1)  zinc protoporphyrin
锌-原卟啉
1.
Method Isolated perfused rat liver model was set up and rats were given cobalt-protoporphyrin (CoPP) as an HO-1 inducer and zinc protoporphyrin (ZnPP) as an HO-1 inhibitor.
方法利用大鼠肝脏离体再灌注模型,用钴-原卟啉(cobalt protoporphyrin,CoPP)和锌-原卟啉(zinc protoporphyrin,ZnPP)特异地诱导和抑制HO-1,观察肝脏保存0、6、24h,灌注2h后的胆汁生成量,灌流液AST、LDH、TNF-α和IL-6的活性,肝脏MDA的含量,肝组织HO-1蛋白表达的Western印迹,细胞凋亡情况等。
2)  Zn-protoporphyrinⅨ
锌-原卟啉Ⅸ
1.
The bright red color of dry-cured ham made without nitrate or nitrite is caused by Zn-protoporphyrinⅨ.
腌制剂中不添加硝酸盐或亚硝酸盐的干腌火腿的亮红色是锌-原卟啉Ⅸ形成的。
3)  ZPP
锌原卟啉
1.
Application of ZPP IN The diagnosis of malignant tumor;
锌原卟啉(ZPP)在恶性肿瘤诊断中的研究应用
2.
Analysis on ZPP of 555 Cases of Children Aged from 6 to 7 in Liwan Area,Guangzhou;
广州市荔湾区555例学龄儿童血液锌原卟啉测定结果分析
3.
Methods:Hb?ZPP?SF in blood from the microcirculation were tested.
方法 :采用外周血检测血红蛋白、锌原卟啉、血清铁蛋白。
4)  ZnPP
锌原卟啉
1.
Objective To explore the effect of Znic Protoporphyrin(ZnPP) and its mechanism on the hemeoxygenase-1(HO-1) mRNA expression in brain tissue of developing rat with febrile convulsion(FC).
目的探讨锌原卟啉(ZnPP)对高热惊厥(FC)发育期大鼠血红素氧合酶(HO)-1mRNA表达的影响及作用机制。
2.
Objective:The main purpose of the present study was to explore the effect of Znpp on the carbon monoxide(CO) change and the brain damage caused by febrile convulsion(FC)in rat.
目的:研究锌原卟啉对大鼠高热惊厥脑损伤CO变化的影响及作用机制。
5)  zinc protoporphyrin
锌原卟啉
1.
Study of blood zinc protoporphyrin and neurotransmitter in children with sensory integrative dysfunction.;
感觉统合失调儿童血锌原卟啉和某些神经递质水平研究
2.
To search for the value of zinc protoporphyrin measurement in early diagnosis with lead poisoning and iron deficiency anemia.
[目的 ]探讨锌原卟啉测定诊断儿童铅中毒与贫血可能性。
6)  Zincprotoporphrin
锌原卟啉
1.
Objective To st udy value Zincprotoporphrin(Znpp)application in the brain of neonatal rats fol lowing cerebral hypoxi-a-ischemia.
目的探讨锌原卟啉干预对新生大鼠缺血缺氧性脑损伤的影响。
参考词条
补充资料:尿卟啉原I合成酶
分子式:
CAS号:

性质:又称尿卟啉原I合成酶。参与血红素生物合成中间过程的酶。催化4分子卟胆原(也称胆色素原)脱氨生成线性四吡咯,故也称胆色素原脱氨酶。所生成的线性四吡咯在尿卟啉原III同合成酶(UPG III cosynthase)催化下生成尿卟啉原III;若无UPG III同合成酶存在时可自然环化生成尿卟啉原I。正常生理情况下,UPG III的生成是主要途径,两者之比为10000。

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