Department of Materials, Imperial College London, South Kensington Campus, SW7 2AZ, London, UK.
Adv Healthc Mater. 2014 Jan;3(1):115-25. doi: 10.1002/adhm.201300126. Epub 2013 Jul 5.
Spherical monodispersed bioactive particles are potential candidates for nanocomposite synthesis or as injectable particles that could be internalized by cells for the local sustained delivery of inorganic therapeutic ions (e.g., calcium or strontium). Particles are also likely to be released from porous bioactive glass and sol-gel hybrid scaffolds as they degrade; thus, it is vital to investigate their interaction with cells. Spherical monodispersed bioactive glass particles (mono-SMBG), with diameters of 215 ± 20 nm are synthesized using a modified Stöber process. Confocal and transmission electron microscopy demonstrate that mono-SMBGs are internalized by human bone marrow (MSCs) and adipose-derived stem cells (ADSCs) and located within cell vesicles and in the cytoplasm. Particle dissolution inside the cells is observed. Alamar Blue, MTT and Cyquant assays demonstrate that 50 μg mL(-1) of mono-SMBGs did not inhibit significantly MSC or ADSC metabolic activity. However, at higher concentrations (100 and 200 μg mL(-1)) small decrease in metabolic activity and total DNA is observed. Mono-SMBG did not induce ALPase activity, an early marker of osteogenic differentiation, without osteogenic supplements; however, in their presence osteogenic differentiation is achieved. Additionally, large numbers of particles are internalized by the cells but have little effect on cell behavior.
球形单分散生物活性颗粒是纳米复合材料合成的潜在候选物,也可作为可注射颗粒,被细胞内化,实现无机治疗离子(如钙或锶)的局部持续释放。由于多孔生物活性玻璃和溶胶-凝胶杂化支架的降解,颗粒也可能被释放出来;因此,研究其与细胞的相互作用至关重要。使用改进的Stöber 工艺合成了直径为 215 ± 20nm 的球形单分散生物活性玻璃颗粒(mono-SMBG)。共聚焦和透射电子显微镜显示,mono-SMBG 被人骨髓间充质干细胞(MSCs)和脂肪来源的干细胞(ADSCs)内化,并位于细胞囊泡和细胞质中。观察到细胞内的颗粒溶解。Alamar Blue、MTT 和 Cyquant 测定表明,50μg mL(-1) 的 mono-SMBG 对 MSC 或 ADSC 的代谢活性没有显著抑制作用。然而,在较高浓度(100 和 200μg mL(-1)) 下,代谢活性和总 DNA 略有下降。在没有成骨补充剂的情况下,mono-SMBG 不会诱导碱性磷酸酶(ALPase)活性,这是成骨分化的早期标志物;然而,在有这些补充剂的情况下,实现了成骨分化。此外,大量颗粒被细胞内化,但对细胞行为影响不大。