Ganbold Munkhzul, Ferdousi Farhana, Arimura Takashi, Tominaga Kenichi, Isoda Hiroko
National Institute of Advanced Industrial Science and Technology (AIST)-University of Tsukuba Open Innovation Laboratory for Food and Medicinal Resource Engineering (FoodMed-OIL), Tsukuba, Ibaraki, Japan.
Alliance for Research on the Mediterranean and North Africa (ARENA), University of Tsukuba, Tsukuba, Ibaraki, Japan.
Front Cell Dev Biol. 2020 Nov 4;8:577259. doi: 10.3389/fcell.2020.577259. eCollection 2020.
Squalene (Sq) is a natural compound, found in various plant oils, algae, and larger quantity in deep-sea shark liver. It is also known as an intermediate of cholesterol synthesis in plants and animals including humans. Although evidences demonstrated its antioxidant, anticancer, hypolipidemic, and hepatoprotective and cardioprotective effects, its biological effects in cellular function might have been underestimated because of the water-insoluble property. To overcome this hydrophobicity, we synthesized new amphiphilic Sq derivative (HH-Sq). On the other hand, adipose-derived stem cells (ASCs) are a valuable source in regenerative medicine for its ease of accessibility and multilineage differentiation potential. Nevertheless, impaired cellular functions of ASCs derived from diabetic donor have still been debated controversially. In this study, we explored the effect of the HH-Sq in comparison to Sq on the adipocyte differentiation of ASCs obtained from subjects with type 2 diabetes. Gene expression profile by microarray analysis at 14 days of adipogenic differentiation revealed that HH-Sq induced more genes involved in intracellular signaling processes, whereas Sq activated more transmembrane receptor pathway-related genes. In addition, more important number of down-regulated and up-regulated genes by Sq and HH-Sq were not overlapped, suggesting the compounds might not only have difference in their chemical property but also potentially exert different biological effects. Both Sq and HH-Sq improved metabolism of adipocytes by enhancing genes associated with energy homeostasis and insulin sensitivity, , , and . Interestingly, Sq increased significantly early adipogenic markers and lipogenic gene expression such as , , and , but not HH-Sq. As a consequence, smaller and fewer lipid droplet formation was observed in HH-Sq-treated adipocytes. Based on our findings, we report that both Sq and HH-Sq improved adipocyte metabolism, but only HH-Sq prevented excessive lipogenesis without abrogating adipocyte differentiation. The beneficial effect of HH-Sq provides an importance of synthesized derivatives from a natural compound with therapeutic potentials in the application of cell therapies.
角鲨烯(Sq)是一种天然化合物,存在于各种植物油、藻类中,在深海鲨鱼肝脏中的含量更高。它也是包括人类在内的动植物体内胆固醇合成的中间体。尽管有证据表明其具有抗氧化、抗癌、降血脂以及肝脏和心脏保护作用,但由于其水不溶性,其在细胞功能方面的生物学效应可能被低估了。为了克服这种疏水性,我们合成了新的两亲性角鲨烯衍生物(HH-Sq)。另一方面,脂肪来源干细胞(ASC)因其易于获取和多向分化潜能,是再生医学中的宝贵资源。然而,源自糖尿病供体的ASC细胞功能受损仍存在争议。在本研究中,我们探讨了HH-Sq与Sq相比,对从2型糖尿病患者获取的ASC脂肪细胞分化的影响。在脂肪生成分化14天时通过微阵列分析的基因表达谱显示,HH-Sq诱导了更多参与细胞内信号传导过程的基因,而Sq激活了更多与跨膜受体途径相关的基因。此外,Sq和HH-Sq下调和上调的基因中,更重要数量的基因并不重叠,这表明这两种化合物不仅在化学性质上存在差异,而且可能发挥不同的生物学效应。Sq和HH-Sq都通过增强与能量稳态和胰岛素敏感性相关的基因改善了脂肪细胞的代谢。有趣的是,Sq显著增加了早期脂肪生成标志物和脂肪生成基因的表达,如 、 和 ,但HH-Sq没有。结果,在HH-Sq处理的脂肪细胞中观察到更小且更少的脂滴形成。基于我们的发现,我们报告Sq和HH-Sq都改善了脂肪细胞代谢,但只有HH-Sq在不消除脂肪细胞分化的情况下防止了过度脂肪生成。HH-Sq的有益作用表明了从具有治疗潜力的天然化合物合成衍生物在细胞治疗应用中的重要性。