Laboratory of Inorganic Materials Chemistry, University of Namur , rue de Bruxelles, 61, Namur B-5000, Belgium.
Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University , Wuxi 214122, P. R. China.
ACS Appl Mater Interfaces. 2016 Apr 13;8(14):8939-46. doi: 10.1021/acsami.6b00191. Epub 2016 Mar 30.
Hybrid beads with entrapped microalgae Chlamydomonas reinhardtii were synthesized for the sustainable production of high value metabolites via photosynthesis. Encapsulating the microalgae requires an exquisite control of material properties, which has been achieved by modifying the composition (alginate, polycation, and silica). A coating of PDADMAC precluded cell leakage as indicated by the OD750 value of the culture medium, and the homogeneous distribution of silica prevented bead shrinkage from the strong electronic force of PDADMAC, resulting in a robust and biocompatible matrix for the cells. Besides fabricating suitable porous beads for the diffusion of expected metabolites, the permeability can be controlled to a certain degree by applying different molecular weights of PDADMAC. The hybrid alginate+silica/CaCl2+PDADMAC beads possessed sufficient mechanical rigidity to sheer force under constant stirring and good chemical stability to chelating agents such as sodium citrate. Moreover, the encapsulated cells exhibited excellent long-term viability and cellular functionality, which retained about 81.5% of the original value after a 120 day encapsulation as observed by microscopy and oximetry measurement. This study is not only significant for understanding the critical role of polycations and silica involved in the synthesis of hybrid beads but also important for real-scale bioengineering applications.
通过光合作用,合成了包埋微藻莱茵衣藻的杂化珠,以可持续地生产高价值代谢物。包埋微藻需要对材料性能进行精细控制,这可以通过改变组成(藻酸盐、聚阳离子和二氧化硅)来实现。PDADMAC 的涂层可防止细胞泄漏,这可以通过培养基的 OD750 值来指示,并且二氧化硅的均匀分布可防止 PDADMAC 的强电子力导致珠粒收缩,从而为细胞提供了一种坚固且生物相容的基质。除了制造适合预期代谢物扩散的合适多孔珠外,还可以通过施加不同分子量的 PDADMAC 来在一定程度上控制渗透性。杂化藻酸盐+二氧化硅/CaCl2+PDADMAC 珠具有足够的机械刚性,可在恒定搅拌下承受剪切力,并且具有良好的化学稳定性,可耐受柠檬酸钠等螯合剂。此外,包封的细胞表现出优异的长期活力和细胞功能,通过显微镜和耗氧量测量观察,在 120 天的包封后,仍保留了原始值的约 81.5%。这项研究不仅对于理解在杂化珠合成中涉及的聚阳离子和二氧化硅的关键作用具有重要意义,而且对于实际规模的生物工程应用也很重要。