首页> 美国卫生研究院文献>British Journal of Pharmacology and Chemotherapy >Manganese increases L-DOPA auto-oxidation in the striatum of the freely moving rat: potential implications to L-DOPA long-term therapy of Parkinsons disease
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Manganese increases L-DOPA auto-oxidation in the striatum of the freely moving rat: potential implications to L-DOPA long-term therapy of Parkinsons disease

机译:锰会增加自由运动大鼠纹状体中的L-DOPA自氧化:对帕金森氏病L-DOPA长期治疗的潜在影响

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摘要

class="enumerated" style="list-style-type:decimal">We have previously shown that manganese enhances L-dihydroxyphenylanine (L-DOPA) toxicity to PC12 cells in vitro. The supposed mechanism of manganese enhancing effect [an increase in L-DOPA and dopamine (DA) auto-oxidation] was studied using microdialysis in the striatum of freely moving rats.Systemic L-DOPA [25 mg kg−1 intraperitoneally (i.p.) twice in a 12 h interval] significantly increased baseline dialysate concentrations of L-DOPA, dihydroxyphenylacetic acid (DOPAC), homovanillic acid (HVA) and uric acid, compared to controls. Conversely, DA and ascorbic acid concentrations were significantly decreased.A L-DOPA oxidation product, presumptively identified as L-DOPA semiquinone, was detected in the dialysate. The L-DOPA semiquinone was detected also following intrastriatal infusion of L-DOPA.In rats given L-DOPA i.p., intrastriatal infusion of N-acetylcysteine (NAC) significantly increased DA and L-DOPA dialysate concentrations and lowered those of L-DOPA semiquinone; in addition, NAC decreased DOPAC+HVA and uric acid dialysate concentrations.In rats given L-DOPA either systemically or intrastriatally, intrastriatal infusion of manganese decreased L-DOPA dialysate concentrations and greatly increased those of L-DOPA semiquinone. These changes were inhibited by NAC infusion.These findings demonstrate that auto-oxidation of exogenous L-DOPA occurs in vivo in the rat striatum. The consequent reactive oxygen species generation may account for the decrease in dialysate DA and ascorbic acid concentrations and increase in enzymatic oxidation of xanthine and DA. L-DOPA auto-oxidation is inhibited by NAC and enhanced by manganese. These results may be of relevance to the L-DOPA long-term therapy of Parkinson's disease.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 先前我们已经表明,锰在体外可增强L-二羟基苯嘌呤(L-DOPA)对PC12细胞的毒性。利用微量渗析法研究了自由运动大鼠纹状体中锰增强作用的机制[L-DOPA和多巴胺(DA)自氧化的增加]。 系统性L-DOPA [25 mg kg与对照组相比,腹膜内(sup> -1 腹膜内(ip)两次,间隔12 h)显着增加了L-DOPA,二羟苯基乙酸(DOPAC),高香草酸(HVA)和尿酸的基线透析液浓度。相反,DA和抗坏血酸的浓度显着降低。 在透析液中检测到一种L-DOPA氧化产物,该产物被认为是L-DOPA半醌。纹状体内注射L-DOPA后也检测到L-DOPA半醌。 在腹腔内给予L-DOPA的大鼠中,纹状体内注射N-乙酰半胱氨酸(NAC)显着增加了DA和L-DOPA透析液的浓度,降低了L-DOPA半醌的含量;此外,NAC降低了DOPAC + HVA和尿酸透析液的浓度。 在全身或纹状体给予L-DOPA的大鼠中,纹状体内注入锰会降低L-DOPA的透析液浓度,并大大增加L-DOPA的浓度。半醌。这些变化受到NAC输注的抑制。 这些发现表明,外源L-DOPA的自氧化作用在大鼠纹状体内发生。结果产生的活性氧可以解释透析液DA和抗坏血酸浓度的降低以及黄嘌呤和DA的酶促氧化的增加。 NAC抑制L-DOPA自氧化,而锰增强L-DOPA自氧化。这些结果可能与帕金森氏病的L-DOPA长期治疗有关。

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