皮肤黑色素瘤与酚类化合物的嘌呤能调节作用

IF 3 4区 医学 Q2 NEUROSCIENCES Purinergic Signalling Pub Date : 2024-03-18 DOI:10.1007/s11302-024-10002-5
Geórgia de Carvalho Braga, João Victor Coiado, Vitória Capelli de Melo, Brenno Bianchoni Loureiro, Margarete Dulce Bagatini
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引用次数: 0

摘要

皮肤黑色素瘤是一种复杂的病理现象,目前仅有的治疗方法缺乏有效性,而且会产生许多不良反应。在这种情况下,有必要分析其他可能的治疗方法,如酚类化合物的作用。这些物质已被证实具有抗肿瘤作用,但作为一种抗击黑色素瘤的疗法,它们的作用还没有被充分发掘出来。此外,嘌呤能受体及其系统分子通过多种途径参与肿瘤的形成,如外显子的作用和受体的活性,特别是 P2Rs 家族,其结构可以通过酚类化合物进行调节。因此,必须开展更多的研究,以解释嘌呤能系统在皮肤黑色素瘤致癌过程中的活性以及酚类化合物对其调节作用,从而开发出新的疗法来对抗这种令人恐惧的侵袭性癌症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cutaneous melanoma and purinergic modulation by phenolic compounds

Cutaneous melanoma is a complex pathology that still has only treatments that lack efficiency and offer many adverse effects. Due to this scenario emerges the need to analyze other possible treatments against this disease, such as the effect of phenolic compounds. These substances have proven antitumor effects, but still have not been fully explored as a form of therapy to combat melanoma. Also, the purinergic receptors, along with its system molecules, take part in the formation of tumors from many pathways, such as the actions of ectoenzymes and receptors activity, especially P2Rs family, and are formed by structures that can be modulated by the phenolic compounds. Therefore, more studies have to be made with the aim of explaining the purinergic system activity in carcinogenesis of cutaneous melanoma and the effects of its modulation by phenolic compound, in order to enable the development of new therapies to combat this aggressive and feared cancer.

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来源期刊
Purinergic Signalling
Purinergic Signalling 医学-神经科学
CiteScore
6.60
自引率
17.10%
发文量
75
审稿时长
6-12 weeks
期刊介绍: Nucleotides and nucleosides are primitive biological molecules that were utilized early in evolution both as intracellular energy sources and as extracellular signalling molecules. ATP was first identified as a neurotransmitter and later as a co-transmitter with all the established neurotransmitters in both peripheral and central nervous systems. Four subtypes of P1 (adenosine) receptors, 7 subtypes of P2X ion channel receptors and 8 subtypes of P2Y G protein-coupled receptors have currently been identified. Since P2 receptors were first cloned in the early 1990’s, there is clear evidence for the widespread distribution of both P1 and P2 receptor subtypes in neuronal and non-neuronal cells, including glial, immune, bone, muscle, endothelial, epithelial and endocrine cells.
期刊最新文献
Correction to: Preparation and preliminary evaluation of a tritium-labeled allosteric P2X4 receptor antagonist. Machine learning-aided search for ligands of P2Y6 and other P2Y receptors. Purinergic regulation of pulmonary vascular tone. Role of ecto-5'-nucleotidase in bladder function activity and smooth muscle contractility. Unexpected role of microglia and P2Y12 in the induction of and emergence from anesthesia.
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