首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Biodistribution and bioactivity of tetra-pegylated meta-tetra(hydroxyphenyl)chlorin compared to native meta-tetra(hydroxyphenyl)chlorin in a rat liver tumor model
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Biodistribution and bioactivity of tetra-pegylated meta-tetra(hydroxyphenyl)chlorin compared to native meta-tetra(hydroxyphenyl)chlorin in a rat liver tumor model

机译:在大鼠肝肿瘤模型中,四聚乙二醇化间四(羟苯基)二氢卟酚与天然间四(羟苯基)二氢卟酚的生物分布和生物活性

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It has been proposed that the construction of a photosensitizer-polymer conjugate would lead to an increased selective retention of the drug in tumor tissue resulting in an enhancement of selective turner destruction by light in photodynamic therapy. In this study the kinetics of a tetrapegylated derivative of meta-tetra(hydroxyphenyl)chlorin (mTHPC-PEG) were compared with those of native meta-tetra(hydroxyphenyl)chlorin (mTHPC) in a rat liver tumor model. In addition, the time course of bioactivity of both drugs was studied in normal liver tissue. Pegylation of mTHPC resulted in a two-fold increase in the plasma half-life time, a five-fold decrease in Liver uptake and an increase in the tumor selectivity at early time intervals after drug administration, However, although mTHPC concentrations in liver decrease rapidly with time, mTHPC-PEG liver concentrations increased as a function of time. This led to a loss of tumor selectivity at all but the earliest time points, whereas with mTHPC tumor selectivity increased with time. For both drugs the time course of bioactivity in the liver parallels drug concentration levels with extensive necrosis after irradiation of mTHPC-PEG-sensitized liver tissue up to drug-light intervals of 120 h, It is concluded that on balance mTHPC-PEG does not appear to show any benefits over native mTHPC for the treatment of liver tumors, as normal liver tissue accumulates the compound. However, pegylation is a potentially promising strategy,vith an increase in tumor selectivity and reduced liver uptake if accumulation in the liver can be prevented. [References: 29]
机译:已经提出,光敏剂-聚合物缀合物的构建将导致药物在肿瘤组织中的选择性保留增加,从而导致光动力疗法中光对选择性特纳破坏的增强。在这项研究中,在大鼠肝肿瘤模型中比较了间四(羟苯基)二氢卟酚(mTHPC-PEG)的四聚乙二醇化衍生物与天然间四(羟苯基)二氢卟酚(mTHPC)的动力学。另外,在正常肝组织中研究了这两种药物的生物活性的时程。聚乙二醇化的mTHPC导致血浆半衰期延长了两倍,在药物给药后的早期,肝脏的摄取减少了五倍,肝脏的选择性增加,但是,尽管肝脏中mTHPC的浓度迅速降低随着时间的流逝,mTHPC-PEG肝浓度随时间增加。除了最早的时间点,这导致肿瘤选择性的丧失,而使用mTHPC时,肿瘤的选择性随时间增加。对于这两种药物,经过mTHPC-PEG敏化的肝组织照射直至120h的光照间隔,肝脏中生物活性的时间进程与大量坏死的药物浓度水平平行,因此得出结论,总的来说不会出现mTHPC-PEG由于天然肝组织会积聚该化合物,因此在治疗肝肿瘤方面显示出优于天然mTHPC的任何益处。然而,聚乙二醇化是一种潜在的有前景的策略,如果可以防止肝脏中的积累,则可以增加肿瘤的选择性并减少肝脏的摄取。 [参考:29]

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