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The serrulatane diterpenoid natural products RAD288 and RAD289 stimulate properties of olfactory ensheathing cells useful for neural repair therapies

机译:七氟烷二萜类天然产物RAD288和RAD289刺激嗅鞘细胞的特性可用于神经修复疗法

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摘要

Olfactory ensheathing cells (OECs) are being trialled for cell transplantation therapies for neural repair as they have unique properties which can enhance neuron regeneration. However, improvements in cell viability, proliferation and migration are needed to enhance therapeutic outcomes. Growth factors can enhance cell activity, but they can also induce side effects as they can act on numerous cell types. An alternative approach is to identify natural products (NPs) that more selectively activate specific cell functions. We have examined two pure NPs, 3-acetoxy-7,8-dihydroxyserrulat-14-en-19-oic acid (RAD288) and 3,7,8-trihydroxyserrulat-14-en-19-oic acid (RAD289) isolated from the Australian plant Eremophila microtheca. We determined that RAD288 and RAD289 stimulated the viability and proliferation of OECs in two-dimensional cultures and increased cell viability in three-dimensional spheroids. Both compounds also enhanced OEC-mediated phagocytosis of neural debris. However, only RAD288 stimulated migration of OECs, demonstrating that key structural changes to the compound can dramatically affect the resultant cellular action. In addition, cell-type specific action is highlighted by the result that neither compound stimulated the viability of Schwann cells which are a closely-related glial cell type. Therefore, these small molecules may have high potential for selective activation of specific therapeutically-useful activities of OECs for transplantation therapies to repair the nervous system.
机译:嗅鞘细胞(OEC)正在尝试用于神经修复的细胞移植治疗,因为它们具有可以增强神经元再生的独特特性。但是,需要提高细胞活力,增殖和迁移以增强治疗效果。生长因子可以增强细胞活性,但是由于它们可以作用于多种细胞类型,因此它们还可以诱导副作用。另一种方法是识别天然产物(NP),这些产物可以更选择性地激活特定的细胞功能。我们检查了两个纯净的NP,它们是从中分离出来的3-乙酰氧基-7,8-二羟基serrulat-14-en-19-oic酸(RAD288)和3,7,8-三羟基serrulat-14-en-19-oic酸(RAD289)澳大利亚植物小肠埃里莫氏菌。我们确定RAD288和RAD289刺激了二维培养物中OEC的活力和增殖,并提高了三维球体中的细胞活力。两种化合物还增强了OEC介导的神经碎片的吞噬作用。但是,只有RAD288刺激了OEC的迁移,表明该化合物的关键结构变化会显着影响所得的细胞作用。另外,没有化合物刺激与神经胶质细胞类型密切相关的雪旺细胞的活力,结果突出了细胞类型的特异性作用。因此,这些小分子可能具有选择性激活OEC的特定治疗用活性的潜力,这些活性用于移植疗法以修复神经系统。

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