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CLAY-BASED BIOHYBRID MATERIALS FOR BIOMEDICAL AND PHARMACEUTICAL APPLICATIONS

机译:基于粘土的生物医学和药物应用的生物冬杂材料

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摘要

Clays have traditionally been linked to health care, being used for centuries in the fight against infections and diseases. Similarly, biohybrids produced by combinations of clays and biological species through `bottom-up' approaches have been evaluated over the past decade for biomedical and pharmaceutical uses. These biohybrids show interesting features such as biocompatibility and biodegradability which make them suitable for healthcare applications. The aim of the present communication was to review recent research contributions describing progress and the role of biohybrid materials based on clays in biomedicine and pharmacy disciplines. Emphasis will be on the authors' own experience of this topic, particularly on aspects related to controlled drugdelivery systems, adjuvants of vaccines, and vectors for non-viral gene transfection. Bionanocomposites offer several advantages for use in the design of new and efficient pharmacological formulations for cutaneous and oral administration. In these systems, the drug is typically entrapped in the clay and protected by a biopolymer matrix, and both components contribute to a gradual release of the drug. Clay-based hybrids have also shown their efficacy in vaccines as they can act as nanocarriers of viral particles, due to the biomimetic interface created on the clay surface after adsorption of suitable biomolecules such as phospholipids, while the clay acts as an adjuvant to increase the efficacy of the vaccine. Finally, a new application of clays as non-viral vectors for controlled gene delivery is attracting increasing interest in the treatment of diverse diseases; clays such as sepiolite have demonstrated their ability to act as nanocarriers of nucleic acids and facilitate their transfection in mammalian cells.
机译:传统上,粘土与医疗保健有关,在抗击感染和疾病中使用了几个世纪。类似地,通过粘土和生物物种的组合通过“自然”方法产生的生物培喂,过去十年来进行生物医学和药物用途。这些生物冬小人展示了有趣的功能,例如生物相容性和生物降解性,使它们适用于医疗保健应用。目前沟通的目的是审查最近的研究贡献,描述了基于生物医学和药房学科的粘土的生物红外材料的进展和作用。重点是作者对本课题的经验,特别是在与受控药物交付系统,疫苗佐剂和非病毒基因转染的载体相关方面的方面。 BionAnoC复合材料提供了多种优点,用于设计新的高效药理学配方进行皮肤和口服给药。在这些系统中,药物通常夹在粘土中并受到生物聚合物基质的保护,并且两种组分促进药物的逐渐释放。基于粘土的杂种还在疫苗中显示它们的效果,因为它们可以作为病毒颗粒的纳米载体,因为在吸附在粘土表面上的合适生物分子如磷脂之后在粘土表面上产生的仿生界面,而粘土作用作为佐剂以增加疫苗的功效。最后,粘土的新施用作为受控基因递送的非病毒载体是吸引对各种疾病治疗的兴趣越来越低;诸如Sepiolite等粘土证明了它们作为核酸的纳米载体的能力,并促进其在哺乳动物细胞中的转染。

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