Kumarasamy Murali, Sosnik Alejandro
Laboratory of Pharmaceutical Nanomaterials Science, Department of Materials Science and Engineering, Technion-Israel Institute of Technology, Haifa, 3200003, Israel.
Adv Biosyst. 2019 Dec;3(12):e1900123. doi: 10.1002/adbi.201900123. Epub 2019 Sep 25.
The nose-to-brain (N-to-B) transport mechanism of nanoparticles through the olfactory epithelium (OE) is not fully understood. Most research utilized nasal epithelial cell models completely deprived of olfactory cells. Aiming to shed light into key cellular pathways, in this work, for the first time, the interaction of polymeric nanoparticles in a 17-483 nm size range and with neutral and negatively and positively charged surfaces with primary olfactory sensory neurons, cortical neurons, and microglia isolated from olfactory bulb (OB), OE, and cortex of newborn rats is investigated. After demonstrating the good cell compatibility of the different nanoparticles, the nanoparticle uptake by confocal laser scanning fluorescence microscopy is monitored. Our findings reveal that neither olfactory nor forebrain neurons internalize nanoparticles. Conversely, it is demonstrated that olfactory and cortical microglia phagocytose the nanoparticles independently of their features. Overall, our findings represent the first unambiguous evidence of the possible involvement of microglia in N-to-B nanoparticle transport and the unlikely involvement of neurons. Furthermore, this approach emerges as a completely new experimental tool to screen the biocompatibility, uptake, and transport of nanomaterials by key cellular players of the N-to-B pathway in nanosafety and nanotoxicology and nanomedicine.
纳米颗粒通过嗅觉上皮(OE)的鼻-脑(N-to-B)转运机制尚未完全明确。大多数研究使用的鼻上皮细胞模型完全缺乏嗅觉细胞。为了深入了解关键的细胞途径,在本研究中,首次研究了尺寸范围为17 - 483 nm且具有中性、负电荷和正电荷表面的聚合物纳米颗粒与从新生大鼠嗅球(OB)、OE和皮层分离的原代嗅觉感觉神经元、皮层神经元和小胶质细胞之间的相互作用。在证明了不同纳米颗粒具有良好的细胞相容性后,通过共聚焦激光扫描荧光显微镜监测纳米颗粒的摄取情况。我们的研究结果表明,嗅觉神经元和前脑神经元均不摄取纳米颗粒。相反,研究表明嗅觉和皮层小胶质细胞会吞噬纳米颗粒,且与纳米颗粒的特性无关。总体而言,我们的研究结果首次明确证明了小胶质细胞可能参与N-to-B纳米颗粒转运,而神经元参与的可能性不大。此外,这种方法成为一种全新的实验工具,可用于在纳米安全、纳米毒理学和纳米医学领域筛选纳米材料与N-to-B途径关键细胞成分之间的生物相容性、摄取和转运情况。