【2h】

Aberrant

机译:异常

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摘要

Nearly 80% of advanced cancer patients are afflicted with cachexia, a debilitating syndrome characterized by extensive loss of muscle mass and function. Cachectic cancer patients have a reduced tolerance to antineoplastic therapies and often succumb to premature death from the wasting of respiratory and cardiac muscles. Since there are no available treatments for cachexia, it is imperative to understand the mechanisms that drive cachexia in order to devise effective strategies to treat it. Although 25% of metastatic breast cancer patients develop symptoms of muscle wasting, mechanistic studies of breast cancer cachexia have been hampered by a lack of experimental models. Using tumor cells deficient for BARD1, a subunit of the BRCA1/BARD1 tumor suppressor complex, we have developed a new orthotopic model of triple‐negative breast cancer that spontaneously metastasizes to the lung and leads to systemic muscle deterioration. We show that expression of the metal‐ion transporter, Zip14, is markedly upregulated in cachectic muscles from these mice and is associated with elevated intramuscular zinc and iron levels. Aberrant Zip14 expression and altered metal‐ion homeostasis could therefore represent an underlying mechanism of cachexia development in human patients with triple‐negative breast cancer. Our study provides a unique model for studying breast cancer cachexia and identifies a potential therapeutic target for its treatment.
机译:近80%的晚期癌症患者受到恶化的痛苦,一种衰弱的综合征,其特征在于广泛的肌肉质量和功能。静态癌症患者对抗肿瘤疗法的耐受性降低,并且经常屈服于呼吸和心肌萎缩的过早死亡。由于没有CACHEXIA的可用治疗,因此必须了解驱动CACHEXIA的机制,以便设计有效的策略来治疗它。虽然25%的转移性乳腺癌患者发挥肌肉浪费症状,但乳腺癌的机械研究被缺乏实验模型阻碍了。利用BARD1缺乏BARD1的肿瘤细胞,BRCA1 / BARD1肿瘤抑制络合物的亚基,我们已经开发出一种新的二阴性乳腺癌模型,其自发地转移到肺部并导致系统性肌肉劣化。我们表明金属离子转运蛋白ZIP14的表达在这些小鼠的高温凝血肌中显着上调,并且与肌内锌和铁水平升高有关。因此,异常的Zip14表达和改变的金属离子稳态可以代表人类三阴性乳腺癌患者患者的疾病发育的潜在机制。我们的研究为学习乳腺癌恶病毒症提供了独特的模型,并确定了其治疗的潜在治疗目标。

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