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The bio-nano interface: Examining the interactions between water-soluble nanoparticles and cellular systems.

机译:生物纳米界面:检查水溶性纳米颗粒与细胞系统之间的相互作用。

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The cytotoxicity of water-soluble and water-suspendable nanoparticles is a sensitive function of their surface derivatization or surface coating, particle size or specific surface area, and crystalline phase (for nanocrystals). In many different human cell lines, the cytotoxicity of a nanomaterial has been shown to change up to 8 orders of magnitude with relatively minor alterations in its structure. Cellular viability was determined through live/dead staining and LDH release. If the nanomaterial was deemed cytotoxic, further biochemical endpoints were tested. In almost all cases, when the nanoparticles were brought into the aqueous phase reactive species were formed. Ex vivo chemiluminescent analysis qualitatively assessed the presence of RS, and evaluated the effect of choice of solvent, suspension agitation, and light exposure. Liquid atomic force microscopy (AFM) was utilized to examine the interaction of nanomaterials with artificial membranes, illustrating the use of in situ AFM to directly observe the interactions of a model nanoparticle with a model cell membrane. By using in vitro, ex vivo, and in situ techniques, this work demonstrates both a strategy for enhancing the toxicity of nanomaterials for certain applications such as cancer therapeutics or bactericides, as well as a remediation for the possible unwarranted biological effects of nanoparticles.
机译:水溶性和水悬浮性纳米粒子的细胞毒性是其表面衍生化或表面涂层,粒径或比表面积和结晶相(对于纳米晶体而言)的敏感函数。在许多不同的人类细胞系中,纳米材料的细胞毒性已经显示出最多可改变8个数量级,并且其结构发生相对较小的变化。通过活/死染色和LDH释放确定细胞活力。如果纳米材料被认为具有细胞毒性,则需要进一步测试生化终点。在几乎所有情况下,当将纳米颗粒引入水相时,都会形成反应性物质。离体化学发光分析定性评估了RS的存在,并评估了溶剂选择,悬浮液搅拌和光照的影响。液体原子力显微镜(AFM)用于检查纳米材料与人造膜的相互作用,说明使用原位AFM直接观察模型纳米颗粒与模型细胞膜的相互作用。通过使用体外,离体和原位技术,这项工作证明了针对某些应用(例如癌症治疗剂或杀菌剂)增强纳米材料毒性的策略,以及对纳米颗粒可能产生的不必要的生物学效应的补救措施。

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