Perucca Orfei Carlotta, Talò Giuseppe, Viganò Marco, Perteghella Sara, Lugano Gaia, Fabro Fontana Francesca, Ragni Enrico, Colombini Alessandra, De Luca Paola, Moretti Matteo, Torre Maria Luisa, de Girolamo Laura
IRCCS Istituto Ortopedico Galeazzi, Orthopaedic Biotechnology Lab, Via R. Galeazzi 4, 20161 Milano, Italy.
IRCCS Istituto Ortopedico Galeazzi, Cells and Tissue Engineering Laboratory, Via R. Galeazzi 4, 20161 Milano, Italy.
Pharmaceutics. 2018 Oct 24;10(4):200. doi: 10.3390/pharmaceutics10040200.
In this methodological paper, lyophilized fibroin-coated alginate microcarriers (LFAMs) proposed as mesenchymal stem cells (MSCs) delivery systems and optimal MSCs seeding conditions for cell adhesion rate and cell arrangement, was defined by a Design of Experiment (DoE) approach. Cells were co-incubated with microcarriers in a bioreactor for different time intervals and conditions: variable stirring speed, dynamic culture intermittent or continuous, and different volumes of cells-LFAMs loaded in the bioreactor. Intermittent dynamic culture resulted as the most determinant parameter; the volume of LFAMs/cells suspension and the speed used for the dynamic culture contributed as well, whereas time was a less influencing parameter. The optimized seeding conditions were: 98 min of incubation time, 12.3 RPM of speed, and 401.5 µL volume of cells-LFAMs suspension cultured with the intermittent dynamic condition. This DoE predicted protocol was then validated on both human Adipose-derived Stem Cells (hASCs) and human Bone Marrow Stem Cells (hBMSCs), revealing a good cell adhesion rate on the surface of the carriers. In conclusion, microcarriers can be used as cell delivery systems at the target site (by injection or arthroscopic technique), to maintain MSCs and their activity at the injured site for regenerative medicine.
在这篇方法学论文中,通过实验设计(DoE)方法确定了冻干丝素蛋白包被的藻酸盐微载体(LFAMs)作为间充质干细胞(MSCs)递送系统以及细胞黏附率和细胞排列的最佳MSCs接种条件。细胞与微载体在生物反应器中于不同时间间隔和条件下共同孵育:可变搅拌速度、动态培养间歇或连续,以及生物反应器中加载的不同体积的细胞-LFAMs。间歇动态培养是最具决定性的参数;LFAMs/细胞悬液的体积和动态培养所用的速度也有影响,而时间的影响较小。优化的接种条件为:孵育时间98分钟、速度12.3转/分钟,以及在间歇动态条件下培养的401.5微升细胞-LFAMs悬液体积。然后在人脂肪来源干细胞(hASCs)和人骨髓干细胞(hBMSCs)上验证了该DoE预测方案,结果显示载体表面有良好的细胞黏附率。总之,微载体可作为细胞递送系统用于靶位点(通过注射或关节镜技术),以在再生医学中维持MSCs及其在损伤部位的活性。