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Pretreatment with antioxidants prevent bone injury by improving bone marrow microenvironment for stem cells

机译:用抗氧化剂预处理可通过改善干细胞的骨髓微环境来预防骨骼损伤

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Irradiation induces bone injury by generating free radicals that adversely affect the microenvironment for Mesenchymal stem cells (MSCs) and damages bone marrow blood vessels. We wished to investigate the efficacy of antioxidant administration in protecting stem cell microenvironments and promoting bone marrow vasculature recovery after radiation treatment. The antioxidant ascorbic acid was administered 3 times at a dosage: 150 mg/kg/day to experimenttal groups 3 days before targeted radiation by a unique Small Animal Radiation Research Platform (SARRP). Histological staining indicated that antioxidant treated mice had less severe bone marrow damage 1 week after irradiation with substantial marrow cellular recovery 4 weeks later. Flow cytometry analysis showed that antioxidant administration was correlated with a rebound in MSC quantity in bone marrow. Anti-oxidant treatment was also observed to allow for better vasculature retention and recovery through angiographic imaging. Our data suggests that pre-treatment with ascorbic acid serves to improve bone marrow microenvironments for bone marrow stem cells after radiation treatment.
机译:辐照会产生自由基,从而对骨髓间充质干细胞(MSCs)的微环境产生不利影响并损害骨髓血管,从而引起骨骼损伤。我们希望研究抗氧化剂在保护干细胞微环境和促进放射治疗后骨髓血管恢复方面的功效。抗氧化剂抗坏血酸以独特的小动物辐射研究平台(SARRP)进行靶向辐射之前3天,以150 mg / kg /天的剂量施用于实验组3次。组织学染色表明,抗氧化剂治疗的小鼠在照射后1周的骨髓损伤程度较轻,在4周后骨髓细胞大量恢复。流式细胞仪分析表明抗氧化剂的给药与骨髓中MSC数量的反弹有关。还观察到抗氧化剂治疗可通过血管造影显像更好地保留和恢复血管。我们的数据表明,抗坏血酸预处理可改善放射治疗后骨髓干细胞的骨髓微环境。

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