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Enhancing photodynamic therapy by utilizing combination approaches with small molecule inhibitors.

机译:通过与小分子抑制剂的联合使用方法来增强光动力疗法。

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摘要

Photodynamic therapy (PDT) is increasingly being used as a treatment method for precancerous lesions and superficial non-melanoma skin cancers. The photodynamic effect leads to tumor damage via several complementary mechanisms: direct damage to tumor cells, vascular injury and generation of immune responses. Photosensitizers can be delivered via many routes, including as a topical application as with prodrug aminolevulinic acid (ALA) and its esters. ALA is a precursor in the heme biosynthetic pathway to endogenous photosensitizer protoporphyrin IX (PpIX). Malignant and premalignant cells are known to have altered activity of key heme synthesis enzymes and lower levels of iron, therefore these cells can accumulate PpIX at a greater rate compared to nonmalignant cells. ALA-PDT treatment is beneficial as it causes negligible damage to connective tissue and thus minimal scarring. However, while ALA-PDT is efficacious in many dermatologic applications it has to date had limited success in the treatment of nodular and invasive lesions of the skin.;Published studies have shown that many signal transduction cascades are altered by the PDT induced photoreaction. This includes activation of signaling events which may be counterproductive to the intended PDT-induced cell toxicity. The Met pathway was shown to play a significant role in cancer progression and it therefore stands to reason that interference with this pathway may increase sensitivity to PpIX and HPPH PDT. These studies with Met kinase inhibitors provided interesting data which led to the hypothesis that inhibition of Met and the downstream signaling cascade caused a specific increase in PpIX production which correlated to an enhanced photodynamic effect.;Most photosensitizers cause damage to the tumor vascular supply. However, studies using laser Doppler perfusion imaging demonstrated a minimal decrease in blood flow following topical ALA-PDT, suggesting that the main tumor damaging effect of topical ALA is direct cytotoxicity to the tumor cells. Thus, it is hypothesized that the addition of a tumor-specific vascular damaging agent will improve the response to topical ALA-PDT. 5,6-Dimethylxanthenone-4-acetic-acid (DMXAA) was shown to increase vascular permeability and decrease blood flow in murine and human tumors. Previous data reported a marked enhancement of antitumor activity when PDT (Photofrin, HPPH) was combined with low-dose i.p. DMXAA. This thesis describes the first attempt to combine topically applied DMXAA with ALA-PDT. The combination approach resulted in a significant decrease in tumor volume compared to tumors treated with ALA-PDT alone. This preliminary study suggests a potential role for topical DMXAA in combination with ALA-PDT in the dermatologic setting.
机译:光动力疗法(PDT)越来越多地用作癌前病变和浅表性非黑色素瘤皮肤癌的治疗方法。光动力效应通过几种互补机制导致肿瘤损害:对肿瘤细胞的直接损害,血管损伤和免疫反应的产生。光敏剂可以通过许多途径来递送,包括与前药氨基乙酰丙酸(ALA)及其酯一样作为局部应用。 ALA是血红素生物合成途径中内源性光敏剂原卟啉IX(PpIX)的前体。已知恶性和恶性前细胞的关键血红素合成酶的活性发生了变化,铁含量降低,因此与非恶性细胞相比,这些细胞可以更高的速率积累PpIX。 ALA-PDT治疗是有益的,因为它对结缔组织的损害可忽略不计,因此疤痕最少。然而,尽管ALA-PDT在许多皮肤病学应用中是有效的,但迄今为止在治疗皮肤的结节性和浸润性病变方面取得的成功有限。出版的研究表明,PDT诱导的光反应改变了许多信号转导级联反应。这包括激活可能与预期的PDT诱导的细胞毒性相反的信号传递事件。已证明Met途径在癌症进展中起着重要作用,因此有理由认为干扰此途径可能会增加对PpIX和HPPH PDT的敏感性。这些关于Met激酶抑制剂的研究提供了有趣的数据,从而得出这样的假设:Met的抑制和下游信号传导级联引起PpIX产量的特定增加,这与光动力效应的增强有关。大多数光敏剂会损害肿瘤血管的供应。然而,使用激光多普勒灌注成像的研究表明,局部用ALA-PDT后血流量减少最小,这表明局部用ALA对肿瘤的主要损害作用是对肿瘤细胞的直接细胞毒性。因此,假设添加肿瘤特异性血管损伤剂将改善对局部ALA-PDT的应答。研究表明,5,6-二甲基黄嘌呤酮-4-乙酸(DMXAA)可增加鼠类和人类肿瘤的血管通透性并减少血流量。先前的数据报道,PDT(Photofrin,HPPH)与低剂量腹膜内注射联合使用时,抗肿瘤活性显着增强。 DMXAA。本文描述了将局部应用的DMXAA与ALA-PDT相结合的首次尝试。与单独用ALA-PDT治疗的肿瘤相比,组合方法导致肿瘤体积显着减少。这项初步研究表明,局部DMXAA与ALA-PDT联合在皮肤病学研究中具有潜在作用。

著录项

  • 作者

    Marrero, Allison M.;

  • 作者单位

    State University of New York at Buffalo.;

  • 授予单位 State University of New York at Buffalo.;
  • 学科 Health Sciences Pharmacology.;Health Sciences Oncology.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 224 p.
  • 总页数 224
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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