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Lipids promote survival proliferation and maintenance of differentiation of rat liver sinusoidal endothelial cells in vitro

机译:脂质在体外促进大鼠肝窦窦内皮细胞的存活增殖和维持分化

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摘要

Primary rat liver sinusoidal endothelial cells (LSEC) are difficult to maintain in a differentiated state in culture for scientific studies or technological applications. Relatively little is known about molecular regulatory processes that affect LSEC differentiation because of this inability to maintain cellular viability and proper phenotypic characteristics for extended times in vitro, given that LSEC typically undergo death and detachment around 48–72 h even when treated with VEGF. We demonstrate that particular lipid supplements added to serum-free, VEGF-containing medium increase primary rat liver LSEC viability and maintain differentiation. Addition of a defined lipid combination, or even oleic acid (OA) alone, promotes LSEC survival beyond 72 h and proliferation to confluency. Moreover, assessment of LSEC cultures for endocytic function, CD32b surface expression, and exhibition of fenestrae showed that these differentiation characteristics were maintained when lipids were included in the medium. With respect to the underlying regulatory pathways, we found lipid supplement-enhanced phosphatidylinositol 3-kinase and MAPK signaling to be critical for ensuring LSEC function in a temporally dependent manner. Inhibition of Akt activity before 72 h prevents growth of SEC, whereas MEK inhibition past 72 h prevents survival and proliferation. Our findings indicate that OA and lipids modulate Akt/PKB signaling early in culture to mediate survival, followed by a switch to a dependence on ERK signaling pathways to maintain viability and induce proliferation after 72 h. We conclude that free fatty acids can support maintenance of liver LSEC cultures in vitro; key regulatory pathways involved include early Akt signaling followed by ERK signaling.
机译:在科学研究或技术应用中,原代大鼠肝窦窦内皮细胞(LSEC)很难维持在分化状态。鉴于LSEC通常在48-72 h左右即会死亡和脱离,即使使用VEGF处理,也会影响LSEC分化的分子调控过程​​,因为该过程无法在较长的体外维持细胞活力和适当的表型特征。我们证明添加到无血清,含VEGF的培养基中的特定脂质补充剂可增加原代大鼠肝脏LSEC的活力并维持分化。添加确定的脂质组合,甚至单独添加油酸(OA),均可促进LSEC存活超过72小时并增殖至融合。此外,对LSEC培养物的内吞功能,CD32b表面表达和窗孔的展示进行评估表明,当将脂质包括在培养基中时,这些分化特征得以保持。关于潜在的调节途径,我们发现脂质补充增强的磷脂酰肌醇3-激酶和MAPK信号传导对于确保LSEC功能在时间依赖性上至关重要。在72小时前抑制Akt活性可阻止SEC的生长,而在72小时后抑制MEK可阻止存活和增殖。我们的发现表明,OA和脂质可在培养早期调节Akt / PKB信号传导以介导存活,然后转而依赖ERK信号传导途径以维持活力并在72小时后诱导增殖。我们得出的结论是,游离脂肪酸可以支持体外肝LSEC培养的维持。涉及的关键调控途径包括早期的Akt信号传导,然后是ERK信号传导。

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