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生酮饮食治疗脓毒症相关获得性肌无力:是敌是友?

Ketogenic diet in treating sepsis-related acquired weakness: is it friend or foe?

作者信息

Miao Yanmei, Xie Leiyu, Chen Shaolin, Zhang Xiaoming, Liu Wenjie, Xie Peng

机构信息

Department of Critical Care Medicine of the Third Affiliated Hospital (The First People's Hospital of Zunyi), Zunyi Medical University, Zunyi, China.

Department of Nursing of Affiliated Hospital, Zunyi Medical University, Zunyi, China.

出版信息

Front Nutr. 2024 Nov 28;11:1484856. doi: 10.3389/fnut.2024.1484856. eCollection 2024.

Abstract

BACKGROUND

Sepsis is the body's extreme response to an infection leading to organ dysfunction. Sepsis-related acquired weakness (SAW), a critical illness closely related to metabolic disorders, is characterized by generalized sepsis-induced skeletal muscle weakness, mainly manifesting as symmetrical atrophy of respiratory and limb muscles. Muscle accounts for 40% of the body's total mass and is one of the major sites of glucose and energy absorption. Diet affects skeletal muscle metabolism, which further impacts physiology and signaling pathways. The ketogenic diet (KD) is a high-fat, low-carbohydrate diet that has shown benefits in patients with a variety of neuromuscular disorders. Patients with SAW are in a hypermetabolic state and can consume approximately 1% of total body muscle mass in a day. Due to the decreased total body energy expenditure secondary to starvation, skeletal muscles enter a low metabolic state, with reduced gluconeogenesis and protein consumption and elevated levels of ketone bodies. The latest research suggests that KD may be a new strategy for SAW prevention and treatment, but its mechanism is still unclear.

OBJECTIVE

Our article aims to explore the effect and mechanism of KD on SAW. And we hope that our review will inspire further research on the KD and foster the exploration of novel strategies for combating SAW.

METHODS

Search medical databases and related academic websites, using keywords such as "Sepsis-related acquired weakness," "ketogenic diet," and "skeletal muscle," and select representative literature. Using the method of induction and summary, analyze the effect and mechanism of KD on SAW.

RESULTS

Compared with early nutrition, KD has a more protective effect on SAW, but its mechanism is complex. Firstly, KD can alter energy metabolism substrates to affect SAW's energy metabolism; Secondly, KD can directly act as a signaling molecule to improve mitochondrial function in skeletal muscle and stimulate skeletal muscle regeneration signaling molecules; Thirdly, KD can affect the gut microbiota to exert anti-inflammatory effects, enhance immunity, and thus protect SAW.

CONCLUSION

KD has a protective effect on SAW, which includes improving energy metabolism, stimulating muscle regeneration signals, optimizing gut microbiota composition, and reducing inflammation and oxidative stress.

摘要

背景

脓毒症是机体对感染的极端反应,可导致器官功能障碍。脓毒症相关获得性肌无力(SAW)是一种与代谢紊乱密切相关的危重病,其特征为全身性脓毒症诱导的骨骼肌无力,主要表现为呼吸肌和肢体肌肉的对称性萎缩。肌肉占人体总质量的40%,是葡萄糖和能量吸收的主要部位之一。饮食影响骨骼肌代谢,进而影响生理和信号通路。生酮饮食(KD)是一种高脂肪、低碳水化合物的饮食,已显示对多种神经肌肉疾病患者有益。SAW患者处于高代谢状态,一天可消耗约1%的全身肌肉量。由于饥饿导致全身能量消耗减少,骨骼肌进入低代谢状态,糖异生和蛋白质消耗减少,酮体水平升高。最新研究表明,KD可能是预防和治疗SAW的一种新策略,但其机制仍不清楚。

目的

本文旨在探讨KD对SAW的作用及机制。我们希望我们的综述能激发对KD的进一步研究,并促进对抗SAW新策略的探索。

方法

检索医学数据库和相关学术网站,使用“脓毒症相关获得性肌无力”、“生酮饮食”和“骨骼肌”等关键词,筛选代表性文献。采用归纳总结的方法,分析KD对SAW的作用及机制。

结果

与早期营养相比,KD对SAW具有更强的保护作用,但其机制复杂。首先,KD可改变能量代谢底物以影响SAW的能量代谢;其次,KD可直接作为信号分子改善骨骼肌线粒体功能并刺激骨骼肌再生信号分子;第三,KD可影响肠道微生物群发挥抗炎作用,增强免疫力,从而保护SAW。

结论

KD对SAW具有保护作用,包括改善能量代谢、刺激肌肉再生信号、优化肠道微生物群组成以及减轻炎症和氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a61/11636000/32ae2f5d38fa/fnut-11-1484856-g001.jpg

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