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Carbon Nanotube Sensor Passivation Mitigates Inflammatory Response in Microglia

机译:碳纳米管传感器钝化减轻了微胶质细胞的炎症反应

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Non-covalent functionalization of single-walled carbon nanotubes (SWCNTs) has enabled advances in biomolecule imaging. In particular, modification of SWCNTs with select sequences of single-stranded DNA (ssDNA) produces near infrared optically active sensors for neurotransmitters such as dopamine, enabling high spatiotemporally resolved optical recording of synaptic and extrasynaptic signaling. However, the carbon lattice surface of SWCNT induces activation of the innate immune system, leading to an inflammatory response. Activation of microglia, the brain's resident immune cells, is of particular relevance to imaging neuromodulation. Here, we show that non-covalent ssDNA-SWCNT nanosensor passivation with a PEGylated phospholipid can mitigate microglial activation while maintaining the nanosensor's response towards dopamine. To do so, we screen a candidate library of PEGylated biomolecules, nonionic surfactants, and block copolymers against their ability to mitigate the microglial immune response as measured by transcriptomic analysis. We find that PEGylated phospholipids are capable of adsorption to ssDNA-SWCNTs without significant ssDNA displacement, with moderate reduction in nonspecific protein adsorption. These trends are recapitulated by a reduction in inflammatory response of SIM-A9 microglial cells, marked by lowered expression of cytokines CXCL2 and IL-6, mitigated morphological change, and decreased cytotoxicity. Taken together, these results suggest noncovalent passivation improves biocompatibility of DNA-SWNCT nanosensors and provides the groundwork for implementing similar passivation methods for other optical probes of this class.
机译:单壁碳纳米管(SWCNTs)的非共价官能化能够实现生物分子成像的进展。特别地,具有选择单链DNA(SSDNA)的选择序列的SWCNT的修饰产生近红外光学活性传感器,用于多巴胺,例如多巴胺,使得突触和额外信号传导的高时瞬发分辨光学记录。然而,SWCNT的碳晶格表面诱导先前免疫系统的激活,导致炎症反应。微胶质细胞激活,大脑的常驻免疫细胞,与成像神经调节特别相关。在这里,我们表明,非共价SSDNA-SWCNT纳米传感器与聚乙二醇化磷脂的钝化可以减轻小胶质激活,同时保持纳米传感器对多巴胺的反应。为此,我们筛选聚乙二醇化生物分子,非离子表面活性剂和嵌段共聚物的候选文库,以减轻通过转录组分析测量的微胶质免疫应答的能力。我们发现聚乙二醇化的磷脂能够吸附于SSDNA-SWCNTS,而无明显的SSDNA位移,不特异性蛋白质吸附中度的中等降低。通过降低SIM-A9微胶质细胞的炎症反应的降低,通过降低细胞因子CXCL2和IL-6的表达,减少形态变化,降低细胞毒性,通过降低这些趋势。总之,这些结果表明非价钝化改善了DNA-SWNCT纳米调传料的生物相容性,并为该课堂的其他光学探针提供了实现类似钝化方法的基础。

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