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Macrophages Sequester Clofazimine in an Intracellular Liquid Crystal-Like Supramolecular Organization

机译:巨噬细胞封存氯法齐明在细胞内的液体水晶般的超分子组织

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摘要

Clofazimine is a poorly-soluble but orally-bioavailable small molecule drug that massively accumulates in macrophages when administered over prolonged periods of time. To determine whether crystal-like drug inclusions (CLDIs) that form in subcellular spaces correspond to pure clofazimine crystals, macrophages of clofazimine-fed mice were elicited with an intraperitoneal thioglycollate injection. Inside these cells, CLDIs appeared uniform in size and shape, but were sensitive to illumination. Once removed from cells, CLDIs were unstable. Unlike pure clofazimine crystals, isolated CLDIs placed in distilled water burst into small birefringent globules, which aggregated into larger clusters. Also unlike pure clofazimine crystals, CLDIs fragmented when heated, and disintegrated in alkaline media. In contrast to all other organelles, CLDIs were relatively resistant to sonication and trypsin digestion, which facilitated their biochemical isolation. The powder x-ray diffraction pattern obtained from isolated CLDIs was consistent with the diffraction pattern of liquid crystals and inconsistent with the expected molecular diffraction pattern of solid, three dimensional crystals. Observed with the transmission electron microscope (TEM), CLDIs were bounded by an atypical double-layered membrane, approximately 20 nanometers thick. CLDIs were polymorphic, but generally exhibited an internal multilayered organization, comprised of stacks of membranes 5 to 15 nanometers thick. Deep-etch, freeze-fracture electron microscopy of unfixed snap-frozen tissue samples confirmed this supramolecular organization. These results suggest that clofazimine accumulates in macrophages by forming a membrane-bound, multilayered, liquid crystal-like, semi-synthetic cytoplasmic structure.
机译:氯法齐明是一种难溶性但口服可生物利用的小分子药物,长时间服用会大量积聚在巨噬细胞中。为了确定在亚细胞空间中形成的晶体状药物夹杂物(CLDI)是否对应于纯氯吡齐明晶体,通过腹膜内注射巯基乙酸盐诱发了由氯吡齐明喂养的小鼠的巨噬细胞。在这些细胞内部,CLDI的大小和形状均一,但对光照敏感。一旦从细胞中移出,CLDI就不稳定。与纯氯吡齐明晶体不同,放在蒸馏水中的孤立CLDI破裂成小的双折射小球,聚集成更大的簇。同样与纯氯氟齐明晶体不同,CLDI在加热时会碎裂,并在碱性介质中崩解。与所有其他细胞器相比,CLDI对超声和胰蛋白酶消化具有相对的抵抗力,从而促进了它们的生化分离。从分离的CLDI获得的粉末X射线衍射图谱与液晶的衍射图谱一致,并且与固体三维晶体的预期分子衍射图谱不一致。用透射电子显微镜(TEM)观察,CLDI被约20纳米厚的非典型双层膜所包围。 CLDI是多晶型的,但通常表现出内部多层结构,由5至15纳米厚的膜堆叠组成。未固定的速冻组织样品的深蚀刻,冷冻断裂电子显微镜证实了这种超分子组织。这些结果表明,氯氟齐明通过形成膜结合的,多层的,液晶样的,半合成的细胞质结构而在巨噬细胞中积累。

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  • 期刊名称 other
  • 作者

    Jason Baik; Gus R. Rosania;

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  • 年(卷),期 -1(7),10
  • 年度 -1
  • 页码 e47494
  • 总页数 11
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