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肿瘤来源的 IL-6 和肿瘤、脂肪和肌肉之间的转信号介导胰腺癌恶病质。

Tumor-derived IL-6 and trans-signaling among tumor, fat, and muscle mediate pancreatic cancer cachexia.

机构信息

Department of Biochemistry, Indiana University School of Medicine, Indianapolis, IN.

Department of Surgery, Indiana University School of Medicine, Indianapolis, IN.

出版信息

J Exp Med. 2021 Jun 7;218(6). doi: 10.1084/jem.20190450.

Abstract

Most patients with pancreatic adenocarcinoma (PDAC) suffer cachexia; some do not. To model heterogeneity, we used patient-derived orthotopic xenografts. These phenocopied donor weight loss. Furthermore, muscle wasting correlated with mortality and murine IL-6, and human IL-6 associated with the greatest murine cachexia. In cell culture and mice, PDAC cells elicited adipocyte IL-6 expression and IL-6 plus IL-6 receptor (IL6R) in myocytes and blood. PDAC induced adipocyte lipolysis and muscle steatosis, dysmetabolism, and wasting. Depletion of IL-6 from malignant cells halved adipose wasting and abolished myosteatosis, dysmetabolism, and atrophy. In culture, adipocyte lipolysis required soluble (s)IL6R, while IL-6, sIL6R, or palmitate induced myotube atrophy. PDAC cells activated adipocytes to induce myotube wasting and activated myotubes to induce adipocyte lipolysis. Thus, PDAC cachexia results from tissue crosstalk via a feed-forward, IL-6 trans-signaling loop. Malignant cells signal via IL-6 to muscle and fat, muscle to fat via sIL6R, and fat to muscle via lipids and IL-6, all targetable mechanisms for treatment of cachexia.

摘要

大多数胰腺导管腺癌 (PDAC) 患者患有恶病质;有些则没有。为了模拟异质性,我们使用了患者来源的原位异种移植物。这些模型模拟了供体的体重减轻。此外,肌肉消耗与死亡率和鼠 IL-6 相关,而人 IL-6 与最大的鼠恶病质相关。在细胞培养和小鼠中,PDAC 细胞引发脂肪细胞 IL-6 表达和肌细胞中的 IL-6 和 IL-6 受体 (IL6R)。PDAC 诱导脂肪细胞脂肪分解和肌肉脂肪变性、代谢紊乱和消耗。从恶性细胞中耗尽 IL-6 使脂肪消耗减少一半,并消除了肌脂肪变性、代谢紊乱和萎缩。在培养物中,脂肪细胞脂肪分解需要可溶性 (s)IL6R,而 IL-6、sIL6R 或棕榈酸诱导肌管萎缩。PDAC 细胞激活脂肪细胞诱导肌管消耗,并激活肌管诱导脂肪细胞脂肪分解。因此,PDAC 恶病质是由于组织通过正反馈、IL-6 转信号通路发生串扰而导致的。恶性细胞通过 IL-6 向肌肉和脂肪发出信号,通过 sIL6R 向肌肉发出信号,通过脂质和 IL-6 向脂肪发出信号,所有这些都是治疗恶病质的靶向机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2459/8185651/e3affc03bbfb/JEM_20190450_Fig1.jpg

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