a Department of Physiology, School of Medicine in Katowice, Medical University of Silesia, Katowice 40-752, Poland.
b Laboratory of Molecular Biology, Faculty of Physiotherapy, The Jerzy Kukuczka Academy of Physical Education, Katowice 40-065, Poland.
Appl Physiol Nutr Metab. 2018 Feb;43(2):203-210. doi: 10.1139/apnm-2017-0374. Epub 2017 Oct 18.
The high-fat and low-carbohydrate ketogenic diet (HFKD) is extensively studied within the fields of numerous diseases, including cancer and neurological disorders. Since most studies incorporate animal models, ensuring the quality of ketogenic rodent diets is important, both in the context of laboratory animal welfare as well as for the accuracy of the obtained results. In this study we implemented a modification to a commonly used ketogenic rodent chow by replacing non-resorbable cellulose with wheat bran. We assessed the effects of month-long treatment with either the unmodified or the modified HFKD on the growth and development of young male rats. Daily body weight, functional performance, and brain morphometric parameters were assessed to evaluate the influence of both applied diets on rodent development. Our results revealed that the unmodified ketogenic chow induced strong side effects that included weakness, emaciation, and brain undergrowth concomitant to growth inhibition. However, application of the ketogenic chow supplemented with wheat bran suppressed these adverse side effects, which was associated with the restoration of insulin-like growth factor 1 and a decrease in corticosterone levels. We have also shown that the advantageous results of the modified HFKD are not species- or sex-specific. Our data indicate that the proposed HFKD modification even allows for its application in young animals, without causing detrimental side effects.
高脂肪低碳水化合物生酮饮食(HFKD)在许多疾病领域,包括癌症和神经紊乱,都有广泛的研究。由于大多数研究都采用了动物模型,因此,确保生酮啮齿动物饮食的质量很重要,这不仅关系到实验室动物的福利,也关系到获得结果的准确性。在这项研究中,我们对一种常用的生酮啮齿动物饲料进行了改良,即用麦麸代替了不可吸收的纤维素。我们评估了用未改良或改良的 HFKD 进行长达一个月的治疗对年轻雄性大鼠生长和发育的影响。通过评估每日体重、功能表现和大脑形态计量参数,来评估两种饮食对啮齿动物发育的影响。我们的结果表明,未改良的生酮饲料会引起强烈的副作用,包括虚弱、消瘦和大脑发育不良,同时伴有生长抑制。然而,应用添加了麦麸的生酮饲料可以抑制这些不良反应,这与胰岛素样生长因子 1 的恢复和皮质酮水平的降低有关。我们还表明,改良 HFKD 的有益结果不是物种特异性或性别特异性的。我们的数据表明,所提出的 HFKD 改良甚至允许在年轻动物中应用,而不会产生有害的副作用。