Terracciano Monica, De Stefano Luca, Tortiglione Claudia, Tino Angela, Rea Ilaria
Institute for Microelectronics and Microsystems, National Research Council, Via P. Castellino 111, 80131, Naples, Italy.
Materias S.r.l., Corso N. Protopisani 50, 80146, Naples, Italy.
Adv Biosyst. 2019 Apr;3(4):e1800247. doi: 10.1002/adbi.201800247. Epub 2019 Feb 25.
Drug nanocarriers based on nanostructured materials are very promising for precision and personalized medicine applications. Diatomite porous biosilica has been recently proposed as a novel and effective material in formulations of drug systems for oral and systemic delivery. In this paper, the cytotoxicity of hybrid diatomite silica functionalized nanovectors is assessed in vivo in a living model organism, the cnidarian freshwater polyp Hydra vulgaris. Hydra specimens are exposed to modified diatomite nanoparticles by prolonged incubation within their medium. Uptake and toxicological effects on Hydra are examined from viability and genetic points of view. High concentrations, up to 3.5 g L for 72 h, of diatomite modified nanoparticles do not affect Hydra morphology nor do growth rate and the genetic analysis confirm the biosafety of this material, opening the way to new applications in nanomedicine.
基于纳米结构材料的药物纳米载体在精准医学和个性化医疗应用方面极具前景。硅藻土多孔生物二氧化硅最近被提议作为一种新型且有效的材料,用于口服和全身给药的药物系统制剂中。在本文中,在一种活的模式生物——刺胞动物淡水水螅中,对杂化硅藻土二氧化硅功能化纳米载体的细胞毒性进行了体内评估。通过在其培养基中长时间孵育,使水螅标本暴露于改性硅藻土纳米颗粒中。从活力和基因角度研究了水螅对纳米颗粒的摄取及毒理学效应。高达3.5 g/L、持续72小时的高浓度硅藻土改性纳米颗粒既不影响水螅的形态,也不影响其生长速率,基因分析证实了这种材料的生物安全性,为纳米医学的新应用开辟了道路。