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Hypercholesterolemia and reduced HDL-C promote hematopoietic stem cell proliferation and monocytosis: studies in mice and FH children

机译:高胆固醇血症和降低的HDL-C促进造血干细胞增殖和单核细胞增多:在小鼠和FH儿童中的研究

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摘要

Previous studies have shown that mice with defects in cellular cholesterol efflux show hematopoietic stem cell (HSPC) and myeloid proliferation, contributing to atherogenesis. We hypothesized that the combination of hypercholesterolemia and defective cholesterol efflux would promote HSPC expansion and leukocytosis more prominently than either alone.We crossed Ldlr−/− with Apoa1−/− mice and found that compared to Ldlr−/− mice, Ldlr−/−/Apoa1+/− mice, with similar LDL cholesterol levels but reduced HDL cholesterol (HDL-C) levels, had expansion of HSPCs, monocytosis and neutrophilia. Ex vivo studies showed that HSPCs expressed high levels of Ldlr, Scarb1 (Srb1), and Lrp1 and were able to take up both native and oxidized LDL. Native LDL directly stimulated HSPC proliferation, while co-incubation with reconstituted HDL attenuated this effect. We also assessed the impact of HDL-C levels on monocytes in children with familial hypercholesterolemia (FH) (n=49) and found that subjects with the lowest level of HDL-C, had increased monocyte counts compared to the mid and higher HDL-C levels. Overall, HDL-C was inversely correlated with the monocyte count. These data suggest that in mice, a balance of cholesterol uptake and efflux mechanisms may be one factor in driving HSPC proliferation and monocytosis. Higher monocyte counts in children with FH and low HDL cholesterol suggest a similar pattern in humans.
机译:先前的研究表明,具有细胞胆固醇外流缺陷的小鼠表现出造血干细胞(HSPC)和骨髓增生,导致动脉粥样硬化。我们假设,高胆固醇血症和缺陷性胆固醇外流的组合比单独使用时更显着地促进HSPC扩张和白细胞增多。我们将Ldlr -/-与Apoa1 -/-小鼠和发现与Ldlr -/-小鼠相比,Ldlr -/- / Apoa1 +/- 小鼠的LDL胆固醇水平相似,但HDL降低胆固醇(HDL-C)水平升高,HSPCs增多,单核细胞增多和嗜中性粒细胞增多。体外研究表明,HSPCs表达高水平的Ldlr,Scarb1(Srb1)和Lrp1,并且能够吸收天然和氧化的LDL。天然LDL直接刺激HSPC增殖,而与重组HDL共同孵育则减弱了这种作用。我们还评估了HDL-C水平对家族性高胆固醇血症(FH)儿童(n = 49)的单核细胞的影响,发现HDL-C最低水平的受试者单核细胞计数与中,高HDL- C级。总体而言,HDL-C与单核细胞计数呈负相关。这些数据表明,在小鼠中,胆固醇摄取和外排机制的平衡可能是驱动HSPC增殖和单核细胞增多的因素之一。 FH和低HDL胆固醇儿童的单核细胞计数较高,表明人类的情况与此相似。

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