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Assessing cellular toxicities in fibroblasts upon exposure to lipid-based nanoparticles: A high content analysis approach

机译:暴露于脂质纳米颗粒后评估成纤维细胞的细胞毒性:高含量分析方法

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Lipid-based nanoparticles (LNPs) are widely used for the delivery of drugs and nucleic acids. Although most of them are considered safe, there is confusing evidence in the literature regarding their potential cellular toxicities. Moreover, little is known about the recovery process cells undergo after a cytotoxic insult. We have previously studied the systemic effects of common LNPs with different surface charge (cationic, anionic, neutral) and revealed that positively charged LNPs ((+)LNPs) activate pro-inflammatory cytokines and induce interferon response by acting as an agonist of Toll-like receptor 4 on immune cells. In this study, we focused on the response of human fibroblasts exposed to LNPs and their cellular recovery process. To this end, we used image-based high content analysis (HCA). Using this strategy, we were able to show simultaneously, in several intracellular parameters, that fibroblasts can recover from the cytotoxic effects of (+)LNPs. The use of HCA opens new avenues in understanding cellular response and nanotoxicity and may become a valuable tool for screening safe materials for drug delivery and tissue engineering.
机译:基于脂质的纳米颗粒(LNP)被广泛用于药物和核酸的输送。尽管它们中的大多数被认为是安全的,但有关其潜在的细胞毒性的文献中却有令人困惑的证据。此外,关于细胞毒性损伤后细胞经历的恢复过程知之甚少。我们之前已经研究了具有不同表面电荷(阳离子,阴离子,中性)的常见LNP的全身作用,并发现带正电荷的LNP((+)LNP)通过充当Toll-的激动剂来激活促炎性细胞因子并诱导干扰素反应。像免疫细胞上的受体4。在这项研究中,我们专注于暴露于LNP的人类成纤维细胞的反应及其细胞恢复过程。为此,我们使用了基于图像的高含量分析(HCA)。使用这种策略,我们能够同时在几个细胞内参数中证明成纤维细胞可以从(+)LNP的细胞毒性作用中恢复。 HCA的使用为了解细胞反应和纳米毒性开辟了新途径,并可能成为筛选用于药物输送和组织工程的安全材料的有价值的工具。

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