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补充 L-精氨酸包被纳米粒子的游泳运动上调衰老雄性大鼠心肌细胞中 HAND2 和 TBX5 的表达。

Swimming exercise with L-arginine coated nanoparticles supplementation upregulated HAND2 and TBX5 expression in the cardiomyocytes of aging male rats.

机构信息

Department of Exercise Physiology, Islamic Azad University, Karaj Branch, Karaj, Alborz, Iran.

Department of Exercise Physiology, University of Guilan, Guilan, Iran.

出版信息

Biogerontology. 2022 Aug;23(4):473-484. doi: 10.1007/s10522-022-09977-8. Epub 2022 Jul 9.

Abstract

We investigated possible cardioprotective mechanisms of L-arginine coated nanoparticles (L-ACN) combined with swimming exercise (SE) in aging male rats considering heart and neural crest derivatives-expressed protein 2 (HAND2) and t-box transcription factor 5 (TBX5). Thirty-five male Wistar rats were randomly assigned into five groups: young, old, old + L-ACN, old + SE, and old +  L-ACN + SE (n = 7 in each). L-arginine coated with chitosan nanoparticles was given to L-ACN groups via gavage at 500 mg/kg/day. SE groups performed a swimming exercise program 5 days per week for 6 weeks. The exercise program started with 20 min, gradually increasing to 60 min after four sessions, which was then constant until the completion of the training period. After the protocol completion, the rats were sacrificed, and the heart was fixed and frozen to carry out histological, immunohistochemistry (IHC), and gene expression analyses. The expression of HAND2 protein, HAND2 mRNA, and TBX5 mRNA of the heart tissue was significantly higher in the young group than in all older groups (P < 0.05). The old + L-ACN, old + SE, and old + L-ACN + SE groups showed a significant increase in these factors compared to the old group (P < 0.05). Nano-L-arginine supplement, along with swimming exercises, seems to have cardioprotective potential and improve cardiac function in old age by strengthening cardiomyocyte signaling, especially HAND2 and TBX5. However, more research is required, particularly on human samples.

摘要

我们研究了左旋精氨酸包被纳米粒子(L-ACN)与游泳运动(SE)联合应用于老年雄性大鼠的可能心脏保护机制,考虑了心脏和神经嵴衍生物表达蛋白 2(HAND2)和 T 盒转录因子 5(TBX5)。35 只雄性 Wistar 大鼠被随机分为五组:年轻组、老年组、老年+L-ACN 组、老年+SE 组和老年+L-ACN+SE 组(每组 7 只)。L-ACN 组通过灌胃给予 500mg/kg/天的壳聚糖包被的 L-精氨酸。SE 组每周进行 5 天的游泳运动方案,共 6 周。运动方案从 20 分钟开始,在 4 个疗程后逐渐增加到 60 分钟,然后一直持续到训练期结束。方案完成后,处死大鼠,将心脏固定并冷冻,进行组织学、免疫组织化学(IHC)和基因表达分析。与所有老年组相比,年轻组心脏组织的 HAND2 蛋白、HAND2 mRNA 和 TBX5 mRNA 表达明显更高(P<0.05)。老年+L-ACN、老年+SE 和老年+L-ACN+SE 组与老年组相比,这些因子显著增加(P<0.05)。纳米左旋精氨酸补充剂与游泳运动相结合,似乎具有心脏保护潜力,并通过增强心肌细胞信号转导,特别是 HAND2 和 TBX5,改善老年人心功能。然而,还需要更多的研究,特别是在人类样本上。

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