Institute for Innovation and Biomedical Research (IRIB), 90146 Palermo, CNR, Italy.
Int J Mol Sci. 2022 Sep 29;23(19):11518. doi: 10.3390/ijms231911518.
The use of synthetic materials and the attention towards environmental hazards and toxicity impose the development of green composites with natural origins. Clay is one of the candidates for this approach. Halloysite is a natural clay mineral, a member of the Kaolin group, with characteristic tubular morphology, usually named halloysite nanotubes (HNTs). The different surface chemistry of halloysite allows the selective modification of both the external surface and the inner lumen by supramolecular or covalent interactions. An interesting aspect of HNTs is related to the possibility of introducing different species that can be released more slowly compared to the pristine compound. Due to their unique hollow morphology and large cavity, HNTs can be employed as an optimal natural nanocarrier. This review discusses the structure, properties, and application of HNTs in the biological field, highlighting their high biocompatibility, and analyse the opportunity to use new HNT hybrids as drug carriers and delivery systems.
合成材料的使用以及对环境危害和毒性的关注促使人们开发具有天然来源的绿色复合材料。粘土是这种方法的候选材料之一。埃洛石是一种天然粘土矿物,属于高岭石族,具有管状形态特征,通常被称为埃洛石纳米管(HNTs)。埃洛石的不同表面化学性质允许通过超分子或共价相互作用选择性修饰外部表面和内部腔。HNTs 的一个有趣方面与引入不同物种的可能性有关,与原始化合物相比,这些物种可以更缓慢地释放。由于其独特的中空形态和大空腔,HNTs 可用作最佳的天然纳米载体。本文综述了 HNTs 在生物领域的结构、性质和应用,强调了其高生物相容性,并分析了将新型 HNT 杂化物用作药物载体和输送系统的机会。