首页> 外文期刊>Scientific reports. >Succinate ester derivative of δ-tocopherol enhances the protective effects against 60Co γ-ray-induced hematopoietic injury through granulocyte colony-stimulating factor induction in mice
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Succinate ester derivative of δ-tocopherol enhances the protective effects against 60Co γ-ray-induced hematopoietic injury through granulocyte colony-stimulating factor induction in mice

机译:δ-生育酚的琥珀酸酯衍生物通过小鼠粒细胞菌落刺激因子诱导增强了对60coγ射线诱导的造血损伤的保护作用

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α-tocopherol succinate (α-TOS), γ-tocotrienol (GT3) and δ-tocotrienol (DT3) have drawn large attention due to their efficacy as radioprotective agents. α-TOS has been shown to act superior to α-tocopherol (α-TOH) in mice by reducing lethality following total body irradiation (TBI). Because α-TOS has been shown to act superior to α-tocopherol (α-TOH) in mice by reducing lethality following total body irradiation (TBI), we hypothesized succinate may be contribute to the radioprotection of α-TOS. To study the contributions of succinate and to identify stronger radioprotective agents, we synthesized α-, γ- and δ-TOS. Then, we evaluated their radioprotective effects and researched further mechanism of δ-TOS on hematological recovery post-irradiation. Our results demonstrated that the chemical group of succinate enhanced the effects of α-, γ- and δ-TOS upon radioprotection and granulocyte colony-stimulating factor (G-CSF) induction, and found δ-TOS a higher radioprotective efficacy at a lower dosage. We further found that treatment with δ-TOS ameliorated radiation-induced pancytopenia, augmenting cellular recovery in bone marrow and the colony forming ability of bone marrow cells in sublethal irradiated mice, thus promoting hematopoietic stem and progenitor cell recovery following irradiation exposure. δ-TOS appears to be an attractive radiation countermeasure without known toxicity, but further exploratory efficacy studies are still required.
机译:α-生育酚琥珀酸酯(α-TOS),γ-霉素(GT3)和δ-霉三烯酚(DT3)由于它们作为辐射防护剂的功效而感到大。已经证明α-TOS通过减少总体照射(TBI)之后的致死性来表现出小鼠中的α-生育酚(α-TOH)。由于在总体照射(TBI)之后,已显示α-TOS在小鼠中优于小鼠中的α-生育酚(α-TOH),所以我们假设琥珀酸盐可能有助于α-TO的放射反应。为了研究琥珀酸酯和鉴定较强的放射反应剂的贡献,我们合成α-,γ-和δ-tos。然后,我们评估了它们的放射保护作用,并研究了Δ-tos在辐照后血液恢复的进一步机制。我们的研究结果表明,琥珀酸盐的化学基团增强了α-,γ-和δ-tos对辐射保护和粒细胞菌落刺激因子(G-CSF)诱导的影响,发现Δ-tos在较低剂量下较高的辐射保护效应。我们进一步发现,用Δ-tos改善辐射诱导的植物特迟,在骨髓辐照小鼠中增加骨髓中的细胞恢复和骨髓细胞的菌落形成能力,从而促进照射暴露后促进造血干细胞和祖细胞回收。 Δ-tos似乎是一个有吸引力的辐射对策,而无需已知毒性,但仍然需要进一步的探索性疗效研究。

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