Miyagawa Akihisa, Nagatomo Shigenori, Kuno Hatsuhi, Terada Takuto, Nakatani Kiyoharu
Department of Chemistry, Institute of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8571, Japan.
Langmuir. 2023 Aug 15;39(32):11329-11336. doi: 10.1021/acs.langmuir.3c01017. Epub 2023 Jul 31.
This study investigated the pore size dependence of the mass transfer of zinc myoglobin (ZnMb) in a single mesoporous silica particle through confocal fluorescence microspectroscopy. The ZnMb's fluorescence depth profile in the particle was analyzed by a spherical diffusion model, and the intraparticle diffusion coefficient was obtained. The intraparticle diffusion coefficient in the silica particle with various pore sizes (10, 15, 30, and 50 nm) was furthermore analyzed based on a pore and surface diffusion model. Although the mass transfer mechanism in all silica particles followed the pore and surface diffusion model, the adsorption and desorption of ZnMb affected the mass transfer depending on the pore size. The influence of the slow desorption of ZnMb became pronounced for large pore sizes (30 and 50 nm), which was revealed by simulation using a diffusion equation combined with the adsorption-desorption kinetics. The distribution of ZnMb was suppressed in small pore sizes (10 and 15 nm) owing to the adsorption of ZnMb onto the entrance of the pore. Thus, we revealed the mass transfer mechanism of ZnMb in the silica particle with different pore sizes.
本研究通过共聚焦荧光显微光谱法研究了单个介孔二氧化硅颗粒中锌肌红蛋白(ZnMb)传质的孔径依赖性。通过球形扩散模型分析了颗粒中ZnMb的荧光深度分布,并获得了颗粒内扩散系数。此外,基于孔和表面扩散模型分析了具有不同孔径(10、15、30和50nm)的二氧化硅颗粒中的颗粒内扩散系数。尽管所有二氧化硅颗粒中的传质机制均遵循孔和表面扩散模型,但ZnMb的吸附和解吸根据孔径影响传质。对于大孔径(30和50nm),ZnMb缓慢解吸的影响变得明显,这通过使用结合吸附-解吸动力学的扩散方程进行模拟得以揭示。由于ZnMb吸附在孔口上,在小孔径(10和15nm)中ZnMb的分布受到抑制。因此,我们揭示了不同孔径的二氧化硅颗粒中ZnMb的传质机制。