Center of Excellence in Biomaterials and Tissue Engineering, BIOMATEN, Middle East Technical University, Ankara, Turkey; Department of Biological Sciences, Middle East Technical University, Ankara, Turkey; Graduate Department of Biotechnology, Middle East Technical University, Ankara, Turkey.
Providence VA Medical Center, Providence, RI, USA; Department of Orthopaedics, The Warren Alpert Medical School of Brown University and Rhode Island Hospital, Providence, RI, USA.
Biomaterials. 2019 Oct;218:119361. doi: 10.1016/j.biomaterials.2019.119361. Epub 2019 Jul 15.
A PCL/hydrogel construct that would mimic the structural organization, biochemistry and anatomy of meniscus was engineered. The compressive (380 ± 40 kPa) and tensile modulus (18.2 ± 0.9 MPa) of the PCL scaffolds were increased significantly when constructs were printed with a shifted design and circumferential strands mimicking the collagen organization in native tissue (p < 0.05). Presence of circumferentially aligned PCL strands also led to elongation and alignment of the human fibrochondrocytes. Gene expression of the cells in agarose (Ag), gelatin methacrylate (GelMA), and GelMA-Ag hydrogels was significantly higher than that of cells on the PCL scaffolds after a 21-day culture. GelMA exhibited the highest level of collagen type I (COL1A2) mRNA expression, while GelMA-Ag exhibited the highest level of aggrecan (AGG) expression (p < 0.001, compared to PCL). GelMA and GelMA-Ag exhibited a high level of collagen type II (COL2A1) expression (p < 0.05, compared to PCL). Anatomical scaffolds with circumferential PCL strands were impregnated with cell-loaded GelMA in the periphery and GelMA-Ag in the inner region. GelMA and GelMA-Ag hydrogels enhanced the production of COL 1 and COL 2 proteins after a 6-week culture (p < 0.05). COL 1 expression increased gradually towards the outer periphery, while COL 2 expression decreased. We were thus able to engineer an anatomical meniscus with a cartilage-like inner region and fibrocartilage-like outer region.
我们设计了一种聚己内酯(PCL)/水凝胶构建体,以模拟半月板的结构组织、生物化学和解剖结构。当构建体采用移位设计和模拟天然组织中胶原组织的周向纤维打印时,PCL 支架的压缩(380±40kPa)和拉伸模量(18.2±0.9MPa)显著增加(p<0.05)。周向排列的 PCL 纤维的存在也导致人纤维软骨细胞的伸长和排列。在琼脂糖(Ag)、明胶甲基丙烯酰胺(GelMA)和 GelMA-Ag 水凝胶中的细胞的基因表达在 21 天培养后明显高于 PCL 支架上的细胞。GelMA 表现出最高水平的 COL1A2 mRNA 表达,而 GelMA-Ag 表现出最高水平的 Agg 表达(p<0.001,与 PCL 相比)。GelMA 和 GelMA-Ag 表现出高水平的 COL2A1 表达(p<0.05,与 PCL 相比)。具有周向 PCL 纤维的解剖支架在周边部位用负载细胞的 GelMA 浸渍,在内部区域用 GelMA-Ag 浸渍。GelMA 和 GelMA-Ag 水凝胶在 6 周培养后增强了 COL1 和 COL2 蛋白的产生(p<0.05)。COL1 表达逐渐向外周增加,而 COL2 表达减少。因此,我们能够工程化具有软骨样内部区域和纤维软骨样外部区域的解剖学半月板。