reduced cytotoxicity caused by hCT aggregates. Furthermore, isothermal titration calorimetry indicated Mag and Hon both interact with hCT. Together, our study suggested a potential anti-amyloidogenic property of these two compounds and their structure related derivatives.
淀粉样蛋白形成与多种淀粉样变性疾病相关。人降钙素(hCT)是一种典型的淀粉样生成肽,其聚集与甲状腺髓样癌(MTC)相关,也限制了其临床应用。厚朴是一种传统中药;其两种主要的多酚成分,厚朴酚(Mag)和和厚朴酚(Hon),具有多种功能。像黄酮类化合物及其衍生物这样的多酚已被广泛研究作为淀粉样蛋白抑制剂。然而,含有联苯骨架的多酚如Mag和Hon的抗淀粉样生成特性尚未见报道。在本研究中,测试了这两种化合物对hCT聚集的影响。我们发现Mag和Hon均抑制hCT的淀粉样蛋白形成,而Mag显示出更强的抑制作用;此外,它们都呈剂量依赖性地拆解预先形成的hCT聚集体。进一步的免疫斑点印迹和动态光散射研究表明,Mag和Hon在寡聚化和纤维化阶段均抑制hCT的聚集,而基于MTT的和染料泄漏试验表明,Mag和Hon有效降低了hCT聚集体引起的细胞毒性。此外,等温滴定量热法表明Mag和Hon均与hCT相互作用。总之,我们的研究表明这两种化合物及其结构相关衍生物具有潜在的抗淀粉样生成特性。