Baldrighi Michele, Trusel Massimo, Tonini Raffaella, Giordani Silvia
Nano Carbon Materials Laboratory, Istituto Italiano di Tecnologia Genova, Italy.
Neuroscience and Brain Technology, Istituto Italiano di Tecnologia Genova, Italy.
Front Neurosci. 2016 Jun 9;10:250. doi: 10.3389/fnins.2016.00250. eCollection 2016.
Developing new tools that outperform current state of the art technologies for imaging, drug delivery or electrical sensing in neuronal tissues is one of the great challenges in neurosciences. Investigations into the potential use of carbon nanomaterials for such applications started about two decades ago. Since then, numerous in vitro studies have examined interactions between these nanomaterials and neurons, either by evaluating their compatibility, as vectors for drug delivery, or for their potential use in electric activity sensing and manipulation. The results obtained indicate that carbon nanomaterials may be suitable for medical therapies. However, a relatively small number of in vivo studies have been carried out to date. In order to facilitate the transformation of carbon nanomaterial into practical neurobiomedical applications, it is essential to identify and highlight in the existing literature the strengths and weakness that different carbon nanomaterials have displayed when probed in vivo. Unfortunately the current literature is sometimes sparse and confusing. To offer a clearer picture of the in vivo studies on carbon nanomaterials in the central nervous system, we provide a systematic and critical review. Hereby we identify properties and behavior of carbon nanomaterials in vivo inside the neural tissues, and we examine key achievements and potentially problematic toxicological issues.
开发出比当前用于神经元组织成像、药物递送或电传感的先进技术更优越的新工具,是神经科学领域的重大挑战之一。大约二十年前开始了对碳纳米材料在这类应用中的潜在用途的研究。从那时起,众多体外研究通过评估碳纳米材料与神经元之间的兼容性、作为药物递送载体的作用,或者其在电活动传感和操纵方面的潜在用途,来研究它们之间的相互作用。所获得的结果表明,碳纳米材料可能适用于医学治疗。然而,迄今为止进行的体内研究相对较少。为了促进碳纳米材料向实际神经生物医学应用的转化,有必要在现有文献中识别并突出不同碳纳米材料在体内测试时所表现出的优缺点。不幸的是,当前的文献有时稀少且令人困惑。为了更清晰地呈现中枢神经系统中碳纳米材料的体内研究情况,我们进行了系统且批判性的综述。在此,我们确定碳纳米材料在神经组织内的体内特性和行为,并审视关键成果以及潜在的有问题的毒理学问题。