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慢性耐力运动可损害小鼠烟酸营养状况。

Chronic Endurance Exercise Impairs Niacin Nutritional Status in Mice.

机构信息

Department of Nutrition, School of Human Cultures, The University of Shiga Prefecture.

Department of Advanced Diagnostic System Development, Fujita Health University Graduate School of Health Science.

出版信息

J Nutr Sci Vitaminol (Tokyo). 2024;70(3):185-192. doi: 10.3177/jnsv.70.185.

Abstract

Niacin is a cofactor in many biological reactions related to energy metabolism, redox reactions, DNA repair and longevity. Although it has been considered that increasing energy expenditure increases NAD consumption, little study has directly demonstrated the effect of exercise on niacin nutritional status. We have recently established the niacin insufficient model mice using kynurenine 3-monooxygenase knock out (KMO) mice with niacin-limited diet, which lack the de novo NAD synthesis pathway from tryptophan. To evaluate the effects of chronic endurance exercise on niacin nutritional status, 4 wk old KMO mice were fed 4 or 30 mg/kg nicotinic acid containing diets, and forced to swim in a running water pool every other day for 35 d. The swim-exercised mice fed 4 mg/kg nicotinic acid diet showed lower body weight gain and niacin nutritional markers such as liver and blood NAD, and urine nicotinamide metabolites than the sedentary mice. These animals did not show any difference in the NAD synthesis, NAD salvage and nicotinamide catabolic pathways. Chronic endurance exercise failed to affect any indices in the mice fed the 30 mg/kg nicotinic acid diet. When the diet was exchanged the 4 mg/kg for 30 mg/kg nicotinic acid diet to the mice showed chronic endurance exercise-induced growth retardation, their body weight rapidly increased. These results show that chronic endurance exercise impairs niacin nutritional status in the niacin insufficient mice, and enough niacin intake can prevent this impairment. Our findings also suggest that chronic endurance exercise increases niacin requirement by increase of NAD consumption.

摘要

烟酸是许多与能量代谢、氧化还原反应、DNA 修复和长寿相关的生物反应的辅助因子。尽管人们一直认为增加能量消耗会增加 NAD 的消耗,但很少有研究直接证明运动对烟酸营养状况的影响。我们最近使用色氨酸从头合成 NAD 的途径缺乏的犬尿氨酸 3-单加氧酶敲除(KMO)小鼠和烟酸限制饮食建立了烟酸不足模型小鼠。为了评估慢性耐力运动对烟酸营养状况的影响,4 周龄 KMO 小鼠喂食 4 或 30mg/kg 烟酸含量的饮食,并每隔一天在流水池中强迫游泳 35 天。喂食 4mg/kg 烟酸饮食的游泳运动小鼠的体重增加和肝脏和血液 NAD 等烟酸营养标志物低于久坐小鼠。这些动物在 NAD 合成、NAD 回收和烟酰胺分解代谢途径中没有任何差异。慢性耐力运动对喂食 30mg/kg 烟酸饮食的小鼠的任何指标均无影响。当饮食从 4mg/kg 烟酸交换为 30mg/kg 烟酸饮食时,运动小鼠出现慢性耐力运动诱导的生长迟缓,其体重迅速增加。这些结果表明,慢性耐力运动可损害烟酸不足小鼠的烟酸营养状况,足够的烟酸摄入可预防这种损害。我们的研究结果还表明,慢性耐力运动通过增加 NAD 的消耗增加了烟酸的需求。

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