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人类真黑素小体和褐黑素小体的氧化电位。

Oxidation potentials of human eumelanosomes and pheomelanosomes.

作者信息

Samokhvalov Alexander, Hong Lian, Liu Yan, Garguilo Jacob, Nemanich Robert J, Edwards Glenn S, Simon John D

机构信息

Department of Chemistry, Duke University, Durham, NC 27708, USA.

出版信息

Photochem Photobiol. 2005 Jan-Feb;81(1):145-8. doi: 10.1562/2004-07-23-RC-245.

Abstract

Eumelanosomes and pheomelanosomes isolated from black and red human hair, respectively, were studied by photoelectron emission microscopy (PEEM). PEEM images were collected at various wavelengths between 207 and 344 nm, using the spontaneous emission output of the Duke OK-4 free electron laser (FEL). Analysis of the FEL-PEEM data revealed ionization thresholds of 4.6 and 3.9 eV corresponding to oxidation potentials of -0.2 and +0.5 V vs normal hydrogen electrode for eumelanosomes and pheomelanosomes, respectively. The difference in oxidation potential is attributed to the pigment content of the melanosome, namely whether it contains primarily eumelanin and pheomelanin. The effect of added melanosomes on the reduction of Fe(III)-cytochrome showed pheomelanosomes are stronger reducing agents than eumelanosomes, consistent with the measured oxidation potentials. The FEL-PEEM experiment offers to be an important new approach for quantifying the effects of age, oxidation and metal accumulation on the oxidation potentials of intact melanosomes.

摘要

分别从黑色和红色人发中分离出的真黑素小体和褐黑素小体,通过光电子发射显微镜(PEEM)进行了研究。使用杜克OK - 4自由电子激光(FEL)的自发发射输出,在207至344 nm之间的各种波长下收集PEEM图像。对FEL - PEEM数据的分析表明,真黑素小体和褐黑素小体的电离阈值分别为4.6和3.9 eV,对应相对于标准氢电极的氧化电位为-0.2和+0.5 V。氧化电位的差异归因于黑素小体的色素含量,即其主要含有真黑素还是褐黑素。添加的黑素小体对Fe(III)-细胞色素还原的影响表明,褐黑素小体比真黑素小体是更强的还原剂,这与测量的氧化电位一致。FEL - PEEM实验有望成为一种重要的新方法,用于量化年龄、氧化和金属积累对完整黑素小体氧化电位的影响。

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