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LXRα 和 LXRβ 激动剂 4β-羟基胆固醇及其异构体 4α-羟基胆固醇对少突胶质细胞的生物学活性:对细胞生长和活力、氧化和炎症状态的影响。

Biological activities of the LXRα and β agonist, 4β-hydroxycholesterol, and of its isomer, 4α-hydroxycholesterol, on oligodendrocytes: effects on cell growth and viability, oxidative and inflammatory status.

机构信息

Université de Bourgogne, Equipe Biochimie du peroxysome, inflammation et métabolisme lipidique EA 7270/INSERM, Faculté des Sciences Gabriel, 6 Boulevard Gabriel, Dijon, France.

出版信息

Biochimie. 2013 Mar;95(3):518-30. doi: 10.1016/j.biochi.2012.11.013. Epub 2012 Dec 7.

Abstract

The biochemical and biological properties of 4β-hydroxycholesterol and of its isomer, 4α-hydroxycholesterol, are not well known. So, we determined the ability of 4α- and 4β-hydroxycholesterol to react with LXRα and LXRβ, and we characterized the activities of these oxysterols on oligodendrocytes which are myelin synthesizing cells. The effects of 4α- and 4β-hydroxycholesterol were studied on 158N murine oligodendrocytes to assess their activities on cell growth and viability, oxidative and inflammatory status. To this end different parameters were used: cell counting with trypan blue; identification of dead cells and cell cycle analysis with propidium iodide; evaluation of mitochondrial depolarization, lysosomal membrane integrity, actin depolimerization, nuclear morphology, and superoxide anion production after staining with JC-1, acridine orange, rhodamine-phalloidin, Hoechst 33342, and dihydroethidium, respectively; evaluation of ultrastructural changes by transmission electron microscopy, and cytokine quantification with a cytometric bead array. Only 4β-hydroxycholesterol is a LXRα and β agonist. No cytotoxic effects were found with 4α-hydroxycholesterol except a slight inhibition of cell growth at elevated concentrations. At high concentrations, 4β-hydroxycholesterol was not only able to inhibit cell growth, but also to induce cell death associated with a loss of mitochondrial transmembrane potential, dysfunctions of lysosomal membrane integrity, and superoxide anion overproduction. These side effects were lower than those observed with 7-ketocholesterol and 25-hydroxycholesterol used as positive controls. On oligodendrocyte murine primary cultures, only lysosomal membrane integrity was slightly affected under treatment with 4α- and 4β-hydroxycholesterol. So, 4α- and 4β-hydroxycholesterol have different biological activities. Their ability to induce cytotoxic effects on oligodendrocytes can be considered as weak comparatively to 7-ketocholesterol and 25-hydroxycholesterol.

摘要

4β-羟胆固醇及其异构体 4α-羟胆固醇的生化和生物学特性尚不清楚。因此,我们测定了 4α-和 4β-羟胆固醇与 LXRα和 LXRβ的反应能力,并研究了这些氧化固醇对形成髓鞘的少突胶质细胞的活性。我们在 158N 鼠少突胶质细胞上研究了 4α-和 4β-羟胆固醇的作用,以评估其对细胞生长和活力、氧化和炎症状态的影响。为此,我们使用了不同的参数:用台盼蓝进行细胞计数;用碘化丙啶鉴定死亡细胞和细胞周期分析;评估线粒体去极化、溶酶体膜完整性、肌动蛋白解聚、核形态和超氧化物阴离子产生,分别用 JC-1、吖啶橙、罗丹明鬼笔环肽、Hoechst 33342 和二氢乙啶染色;通过透射电子显微镜评估超微结构变化,并用流式细胞术测定细胞因子。只有 4β-羟胆固醇是 LXRα和β激动剂。4α-羟胆固醇没有细胞毒性作用,除了在高浓度时轻微抑制细胞生长。在高浓度时,4β-羟胆固醇不仅能够抑制细胞生长,还能诱导与线粒体跨膜电位丧失、溶酶体膜完整性障碍和超氧化物阴离子过度产生相关的细胞死亡。这些副作用低于作为阳性对照的 7-酮胆固醇和 25-羟胆固醇。在少突胶质细胞原代培养物中,只有用 4α-和 4β-羟胆固醇处理时,溶酶体膜完整性受到轻微影响。因此,4α-和 4β-羟胆固醇具有不同的生物学活性。与 7-酮胆固醇和 25-羟胆固醇相比,它们对少突胶质细胞诱导细胞毒性的能力可以认为较弱。

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