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δ-氨基乙酰丙酸(ALA)或ALA酯诱导的体外荧光、毒性和光毒性。

In vitro fluorescence, toxicity and phototoxicity induced by delta-aminolevulinic acid (ALA) or ALA-esters.

作者信息

Eléouet S, Rousset N, Carré J, Bourré L, Vonarx V, Lajat Y, Beijersbergen van Henegouwen G M, Patrice T

机构信息

Département Laser, Hôpital Laënnec, Nantes, France.

出版信息

Photochem Photobiol. 2000 Apr;71(4):447-54. doi: 10.1562/0031-8655(2000)071<0447:ivftap>2.0.co;2.

Abstract

Synthesis of delta-aminolevulinic acid (ALA) derivatives is a promising way to improve the therapeutic properties of ALA, particularly cell uptake or homogeneity of protoporphyrin IX (PpIX) synthesis. The fluorescence emission kinetics and phototoxic properties of ALA-n-pentyl ester (E1) and R,S-ALA-2-(hydroxymethyl) tetrahydrofuranyl ester (E2) were compared with those of ALA and assessed on C6 glioma cells. ALA (100 micrograms/mL), E1 and E2 (10 micrograms/mL) induced similar PpIX-fluorescence kinetics (maximum between 5 and 7 h incubation), fluorescence being limited to the cytoplasm. The 50% lethal dose occurred after 6 h with 45, 4 and 8 micrograms/mL of ALA, E1 and E2, respectively. ALA, E1 and E2 induced no dark toxicity when drugs were removed after 5 min of incubation. However, light (25 J/cm2) applied 6 h after 5 min incubation with 168 micrograms/mL of each compound induced 85% survival with ALA, 27% with E1 and 41% with E2. Increasing the incubation time with ALA, E1 and E2 before washing increased the phototoxicity, but E1 and E2 remained more efficient than ALA, regardless of incubation time. ALA-esters were more efficient than ALA in inducing phototoxicity after short incubation times, probably through an increase of the amount of PpIX synthesized by C6 cells.

摘要

合成δ-氨基乙酰丙酸(ALA)衍生物是改善ALA治疗特性的一种有前景的方法,特别是在细胞摄取或原卟啉IX(PpIX)合成的均匀性方面。将ALA正戊酯(E1)和R,S-ALA-2-(羟甲基)四氢呋喃酯(E2)的荧光发射动力学和光毒性特性与ALA进行比较,并在C6胶质瘤细胞上进行评估。ALA(100微克/毫升)、E1和E2(10微克/毫升)诱导出相似的PpIX荧光动力学(孵育5至7小时之间达到最大值),荧光仅限于细胞质。分别用45、4和8微克/毫升的ALA、E1和E2处理6小时后,50%致死剂量出现。当孵育5分钟后去除药物时,ALA、E1和E2均未诱导暗毒性。然而,在与168微克/毫升的每种化合物孵育5分钟后6小时施加光照(25焦/平方厘米),ALA处理后的细胞存活率为85%,E1为27%,E2为41%。在洗涤前增加ALA、E1和E2的孵育时间会增加光毒性,但无论孵育时间如何,E1和E2仍然比ALA更有效。在短孵育时间后,ALA酯在诱导光毒性方面比ALA更有效,这可能是通过增加C6细胞合成的PpIX量来实现的。

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