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首页> 外文期刊>Molecular pharmacology. >Rapid and robust protection against cocaine-induced lethality in rats by the bacterial cocaine esterase.
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Rapid and robust protection against cocaine-induced lethality in rats by the bacterial cocaine esterase.

机译:细菌可卡因酯酶对大鼠的可卡因诱导的致死性具有快速而强大的保护作用。

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摘要

There is no approved means to prevent the toxic actions of cocaine. Cocaine esterase (CocE) is found in a rhodococcal strain of bacteria that grows in the rhizosphere soil around the coca plant and has been found to hydrolyze cocaine in vitro. The esteratic activity of CocE (0.1-1.0 mg, i.v.) was characterized and confirmed in vivo by assessing its ability to prevent cocaine-induced convulsions and lethality in the rat. The therapeutic efficiency of the enzyme was demonstrated by the increasing dose of cocaine (100-1000 mg/kg, i.p.) required to produce toxic effects after a single intravenous injection of CocE. The enzyme demonstrated rapid kinetics for cocaine degradation in rat and human serum. Two catalytically inactive mutants of CocE (S117A or Y44F) failed to protect rats from the toxic effects of cocaine, confirming the protective effects are due to hydrolytic activity. However, butyrylcholinesterase, an endogenous cocaine-hydrolyzing enzyme, was inactive (1.3-13 mg, i.v.) in this rat toxicity procedure. Furthermore, CocE did not block the lethality of WIN-35065-2 (560 mg/kg, i.p.), a cocaine analog that lacks the benzoyl ester moiety targeted by CocE. This characterization of CocE provides preliminary evidence that the enzyme could serve as a suitable antidote to cocaine toxicity in humans.
机译:没有批准的方法来防止可卡因的毒性作用。可卡因酯酶(CocE)在古柯球菌周围的根际土壤中生长的细菌的红球菌菌株中发现,并已发现可在体外水解。通过评估其在大鼠中预防可卡因引起的惊厥和致死性的能力,在体内对CocE(0.1-1.0 mg,i.v。)的酯化活性进行了表征和确认。单次静脉注射CocE后产生毒性作用所需的可卡因剂量增加(100-1000 mg / kg,i.p.)证明了该酶的治疗效率。该酶在大鼠和人血清中显示出可卡因降解的快速动力学。 CocE的两个无催化活性的突变体(S117A或Y44F)未能保护大鼠免受可卡因的毒性作用,从而证实了这种保护作用是由于水解活性所致。但是,丁酰胆碱酯酶是一种内源性可卡因水解酶,在该大鼠毒性程序中没有活性(1.3-13 mg,静脉内)。此外,CocE并没有阻止WIN-35065-2(560 mg / kg,腹腔注射)的致死性,该可卡因类似物缺少CocE靶向的苯甲酸酯部分。 CocE的这种特性提供了初步的证据,证明该酶可以作为对人类可卡因毒性的合适解毒剂。

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