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首页> 外文期刊>Journal of Neuroscience Methods >Detection of salicylate and its hydroxylated adducts 2,3- and 2,5-dihydroxybenzoic acids as possible indices for in vivo hydroxyl radical formation in combination with catechol- and indoleamines and their metabolites in cerebrospinal fluid and brain
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Detection of salicylate and its hydroxylated adducts 2,3- and 2,5-dihydroxybenzoic acids as possible indices for in vivo hydroxyl radical formation in combination with catechol- and indoleamines and their metabolites in cerebrospinal fluid and brain

机译:将水杨酸和其羟基化加合物的2,3-和2,5-二羟基苯甲酸的检测与体内羟基根自由基形成的可能指标与儿茶酚和吲哚胺和脑脊液和脑中的代谢物联合

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It has been suggested that salicylate (SA) hydroxylation can be used to detect hydroxyl radical formation in vivo. Here we describe a rapid and sensitive HPLC method using ultraviolet absorbance (UV) and electrochemical detection (EC) to detect SA (UV), its hydroxylated adducts 2,3- and 2,5-dihydroxybenzoic acids (DHBA) and catechol in combination with catechol- and indoleamines and related metabolites (EC) in one isocratic run. These compounds were measured in acidified cerebrospinal fluid (CSF) and perchlorate extracts of striatal tissues of untreated and SA-loaded rats (300 mg/kg SA, i.p.). Peaks were identified by comparing retention times of samples and standards, by adding standards to biological samples, by voltamograms, and by comparing chromatograms of manganese (Mn2+)-injected striata of SA-loaded rats with several control conditions. Six hours after unilateral injection of 0.4 mumol Mn2+ into striatum, 2,3-DHBA and 2,5-DHBA levels in striatum were respectively 4- and 7-fold increased as compared to non-injected (contralateral) striata, suggesting in vivo hydroxyl radical formation. In addition, dopamine and serotonin levels were depleted in Mn(2+)-injected striata by 46% and 64%, respectively. In CSF of Mn(2+)-injected rats, DHBA/SA ratios were not significantly changed as compared to those of control rats. In conclusion, the described technique can be applied to study in vivo hydroxyl radical formation in direct relation with dopaminergic and serotonergic neurotransmitter changes during neurotoxic processes.
机译:已经提出,水杨酸盐(SA)羟基化可用于检测体内羟基根自由基。在这里,我们描述了一种使用紫外线吸收(UV)和电化学检测(EC)来检测SA(UV)的快速敏感的HPLC方法,其羟基化加合物2,3-和2,5-二羟基苯甲酸(DHBA)和儿茶酚组合在一个等级运行中,儿茶酚和indolemines和相关的代谢物(ec)。在酸化的脑脊髓液(CSF)中测量这些化合物,并在未处理的大鼠和SA加载大鼠的纹状体组织的高氯酸盐提取物(300mg / kg sa,i.p.)。通过比较样品和标准的保留时间来鉴定峰,通过将标准添加到生物样品,通过伏特标准,并通过比较锰(MN2 +)的色谱图 - 具有几种对照条件的载荷大鼠的锰(Mn2 +)的色谱图。单侧注射0.4 mumol Mn2 +进入纹状体的六小时,纹状体中的2,3-DHBA和2,5-DHBA水平分别为4-倍,与未注射(对侧)斯特拉相比,在体内羟基上表明根本形成。此外,多巴胺和血清素水平分别在Mn(2 +)中耗尽46%和64%。在Mn(2 +)的CSF中 - 与对照大鼠相比,DHBA / SA比没有显着改变。总之,所描述的技术可以应用于在神经毒性过程中与多巴胺能和Serotonergic神经递质的直接关系中的体内羟基自由基。

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