Chen J, Li Y, Wang L, Lu M, Zhang X, Chopp M
Department of Neurology, Henry Ford Health Sciences Center, Detroit, MI 48202, USA.
J Neurol Sci. 2001 Aug 15;189(1-2):49-57. doi: 10.1016/s0022-510x(01)00557-3.
We tested the hypothesis that bone marrow stromal cells (MSCs) transplanted into the ischemic boundary zone, survive, differentiate and improve functional recovery after middle cerebral artery occlusion (MCAo). MSCs were harvested from adult rats and cultured with or without nerve growth factor (NGF). For cellular identification, MSCs were prelabeled with bromodeoxyuridine (BrdU). Rats (n=24) were subjected to 2 h of MCAo, received grafts at 24 h and were euthanized at 14 days after MCAo. Test groups consisted of: (1) control-MCAo alone (n=8); (2) intracerebral transplantation of MSCs (n=8); (3) intracerebral transplantation of MSCs cultured with NGF (n=8). Immunohistochemistry was used to identify cells from MSCs. Behavioral tests (rotarod, adhesive-removal and modified neurological severity score [NSS]) were performed before and after MCAo. The data demonstrate that MSCs survive, migrate and differentiate into phenotypic neural cells. Significant recovery of somatosensory behavior (p<0.05) and NSS (p<0.05) were found in animals transplanted with MSCs compared with control animals. Animals that received MSCs cultured with NGF displayed significant recovery in motor (p<0.05), somatosensory (p<0.05) and NSS (p<0.05) behavioral tests compared with control animals. Our data suggest that intracerebral transplantation of MSCs may provide a powerful autoplastic therapy for stroke.
将骨髓基质细胞(MSC)移植到缺血边界区后,这些细胞能够存活、分化,并在大脑中动脉闭塞(MCAo)后改善功能恢复。从成年大鼠中获取MSC,并在有或没有神经生长因子(NGF)的情况下进行培养。为了进行细胞鉴定,MSC预先用溴脱氧尿苷(BrdU)标记。24只大鼠接受2小时的MCAo,在24小时时接受移植,并在MCAo后14天实施安乐死。试验组包括:(1)仅MCAo对照组(n = 8);(2)脑内移植MSC组(n = 8);(3)脑内移植用NGF培养的MSC组(n = 8)。采用免疫组织化学方法鉴定来自MSC的细胞。在MCAo前后进行行为测试(转棒试验、粘胶去除试验和改良神经功能缺损评分[NSS])。数据表明,MSC能够存活、迁移并分化为表型神经细胞。与对照动物相比,移植了MSC的动物在躯体感觉行为(p<0.05)和NSS(p<0.05)方面有显著恢复。与对照动物相比,接受用NGF培养的MSC的动物在运动(p<0.05)、躯体感觉(p<0.05)和NSS(p<0.05)行为测试中显示出显著恢复。我们的数据表明,脑内移植MSC可能为中风提供一种有效的自体修复疗法。