Department of Molecular Biology & Immunology, Graduate School of Biomedical Sciences, University of North Texas Health Science Center, Fort Worth, Texas 76107, USA.
Curr Med Chem. 2012;19(22):3714-21. doi: 10.2174/092986712801661176.
Nanotechnology when engineered together with biotechnology opens a fascinating field with applications in diverse areas such as drug targeting and delivery, medical imaging, biosensing, biomaterials and nanotechnology. Conjugating nanoparticles with biomolecules like QD-herceptin conjugates or QD-aptamer (Apt)-DOX conjugates provides many opportunities for improving many of the current challenges in cancer diagnosis and therapy. This paper reviews combinatorial nanoparticles designed and formulated for cancer imaging and therapy, including inorganic nanoparticles (quantum dots, iron oxide particles, gold nanoparticles and silica and carbon nanoparticles), polymeric nanoparticles (PLGA, PLGA-PEG, PAMAM), liposomes and lipid nanoparticles. These nanoparticles are multifunctional in nature and combine two or more functions like targeting, imaging and therapy. In this review, we have classified these combinatorial targeted nanoparticles into inorganic, polymeric and liposome based nanosystems.
当纳米技术与生物技术相结合时,会开辟出一个令人着迷的领域,在药物靶向和输送、医学成像、生物传感、生物材料和纳米技术等多个领域都有应用。将纳米粒子与生物分子如 QD-herceptin 缀合物或 QD-aptamer(Apt)-DOX 缀合物结合,为改善癌症诊断和治疗中的许多当前挑战提供了许多机会。本文综述了为癌症成像和治疗设计和配制的组合纳米粒子,包括无机纳米粒子(量子点、氧化铁粒子、金纳米粒子和硅及碳纳米粒子)、聚合物纳米粒子(PLGA、PLGA-PEG、PAMAM)、脂质体和脂质纳米粒子。这些纳米粒子在性质上具有多功能性,结合了两种或多种功能,如靶向、成像和治疗。在这篇综述中,我们将这些组合靶向纳米粒子分为基于无机、聚合物和脂质体的纳米系统。