Orive G, Hernández R M, Gascón A R, Igartua M, Pedraz J L
Laboratory of Pharmacy and Pharmaceutical Technology, Faculty of Pharmacy, University of the Basque Country, Paseo de la Universidad no 7, Vitoria-Gasteiz 01006, Spain.
Eur J Pharm Sci. 2003 Jan;18(1):23-30. doi: 10.1016/s0928-0987(02)00220-8.
Cell microencapsulation has emerged as a promising therapeutic strategy to treat a wide range of diseases. The optimisation of this technology depends on several critical issues such as the careful selection of the cell line, the controlled manufacture of microcapsules and the suitable adaptation of the construct design to the selected cell line. In this work, we studied the behavior of hybridoma cells once enclosed in solid and liquefied core alginate-agarose beads. Results show that hybridoma cells presented a better growing pattern and improved their viability and antibody production within liquefied beads. However, when these beads were evaluated with a compression resistance study, they were found to be mechanically more fragile than solid ones. To address this problem, we entrapped non-autologous cells (BHK fibroblast and C2C12 myoblast) in solid alginate-agarose beads and observed that they showed an improved growing profile and prolonged their viability up to 70 days in comparison to the 15 days seen for the hybridoma cells.
细胞微囊化已成为一种有前景的治疗策略,可用于治疗多种疾病。该技术的优化取决于几个关键问题,如细胞系的谨慎选择、微囊的可控制造以及构建设计与所选细胞系的适当适配。在这项工作中,我们研究了杂交瘤细胞被包裹在固体和液化核心海藻酸钠-琼脂糖珠中的行为。结果表明,杂交瘤细胞在液化珠中呈现出更好的生长模式,并提高了其活力和抗体产量。然而,当对这些珠子进行抗压性研究时,发现它们在机械性能上比固体珠子更脆弱。为了解决这个问题,我们将非自体细胞(BHK成纤维细胞和C2C12成肌细胞)包裹在固体海藻酸钠-琼脂糖珠中,观察到它们显示出改善的生长情况,与杂交瘤细胞的15天相比,其活力延长至70天。