重新评估血小板活化因子及其炎症信号转导和抑制剂在癌症和抗癌策略中的作用。

IF 3.3 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Alexandros Tsoupras, Theodora Adamantidi, Marios Argyrios Finos, Athanassios Philippopoulos, Paraskevi Detopoulou, Ifigeneia Tsopoki, Maria Kynatidou, Constantinos A Demopoulos
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引用次数: 0

摘要

自 2000 年代以来,我们通过特定的炎症介质,包括血小板活化因子(PAF)和 PAF 受体(PAFR)相关信号,概述了炎症在癌症的多个方面所起的多方面作用,这些介质会影响重要的炎症连接和细胞相互作用,而这些都与肿瘤相关的炎症表现有关。与疾病相关的未解决的慢性炎症反应可促进癌变,这一点现已得到公认。与此同时,肿瘤本身也能通过引发与炎症相关的恶性循环来促进其发展和转移,而 PAF 及其信号传导在恶性循环中扮演着至关重要的角色,其最终结果通常会导致肿瘤生长和血管生成。同时,新的证据表明,PAF 及其信号传导还通过诱导抗肿瘤免疫反应或促进肿瘤复发,与几种与炎症相关的癌症治疗方法相互作用。在这篇综述文章中,我们对 PAF 及其信号传导在癌症所有这些重要方面的影响的现有知识和未来前景进行了全面的重新评估。文章评估了 PAF 抑制剂和 PAF 代谢的天然或合成调节剂对肿瘤、肿瘤进展和转移的潜在有益作用。重点是具有双重抗 PAF 和抗癌活性的天然和合成分子(Bio-DAPAC-tives),这些分子已通过临床试验证实了其抗肿瘤效力,以及构成一类新型强效抑制剂的金属基抗炎性介质。此外,还讨论了这些化合物可能促进抗肿瘤效果、调节炎症细胞作用和免疫反应的方式。此外,还评估了针对 PAF、其代谢和受体(包括 PAF 相关的炎症信号转导)的局限性和未来展望,作为涉及炎症和免疫反应的抗肿瘤策略的一部分,以改善疗效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Re-Assessing the Role of Platelet Activating Factor and Its Inflammatory Signaling and Inhibitors in Cancer and Anti-Cancer Strategies.

Since 2000s, we have outlined the multifaceted role of inflammation in several aspects of cancer, via specific inflammatory mediators, including the platelet activating factor (PAF) and PAF-receptor (PAFR) related signaling, which affect important inflammatory junctions and cellular interactions that are associated with tumor-related inflammatory manifestations. It is now well established that disease-related unresolved chronic inflammatory responses can promote carcinogenesis. At the same time, tumors themselves are able to promote their progression and metastasis, by triggering an inflammation-related vicious cycle, in which PAF and its signaling play crucial role(s), which usually conclude in tumor growth and angiogenesis. In parallel, new evidence suggests that PAF and its signaling also interact with several inflammation-related cancer treatments by inducing an antitumor immune response or, conversely, promoting tumor recurrence. Within this review article, the current knowledge and future perspectives of the implication of PAF and its signaling in all these important aspects of cancer are thoroughly re-assessed. The potential beneficial role of PAF-inhibitors and natural or synthetic modulators of PAF-metabolism against tumors, tumor progression and metastasis are evaluated. Emphasis is given to natural and synthetic molecules with dual anti-PAF and anti-cancer activities (Bio-DAPAC-tives), with proven evidence of their antitumor potency through clinical trials, as well as on metal-based anti-inflammatory mediators that constitute a new class of potent inhibitors. The way these compounds may promote anti-tumor effects and modulate the inflammatory cellular actions and immune responses is also discussed. Limitations and future perspectives on targeting of PAF, its metabolism and receptor, including PAF-related inflammatory signaling, as part(s) of anti-tumor strategies that involve inflammation and immune response(s) for an improved outcome, are also evaluated.

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