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The lysosomal transfer of LDL/cholesterol from macrophages into vascular smooth muscle cells induces their phenotypic alteration

机译:LDL /胆固醇从巨噬细胞溶酶体转移到血管平滑肌细胞中诱导其表型改变

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AimsMacrophages (MPs) and vascular smooth muscle cells (VSMCs) closely interact within the growing atherosclerotic plaque. An in vitro co-culture model was established to study how MPs modulate VSMC behaviour.Methods and resultsMPs were exposed to fluorescence-labelled-acetylated LDL (FL-acLDL) prior to co-culture with VSMCs. Fluorescence microscopy visualized first transport of FL-acLDL within 6 h after co-culture implementation. When MPs had been fed with FL-acLDL in complex with fluorescence-labelled cholesterol (FL-Chol), these complexes were also transferred during co-culture and resulted in cholesterol positive lipid droplet formation in VSMCs. When infected with a virus coding for a fusion protein of Rab5a and fluorescent protein reporter (FP) to mark early endosomes, no co-localization between Rab5a-FP and the transported FL-acLDL within VSMCs was detected implying a mechanism independent of phagocytosis. Next, expression of lysosome-associated membrane glycoprotein 1 (LAMP1)-FP, marking all lysosomes in VSMCs, revealed that the FL-acLDL was located in non-acidic lysosomes. MPs infected with virus encoding for LAMP1-FP prior to co-culture demonstrated that intact fluorescence-marked lysosomes were transported into the VSMC, instead. Xenogenic cell composition (rat VSMC, human MP) and subsequent quantitative RT-PCR with rat-specific primers rendered induction of genes typical for MPs and down-regulation of the cholesterol sensitive HMG-CoA reductase.ConclusionOur results demonstrate that acLDL/cholesterol-loaded lysosomes are transported from MPs into VSMCs in vitro. Lysosomal transfer results in a phenotypic alteration of the VSMC towards a foam cell-like cell. This way VSMCs may lose their plaque stabilizing properties and rather contribute to plaque destabilization and rupture.
机译:巨噬细胞(MPs)和血管平滑肌细胞(VSMC)在不断增长的动脉粥样硬化斑块内紧密相互作用。建立了体外共培养模型以研究MPs如何调节VSMC行为。方法和结果MPs在与VSMCs共培养之前先暴露于荧光标记的乙酰化LDL(FL-acLDL)。荧光显微镜观察到共培养后6小时内FL-acLDL的首次转运。当MP中添加了带有荧光标记胆固醇(FL-Chol)的FL-acLDL时,这些复合物也会在共培养过程中转移,并在VSMC中形成胆固醇阳性脂质滴。当感染了编码Rab5a和荧光蛋白报道蛋白(FP)的融合蛋白的病毒以标记早期的内体时,在VSMC中未检测到Rab5a-FP与运输的FL-acLDL之间的共定位,暗示了独立于吞噬作用的机制。接下来,溶酶体相关膜糖蛋白1(LAMP1)-FP的表达,标记了VSMC中的所有溶酶体,表明FL-acLDL位于非酸性溶酶体中。在共培养之前,感染了编码LAMP1-FP的病毒的MP证明,完整的荧光标记的溶酶体被转运到VSMC中。异种细胞组成(大鼠VSMC,人MP)以及随后用大鼠特异性引物进行的定量RT-PCR诱导了MPs典型基因的诱导和胆固醇敏感的HMG-CoA还原酶的下调。结论我们的结果表明acLDL /胆固醇负载溶酶体在体外从MP转运到VSMC。溶酶体转移导致VSMC向泡沫细胞样细胞的表型改变。这样,VSMC可能会失去其斑块稳定特性,而导致斑块不稳定和破裂。

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