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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Intracellular delivery of ceramide lipids via liposomes enhances apoptosis in vitro
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Intracellular delivery of ceramide lipids via liposomes enhances apoptosis in vitro

机译:通过脂质体将神经酰胺脂质细胞内递送增强体外细胞凋亡

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Ceramide lipids have emerged as important intracellular signalling molecules that mediate diverse cellular effects, of which programmed cell death, or apoptosis, has attracted significant interest. Although the exact mechanism(s) by which ceramides trigger apoptosis is not fully understood, there is considerable evidence that they are key mediators of this response. Exogenously applied, cell-permeable ceramides have been shown to induce apoptosis when incubated with cells in culture. We examined here the cytotoxicity of ceramides with varying acyl chain lengths in order to determine whether acyl chain length affects pro-apoptotic activity within the concentration range of 0-100 μM. We found that for C_6-, C_8-, C_(10)-, C_(14)- and C_(16)-ceramide, the chain length was inversely proportional to cytotoxic activity, with C_6-ceramide being most active (IC_(50) values in the 3-14 μM range) and C_(16)-ceramide being least active (IC_(50) values in excess of 100 μM) in the MDA435/LCC6 human breast cancer and J774 mouse macrophage cell lines investigated. Using these two ceramide forms we were able to correlate the observed cytotoxicity with cellular uptake, and we observed that a lack of intracellular delivery may be responsible for the weak activity of C_(16)-ceramide. We therefore investigated the possibility of incorporating ceramide lipids into liposome bilayers to enhance this delivery. We demonstrate that stable, ceramide-containing liposomes can be formulated, and that they are cytotoxic when taken up by cells in vitro. These results provide an increased understanding of the differences in cytotoxic activity of exogenous short- and long-chain ceramide lipids, and their incorporation into biologically active liposomal formulations opens new avenues for apoptosis induction.
机译:神经酰胺脂质已经作为介导多种细胞作用的重要细胞内信号分子而出现,其中程序性细胞死亡或细胞凋亡引起了人们的极大兴趣。尽管尚未完全了解神经酰胺触发凋亡的确切机制,但有大量证据表明它们是该反应的关键介质。当与培养细胞孵育时,外源施用的细胞可渗透的神经酰胺已显示出诱导凋亡的作用。我们在这里检查了具有不同酰基链长度的神经酰胺的细胞毒性,以确定在0-100μM的浓度范围内酰基链长度是否影响促凋亡活性。我们发现,对于C_6-,C_8-,C_(10)-,C_(14)-和C_(16)-神经酰胺,链长与细胞毒性活性成反比,其中C_6-神经酰胺活性最高(IC_(50 )(3-14μM范围内的值)和C_(16)-神经酰胺在所研究的MDA435 / LCC6人乳腺癌和J774小鼠巨噬细胞系中活性最低(IC_(50)值超过100μM)。使用这两种神经酰胺形式,我们能够将观察到的细胞毒性与细胞摄取相关联,并且我们观察到缺乏细胞内递送可能是C_(16)-神经酰胺活性弱的原因。因此,我们研究了将神经酰胺脂质掺入脂质体双层中以增强这种递送的可能性。我们证明了可以配制稳定的,含有神经酰胺的脂质体,并且在体外细胞吸收时具有细胞毒性。这些结果提供了对外源的短链和长链神经酰胺脂质的细胞毒性活性差异的加深了解,并且将它们掺入生物活性脂质体制剂中为凋亡诱导开辟了新途径。

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