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Reciprocal upregulation of scavenger receptors complicates interpretation of nanoparticle uptake in non-phagocytic cells

机译:互惠upregulation清道夫受体复杂的解释纳米粒子吸收在non-phagocytic细胞

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Nanoparticles have great potential as drug delivery vehicles or as imaging agents for treatment and diagnosis of various diseases. It is therefore crucial to understand how nanoparticles are taken up by cells, both phagocytic and non-phagocytic. Small interference RNA has previously been used to isolate the effect of particular receptors in nanoparticle uptake by silencing their expression. Here we show that, when it comes to receptors with overlapping function, interpretation of such data has to be done with caution. We followed the uptake of silica nanoparticles by scavenger receptors in A549 lung epithelial cells. While we successfully knocked-down gene expression of several different receptors within the scavenger receptor family (SR-A1, MARCO, SR-BI, LOX-1 and LDLR) this caused reciprocal up and down regulation of the other scavenger receptors. Subsequent nanoparticle uptake experiments in silenced cells exhibit a complex behaviour, which could easily be misinterpreted if reciprocal regulation is not considered. Preliminary identification of the actual scavenger receptors involved can be found by disentangling the effects mathematically. Finally, we show that the effects are still present under more realistic biological conditions, namely at higher serum concentrations.
机译:纳米粒子作为药物有很大的潜力运载工具或作为显像剂各种疾病的治疗和诊断。因此,至关重要的理解如何纳米粒子是由细胞,两者兼而有之吞噬和non-phagocytic。RNA曾被用于隔离特定的受体在纳米颗粒的影响吸收通过沉默的表情。表明,当涉及到受体重叠的功能,解释这些数据必须小心。硅纳米颗粒的清道夫在A549肺上皮细胞受体。成功地拆装的基因的表达几种不同的清道夫受体受体家族(SR-A1,马可,SR-BI LOX-1和上下LDLR)这导致互惠规定的其他清道夫受体。随后的纳米粒子吸收实验沉默的细胞表现出复杂的行为,很容易被误解如果倒数监管是不考虑。实际的清道夫受体的识别可以找到涉及理清数学上的影响。影响仍然存在下更为现实生理条件下,即在更高的血清浓度。

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