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Mesoporous Silica Platforms with Potential Applications in Release and Adsorption of Active Agents

机译:中孔二氧化硅平台潜在应用释放和活性剂吸附

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摘要

In recent years, researchers focused their attention on mesoporous silica nanoparticles (MSNs) owing to the considerable advancements of the characterization methods, especially electron microscopy methods, which allowed for a clear visualization of the pore structure and the materials encapsulated within the pores, along with the X-ray diffraction (small angles) methods and specific surface area determination by Brunauer–Emmett–Teller (BET) technique. Mesoporous silica gained important consideration in biomedical applications thanks to its tunable pore size, high surface area, surface functionalization possibility, chemical stability, and pore nature. Specifically, the nature of the pores allows for the encapsulation and release of anti-cancer drugs into tumor tissues, which makes MSN ideal candidates as drug delivery carriers in cancer treatment. Moreover, the inner and outer surfaces of the MSN provide a platform for further functionalization approaches that could enhance the adsorption of the drug within the silica network and the selective targeting and controlled release to the desired site. Additionally, stimuli-responsive mesoporous silica systems are being used as mediators in cancer therapy, and through the release of the therapeutic agents hosted inside the pores under the action of specific triggering factors, it can selectively deliver them into tumor tissues. Another important application of the mesoporous silica nanomaterials is related to its ability to extract different hazardous species from aqueous media, some of these agents being antibiotics, pesticides, or anti-tumor agents. The purpose of this paper is to analyze the methods of MSN synthesis and related characteristics, the available surface functionalization strategies, and the most important applications of MSN in adsorption as well as release studies. Owing to the increasing antibiotic resistance, the need for developing materials for antibiotic removal from wastewaters is important and mesoporous materials already proved remarkable performances in environmental applications, including removal or even degradation of hazardous agents such as antibiotics and pesticides.
机译:近年来,由于表征方法的相当大的进步,特别是电子显微镜方法,研究人员将注意力集中在介孔二氧化硅纳米粒子(MSNS)上。允许清晰可视化孔结构和封装在孔内的材料。以及Brunauer-Emmett-Teller(Bet)技术的X射线衍射(小角度)方法和特定表面积确定。由于其可调孔径,高表面积,表面官能化可能性,化学稳定性和毛孔性质,中孔二氧化硅在生物医学应用中获得了重要的考虑。具体而言,孔的性质允许将抗癌药物的包封和释放到肿瘤组织中,这使MSN理想的候选者作为癌症治疗中的药物递送载体。此外,MSN的内表面和外表面提供了一种用于进一步的功能化方法的平台,其可以增强二氧化硅网络内药物的吸附以及对所需部位的选择性靶向和控制释放。另外,刺激响应的介孔二氧化硅系统被用作癌症治疗中的介质,并且通过在特定触发因子的作用下释放孔隙内部的治疗剂,它可以选择性地将它们递送至肿瘤组织。介孔二氧化硅纳米材料的另一个重要应用与其从含水介质中提取不同危险物种的能力有关,其中一些药剂是抗生素,杀虫剂或抗肿瘤剂。本文的目的是分析MSN合成及相关特征的方法,可用的表面官能化策略以及MSN在吸附中的最重要应用以及释放研究。由于抗生素抗性的增加,对废水中的抗生素去除的发展材料是重要的,中孔材料已经证明了环境应用中的显着性能,包括去除甚至降解抗生素和农药等危险药物。

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