Kateb Babak, Yamamoto Vicky, Alizadeh Darya, Zhang Leying, Manohara Harish M, Bronikowski Michael J, Badie Behnam
Brain Mapping Foundation and International Brain Mapping & Intraoperative Surgical Planning Society (IBMISPS), West Hollywood, CA, USA.
Methods Mol Biol. 2010;651:307-17. doi: 10.1007/978-1-60761-786-0_18.
Nanomedicine is a growing field with a great potential for introducing new generation of targeted and personalized drug. Amongst new generation of nano-vectors are carbon nanotubes (CNTs), which can be produced as single or multi-walled. Multi-walled carbon nanotubes (MWCNTs) can be fabricated as biocompatible nanostructures (cylindrical bulky tubes). These structures are currently under investigation for their application in nanomedicine as viable and safe nanovectors for gene and drug delivery. In this chapter, we will provide you with the necessary information to understand the synthesis of MWCNTs, functionalization, PKH26 labeling, RNAi, and DNA loading for in vitro experimentation and in vivo implantation of labeled MWCNT in mice as well as materials used in this experimentation. We used this technique to manipulate microglia as part of a novel application for the brain cancer immunotherapy. Our published data show this is a promising technique for labeling, and gene and drug delivery into microglia.
纳米医学是一个不断发展的领域,在引入新一代靶向和个性化药物方面具有巨大潜力。新一代纳米载体包括碳纳米管(CNTs),其可制成单壁或多壁的。多壁碳纳米管(MWCNTs)可以制备成生物相容性纳米结构(圆柱形粗管)。目前正在研究这些结构在纳米医学中的应用,作为用于基因和药物递送的可行且安全的纳米载体。在本章中,我们将为您提供必要的信息,以了解MWCNTs的合成、功能化、PKH26标记、RNA干扰以及用于体外实验和在小鼠体内植入标记的MWCNT的DNA加载,以及该实验中使用的材料。我们使用这种技术来操纵小胶质细胞,作为脑癌免疫疗法的一种新应用。我们已发表的数据表明,这是一种用于标记以及向小胶质细胞递送基因和药物的有前景的技术。