Ylitalo R, Jaakkola O, Lehtolainen P, Ylä-Herttuala S
Department of Pharmacological Sciences, Medical School, University of Tampere, Finland.
Life Sci. 1999;64(21):1955-65. doi: 10.1016/s0024-3205(99)00140-x.
The uptake of modified low density lipoprotein (LDL) by arterial macrophages is a key event in the atherogenesis. We studied 1) the uptake and degradation of modified LDL, 2) LDL recognition by specific receptors, and 3) the foam cell formation with murine macrophage-like RAW 264 cells in vitro. The cells took up and degraded effectively 125I-labeled acetylated LDL (Ac-LDL) and aggregated LDL (Aggr-LDL). Also oxidized LDL (Ox-LDL) was taken up but it was degraded poorly. The degradation of 125I-Ac-LDL was efficiently competed by both unlabeled Ac-LDL and Ox-LDL, whereas the degradation of 125I-Ox-LDL was partially competed by unlabeled Ox-LDL and Aggr-LDL but not at all by unlabeled Ac-LDL. The incubation with increasing concentrations of Ac-LDL, Aggr-LDL or Ox-LDL resulted in marked foam cell formation in the RAW 264 cells. Ox-LDL was cytotoxic at 500 to 1000 microg/ml concentrations. The results show that RAW 264 cells have at least two classes of receptors for modified lipoproteins: one that recognizes both Ox-LDL and Ac-LDL, and is similar to the scavenger receptors, and another that recognizes Ox-LDL but not Ac-LDL. RAW 264 cells are a convenient model cell line for examining the metabolism of modified lipoproteins, not only that of Ac-LDL but also that of Ox-LDL and Aggr-LDL, and cellular accumulation of lipids derived from modified LDL.
动脉巨噬细胞对修饰的低密度脂蛋白(LDL)的摄取是动脉粥样硬化发生过程中的关键事件。我们在体外研究了:1)修饰LDL的摄取和降解;2)特定受体对LDL的识别;3)用鼠巨噬细胞样RAW 264细胞形成泡沫细胞的情况。这些细胞能有效摄取和降解125I标记的乙酰化LDL(Ac-LDL)和聚集LDL(Aggr-LDL)。氧化LDL(Ox-LDL)也能被摄取,但降解较差。未标记的Ac-LDL和Ox-LDL都能有效竞争125I-Ac-LDL的降解,而未标记的Ox-LDL和Aggr-LDL能部分竞争125I-Ox-LDL的降解,未标记的Ac-LDL则完全不能竞争。用浓度不断增加的Ac-LDL、Aggr-LDL或Ox-LDL孵育会导致RAW 264细胞中明显的泡沫细胞形成。Ox-LDL在浓度为500至1000微克/毫升时具有细胞毒性。结果表明,RAW 264细胞至少有两类修饰脂蛋白受体:一类能识别Ox-LDL和Ac-LDL,类似于清道夫受体;另一类能识别Ox-LDL但不能识别Ac-LDL。RAW 264细胞是一种方便的模型细胞系,可用于研究修饰脂蛋白的代谢,不仅包括Ac-LDL的代谢,还包括Ox-LDL和Aggr-LDL的代谢,以及源自修饰LDL的脂质在细胞内的积累。