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与5-氨基乙酰丙酸一起孵育的细胞中原卟啉IX的光漂白。

Photobleaching of protoporphyrin IX in cells incubated with 5-aminolevulinic acid.

作者信息

Moan J, Streckyte G, Bagdonas S, Bech O, Berg K

机构信息

Institute for Cancer Research, Montebello, Oslo, Norway.

出版信息

Int J Cancer. 1997 Jan 6;70(1):90-7. doi: 10.1002/(sici)1097-0215(19970106)70:1<90::aid-ijc14>3.0.co;2-h.

Abstract

Protoporphyrin IX (Pp IX) is the main photosensitizer in photochemotherapy with 5-aminolevulinic acid (ALA). Pp IX is photolabile and the present work shows that 70-95% of Pp IX in cells is degraded by clinically relevant light exposures (40-200 J cm(-2) at 630 nm). During light exposure a small yield of photoprotoporphyrin, which is also photolabile, is formed. A substantial fraction of Pp IX in cells incubated with ALA is bound to proteins. During light exposure these binding sites are destroyed, those close to tryptophan residues being the most sensitive. The rate of photodegradation of Pp IX in the cells is dependent on the initial concentration of Pp IX. The degradation mechanisms are therefore not only first order processes. Different degradation rates appear to be related to different types of binding sites. During light exposure, Pp IX molecules appear to move to different binding sites, evidently sites that are more vital for cell survival. Thus, the yield of photoinactivation of the cells, as measured per emitted photon of Pp IX fluorescence, increased during light exposure.

摘要

原卟啉IX(Pp IX)是5-氨基乙酰丙酸(ALA)光化学疗法中的主要光敏剂。Pp IX对光不稳定,目前的研究表明,细胞中70-95%的Pp IX会因临床相关的光照(630 nm波长下40-200 J cm(-2))而降解。在光照过程中,会形成少量同样对光不稳定的光原卟啉。与ALA一起孵育的细胞中,相当一部分Pp IX与蛋白质结合。在光照过程中,这些结合位点会被破坏,靠近色氨酸残基的位点最为敏感。细胞中Pp IX的光降解速率取决于Pp IX的初始浓度。因此,降解机制并非仅是一级过程。不同的降解速率似乎与不同类型的结合位点有关。在光照过程中,Pp IX分子似乎会移动到不同的结合位点,显然是对细胞存活更为关键的位点。因此,以Pp IX荧光发射的每个光子来衡量,细胞的光灭活产率在光照过程中增加。

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