Department of Chemical Engineering, National Tsing Hua University, Hsinchu 300, Taiwan.
Center for Tissue Engineering, Chang Gung Memorial Hospital, Taoyuan 333, Taiwan; Department of Orthopaedic, Chang Gung Memorial Hospital, Taoyuan 333, Taiwan.
Biomaterials. 2016 Jan;74:155-66. doi: 10.1016/j.biomaterials.2015.09.046.
Fractures associated with osteoporosis are a worldwide health problem. To augment osteoporotic bone healing, we aimed to develop a cell/gene therapy approach in combination with miRNA manipulation. We unraveled aberrant overexpression of miR-140* and miR-214 in the bone marrow-derived MSCs isolated from ovariectomized (OVX) rats (OVX-BMSCs). To suppress the miRNA levels, we constructed hybrid baculovirus vectors expressing miRNA sponges to antagonize miR-140* or miR-214. Engineering OVX-BMSCs with the hybrid vectors persistently attenuated the cellular miR-140*/miR-214 levels, which promoted the OVX-BMSCs osteogenesis and augmented the ability of OVX-BMSCs to repress osteoclast maturation in vitro. Notably, suppressing miR-214 exerted more potent osteoinductive effects. In the osteoporotic rat models with a critical-size bone defect at the femoral metaphysis, implanting the OVX-BMSCs ectopically expressing BMP2 failed to heal the defect, which underscored the difficulty to heal osteoporotic bone defects. Nonetheless, allotransplantation of the miR-214 sponges-expressing OVX-BMSCs healed the defect and ameliorated the bone quality (density, trabecular number, trabecular thickness and trabecular space) at 4 weeks post-implantation. Co-expressing BMP2 and miR-214 sponges in OVX-BMSCs further synergistically substantiated the healing. The baculovirus-engineered OVX-BMSCs that expressed miR-214 sponge, with or without BMP2 expression, thus paved a new avenue to the treatment of osteoporotic bone defects.
与骨质疏松症相关的骨折是一个全球性的健康问题。为了增强骨质疏松性骨愈合,我们旨在开发一种细胞/基因治疗方法,结合 miRNA 操作。我们揭示了从去卵巢(OVX)大鼠骨髓来源的间充质干细胞(OVX-BMSCs)中异常过表达 miR-140和 miR-214。为了抑制 miRNA 水平,我们构建了表达 miRNA 海绵的杂交杆状病毒载体,以拮抗 miR-140或 miR-214。用杂交载体工程化 OVX-BMSCs 持续减弱细胞 miR-140*/miR-214 水平,促进 OVX-BMSCs 成骨,并增强 OVX-BMSCs 在体外抑制破骨细胞成熟的能力。值得注意的是,抑制 miR-214 发挥了更强的成骨诱导作用。在股骨干骺端有临界大小骨缺损的骨质疏松症大鼠模型中,异位表达 BMP2 的 OVX-BMSCs 植入未能治愈缺损,这突显了治疗骨质疏松性骨缺损的困难。尽管如此,表达 miR-214 海绵的 OVX-BMSCs 的同种异体移植治愈了缺损,并改善了植入后 4 周的骨质量(密度、小梁数、小梁厚度和小梁间隙)。在 OVX-BMSCs 中共表达 BMP2 和 miR-214 海绵进一步协同证实了愈合。表达 miR-214 海绵的杆状病毒工程化 OVX-BMSCs,无论是否表达 BMP2,都为治疗骨质疏松性骨缺损开辟了新途径。