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Reprogramming human A375 amelanotic melanoma cells by catalase overexpression: Reversion or promotion of malignancy by inducing melanogenesis or metastasis

机译:通过过氧化氢酶的过表达重编程人A375黑色素性黑色素瘤细胞:通过诱导黑色素生成或转移来逆转或促进恶性肿瘤

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摘要

Advanced melanoma is the most aggressive form of skin cancer. It is highly metastatic and dysfunctional in melanogenesis; two processes that are induced by H2O2. This work presents a melanoma cell model with low levels of H2O2 induced by catalase overexpression to study differentiation/dedifferentiation processes. Three clones (A7, C10 and G10) of human A375 amelanotic melanoma cells with quite distinct phenotypes were obtained. These clones faced H2O2 scavenging by two main strategies. One developed by clone G10 where ROS increased. This resulted in G10 migration and metastasis associated with the increased of cofilin-1 and CAP1. The other strategy was observed in clone A7 and C10, where ROS levels were maintained reversing malignant features. Particularly, C10 was not tumorigenic, while A7 reversed the amelanotic phenotype by increasing melanin content and melanocytic differentiation markers. These clones allowed the study of potential differentiation and migration markers and its association with ROS levels in vitro and in vivo, providing a new melanoma model with different degree of malignancy.
机译:晚期黑素瘤是皮肤癌的最积极形式。它在黑色素生成中具有高度转移性和功能障碍;过氧化氢诱导的两个过程。这项工作提出了过氧化氢酶过表达诱导的低水平H2O2黑色素瘤细胞模型,以研究分化/去分化过程。获得了具有明显不同表型的人A375釉质黑素瘤细胞的三个克隆(A7,C10和G10)。这些克隆面临两种主要的清除H2O2的方法。一种由克隆G10开发,其中ROS增加。这导致G10迁移和转移与cofilin-1和CAP1的增加有关。另一种策略是在克隆A7和C10中观察到的,在这些克隆中ROS水平保持不变,可逆转恶性肿瘤特征。特别地,C10不是致癌的,而A7通过增加黑色素含量和黑素细胞分化标记而逆转了搪瓷表型。这些克隆允许在体外和体内研究潜在的分化和迁移标记及其与ROS水平的关联,从而提供了一种具有不同恶性程度的黑色素瘤模型。

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