Department of Nanomedicine, The Methodist Hospital Research Institute, 6670 Bertner Ave. MS R7-414 Houston, TX 77030, USA.
Small. 2013 May 27;9(9-10):1722-33. doi: 10.1002/smll.201201939. Epub 2012 Dec 16.
The characterization of nanomaterials and their influence on and interactions with the biology of cells and tissues are still partially unknown. Multistage nanovectors based on mesoporous silicon have been extensively studied for drug delivery, thermal heating, and improved diagnostic imaging. Here, the short- and long-term changes occurring in human cells upon the internalization of mesoporous silicon nanovectors (MSV) are analyzed. Using qualitative and quantitative techniques as well as in vitro and in vivo biochemical, cellular, and functional assays, it is demonstrated that MSV do not cause any significant acute or chronic effects on cells and tissues. In vitro cell toxicity and viability are analyzed, as well as the maintenance of cell phase cycling and the architecture upon the internalization of MSV. In addition, it is evaluated whether MSV produce any pro-inflammatory responses and its biocompatibility in vivo is studied. The biodistribution of MSV is followed using longitudinal in vivo imaging and organ accumulation is assessed using quantitative elemental and fluorescent techniques. Finally, a thorough pathological analysis of collected tissues demonstrates a mild transient systemic response in the liver that dissipates upon the clearance of particles. It is proposed that future endeavors aimed at understanding the toxicology of naked drug carriers should be designed to address their impact using in vitro and in vivo short- and long-term evaluations of systemic response.
纳米材料的特性及其对细胞和组织生物学的影响和相互作用仍然知之甚少。基于介孔硅的多阶段纳米载体已被广泛研究用于药物输送、热疗和改进的诊断成像。在这里,分析了人细胞在摄取介孔硅纳米载体(MSV)后发生的短期和长期变化。使用定性和定量技术以及体外和体内生化、细胞和功能测定,证明 MSV 不会对细胞和组织造成任何显著的急性或慢性影响。分析了体外细胞毒性和活力,以及细胞周期和 MSV 内化后的细胞结构的维持。此外,还评估了 MSV 是否会产生任何促炎反应,并研究其体内的生物相容性。使用纵向体内成像跟踪 MSV 的生物分布,并使用定量元素和荧光技术评估器官积累。最后,对收集的组织进行了彻底的病理分析,证明肝脏有轻微的一过性全身反应,在清除颗粒后会消散。有人提出,未来旨在了解裸药载体毒理学的努力应该设计为使用体外和体内短期和长期的系统反应评估来解决其影响。