School of Medical Science & Griffith Health Institute, Gold Coast Campus, Griffith University, Southport, QLD 4222, Australia.
Australian Institutes for Bioengineering & Nanotechnology, University of Queensland, St Lucia, QLD 4072, Australia.
Int J Mol Sci. 2014 Apr 29;15(5):7409-28. doi: 10.3390/ijms15057409.
Layered Double Hydroxides (LDHs)-based drug delivery systems have, for many years, shown great promises for the delivery of chemical therapeutics and bioactive molecules to mammalian cells in vitro and in vivo. This system offers high efficiency and drug loading density, as well as excellent protection of loaded molecules from undesired degradation. Toxicological studies have also found LDHs to be biocompatible compared with other widely used nanoparticles, such as iron oxide, silica, and single-walled carbon nanotubes. A plethora of bio-molecules have been reported to either attach to the surface of or intercalate into LDH materials through co-precipitation or anion-exchange reaction, including amino acid and peptides, ATPs, vitamins, and even polysaccharides. Recently, LDHs have been used for gene delivery of small molecular nucleic acids, such as antisense, oligonucleotides, PCR fragments, siRNA molecules or sheared genomic DNA. These nano-medicines have been applied to target cells or organs in gene therapeutic approaches. This review summarizes current progress of the development of LDHs nanoparticle drug carriers for nucleotides, anti-inflammatory, anti-cancer drugs and recent LDH application in medical research. Ground breaking studies will be highlighted and an outlook of the possible future progress proposed. It is hoped that the layered inorganic material will open up new frontier of research, leading to new nano-drugs in clinical applications.
层状双氢氧化物(LDHs)基药物输送系统多年来在向哺乳动物细胞体外和体内输送化学治疗药物和生物活性分子方面表现出巨大的潜力。该系统具有高效率和高药物负载密度,以及对负载分子免受不必要降解的出色保护。与其他广泛使用的纳米颗粒(如氧化铁、二氧化硅和单壁碳纳米管)相比,毒理学研究还发现 LDHs 具有生物相容性。大量生物分子已被报道通过共沉淀或阴离子交换反应附着或嵌入 LDH 材料中,包括氨基酸和肽、ATP、维生素,甚至多糖。最近,LDHs 已被用于小分子核酸(如反义寡核苷酸、PCR 片段、siRNA 分子或剪切基因组 DNA)的基因传递。这些纳米药物已应用于基因治疗方法中的靶细胞或器官。本综述总结了 LDHs 纳米药物载体在核苷酸、抗炎、抗癌药物方面的最新进展,以及 LDH 在医学研究中的最新应用。重点介绍了开创性的研究,并提出了未来可能取得进展的展望。希望这种层状无机材料能开拓新的研究前沿,为临床应用带来新的纳米药物。