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首页> 外文期刊>Applied Microbiology and Biotechnology >Preclinical functional characterization methods of nanocomposite hydrogels containing silver nanoparticles for biomedical applications
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Preclinical functional characterization methods of nanocomposite hydrogels containing silver nanoparticles for biomedical applications

机译:含银纳米粒子的纳米复合水凝胶用于生物医学应用的临床前功能表征方法

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摘要

Nanocomposite hydrogels that contain silver nanoparticles (AgNPs) are especially attractive for various biomedical applications (e.g., antimicrobial wound dressings, coatings and soft tissue implants) due to strong antimicrobial activity of released silver nanoparticles and/or ions over prolonged times. However, all potential biomedical products have to be thoroughly specified fulfilling strict safety requirements. Characterization of nanocomposites is additionally complicated due to potential harmful effects of nanoparticles and accumulation in cells and tissues. This paper summarizes methods for preclinical characterization of hydrogel nanocomposites containing AgNPs with the particular attention on Ag/alginate hydrogels. Standard physicochemical characterization methods include transmission electron microscopy (TEM), scanning electron microscopy (SEM) and atomic force microscopy (AFM), UV-visible spectroscopy, and Fourier transform infrared spectroscopy (FTIR). Functional in vitro characterization relies on different methods for estimation of silver release, antimicrobial activity, and nanocomposite cytotoxicity. Here, we specially focus on utilization of 3D bioreactor systems that mimic native physiological environments with the aim to reliably predict nanocomposite behavior during implementation and so to decrease the need for animal experimentation. These systems were shown to provide more accurate and relevant data on silver release and cytotoxicity as compared to static systems such as 2D cell monolayer cultures. Finally, nanocomposites are evaluated in vivo in different animal models, which are in the case of wound dressings typically mice, rats, and pigs. The present review provides a basis for defining a strategy for comprehensive and efficient preclinical characterization of novel nanocomposites attractive not only for those containing AgNPs but also other metallic nanoparticles aimed for biomedical applications. Key points center dot A platform for devising comprehensive preclinical evaluation of nanocomposites. center dot Biomimetic bioreactors provide reliable functional nanocomposite evaluation. center dot Cells in 2D cultures are more sensitive to silver nanoparticles than in 3D cultures. center dot Biomimetic bioreactor 3D cell/tissue cultures can address the in vitro-in vivo gap.
机译:由于释放的银纳米颗粒和/或延长时间的离子的强抗微生物活性,含有银纳米颗粒(例如,抗微生物伤口敷料,涂料和软组织植入物)特别有吸引力。但是,所有潜在的生物医学产品都必须彻底指定严格的安全要求。由于纳米颗粒的潜在有害影响和细胞和组织中的积累,纳米复合材料的表征另外复杂。本文总结了含有AgNP的水凝胶纳米复合材料的临床前表征的方法,特别是Ag /藻酸盐水凝胶特别注意。标准物理化学表征方法包括透射电子显微镜(TEM),扫描电子显微镜(SEM)和原子力显微镜(AFM),UV可见光谱和傅立叶变换红外光谱(FTIR)。功能性体外表征依赖于估计银释放,抗微生物活性和纳米复合性细胞毒性的不同方法。在这里,我们特别关注利用3D生物反应器系统,其模拟原生生理环境,目的是在实施过程中可靠地预测纳米复合性行为,从而降低对动物实验的需求。与静态系统(如2D细胞单层培养物)相比,这些系统显示出在银释放和细胞毒性上提供更准确和相关数据。最后,在不同的动物模型中在体内评估纳米复合材料,其在伤口敷料通常是小鼠,大鼠和猪的情况下。本综述为定义新型纳米复合材料的全面和高效临床前表征的策略提供了基础,不仅适用于含有AgNP的那些,还具有旨在为生物医学应用的其他金属纳米颗粒。关键点中心点设计纳米复合材料全面临床前评价的平台。中心点生物微米生物反应器提供可靠的功能纳米复合材料评价。 2D培养物中的中心点细胞对银纳米粒子比3D培养物更敏感。中心点生物菊生物反应器3D细胞/组织培养物可以在体外差距中解决体外差距。

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