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首页> 外文期刊>Stem Cells >Local irradiation not only induces homing of human mesenchymal stem cells at exposed sites but promotes their widespread engraftment to multiple organs: a study of their quantitative distribution after irradiation damage.
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Local irradiation not only induces homing of human mesenchymal stem cells at exposed sites but promotes their widespread engraftment to multiple organs: a study of their quantitative distribution after irradiation damage.

机译:局部照射不仅诱导人间充质干细胞在裸露的部位归巢,而且促进其广泛植入多个器官:辐射损伤后其定量分布的研究。

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Mesenchymal stem cells (MSCs) have been shown to migrate to various tissues. There is little information on the fate and potential therapeutic efficacy of the reinfusion of MSCs following total body irradiation (TBI). We addressed this question using human MSC (hMSCs) infused to nonobese diabetic/ severe combined immunodeficient (NOD/SCID) mice submitted to TBI. Further, we tested the impact of additional local irradiation (ALI) superimposed to TBI, as a model of accidental irradiation. NOD/SCID mice were transplanted with hM-SCs. Group 1 was not irradiated before receiving hMSC infusion. Group 2 received only TBI at a dose of 3.5 Gy, group 3 received local irradiation to the abdomen at a dose of 4.5 Gy in addition to TBI, and group 4 received local irradiation to the leg at 26.5 Gy in addition to TBI. Fifteen days after irradiation, quantitative and spatial distribution of the hMSCs were studied. Histological analysis of mouse tissues confirmed the presence of radio-induced lesions in the irradiated fields. Following their infusion into nonirradiated animals, hMSCs homed at a very low level to various tissues (lung, bone marrow, and muscles) and no significant engraftment was found in other organs. TBI induced an increase of engraftment levels of hMSCs in the brain, heart, bone marrow, and muscles. Abdominal irradiation (AI) as compared with leg irradiation (LI) increased hMSC engraftment in the exposed area (the gut, liver, and spleen). Hind LI as compared with AI increased hMSC engraftment in the exposed area (skin, quadriceps, and muscles). An increase of hMSC engraftment in organs outside the fields of the ALI was also observed. Conversely, following LI, hMSC engraftment was increased in the brain as compared with AI. This study shows that engraftment of hMSCs in NOD/ SCID mice with significantly increased in response to tissue injuries following TBI with or without ALI. ALI induced an increase of the level of engraftment at sites outside the local irradiation field, thus suggesting a distant (abscopal) effect of radiation damage. This work supports the use of MSCs to repair damaged normal tissues following accidental irradiation and possibly in patients submitted to radiotherapy.
机译:间充质干细胞(MSCs)已显示迁移到各种组织。关于全身照射(TBI)后再输注MSC的命运和潜在治疗功效的信息很少。我们使用输注至TBI的非肥胖型糖尿病/严重合并免疫缺陷(NOD / SCID)小鼠的人MSC(hMSCs)解决了这个问题。此外,我们测试了附加在TBI上的附加局部辐射(ALI)的影响,作为意外辐射的模型。 NOD / SCID小鼠移植了hM-SCs。在接受hMSC输注之前,未照射第1组。第2组仅接受3.5 Gy的TBI,第3组除TBI以外还接受4.5 Gy的腹部局部照射,第4组除TBI以外还接受26.5 Gy的腿部局部照射。照射15天后,研究了hMSC的定量和空间分布。小鼠组织的组织学分析证实了在辐射场中存在放射性诱导的损伤。将它们注入非辐射动物后,hMSCs以非常低的水平归巢于各种组织(肺,骨髓和肌肉),而在其他器官中未发现明显的植入。 TBI诱导了脑,心脏,骨髓和肌肉中hMSCs的植入水平增加。与腿部照射(LI)相比,腹部照射(AI)增加了裸露区域(肠,肝和脾脏)中hMSC的植入。与AI相比,后LI可以增加裸露区域(皮肤,股四头肌和肌肉)中hMSC的植入。还观察到hMSC在ALI视野之外的器官中的植入增加。相反,LI后,与AI相比,hMSC的植入在大脑中增加了。这项研究表明,在有或没有ALI的TBI后,对组织损伤的反应明显增加了hMSCs在NOD / SCID小鼠中的植入。 ALI诱导了局部辐射场以外的部位的嫁接水平增加,因此提示了辐射损伤的远距离(绝对)效应。这项工作支持使用MSC修复意外照射后以及可能接受放射治疗的患者中受损的正常组织。

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