Parihar Vipan Kumar, Dhawan Jatin, Kumar Suryakant, Manjula S N, Subramanian G, Unnikrishnan M K, Rao C Mallikarjuna
Department of Pharmacology, Manipal College of Pharmaceutical Sciences, Manipal, India.
Chem Biol Interact. 2007 Oct 20;170(1):49-58. doi: 10.1016/j.cbi.2007.07.006. Epub 2007 Jul 19.
Dehydrozingerone (DZ) was explored for in vitro-in vivo antioxidant potential and in vivo radioprotective activity against whole body gamma irradiation in Swiss albino mice. DZ scavenged the ABTS (2, 2'-azinobis (3-ethylbenzothiazoline-6-sulfonic acid) and DPPH (1, 1-dipehnyl-2-picrylhydrazyl) free radicals at room temp. DZ reduced Fe (III) to Fe (II) at pH 7.4 and scavenged the NADH/phenazine methosulfate generated superoxide radical in cell free system. DZ also scavenged the nitric oxide radical generated by sodium nitroprusside. To evaluate the radioprotective activity, mice were exposed to whole body gamma irradiation 30 min after the drug treatment at a dose rate of 1.66 Gy/min. Pretreatment with DZ 75, 100 and 125 mg/kg, i.p. reduced the radiation induced mortality and increased the mean survival times (MSTs). An i.p. dose of DZ 100 mg/kg was found the most effective dose in preventing radiation sickness and increasing the MST. Pretreatment DZ100 mg/kg maintained the spleen index (spleen weight/body weight x 100) and stimulates the endogenous spleen colony forming units (CFU). Pretreatment with DZ100 mg/kg maintained the villus height close to normal, prevents mucosal erosion and basement membrane damage in irradiated mice jejunum. However, no significant reductions in dead, inflammatory and mitotic cells were observed in DZ pretreated mice, but there was an increased in crypt cells proliferation and regeneration. Pretreatment with DZ100 mg/kg significantly elevated the endogenous antioxidant enzymes (GSH, GST and SOD) in mice at 2, 4 and 8 h post sham irradiation. Radiation induced fall in endogenous antioxidant enzymes was significantly prevented by DZ pretreatment. Pretreatment with DZ 75 and 100 mg/kg reduced the radiation induced micronucleated polychromatic erythrocytes (MPCE) and normochromatic erythrocytes (MNCE) in mice bone marrow. DZ also maintained the polychromatic erythrocytes (PCE) and normochromatic erythrocytes (NCE) ratio (P/N ratio) in irradiated mice. Dose modifying factor (DMF) was calculated by using the graded radiation dose (8.0, 9.0, 9.5 and 10 Gy). DZ 100 mg/kg elevated radiation LD(50) from 9.1 to 10.0 Gy, indicating the DMF of 1.09.
对脱氢姜酮(DZ)在瑞士白化小鼠体内外的抗氧化潜力以及对全身γ辐射的体内辐射防护活性进行了研究。DZ在室温下能清除ABTS(2,2'-偶氮双(3-乙基苯并噻唑啉-6-磺酸))和DPPH(1,1-二苯基-2-苦基肼)自由基。在pH 7.4条件下,DZ能将Fe(III)还原为Fe(II),并在无细胞体系中清除由NADH/吩嗪硫酸甲酯产生的超氧自由基。DZ还能清除硝普钠产生的一氧化氮自由基。为评估辐射防护活性,在药物处理30分钟后,以1.66 Gy/分钟的剂量率对小鼠进行全身γ辐射。腹腔注射75、100和125 mg/kg的DZ预处理可降低辐射诱导的死亡率,并延长平均存活时间(MST)。发现腹腔注射100 mg/kg的DZ是预防辐射病和延长MST最有效的剂量。100 mg/kg的DZ预处理可维持脾脏指数(脾脏重量/体重×100),并刺激内源性脾集落形成单位(CFU)。100 mg/kg的DZ预处理可使受辐照小鼠空肠的绒毛高度维持在接近正常水平,防止黏膜糜烂和基底膜损伤。然而,在DZ预处理的小鼠中未观察到死亡、炎症和有丝分裂细胞的显著减少,但隐窝细胞增殖和再生有所增加。100 mg/kg的DZ预处理在假照射后2、4和8小时显著提高了小鼠体内的内源性抗氧化酶(GSH、GST和SOD)水平。DZ预处理可显著防止辐射诱导的内源性抗氧化酶水平下降。75和100 mg/kg的DZ预处理可减少小鼠骨髓中辐射诱导的微核多色红细胞(MPCE)和正染红细胞(MNCE)。DZ还能维持受辐照小鼠中多色红细胞(PCE)和正染红细胞(NCE)的比例(P/N比)。通过使用分级辐射剂量(8.0、9.0、9.5和10 Gy)计算剂量修正因子(DMF)。100 mg/kg的DZ可将辐射LD(50)从9.1提高到10.0 Gy,表明DMF为1.09。