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Novel Synthetic (SS) and (RR)-Secoisolariciresinol Diglucosides (SDGs) Protect Naked Plasmid and Genomic DNA From Gamma Radiation Damage

机译:新型合成的(SS)和(RR)-芥子油苷二糖苷(SDGs)保护裸质粒和基因组DNA免受伽马辐射损伤

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摘要

Secoisolariciresinol diglucoside (SDG) is the major lignan in wholegrain flaxseed. However, extraction methods are complex and are associated with low yield and high costs. Using a novel synthetic pathway, our group succeeded in chemically synthesizing SDG (S,S and R,R enantiomers), which faithfully recapitulates the properties of their natural counterparts, possessing strong antioxidant and free radical scavenging properties. This study further extends initial findings by now investigating the DNA-radioprotective properties of the synthetic SDG enantiomers compared to the commercial SDG. DNA radioprotection was assessed by cell-free systems such as: (a) plasmid relaxation assay to determine the extent of the supercoiled (SC) converted to open-circular (OC) plasmid DNA (pBR322) after exposure of the plasmid to gamma radiation; and (b) determining the extent of genomic DNA fragmentation. Exposure of plasmid DNA to 25 Gy of γ radiation resulted in decreased supercoiled form and increased open-circular form, indicating radiation-induced DNA damage. Synthetic SDG (S,S) and SDG (R,R), and commercial SDG at concentrations of 25–250 μM significantly and equipotently reduced the radiation-induced supercoiled to open-circular plasmid DNA in a dose-dependent conversion. In addition, exposure of calf thymus DNA to 50 Gy of gamma radiation resulted in DNA fragments of low-molecular weight (<6,000 bps), which was prevented in a dose-dependence manner by all synthetic and natural SDG enantomers, at concentrations as low as 0.5 μM. These novel results demonstrated that synthetic SDG (S,S) and SDG (R,R) isomers and commercial SDG possess DNA-radioprotective properties. Such properties along with their antioxidant and free radical scavenging activity, reported earlier, suggest that SDGs are promising candidates for radioprotection for normal tissue damage as a result of accidental exposure during radiation therapy for cancer treatment.
机译:异麦草烯醇二葡萄糖苷(SDG)是全麦亚麻籽中的主要木脂素。但是,提取方法很复杂,且产率低且成本高。通过新颖的合成途径,我们小组成功地化学合成了SDG(S,S和R,R对映异构体),忠实地概括了其天然对应物的性质,具有强大的抗氧化剂和自由基清除性能。通过研究合成的SDG对映异构体与商业SDG的DNA放射防护特性,这项研究进一步扩展了最初的发现。通过无细胞系统评估DNA的放射防护,例如:(a)质粒松弛试验,以确定将质粒暴露于伽玛射线后超螺旋(SC)转化为开环(OC)质粒DNA(pBR322)的程度; (b)确定基因组DNA片段化的程度。将质粒DNA暴露于25 Gy的γ射线中会导致超螺旋形式的减少和开环形式的增加,表明辐射引起的DNA损伤。浓度为25–250μM的合成SDG(S,S)和SDG(R,R),以及商用SDG均以剂量依赖的方式显着并等价地减少了辐射诱导的超螺旋成开环质粒DNA。此外,小牛胸腺DNA暴露于50 Gy的γ射线照射后会产生低分子量(<6,000 bps)的DNA片段,所有合成和天然SDG对映体均以剂量依赖性方式防止了低分子量的DNA片段,且浓度低为0.5μM。这些新颖的结果表明合成的SDG(S,S)和SDG(R,R)异构体和商业SDG具有DNA辐射防护特性。较早前报道的此类特性以及其抗氧化剂和自由基清除活性表明,由于在癌症治疗的放射治疗过程中意外接触,SDGs有望成为正常组织损伤的放射防护候选物。

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