Department of Orthopedic Surgery, Osaka City University Graduate School of Medicine, 1-4-3 Asahimachi, Abeno-ku, Osaka, 545-8585, Japan.
Department of Orthopedic Surgery, Osaka City University Graduate School of Medicine, 1-4-3 Asahimachi, Abeno-ku, Osaka, 545-8585, Japan.
Biochem Biophys Res Commun. 2022 May 7;603:57-62. doi: 10.1016/j.bbrc.2022.03.027. Epub 2022 Mar 6.
Adipose-derived stem cells (ADSCs), due to their regenerative ability, have beneficial effects on bone and cartilage defects. In addition, spheroid formation of ADSCs obtained using three-dimensional (3D) culture accelerates the regenerative ability of ADSCs. The study investigated the regenerative effect of 3D-cultured small size ADSC spheroids without a scaffold in rats with defects in the critical-sized calvarial bone. ADSC-single cells, ADSC-spheroids, or PBS (as control) were implanted in rats, and radiological and histological assessment of bone regeneration was performed. Bone defects were significantly regenerated in the ADSC-spheroid group compared to that in the control group. ADSC-spheroids also showed the most significant bone regeneration in histological assessment. Immunohistochemistry assessment showed that ADSC-spheroids could survive 12 weeks after cell implantation. In vitro, cell apoptosis in ADSC-spheroids was significantly suppressed compared to that in ADSC-single cells. In addition, gene expression related to bone morphogenesis, angiogenesis, and stemness in ADSC-spheroids was elevated. The scaffold-free 3D-cultured small ADSC-spheroids survived in in vitro and in vivo conditions and promoted bone regeneration. Therefore, injectable small size ADSC-spheroids are a novel and less-invasive therapeutic option for treating bone defects.
脂肪来源干细胞(ADSCs)由于其再生能力,对骨和软骨缺损具有有益的作用。此外,使用三维(3D)培养获得的 ADSC 球体形成加速了 ADSC 的再生能力。本研究在临界大小颅骨骨缺损的大鼠中,研究了无支架的 3D 培养小尺寸 ADSC 球体的再生作用。将 ADSC-单细胞、ADSC-球体或 PBS(作为对照)植入大鼠中,并对骨再生进行放射学和组织学评估。与对照组相比,ADSC-球体组的骨缺损得到了显著的再生。组织学评估还显示 ADSC-球体具有最显著的骨再生作用。免疫组织化学评估显示,ADSC-球体在细胞植入后 12 周仍能存活。在体外,ADSC-球体中的细胞凋亡明显低于 ADSC-单细胞。此外,ADSC-球体中与骨形态发生、血管生成和干细胞相关的基因表达升高。无支架的 3D 培养小 ADSC 球体在体外和体内条件下均能存活,并促进骨再生。因此,可注射的小尺寸 ADSC 球体是治疗骨缺损的一种新颖且微创的治疗选择。