Aging-associated skeletal muscle defects in HER2/Neu transgenic mammary tumor model.

JCSM rapid communications Pub Date : 2021-01-01 Epub Date: 2020-07-15 DOI:10.1002/rco2.23
Ruizhong Wang, Brijesh Kumar, Poornima Bhat-Nakshatri, Mayuri S Prasad, Max H Jacobsen, Gabriela Ovalle, Calli Maguire, George Sandusky, Trupti Trivedi, Khalid S Mohammad, Theresa Guise, Narsimha R Penthala, Peter A Crooks, Jianguo Liu, Teresa Zimmers, Harikrishna Nakshatri
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引用次数: 4

Abstract

Background: Loss of skeletal muscle volume and resulting in functional limitations are poor prognostic markers in breast cancer patients. Several molecular defects in skeletal muscle including reduced MyoD levels and increased protein turn over due to enhanced proteosomal activity have been suggested as causes of skeletal muscle loss in cancer patients. However, it is unknown whether molecular defects in skeletal muscle are dependent on tumor etiology.

Methods: We characterized functional and molecular defects of skeletal muscle in MMTV-Neu (Neu+) mice (n= 6-12), an animal model that represents HER2+ human breast cancer, and compared the results with well-characterized luminal B breast cancer model MMTV-PyMT (PyMT+). Functional studies such as grip strength, rotarod performance, and ex vivo muscle contraction were performed to measure the effects of cancer on skeletal muscle. Expression of muscle-enriched genes and microRNAs as well as circulating cytokines/chemokines were measured. Since NF-κB pathway plays a significant role in skeletal muscle defects, the ability of NF-κB inhibitor dimethylaminoparthenolide (DMAPT) to reverse skeletal muscle defects was examined.

Results: Neu+ mice showed skeletal muscle defects similar to accelerated aging. Compared to age and sex-matched wild type mice, Neu+ tumor-bearing mice had lower grip strength (202±6.9 vs. 179±6.8 g grip force, p=0.0069) and impaired rotarod performance (108±12.1 vs. 30±3.9 seconds, P<0.0001), which was consistent with reduced muscle contractibility (p<0.0001). Skeletal muscle of Neu+ mice (n=6) contained lower levels of CD82+ (16.2±2.9 vs 9.0±1.6) and CD54+ (3.8±0.5 vs 2.4±0.4) muscle stem and progenitor cells (p<0.05), suggesting impaired capacity of muscle regeneration, which was accompanied by decreased MyoD, p53 and miR-486 expression in muscles (p<0.05). Unlike PyMT+ mice, which showed skeletal muscle mitochondrial defects including reduced mitochondria levels and Pgc1β, Neu+ mice displayed accelerated aging-associated changes including muscle fiber shrinkage and increased extracellular matrix deposition. Circulating "aging factor" and cachexia and fibromyalgia-associated chemokine Ccl11 was elevated in Neu+ mice (1439.56±514 vs. 1950±345 pg/ml, p<0.05). Treatment of Neu+ mice with DMAPT significantly restored grip strength (205±6 g force), rotarod performance (74±8.5 seconds), reversed molecular alterations associated with skeletal muscle aging, reduced circulating Ccl11 (1083.26 ±478 pg/ml), and improved animal survival.

Conclusions: These results suggest that breast cancer subtype has a specific impact on the type of molecular and structure changes in skeletal muscle, which needs to be taken into consideration while designing therapies to reduce breast cancer-induced skeletal muscle loss and functional limitations.

HER2/Neu转基因乳腺肿瘤模型中与衰老相关的骨骼肌缺损
背景:骨骼肌体积的减少和导致的功能限制是乳腺癌患者预后不良的标志。骨骼肌中的一些分子缺陷,包括MyoD水平降低和由于蛋白体活性增强而增加的蛋白质翻转,已被认为是癌症患者骨骼肌损失的原因。然而,骨骼肌分子缺陷是否依赖于肿瘤病因尚不清楚。方法:我们对HER2阳性人乳腺癌动物模型MMTV-Neu (Neu+)小鼠(n= 6-12)骨骼肌功能和分子缺陷进行了表征,并将结果与表征良好的B型乳腺癌模型MMTV-PyMT (PyMT+)进行了比较。功能研究,如握力、旋转杆性能和离体肌肉收缩,用于测量癌症对骨骼肌的影响。测量肌肉富集基因和microrna以及循环细胞因子/趋化因子的表达。由于NF-κB通路在骨骼肌缺损中起着重要作用,我们检测了NF-κB抑制剂二甲氨基多酚内酯(DMAPT)逆转骨骼肌缺损的能力。结果:new +小鼠出现类似加速衰老的骨骼肌缺损。与年龄和性别匹配的野生型小鼠相比,Neu+荷瘤小鼠握力较低(202±6.9 g对179±6.8 g, p=0.0069),旋转杆性能下降(108±12.1秒对30±3.9秒)。这些结果表明,乳腺癌亚型对骨骼肌的分子类型和结构变化有特定的影响,在设计治疗方法以减少乳腺癌引起的骨骼肌损失和功能限制时需要考虑到这一点。
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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