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From nature to bedside: Pro-survival and cell death mechanisms as therapeutic targets in cancer treatment

机译:从大自然到床边:生存和细胞死亡机制作为癌症治疗的靶标

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Cell death is an important physiological regulator during development, tissue homeostasis and stress response but it is also a protective tumor suppressive mechanism. Tumor cells almost universally acquire the ability to evade cell death pathways that in normal cells act as a protective mechanism to remove damaged cells. As a result a population of death-resistant cells with accumulating genetic and epigenetic abnormalities contributes to malignant transformation. Any alteration of the homeostatic balance between survival and death is therefore a critical factor in carcinogenesis. Several forms of cell death exist and cross talk among them is emerging; however, we still miss many molecular details. It becomes essential to revisit the role of each type of cell death to understand interconnections existing between different cell death pathways as well as the network of their mediators to eventually develop new effective strategies to kill cancer cells. More specifically, new therapies based on compounds selectively triggering apoptosis, necrosis or autophagy recently became both appealing and challenging. Despite the rather clear classification of the different cell death modalities according to morphological criteria and the attempt to describe them with distinct signaling pathways, the reality reveals a complex interplay between apoptosis, regulated necrosis and autophagy involving a heterogeneous mix of molecular mediators. Nature, presenting an almost endless plenitude of bioactive scaffolds, can efficiently contribute compounds that allow deciphering the intricate pathways of cell death pathways and thus eventually contribute to selectively target cancer-type specific pathways in an attempt to personalize cancer patient treatment depending on cancer death pathway specificities. The aim of this review is to provide first an overview of molecular cell death specificities and to highlight how compounds of natural origins, with or without hemisynthetic modifications, target unique thanatotic molecular constellations
机译:细胞死亡是发育,组织稳态和应激反应期间的重要生理调节剂,但它也是一种保护性肿瘤抑制机制。肿瘤细胞几乎普遍具有逃避细胞死亡途径的能力,而后者在正常细胞中充当去除受损细胞的保护机制。结果,具有累积的遗传和表观遗传异常的抗死亡细胞群体有助于恶性转化。因此,生存与死亡之间稳态平衡的任何改变都是致癌作用的关键因素。存在几种形式的细胞死亡,并且其中的串扰正在出现。但是,我们仍然错过许多分子细节。重新了解每种细胞死亡的作用,以了解不同细胞死亡途径之间以及它们的介体网络之间存在的相互联系,以最终开发出杀死癌细胞的新有效策略,变得至关重要。更具体地说,基于选择性触发细胞凋亡,坏死或自噬的化合物的新疗法最近变得既有吸引力又具有挑战性。尽管根据形态学标准对不同的细胞死亡方式进行了相当清晰的分类,并试图用不同的信号通路描述它们,但现实揭示出细胞凋亡,调节性坏死和自噬之间复杂的相互作用涉及分子介质的异质混合。大自然呈现出几乎无限的生物活性支架,可以有效地贡献化合物,从而破译细胞死亡途径的复杂途径,从而最终有助于选择性靶向癌症类型的特异性途径,从而尝试根据癌症死亡途径个性化癌症患者的治疗特殊性。这篇综述的目的是首先提供分子细胞死亡特异性的概述,并突出显示具有或不具有半合成修饰的天然来源化合物如何靶向独特的成膜分子构象。

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