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Exercise training reduces fibrosis and matrix metalloproteinase dysregulation in the aging rat heart

机译:运动培训减少肉肝菌和基质金属蛋白酶酶的衰老大鼠心脏

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摘要

Aging impairs function in the nonischemic heart and is associated with mechanical remodeling. This process includes accumulation of collagen (i.e., fibrosis) and dysregulation of active matrix metalloproteinases (MMPs). Exercise training (ET) improves cardiac function, but the pathways of protection remain poorly understood. Young (3 mo) and old (31 mo) FBNF1 rats were assigned into sedentary and exercise groups, with ET group rats training on a treadmill 45 min/d, 5 d/wk for 12 wk. Nonlinear optical microscopy (NLOM), histology, immunohistochemistry (IHC), and Western blot analyses were performed on the left ventricle and septum. NLOM, IHC, and histological imaging revealed that ET reduced age-associated elevation of collagen type I fibers. Active MMP-1, active MMP-2, and MMP-14 in the ECM fraction of the left ventricle were reduced by aging, an effect abrogated by ET. Tissue inhibitor of MMP (TIMP-1) was elevated with age but protected by ET. Transforming growth factor-β (TGF-β), upstream regulator of TIMP-1, increased with age but was attenuated by ET. Therefore, exercise training could protect the aging heart against dysregulation of MMPs and fibrosis by suppressing elevation of TIMP-1 and TGF-β.—Kwak, H.-B., Kim, J.-H., Joshi, K., Yeh, A., Martinez, D. A., Lawler, J. M. Exercise training reduces fibrosis and matrix metalloproteinase dysregulation in the aging rat heart.
机译:老化在非透析性心脏中的危害功能,与机械重塑有关。该方法包括积聚胶原(即纤维化)和活性基质金属蛋白酶(MMPs)的失调。运动培训(ET)改善了心功能,但保护途径仍然明白。杨(3Mo)和旧(31Mo)FBNF1大鼠被分配到久坐不动和运动组中,在跑步机45 min / d,5 d / wk培训12周的培训。在左心室和隔膜上进行非线性光学显微镜(NLOM),组织学,免疫组织化学(IHC)和蛋白质印迹分析。 NLOM,IHC和组织学成像显示ET降低了胶原I型纤维的年龄相关升高。通过老化减少了活性MMP-1,活性MMP-2,活性MMP-2和MMP-14,衰老减少了ET的效果。 MMP(TIMP-1)的组织抑制剂随着年龄而升高但受ET的保护。转化生长因子-β(TGF-β),TIMP-1的上游调节剂,随着年龄的增长而增加,但ET衰减。因此,运动培训可以通过抑制TIMP-1和TGF-β.-Kwak,H.-B,Kim,J.-h.,Joshi,K,Yeh来保护老化心脏免受MMPS和纤维化的失调和纤维化。 ,A.,Martinez,Da,Lawler,JM运动训练可减少老化大鼠心脏中的纤维化和基质金属蛋白酶酶活性。

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