CÚRAM, SFI Research Centre for Medical Devices, University of Galway, Galway H91 W2TY, Ireland.
Department of Anatomy, Faculty of Medicine, Universiti Kebangsaan Malaysia, 56000 Cheras, Kuala Lumpur, Malaysia.
ACS Appl Bio Mater. 2024 Jun 17;7(6):4102-4115. doi: 10.1021/acsabm.4c00431. Epub 2024 May 17.
The diatom's frustule, characterized by its rugged and porous exterior, exhibits a remarkable biomimetic morphology attributable to its highly ordered pores, extensive surface area, and unique architecture. Despite these advantages, the toxicity and nonbiodegradable nature of silica-based organisms pose a significant challenge when attempting to utilize these organisms as nanotopographically functionalized microparticles in the realm of biomedicine. In this study, we addressed this limitation by modulating the chemical composition of diatom microparticles by modulating the active silica metabolic uptake mechanism while maintaining their intricate three-dimensional architecture through calcium incorporation into living diatoms. Here, the diatom was chemically modified to replace its silica composition with a biodegradable calcium template, while simultaneously preserving the unique three-dimensional (3D) frustule structure with hierarchical patterns of pores and nanoscale architectural features, which was evident by the deposition of calcium as calcium carbonate. Calcium hydroxide is incorporated into the exoskeleton through the active mechanism of calcium uptake via a carbon-concentrating mechanism, without altering the microstructure. Our findings suggest that calcium-modified diatoms hold potential as a nature-inspired delivery system for immunotherapy through antibody-specific binding.
硅藻的外壳具有崎岖多孔的特点,其独特的仿生形态归因于其高度有序的孔、广阔的表面积和独特的结构。尽管具有这些优势,但基于硅的生物毒性和不可生物降解性,在尝试将这些生物作为纳米拓扑功能化的微颗粒应用于生物医学领域时,仍然是一个重大挑战。在这项研究中,我们通过钙的掺入来维持其复杂的三维结构,同时通过调节活硅藻的活性硅代谢摄取机制来调节硅藻微颗粒的化学成分,从而解决了这一限制。在这里,硅藻的硅成分被化学修饰为可生物降解的钙模板,同时保留了独特的三维(3D)外壳结构,具有层次化的孔和纳米级建筑特征,这可以通过碳酸钙的沉积来证明。氢氧化钙通过钙摄取的主动机制与碳浓缩机制一起被纳入外壳,而不会改变微观结构。我们的研究结果表明,钙修饰的硅藻有望通过抗体特异性结合成为一种受自然启发的免疫治疗递药系统。