Institute for Pulsed Power and Microwave Technology (IHM), Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen 76344, Germany; Institute of Process Engineering in Life Sciences, Bioprocess Engineering, Karlsruhe Institute of Technology (KIT), Karlsruhe 76131, Germany; School of Biosystems and Food Engineering, University College Dublin, Belfield, Dublin 4, Ireland; UCD Conway Institute, University College Dublin, Belfield, Dublin 4, Ireland.
Institute for Pulsed Power and Microwave Technology (IHM), Karlsruhe Institute of Technology (KIT), Eggenstein-Leopoldshafen 76344, Germany.
Bioresour Technol. 2022 Feb;346:126597. doi: 10.1016/j.biortech.2021.126597. Epub 2022 Jan 3.
Novel cell-disruption combinations (autolytic incubation and hypotonic osmotic shock combined with HPH or pH12) were used to investigate the fundamental mass transfer of lipids and proteins from Nannochloropsis slurries (140 mg biomass/g slurry). Since neutral lipids exist as cytosolic globules, their mass transfer was directly dependent on disintegration of cell walls. Complete recovery was obtained with complete physical disruption. HPH combinations exerted more physical disruption and led to higher yields than pH12. In contrast, proteins exist as both cytosolic water-soluble fractions and cell-wall/membrane structural fractions and have a complex extraction behaviour. Mass transfer of cytosolic proteins was dependent on cell-wall disintegration, while that of structural proteins was governed by cell-wall disintegration and severance of protein linkage from the wall/membrane. HPH combinations exerted only physical disruption and were limited to releasing soluble proteins. pH12 combinations hydrolysed chemical linkages in addition to exerting physical disruption, releasing both soluble and structural proteins.
新型细胞破碎组合(自溶孵育和低渗渗透压冲击与高压均相或 pH12 结合)用于研究从拟球藻悬浮液(140mg 生物质/g 悬浮液)中脂质和蛋白质的基本传质。由于中性脂质存在于细胞质小球中,它们的传质直接依赖于细胞壁的破碎。完全的物理破碎可获得完全的回收。高压均相组合比 pH12 施加更多的物理破碎,导致更高的产率。相比之下,蛋白质既存在于细胞质水溶性部分,也存在于细胞壁/膜结构部分,具有复杂的提取行为。细胞质蛋白质的传质取决于细胞壁的破碎,而结构蛋白质的传质则取决于细胞壁的破碎和蛋白质与壁/膜的连接的切断。高压均相组合仅施加物理破碎,仅限于释放可溶性蛋白质。pH12 组合除了施加物理破碎外,还水解化学键,释放可溶性和结构蛋白质。