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VECTORIZED CLAY NANOPARTICLES IN THERAPY AND DIAGNOSIS

机译:绝缘粘土纳米颗粒在治疗和诊断中的作用

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Over the past several decades, clay minerals have been applied in various bio-fields such as drug and drug additives, animal medicine and feed additives, cosmetics. biosensors. etc. Among various research areas, however, the medical application of clay minerals is an emerging field not only in academia but also in industry. In particular. cationic and anionic clays have long been considered as drug delivery vehicles for developing advanced drug delivery systems (DDSs). which is the most important of the various research fields including new drugs and medicines, in vitro and in vivo diagnostics, implants, biocompatible materials, etc., in nanomedicine. These applications are obviously related to global issues such as improvements in welfare and quality of life with life expectancy increasing. Many scientists, therefore, in various disciplines, such as clay mineralogy, material chemistry, molecular biology, pharmacology, and medical science, have been endeavoring to find solutions to such global issues. One of the strategic approaches is probably to explore new drugs possessing intrinsic therapeutic effects or to develop advanced materials with theranostic functions. With this is mind, discussions of examples of cationic and anionic clays with bio- and medical applications based on nanomedicine are relevant. In this tutorial review, nanomedicine based on clay minerals are described in terms of synthetic strategies of clay nanohybrids, in vitro and in vivo toxicity, biocompatibility, oral and injectable medications, diagnostics, theranosis, etc.
机译:在过去的几十年中,粘土矿物已应用于各种生物领域,例如药物和药物添加剂,动物药物和饲料添加剂,化妆品。生物传感器。然而,在各个研究领域中,粘土矿物的医学应用不仅在学术界而且在工业上都是新兴的领域。特别是。长期以来,阳离子和阴离子粘土一直被认为是开发先进药物输送系统(DDS)的药物输送工具。这是纳米医学中各种研究领域中最重要的领域,包括新药和药物,体外和体内诊断,植入物,生物相容性材料等。这些应用显然与全球问题有关,例如随着预期寿命的增加,福利和生活质量得到改善。因此,许多学科(例如粘土矿物学,材料化学,分子生物学,药理学和医学科学)的科学家一直在努力寻找解决此类全球性问题的方法。战略方法之一可能是探索具有内在治疗作用的新药或开发具有治疗诊断功能的先进材料。考虑到这一点,讨论基于纳米医学的生物和医学应用的阳离子和阴离子粘土的实例是有意义的。在本教程的复习中,基于粘土纳米杂化物的合成策略,体外和体内毒性,生物相容性,口服和注射药物,诊断学,治疗性疾病等描述了基于粘土矿物质的纳米药物。

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